SCROLL NEWS / DISCOVERY

Search headlines

Find the stories shaping the conversation.

Search mode
Refine results
Active filters Keyword All time

Results for " Four years ago " 45 found 🔀 AI-powered Shuffle

Cost Concerns Dominate as Public’s Economic Ratings Turn More Negative

The costs of many household essentials are a top economic concern for most Americans – much as they were four years ago on the eve of the last midterm election.

pewresearch.org logo
Oct 8 • 2:57 PM EDT • Politics • pewresearch.org
Four Ohio college basketball teams play Outdoor exhibition

CareSource Invitational event University of Dayton head coach Anthony Grant started four years ago after his daughter died by suicide.

spectrumnews1.com logo
Oct 7 • 7:34 PM EDT • Health • spectrumnews1.com
😐 Neutral (8%)
love
40%
ahah
30%
wow
30%
Messi: The Argentina career that finally delivered his greatest prize

Lionel Messi leaves international football after one of the greatest careers on that stage the game has seen. The 39-year-old finally fulfilled his destiny when he guided Argentina to World Cup glory four years ago, but that was far from the full extent of an extraordinary journey.

sports.yahoo.com logo
Oct 6 • 11:18 PM EDT • Sports • sports.yahoo.com
Brazil: Lessons from a Disaster

By Antonio Martins (Outras Palavras) Defeats become deeper and more prolonged when we misunderstand what caused them, avoid correcting course, and embrace “solutions” that only compound our mistakes. Lula’s government and the Brazilian left suffered a disaster in Sunday’s election. Contrary to every poll, the president finished the first round 2.2 million votes behind Flávio Bolsonaro—and, more significantly, 3.4 million votes below his total four years ago, when the machinery of the state was working against him and in favor of his opponent. His vote share declined in 98 percent of Brazil’s municipalities. The PL, the main party of the far right, elected 121 deputies and 28 senators, becoming the largest caucus in both houses of Congress. The parties aligned with the Centrão—Brazil’s bloc of transactional center-right parties—were somewhat diminished, but will still hold roughly 250 seats in the Chamber of Deputies and 35 in the Senate. That will make it easier to assemble the majorities needed to amend the Constitution or impeach Supreme Federal Court justices. If elected, Flávio Bolsonaro could appoint four members of the Court, substantially altering its internal balance of power. What produced these results? How can the far right be prevented from consolidating them into a prolonged political hegemony? And what is the essential change of direction the left now needs? Explaining the Disaster Across the commercial media and the exuberant chaos of digital platforms, interpretations are multiplying. Some focus on specific episodes: Lula’s absence from the Globo debate, his very close relationship with Alexandre de Moraes, or his emphasis on issues supposedly remote from most people’s everyday concerns, such as rare earth minerals. Among the more systemic interpretations, three seem especially questionable. One argues that the principal defeat was not the left’s, since its congressional representation declined only slightly. The decisive movement captured at the ballot box, according to this view, was a shift within the right itself—from the more moderate and transactional forces of the Centrão toward the more ideological and radicalized forces of the PL and Novo. A second interpretation holds that the nature of electoral and political processes has changed. The material interests and aspirations of society, it argues, no longer play the central role they once did; they have given way to forms of subjective self-identification that the left has yet to understand. And a third concludes that, because of these two developments, we should expect a political winter: a prolonged period in which the far right and the broader right dominate Brazilian political life. There are important elements in all three interpretations. The problem lies in what they deny or leave out: Lula’s third government was a small-bore government. It offered the majorities that elected it neither a clearly better life nor reasons to believe again in politics and its power to transform society. These failures flowed from two fatal accommodations, which I will examine below. As a result, the government suffered a slow but steady erosion of support. And, as has happened in so many Western countries, it gave the far right the opportunity to present itself as anti-system and to benefit from popular frustration and distress. The interpretation that emphasizes the migration of votes from the center-right and traditional right toward the far right has been advanced, among others, by the courageous journalist Leonardo Sakamoto. In his UOL column on Monday, October 5, he highlights the miserable behavior of the traditional conservative parties. Over the past four years, they repeatedly joined forces with the “neo”-fascists, helping to “normalize” them—a criticism that could equally be directed at almost the entire corporate media. Believing they could use the far right as a stepping stone, they instead ended up partly devoured by it. This was especially true in the Senate, where the PL’s gain of 13 senators and Novo’s gain of two came at the expense of the PSD, which lost nine; the MDB, which lost two; the PSDB, which lost two; and the PP, which lost one. Sakamoto’s observation is accurate and necessary, but it leaves uncomfortable questions unanswered. Why did the erosion of the Centrão benefit the far right rather than, for example, producing growth for the left—as has happened so many times before, both in Brazil and elsewhere? The answer is not difficult. Throughout its four years in office, Lula’s third government was almost invariably associated with the Centrão. Here lies its first accommodation: accepting the limits imposed by conservative institutions; avoiding, as much as possible, any attempt to strain those limits through popular pressure; and believing only in the modest changes that could be squeezed through openings in Congress. The failure of the campaign to end the six-day workweek is emblematic. Lula could have electrified the presidential race by pairing it with a popular campaign for passage of the measure. Instead, he chose to place his hopes in the hands of Senate president Rodrigo Alcolumbre. He generated no mass mobilization, did not force his opponents onto an uncomfortable defensive, and won no victory. In September 2025, the government squandered the greatest of its many opportunities to shake up conservative power in Congress. Popular opposition to the so-called Shielding Amendment—which, if approved, would have restricted criminal proceedings against members of Congress—brought crowds into the streets, mobilized primarily by artists and social movements. This opened the possibility for a broader political education: a campaign that could begin exposing the limits and dysfunctions of Brazil’s political system while putting Bolsonaro’s movement on the defensive for its predictable support of political privilege. The amendment was defeated. But the executive branch then backed away from the fight. It remained associated with an institutional world widely seen as corrupt, elitist, and indifferent to ordinary people’s struggles. In doing so, it forfeited its credibility as a vehicle for the protest vote. On Sunday, it reaped the bitter fruits. Are We Doomed? Taking a different approach from Sakamoto, the philosopher Moysés Pinto Neto and other writers have drawn attention, in their first analyses of October 4, to the fragmentation of the public sphere produced by Big Tech platforms. Through their algorithms, these platforms present each person with a different view of social reality. As a consequence, it becomes much harder to identify common material problems and demands—for example, the fight for labor rights or for a properly funded public health system. Voters no longer embrace such demands, these authors argue, because they no longer see themselves as part of a collective. Instead, they tend to value the identities assigned to them by neoliberal subjectivity—the role of the entrepreneur, for example. On this interpretation, the left’s possible error lies in clinging to outdated illusions. Moysés’s warning is highly relevant and resonates with arguments such as Naomi Klein and Astra Taylor’s “Apocalyptic Fascism and the Billionaires’ Bet.” Unlike a century ago, the far right no longer promises a radiant future. It concentrates instead on resentment—especially that of young men. “They belong to a generation that fears it may never own a home, but compensates with the pleasure it gets from constantly provoking progressives online. Convinced their future has been stolen, they share memes romanticizing historical authoritarian regimes,” the authors write. But Moysés seems to confuse this danger with inevitability. He fails to see that the left’s answer cannot be adaptation. On the contrary, it must strengthen the possibility of politics as collective action. Nor does he recognize that precisely such a reversal is already becoming possible in some of the most promising mobilizations of the twenty-first century: the election, at the end of 2025, of the young Muslim Zohran Mamdani as mayor of New York, on a platform centered on the intensely material fight for an affordable city; the Left Party’s victory in Berlin two weeks ago, built around the demand to expropriate private real-estate corporations; and the very recent wave of demonstrations in Spain—including an occupation of Madrid’s Puerta del Sol—in which tens of thousands of young people mobilized by the Tenants’ Union have demanded limits on rents. By putting itself in the straitjacket of the “fiscal framework” in the first months of 2022, Lula’s third government adopted the second fatal accommodation of its term. Faced with conservative institutions and a country devastated by four years of Bolsonaro, increased public investment was the government’s remaining weapon for offering a more dignified life to the majority and forging an anti-conservative pact with them. The same state that disburses 1 trillion reais a year to enrich a small class of rentiers could instead spend money to extend the Family Health Strategy to every Brazilian, at a cost of 30 billion reais; provide full-day public schooling and childcare to all adolescents and children—and, especially, relief to their mothers; achieve universal sanitation while cleaning up polluted urban rivers; multiply metro systems; begin transforming the urban peripheries; and undertake many other urgently needed projects. In April 2023, an article in Outras Palavras warned that the fiscal framework could “shrink the Lula government and preserve the forces that condemn the country to inequality and regression.” A year later, another article showed that restraints on public spending were strangling policies vital to ordinary people and undermining the president’s popularity. In November 2024 came a reality check, in the form of the government’s humiliating defeat in the municipal elections. Even then, the fiscal lock was neither removed nor loosened. On the contrary: throughout the government’s four years, fiscal restraint remained central to its political narrative. The administration proudly proclaimed that it had “put the state’s accounts in order,” without grasping either how misleading that phrase was—given the payment of 1 trillion reais in interest—or how badly the message was hurting it politically. Lula finally woke up in September 2026. The increase in Bolsa Família benefits, after four years of being frozen; the announcement that anti-obesity drugs would be offered through Brazil’s public health system; and the ban on online betting showed that the state has the power to act decisively on behalf of the majority when those in government are willing to confront obstacles. The huge marches that closed the campaign in Fortaleza, Salvador, Rio de Janeiro, and São Paulo on the eve of October 4 showed how such initiatives can mobilize activists and the broader public. But it was too late—and too little to change the outcome of the first round. History has not ended The possibility of a turnaround in the three weeks leading up to November 25 cannot be ruled out. It will not be simple or easy. Lula must not only make up a deficit of 2.2 million votes; he must also offset the movement of voters who backed other right-wing candidates in the first round, most of whom are likely to move toward Flávio Bolsonaro. Pulling that off will require a broad, grassroots effort to win over voters, potentially reinforced by new initiatives from Lula. The coming hours and days will be decisive. If Bolsonaro’s movement also wins the presidency, the result will create a high-risk situation for Brazilian sovereignty and democracy. The enormous challenges posed by such an outcome would require the left to reexamine, in depth and with a genuine willingness to engage in self-criticism, its political projects—or its lack of them—and its practices. But would that mean we are condemned to the long winter of far-right hegemony that some analyses are beginning to forecast? It is far too early to say, suggests a recent text by Álvaro García Linera, the thinker who served as vice president of Bolivia under Evo Morales. His central hypothesis is that this political current will prove short-lived. At a moment when the entire world is once again talking about sovereignty and protecting national economies, the far right offers a stale, recolonizing neoliberalism. Its submission to the United States is as blatant and pathetic as Flávio and Eduardo Bolsonaro’s overtures to Donald Trump. Its project amounts to something like every man for himself: greater inequality, capitalism without limits, devastation, and supremacism. Will it work? In the United States, just two years into his second term, Trump himself is reaching record levels of unpopularity and may be on the verge of losing Republican control of both the House and Senate in November. Every new beginning is difficult. Whatever the outcome of the second round, the defeats of October 4 show how profoundly the Brazilian left will have to rethink and rebuild. But just as it would be foolish to underestimate the seriousness of its mistakes, it would be equally foolish to conclude that rebuilding a political project is no longer possible. History has not ended. The times are moving faster than ever. Originally published in Portuguese by Outras Palavras. English translation by Eric Blanc; I’ve added the subtitles. More We can’t stop the far right at home or abroad without a revitalized labor movement, which is yet another reason why you should become a sustaining supporter of the Emergency Workplace Organizing Committee (EWOC) — one of US labor’s pivotal bright spots. Relatedly, Jacobin published a short piece of mine reflecting on a decade of Bernie Sanders inspiring a whole new generation of young worker organizers.

laborpolitics.com logo
Oct 6 • 10:08 AM EDT • Politics • laborpolitics.com
Trump, politics and lawfare take center stage in Arizona's attorney general race

Four years ago, Democratic Attorney General Kris Mayes won the office by less than 300 votes. Now, she’s hoping her track record taking on President Trump, fake electors and predatory businesses will earn her a second term in office.

kjzz.org logo
Oct 6 • 8:00 AM EDT • Politics • kjzz.org
What a can of Chef Boyardee taught me about politics...

Four years ago, I asked then-Congressman Sean Patrick Maloney a question about inflation during a video interview. I had no idea that his answer would become the most widely seen moment in Halston Media history. Maloney recalled that when money...

news.halstonmedia.com logo
Oct 2 • 10:15 PM EDT • Politics • news.halstonmedia.com
Picanha, prices and politics: What Brazil's favorite steak says about the election

Lula promised Brazilians four years ago they'd be able to afford picanha again. Now, as he seeks another term, the price of the country's favorite cut of beef is telling a different story.

knpr.org logo
Oct 1 • 6:00 AM EDT • Politics • knpr.org
Picanha, prices and politics: What Brazil's favorite steak says about the election

Lula promised Brazilians four years ago they'd be able to afford picanha again. Now, as he seeks another term, the price of the country's favorite cut of beef is telling a different story.

npr.org logo
Oct 1 • 6:00 AM EDT • Politics • npr.org
High-Signal Publisher
‘It’s a ghost town’: St. Cloud businesses still await downtown revival

Four years ago, the city unveiled a massive — and unfulfilled — $100 million plan to revitalize its core. Business owners are growing impatient with the slow progress.

startribune.com logo
Sep 30 • 7:00 AM EDT • Business • startribune.com
Leonardo’s owner expands into the restaurant business with Pa'l Corazón

Hugo Leonardo came to the United States from Mexico in 2001 as a teenager, working his way through various kitchen positions in Park City until he opened his own market and taquería — Leonardo’s — four years ago to provide specialized goods to Park City’s Hispanic community. But Leonardo says his latest business venture, a Mexican restaurant in the heart of Kamas, is a lifelong dream that has finally come to fruition.

parkrecord.com logo
Sep 29 • 3:45 PM EDT • Business • parkrecord.com
Deep dive
😐 Neutral (22%)
love
48%
wow
30%
ahah
22%
Mass. launched a program to stop school sports bullying. Why are so few schools using it?

A state government initiative started four years ago specifically to prevent hate and bias in athletics, called Addressing Hate in School Sports. Yet reports of such incidents remain common across the booming school sports landscape.

wgbh.org logo
Sep 28 • 5:00 AM EDT • Sports • wgbh.org
First in entrepreneurial excellence: FSU celebrates local businesses at inaugural Impact Awards Gala

The Entrepreneurial Impact Awards Gala provided a formal night out for Fayetteville’s business community. The event took place at the Rudolph Jones Student Center on Thursday, Sept. 10. Photo by GFBJ. Fayetteville State University (FSU) and the Fayetteville-Cumberland Regional Entrepreneur and Business HUB (FSU HUB) came together to celebrate Fayetteville’s business community. The two organizations rolled out the blue carpet at the Rudolph Jones Student Center for their inaugural Entrepreneurial Impact Awards Gala held on Thursday, Sept. 10.The gala honored outstanding entrepreneurs and business leaders who demonstrate excellence, foster growth and inspire the next generation of innovators within the FSU and broader business community.FSU HUB Director Dr. Tamara Colvin was able to highlight that this new milestone was a great way to show local success stories, not just tell.“That one-stop shop that’s across the street, we never promised that everyone would be successful, but what we did promise was access. Four years ago, we opened up an entire ecosystem: counseling, capital, contracts, connections, certifications,” shared Colvin. “I want to thank the judges who took up hard work for choosing tonight’s honorees. That’s never an easy task when the whole region is full of people worth recognizing at the HUB. We practice what we preach: Res Non Verba: Deeds, not words.” A few of the inaugural recipients of the awards shared their statements with the Greater Fayetteville Business Journal.STUDENT ENTREPRENEUR Boolean Wiring LLC, Esean Rose, owner “I am truly honored and grateful to receive the Student Entrepreneur of the Year Award. I want to thank Fayetteville State University, the judges and everyone who has supported me throughout this journey. This award represents more than recognition for where Boolean Wiring is today. To me, it represents the potential of where we are going. I am excited about growing the company, creating jobs, serving our community and building something that can have an impact far beyond Fayetteville.”VETERAN-OWNED BUSINESS SpeediPrint Inc., Dazrell Fleming, owner “I’m honored to accept the Veteran-Owned Business Award on behalf of the entire SpeediPrint team. A special thank you to Dr. Tamara Colvin for creating this opportunity through the Entrepreneurial Impact Awards, and to my mentor, Mr. Julius Cook, whose guidance during the Boots to Business program truly paid off. This recognition reflects the hard work of my staff and the trust our customers place in us every day — I’m grateful to serve this community and excited for what’s ahead.”MULTI-GENERATIONAL EXCELLENCE BJL Construction, Cleopatrice Robinson, president“This award is especially meaningful because we are more than a business — we are the continuation of a family legacy built through faith, hard work, craftsmanship, integrity and service. I gratefully acknowledge my grandfather, Deacon Benjamin “BJ” Lacy, Jr., whose example helped establish the foundation upon which our family’s entrepreneurial legacy was built. I also honor my father, the late Dr. Wilson Lacy, former president of BJL Construction. Working alongside him was both an opportunity and an education. He taught me that a business’s reputation had to be earned on every project through honesty, excellence, quality and service. As the current president, I recognize that I did not arrive at this moment alone. I stand on the shoulders of those who came before me, and I am sustained by those who continue to walk beside me.”MICRO BUSINESS Maybridge Development, LLC, Latisha Perkins, owner “I accept this award with so much pride and a whole lot of gratitude. First and foremost, I want to thank my higher power for continuing to guide me and give me the strength to keep going.When I first started this business and moved here to Fayetteville, I had no clue what I was getting myself into. This business has turned me every which way but loose, and I definitely had some moments where I was ready to just pack it up and head back to Georgia. I want to thank my Maybridge team, my village, The Hub, the FCEDC team and all the people and organizations here in Fayetteville who have believed in me and Maybridge and helped us get here.”COMMUNITY IMPACT Greater Life of Fayetteville, Georgeanna Pinckney, CEO & executive director “We are deeply honored to be recognized by FSU and the FSU HUB with the Community Impact Award presented to Greater Life of Fayetteville. I am especially grateful for this recognition because it tells us that you see what we do – and, more importantly, why we do what we do. Our commitment is to serve, empower and create meaningful opportunities for youth and families in our community. Most importantly, we give God first and foremost all the glory. We thank Him for giving us the wisdom, strength, vision and unity to continue doing this great work in our community.” SMALL BUSINESS OF THE YEAR Crowder Trucking LLC, Carlos & Valerie Morrison Crowder, owners “I want to thank God for always keeping his hands on Crowder Trucking. I’m truly honored and grateful to receive the Small Business Award from the FSU HUB. Running a small business is not always easy. There are long days, difficult decisions, unexpected challenges and plenty of moments when you have to remind yourself why you started. But there are also incredible moments like this one that remind you that the hard work is worth it,” shared Valerie Morrison Crowder.OTHER WINNERS INCLUDE: Alumni Entrepreneur - The Two-Six Project, Grant Bennett, founder and president Fayetteville State University Faculty Award - Dr. Christy Swinson Emerging Business Award - Genuine Luxury Beauty Salon Legacy Award - Gillis Farms Inc. Industry Titan of the Year - Eaton Corporation Entrepreneur of the Year- Let Me Cater to You, Chef Judith Cage, owner

bizfayetteville.com logo
Sep 24 • 3:47 PM EDT • Business • bizfayetteville.com
Deep dive
😐 Neutral (18%)
wow
55%
love
45%
Michigan Chamber endorses John James for governor

The endorsement of James over Democrat Jocelyn Benson was not unexpected given the group’s history of supporting Republican gubernatorial candidates. But it came considerably earlier than four years ago.

crainsdetroit.com logo
Sep 22 • 1:11 PM EDT • Business • crainsdetroit.com
Will Netflix’s Latest Horror Film Save Its Summer? And Introducing a New Data Source...

(Welcome to my weekly streaming ratings report, the single best guide to what’s popular in streaming TV and what isn’t. I’m the Entertainment Strategy Guy, a former streaming executive who now analyzes business strategy in the entertainment industry. If you were forwarded this email, please subscribe to get these insights each week.) All month, I’ve been polling you, my readers, on how we think the summer’s biggest blockbusters will do when they eventually land on streaming, and I wanted to share the results. First up, how readers think The Odyssey will perform when it comes to Peacock... People are pretty bullish that The Odyssey will smash it for Peacock. I don’t know that it will have as much rewatchability as Wicked did for kids, but we’ll see. It is now Universal’s highest-grossing film of all time. One note: almost half of Christopher Nolan’s films weren’t available for streaming the week The Odyssey came to theaters, including some of his biggest films like Inception, Dunkirk, Tenet, Oppenheimer and Insomnia. If you did want to watch the others, Prime Video had Memento and The Dark Knight trilogy, HBO Max only had The Dark Knight trilogy (even though Warner Bros. produced most of Nolan’s films), Hulu had The Prestige and Interstellar, and Paramount+ had Interstellar. So you needed at least two streaming subscriptions to catch the rest. Warner Bros. whiffed right here. I know they have long term licensing deals, but they should have tried to get as many Nolan films on HBO Max for launch as possible. Here are the results for Spider-Man: Brand New Day: The audience is a bit more mixed on this one, with everyone agreeing Spider-Man will swing to a big opening, but not necessarily elite or best all time. On to this week’s issue. Netflix continues searching for a hit straight-to-streaming summer film and Lioness and Ted Lasso allow me to look at the difference between a “hit” and a ‘hit for them”. All that, plus new YA/teen melodramas on Prime Video and Netflix, the House of the Dragon finale, USA Network claims a big opening, more big NFL ratings, all the flops, bombs and misses, and a whole lot more. But we start with a fun new data announcement. Let’s dive right in! (Reminder: The streaming ratings report focuses on the U.S. market and compiles data from Nielsen’s weekly top ten viewership ranks, Luminate’s Top Ten Data, JustWatch and Reelgood interest data, Samba TV household viewership, company datecdotes, Netflix hours viewed data, Google Trends, and IMDb to determine the most popular content. While most data points are current, Nielsen’s data covers the weeks of August 3rd to August 9th, 2026. You can find a link to my terminology here.) Subscribe A New Data Source: Reelgood’s Data on Content Libraries Here’s a fun new treat for you. Reelgood—an online service and app that lets users track where shows or films are streaming—is providing data every month for the Streaming Ratings Report on the size of each streamer’s catalogue, along with the new shows and films for each streamer. Yay! Previously, I had pulled “new shows on streamers premiering on the first of the month”: While I liked that data cut, it was a big wonky since it didn’t show all of the new shows or movies that came to a streamer each month. Instead, I would have preferred something like this from Reelgood’s annual report: And now we have it! I’m going to feature Reelgood’s data monthly, showing both total catalogue size and new shows and films appearing on the charts. That’s going to make these two cool new charts. First, here’s the size of various streamers’ film catalogues… (By the way, Reelgood offered to make the charts for me, but I like doing that task by hand to understand the data better.) They also provided data back to last year. Here’s the number of films timeline: And here are the new films on each streamer for the month prior to Aug: As I get used to this data, I plan to keep tinkering with how I display it, but I’m excited to feature it monthly. Today, I’m sharing the film charts; next issue, I’m going to feature TV shows by streamer. Now, in full disclosure, Reelgood is a sponsor of this little-newsletter-that-could. But in my constant quest to figure out what streamer various shows and films are on, I was already a Reelgood user before this sponsorship. I go to their website all the time, and their data is very accurate on where shows are (or have been). Plus, I’ve been sharing their weekly top ten lists for years now, pre-sponsorship. For me, this is a great win-win, since I get to amplify a service I love, and I get a cool new data source to play with. Now, normally folks don’t usually mention their sponsors directly, but as I wrote before, as I start featuring ads in my newsletter, I plan to be extremely open about who is sponsoring my writing so you can trust what I write. Television - Two Big Returning Shows Look Set to Take Over The Charts One key question when it comes to judging streaming shows is whether a show is a “hit” or a “hit for them”. To be clear, the former means a show that’s one of the top shows on streaming, no questions asked. The latter means a show is one of the biggest, for a given streamer. That distinction makes a big difference! It’s really good to be one of the biggest shows on a streamer; it’s much better to be the biggest on streaming, despite the size of a streamer. Because, as we’ve seen now, nearly every streamer—while lacking the number of subscribers or usage of Netflix—can make hit TV shows: Paramount released Landman, whose first and second seasons were among the top two TV shows the year they came out. HBO Max’s The Pitt’s second season is the biggest show of the year so far. Love Island USA was the top show in 2025 for Peacock. And, crucially for today’s discussion: Wayyyyyyyyyyyyyyyyyyyyyyyyyy back in 2023, Ted Lasso was actually the top streaming show of the year according to Nielsen! So even Apple TV (formerly +) can make hit shows. It just doesn’t make them that often. And looking at the Nielsen charts this week, we have two prime candidates for this discussion: That’s right: Ted Lasso returned to Apple TV for its fourth season. Did it return in all its expected glory? Sure, though right now it’s still just a “hit for Apple TV”, but we’ll see how long it lasts on the charts. Its ten episodes are coming out weekly. (Smart choice, Apple!) Ted Lasso started out strong, actually making the Nielsen charts the week before new episodes dropped, which is a rare feat. (Shows like Stranger Things or Bridgerton have pulled that off. That’s terrific company to join!) On Nielsen, it opened to 14.4 million hours in its first week, and 16.6 million the week of 10-Aug. Here’s how that compares to previous seasons: Apple put out that this is their biggest TV launch through two days ever, and looking at the chart and Apple TV’s viewership history, I’d believe it. Here’s Apple’s top shows for season two and beyond: Other data tells a (mostly) similar story. Ted Lasso made Samba TV and it has elite IMDb scores, an insane 8.7 on 465K reviews. The only outlier is Luminate, where the latest season only had 7.4 million hours, and no other seasons made the top ten. As you’ll see below, that’s well below some other solid, but not spectacular shows like Sterling Point, Ride or Die or Furious. I’d be surprised if Ted Lasso isn’t bigger than those other shows, but it’s fine for different data sources to occasionally disagree. And while it’s sucky to bring this up, given that Warner Bros. produced this show, I do wonder how the streaming wars may have been different if Ted Lasso landed on HBO Max initially instead of Apple. I don’t think one show can make or break a streamer, but given HBO’s brand, it could have helped bring people to that streamer much earlier in its lifespan. (Though yeah, I don’t love calling out executives for passing on hit shows, since that’s just the nature of the job. Even the absolute best execs will pass on lots of successful shows. The key is not greenlighting the under-performers/misses.) The other show I’m thinking about in the “hit or hit for them” category is Lioness from Paramount+. Like Ted Lasso, its first season missed the charts, but it’s grown its audience since then. Here’s how season three opened: We’re just getting started with this issue, but the rest is for paid subscribers of the Entertainment Strategy Guy, so if you’d like to find out… How Lioness did on streaming... Two new melodramas for Netflix and Prime Video... Whether Netflix’s latest horror film saved its summer... Hulu’s Furious and Prime Video’s Ride or Die continuing their strong runs... The latest high profile showrunner to flop on streaming... All the flops, bombs and misses... And a whole lot more... ...please subscribe! We can only keep doing this great work with your support. Next week, we’ve got a double issue—since the week of 17-Aug had very few notable new shows or films—so I’ll look at HBO’s Lanterns, Prime Video’s Reacher, Netflix’s Tires, Outer Banks (which posted up huge numbers four years ago), an Aussie romance, and another baseball event (that didn’t resonate). And a bunch of movies like the latest dramedy from an Adam Sandler daughter, Don’t Say Good Luck, Camp Rock 3 on Disney Channel and Disney+, Michael on Starz, and more. Later this month, we’ve got a ton of shows and films to analyze! Movies will be the big story, featuring a box office bomb (Supergirl on HBO Max) and an “underperformer” (The Mandalorian and Grogu on Disney+) contending with a bunch of star-studded straight-to-streaming films like Netflix’s The Whisper Man (Adam Scott, Michelle Monaghan and De Niro!), Mayday on Apple TV+ (Ryan Reynolds and Kenneth Branagh!), The Runner (Gal Gadot) and The Last Sunrise (Eva Longoria and Maia Reficco) on Prime Video. Plus, a ton of TV shows have sophomore seasons coming out. Will The Gentleman put up big numbers on Netflix or suffer from a sophomore slump? Leanne and Beauty in Black on Netflix seem small, but they both might be bigger than you think. Hulu has a bunch of shows: a new season of The Secret Lives of Mormon Wives (the first after all the controversy last year) and the second season of Chad Powers (from Peyton Manning’s production company and starring Glen Powell). This one flopped last year; can it score a touchdown this year? Same goes for FX’s Adults, which I didn’t track last year; will it hit this year? Peacock’s The Office spinoff, The Paper and Apple TV’s Dark Matter also return for second seasons. And Netflix has more Untold specials featuring Vince Young, Raygun (that horrible breakdancer) and Mr. T. Long term, Paramount+ is rebooting yet another franchise, Clueless, and I’m somewhat bullish on this new show. The talent attached (Alicia Silverstone) and creative Josh Schwartz and Stephanie Savage (of The O.C. and Gossip Girl) also feel solid...if they make it funny like the original.

Riding for a cause: Friends jet ski for mental health awareness

About three or four years ago, Timothy Homan and Jake Thiel talked about taking a trip with jet skis that were passed down from Homan’s grandfather.

somdnews.com logo
Sep 9 • 10:35 AM EDT • Health • somdnews.com
😐 Neutral (0%)
California’s healthcare affordability office claims power to punish overspending hospitals

Year after year Californians watch their health bills increase faster than their wages — for some, to the point where care becomes unaffordable. Four years ago, the state created an

hanfordsentinel.com logo
Sep 5 • 6:25 PM EDT • Health • hanfordsentinel.com
California’s healthcare affordability office claims power to punish overspending hospitals

Year after year Californians watch their health bills increase faster than their wages — for some, to the point where care becomes unaffordable. Four years ago, the state created an

hanfordsentinel.com logo
Sep 5 • 6:25 PM EDT • Business • hanfordsentinel.com
As Triangle businesses close, Madame B's Bakery expands 4 years after nearly shutting down

A Raleigh bakery that nearly closed four years ago is opening a second location after community support helped turn the business around.

abc11.com logo
Sep 2 • 6:02 PM EDT • Business • abc11.com
Footage of new Iron Man game from EA Motive appears to leak, showing blistering speed and freedom, as MIA superhero game finally reappears

The Iron Man game EA announced four years ago finally reappears, albeit in a leaked gameplay video.

eurogamer.net logo
Aug 28 • 10:31 AM EDT • Technology • eurogamer.net
How Nevada made big strides to keep kids with behavioral health issues out of institutions

Four years ago, the federal government found the state was sending too many kids out of state for treatment. That number has been cut by more than half.

thenevadaindependent.com logo
Aug 12 • 10:00 PM EDT • Health • thenevadaindependent.com
BP to sell landfill RNG business Archaea Energy

The energy major announced it’s marketing Archaea amid a strategic pivot to streamline its business. BP’s $4.1 billion acquisition of Archaea four years ago stands as a high water mark in the RNG industry.

wastedive.com logo
Aug 6 • 7:41 AM EDT • Business • wastedive.com
Where did the ice cream trucks go? Drivers talk challenges of the mobile business

As a child, Phylicia Walsh remembers staying out all day with her neighbors waiting to hear the sweet sound of an ice cream truck. But when Walsh, 36, moved to Greensburg four years ago, she stopped hearing the melodies completely. “I would love to see my kids going out and

triblive.com logo
Aug 3 • 5:01 AM EDT • Business • triblive.com
AIPAC helped knock him out of Congress. Now, he says, they’re losing.

Four years ago, Michigan Rep. Andy Levin lost his primary to Haley Stevens. He tells us how he got on AIPAC’s bad side.

vox.com logo
Aug 1 • 6:00 AM EDT • Politics • vox.com
Josh Shapiro may be biggest fundraising juggernaut Pa. politics has ever produced

Between the start of 2023 and June 8, Shapiro raised more than $60 million, 56% more than the $39 million he raised at this point four years ago when adjusted for inflation.

thetimes-tribune.com logo
Jul 27 • 12:00 AM EDT • Politics • thetimes-tribune.com
Hawaiʻi AG Investigation Into Political Bribery Case Goes Before Grand Jury

What began four years ago with the convictions of two state lawmakers is now looking at the lieutenant governor and other officials.

civilbeat.org logo
Jul 24 • 2:41 PM EDT • Politics • civilbeat.org
Reckitt to take £175mn hit from sale of Russian hygiene business

Consumer goods group began process to dispose of division more than four years ago

ft.com logo
Jul 24 • 4:27 AM EDT • Business • ft.com
Suffolk DA race: Rachael Rollins, Kevin Hayden fundraising tells story

Rachael Rollins' jump into the Suffolk district attorney's race has extended a political clash with incumbent Kevin Hayden that began four years ago.

bostonglobe.com logo
Jul 8 • 5:30 AM EDT • Politics • bostonglobe.com
Quote du jour: "Sports-mad" region

"The thing that really struck me coming to the southeast four years ago is that this region is sports-mad, you know? You're absolutely obsessed with it. And of course, in England, in the U.K., we're obsessed with soccer, and I think it's a match made in heaven."

axios.com logo
Jul 1 • 6:28 AM EDT • Sports • axios.com
High-Signal Publisher
David P. O'Brien

About five years ago, David P. O'Brien had a comfortable position at Marsh & McLennan Cos., where he held the top post at the financial giant's Louisville, Ky., office. Despite the lofty rank, Mr. O'Brien found himself longing to be at a smaller company that had to work a little harder to land business. That desire led him away from Kentucky five years ago and to Cleveland, where he serves as executive vice president at business insurance agency Oswald Cos. "I left Marsh before it was en vogue," he said, referring to layoffs and defections at Marsh over the course of this year that followed accusations of bid rigging at the big firm. Above all, Mr. O'Brien, 38, wanted to work at a company that relied on its inventiveness, rather than its name, for business. He said he has found that at Oswald. "It causes you to be more creative, to be more resourceful," Mr. O'Brien said. For instance, an Oswald client seeking to do business internationally might be directed to the network of offices abroad run by competitors such as Marsh and Aon Risk Services Inc. "We're going to use whatever access into the market that makes the most sense for our clients," he said. Of course, using such a strategy can be dangerous for Oswald if its client decides to further a business relationship with one of the firms Oswald recommended. "That's the obvious question and why it's nontraditional," he said. "I think if we're good, and if we're bringing value to the client, then there's no risk. I'm not threatened by it." Imaginative business solutions of that type made his career move to Oswald from Marsh worthwhile. "It's very much a challenge," he said. "It helps you keep your edge. I'm all for the competition." John Jacunski, currently vice president and corporate controller at York, Pa., paper company PH Gladfelter Co., met Mr. O'Brien four years ago when Mr. Jacunski was at WCI Steel Inc. in Warren. So impressed was he with Mr. O'Brien's work for WCI that Mr. Jacunski has retained the Oswald executive at PH Gladfelter. "He's a young guy for the position he has, but he's done a great job for us," Mr. Jacunski said. Among his roles at Oswald, Mr. O'Brien leads the firm's client retention efforts and also serves as director of its property and casualty group. "You don't have the same human resources," he said of the job jump to Oswald. "You don't have, obviously, the safety net a big company has." But sometimes, it can be difficult to ascertain individual contributions when working at a big company. "I wanted to be able to see the end results of my work and my efforts," Mr. O'Brien said.

crainscleveland.com logo
Jun 25 • 9:03 AM EDT • Business • crainscleveland.com
Abortion rights fight underscores key themes in Maine’s U.S. Senate race

Four years ago today, the U.S. Supreme Court overturned Roe vs. Wade. In the majority of that decision was Justice Brett Kavanaugh, who Republican U.S. Sen. Susan Collins of Maine had voted to confirm after he had told her the landmark decision was “settled law.”

spectrumlocalnews.com logo
Jun 24 • 7:45 AM EDT • Politics • spectrumlocalnews.com
Wilton Simpson continues adding to re-election war chest despite weak competition

The egg farmer from Trilby flipped FDACS from blue to red four years ago.

floridapolitics.com logo
Jun 20 • 3:00 PM EDT • Politics • floridapolitics.com
What to watch in Tuesday’s primaries in Georgia, Alabama, Oklahoma and Washington, DC

Georgia Gov. Brian Kemp survived President Donald Trump’s bid to oust him in a Republican primary four years ago. Kemp’s hand-picked candidate in a Senate primary on Tuesday might not be as lucky.

cnn.com logo
Jun 16 • 4:00 AM EDT • Politics • cnn.com
Deep dive
😐 Neutral (19%)
wow
100%
Is SMIC N+3’s Metal Pitch Smaller than Intel 18A’s?

Almost four years ago, we published that SMIC had started shipping 7 nm (N+1) chips. Now, SMIC is shipping its third-generation 7 nm (N+3) process in Huawei’s Kirin 9030, with a minimum metal pitch of 32.5 nm, about 10% tighter than the 36 nm minimum metal pitch shipping in Intel’s latest Panther Lake CPUs on 18A. The headline is true, but incomplete cherry picked metric. N+3 reaches the density of TSMC N6 through aggressive DUV multi-patterning and design-technology co-optimization (DTCO), but it pays for that in complexity, efficiency and process control. We found this and more in our reverse engineering and teardown where we cover SMIC’s N3 process technology, Huawei’s packaging, memory, architecture, and more. SemiAnalysis has been building a state-of-the-art teardown lab in Oregon capable of analyzing the world’s most advanced and important chips over the last year and half. We have already generated revenue on advanced datacenter chip teardowns including our recent reverse engineering of a major TSMC customer’s COUPE CPO optical engine + EIC 3D stack. This is the first public report from the SemiAnalysis Teardown Engineering & Evaluation Lab, or STEEL for short. The lab is aggressively scaling up and out and we’re excited to announce it publicly. This is a bit of inconvenient timing for TechInsights as they are private equity owned and currently being sold while having enjoyed virtually no credible competition for decades. This has led to TechInsights underinvesting in CAPEX. SemiAnalysis exceeds TechInsights in revenue despite no venture or private equity ownership and being founded only 6 years ago. Because we have no external investors and are founder led, we move faster, build faster, and we can release client chip teardowns for free regularly, while focusing on datacenter for our major clients. Here’s the first public image from our lab, the HiSilicon Kirin 9030 Pro SoC: This report will detail our teardown of the Kirin 9030 and our findings on SMIC’s N+3 process, the most advanced in China. For comparison, we’ll show our teardown of the MediaTek Helio G99, made on TSMC N6. Through this comparison, we can look at the effect of export controls – SMIC N+3 and TSMC N6 are comparable nodes, but one is heavily export-controlled, the other free to use the West’s most advanced equipment. Here we see both China’s progress and constraints. SMIC N+3 reaches TSMC N6-class logic density, but it requires far more aggressive DUV multi-patterning, so it does not match N6 on process maturity or cost. The Kirin 9030 Pro performs similarly to three-year-old Android flagships, and trails far behind the current flagship SoCs from Apple, Qualcomm, MediaTek, and Samsung. The efficiency gap is even wider. Export controls have not stopped Huawei and SMIC from shipping advanced silicon, but they have forced a different path. Without EUV, SMIC is leaning harder on DUV multi-patterning, DTCO, and increasingly complex integration. The roadmap continues forward through tighter design rules and backside power, but each step adds cost and process risk. Huawei’s τ scaling and LogicFolding show another path: stacking active logic and recovering density through advanced packaging and system-technology co-optimization (STCO). To understand the Kirin 9030, we must first understand Huawei’s SoC history. HiSilicon is Huawei’s chip design arm, responsible for the Kirin smartphone SoCs, Kunpeng server CPUs, Ascend AI accelerators, and switch/router networking silicon. Before export controls, Huawei was TSMC’s largest customer – the only customer on TSMC’s first EUV node, N7+, and among the first on N5, alongside Apple. That ended in late 2020. Huawei switched to Qualcomm SoCs in its flagship smartphones, though export controls limited them to 4G-only variants. In late 2023, Huawei returned to in-house silicon with the Kirin 9000s, a successor to the Kirin 9000, fabricated on SMIC N+2 instead of TSMC N5. In the following years, they released the Kirin 9010 and 9020 on the same N+2 process. These chips used Huawei’s in-house TaiShan CPU cores and Maleoon GPU. We have not torn down a Kirin 9020 ourselves, so the predecessor die shot is from Kurnal. The die shots show how Huawei spent its silicon budget: which functional blocks are where, and how their areas compare to the predecessor. First, a quick guide to the major blocks on the die. The total die area is nearly identical, but the 9030 uses that area more aggressively. A denser process lets Huawei fit an extra middle CPU core, more GPU and NPU cores, and larger caches into the same footprint. In contrast, the Helio G99 is a much smaller, low-cost SoC, built for budget smartphones rather than a flagship device. While the Kirin 9030 is ~140 mm², the G99 is only ~29 mm², roughly one-fifth the area. The underlying TSMC process technology, however, is directly comparable as a baseline for analyzing SMIC’s. The Kirin 9030 is an evolutionary refresh, not a clean-sheet design. Its CPU, GPU and NPU cores carry over the 9020’s families, and the gains come from three levers: the SMIC N+2-to-N+3 process step, DTCO and floorplan work, and incremental microarchitecture. Area is where the first two show up, and the 9030 scales well here. Performance and efficiency are the harder test. Huawei’s design holds up better than its node would suggest, but the chip still trails, both because N+3 sits behind the leading-edge nodes and because its cores, while competent, remain a few generations behind the newest designs. The new prime core is an incremental update. The main changes are a 10% frequency increase from 2.5 GHz to 2.75 GHz and a doubling in the L2 cache from 1 MiB to 2 MiB. Despite the increased cache, the core size decreased by 7.6%. Excluding the private L2 cache, the core size decreased by 21%. This is a large reduction for an incremental node. Compared with the TaiShan New V120 core in the Kirin 9020, the Kirin 9030’s middle core is almost unchanged architecturally, yet each core shrinks by ~22%. Most of that comes from the move from N+2 to N+3, with layout likely accounting for the rest. Visually, the most noticeable change is the increase from 3 middle cores to 4. There is also a 20% increase in the shared L3 cache of the big cluster. This helps to improve multi-core performance without sacrificing much in terms of area. Even with each core shrinking, the big CPU cluster’s total area is essentially unchanged. The per-core savings went back into an additional middle core and larger caches. The tiny cores shrank less than the prime core (excluding its L2 cache) and less than the middle cores. This is likely because fixed overhead is a larger share on a small core. We cannot resolve any architectural changes from the die shot alone, but the per-clock and efficiency gains shown below point to more than pure process and layout scaling. The area reduction was offset by a doubling of the shared L2 cache from 2 MiB to 4 MiB, leaving the total tiny CPU cluster area slightly larger. Area is the easiest improvement to see from a die shot, but it is only one part of PPA (power, performance, area). For modern logic, power and performance matter just as much, and often more. Since Dennard scaling broke down in the mid-2000s, voltage and frequency have not scaled in step with transistor dimensions, so each node has had to fight harder for gains in performance and efficiency. The starkest comparison is not Kirin 9020 versus Kirin 9030 Pro. Apple’s efficiency cores run circles around Huawei’s prime core. Apple’s low-power core delivers 20% higher integer performance while drawing only 1 W, compared with 4.5 W for Huawei’s prime core. N+3 matches TSMC N6, but N6 is several generations old. Apple and Qualcomm build on N4 and N3P, which are denser and sit on a better voltage-frequency curve, giving them a larger transistor budget and more performance per watt. The 9030’s own cores did improve. The middle and tiny cores gained 17% and 14% in per-clock integer performance over the 9020, with floating-point flat on the middle core and up 11% on the tiny. The tiny core improves cleanly, with performance rising while power falls and efficiency increases by 45% in integer and 24% in floating point. The middle core is mixed: integer performance rises but power rises faster, cutting integer efficiency by 7%, while lower power lifts floating-point efficiency 16%. Per-clock gains at the same or lower frequency are microarchitectural, so the cores are tuned, not just shrunk. Both also failed to hold their rated maximum frequencies, pointing to thermal, power, or stability limits. Per clock, the middle core sits around Arm Cortex-A720 and the tiny core near the Cortex-A520; absolute performance trails because Huawei clocks them much lower. The prime core is roughly Cortex-X2 class per clock, a 2021 design. Apple’s 2020 M1 Firestorm core is still 35% higher per clock and 57% faster in absolute integer performance at a similar 4.5 W. The current leading edge is further ahead again: the Apple M5 P-core is 60% higher per clock and 2.7× faster, the Arm C1 Ultra 45% higher and 2× faster. Matching older high-end cores per clock is a genuine design achievement. What Huawei cannot match is the voltage-frequency curve and transistor budget of leading-edge nodes, which let Apple, Qualcomm and others spend more transistors in the same area on wider cores, larger caches and deeper buffers while running at lower voltage. Huawei’s LogicFolding roadmap is one answer, stacking active logic to recover density and shorten signal paths. We return to it later. The GPU compute units (CUs) changed more visibly than the CPU cores, moving to a more rectangular layout for both the arithmetic logic unit (ALU) clusters and the CU overall. Even with ray-tracing support added, a CU shrank ~28%. However, that shrink is offset by the increase from 4 to 6 CUs and the area outside the CUs grew 33%. Overall, the GPU cluster is larger by ~10%. The GPU is where Huawei makes its biggest gains. The Maleoon 935 is not competitive with current flagships, but it is a large step up from the 920 and reaches older-flagship territory. In 3DMark it is 70% faster in Wild Life Extreme (WLE) and 79% faster in Steel Nomad Light (SNL) than the 920; with 11% higher clocks and 50% more CUs, the ~67% theoretical uplift roughly matches WLE and is beaten by SNL. It edges ahead of the Snapdragon 8+ Gen 1 in WLE and SNL, and the Dimensity 9200 and Apple A16 in WLE, but stays far behind newer parts: the Snapdragon 8 Elite Gen 5 and Dimensity 9500 are ~2.4–2.6× faster in WLE and ~3.2× faster in SNL. The Maleoon 935 is Huawei’s first GPU with hardware-accelerated ray tracing; there it lands slightly ahead of the Exynos 2200, and on par with the Apple A16, with current flagships up to 3.7× faster. The Neural Processing Unit (NPU) saw the largest structural changes of any block, moving from a Lite and a Tiny core in the Kirin 9020 to a Lite and two Tiny cores in the Kirin 9030. Both core types also show significant layout changes. This is a reversal in Huawei’s NPU design. The Kirin 9000 5G, its last flagship chip on TSMC N5, used two Lite and one Tiny core. The series of SoCs on SMIC N+2 moved to one Lite and one Tiny core, likely for area savings. With the Kirin 9030, Huawei has shifted back toward a larger multi-core NPU cluster, but with the additional area going to a Tiny core rather than a Lite core. We’re diving deep into the most advanced datacenter and AI hardware hitting the market. To learn more about what’s in the pipeline or to commission a custom teardown, contact sales@semianalysis.com. Interested in joining us on this ride and think you can be a difference maker? Check out our Careers page. Before diving into the process stack, the package and memory are worth separating from the SoC itself. The Pro variant of the Kirin 9030 carries 12 GB of Samsung DRAM, with two stacks of four dies each. The dies were identified as the K4L2E165YD, a 12 Gb LPDDR5X-9600 device fabricated on Samsung’s 1a node, the fourth generation of its 10 nm-class DRAM after 1x, 1y and 1z. 1a has shipped in volume since 2022, so this is current memory rather than older-node inventory. The 16 GB Pro Max variants we obtained were found with both CXMT and Samsung packages. The CXMT package is marked CXDD7JEDM, with two stacks of four dies, packaged in week 45 of 2025. The inferred die dimensions from X-ray computed tomography (CT) are consistent with a known density of ~0.3 Gib/mm² for the CXMT G4 process, roughly equivalent to other manufacturers’ 1z processes. The Kirin 9030 uses a typical integrated package-on-package (iPoP) stack: multiple DRAM dies in a memory package sit above an organic redistribution layer (RDL) interposer, which sits above the SoC and package substrate. The full package is then mounted to the printed circuit board (PCB) through ball-grid array (BGA) solder bumps. The memory package substrate is a thin bismaleimide-triazine (BT) laminate carrying the LPDDR5X stack. The organic RDL interposer over the SoC routes the PoP signals around the die and carries possible dummy thermal copper pillars. The package substrate, a thicker Ajinomoto Build-up Film (ABF) build-up over a BT core, fans the flip-chip bumps out to BGA pitch and embeds the power planes. The whole stack is organic. The only silicon is the SoC and the LPDDR5X dies; there is no silicon interposer. Keeping it all-organic brings the package’s coefficient of thermal expansion (CTE) close to the PCB’s, reducing board-level warpage, and avoids the cost of a silicon interposer the SoC’s bandwidth does not need. In an iPoP stack, the memory package connects to the organic RDL interposer through an array of solder bumps. Underfill fills the gap around those bumps, adding stiffness and protecting the joints from mechanical stress. The Pro and Pro Max variants differ here, which we cover behind the paywall. The die shot and architecture tell us how Huawei allocated its silicon budget. The process tells us what SMIC can manufacture. We use the Helio G99 as the process reference for TSMC N6. Both SMIC N+3 and TSMC N6 are evolutions of previous 7 nm-class nodes. We used targeted TEM cross-sections through logic and memory regions, imaged in both fin-cut and gate-cut directions. Each cross-section caption gives its horizontal field width (HFW), the real width of the imaged area. We start at the transistor fins, then move up through standard cells, local interconnect, and SRAM. SMIC has not overtaken Intel or TSMC. It uses aggressive DUV scaling and DTCO to reach N6-class density, but that density doesn’t translate into comparable performance and efficiency, for two reasons: the node gap to leading-edge nodes, and Huawei’s core designs. Fin Profile One of the most important knobs in a FinFET process is the fin profile: the shape of an individual fin and the channel where current passes from source to drain. The ideal fin is tall, narrow, and nearly vertical. A taller fin increases effective channel width, while a narrower fin improves electrostatic control by thinning the body the gate must control. Push either too far, and the process pays for it: weaker drive current, fragile fins, taper, footing and line-edge variation that hit yield and device variability. The Intel 22 nm, 14 nm, and 10 nm fin cross-sections show how FinFET nodes have improved over time. 22 nm fins were a first-generation structure, relatively short, wide and strongly tapered. The shape limits current density and reduces gate control uniformity across the height of the fin. At 14 nm and 10 nm, Intel pushed the fins taller and narrower while also making the sidewalls more vertical. Rather than shrinking the device, these changes increase the effective channel width per fin and improve electrostatic control. The trade-off is that taller fins at tighter pitches are much more difficult to manufacture. Now, let’s compare the Helio G99 on TSMC N6 with the Kirin 9030 on SMIC N+3. Both processes are in the same class, with fin pitch of 30-32 nm on N+3 and 34 nm in our N6 cross-section. The pitch for N6 is especially interesting as N7’s HD library is generally listed with a 33 nm fin pitch, and N6 did not shrink pitches directly. Its density gains came from DTCO instead of tighter pitches. The 34 nm pitch was stable across our sampled region and serves more as a comparison against the SMIC N+3 we have not investigated further. Pinning down N+3’s fin patterning scheme takes more than one core unit. The CPU cores show a dense ~32 nm pitch, with the pitch between N-P fin pairs alternating between 78 and 88 nm. Logic alone may be consistent with dual-pitch mandrels of 120 and 110 nm, but this is a complex and unusual approach. Combining the pitch from the the 8T SRAM, which has more complex repeat unit, with the CPU core sequence allows us to reverse engineer the patterning steps with more confidence. As both the logic and SRAM should share the same base grid, a single CD mandrel lithography pattern with 128 nm pitch undergoing SAQP produces a die-wide ~32 nm grid (128 nm/4), which supports the pitch sequencing seen in both logic and SRAM cells. In the sampled cross-sections, N+3 shows a taller, narrower, higher-aspect-ratio fin than N6. The measured fin aspect ratio is ~9.5:1 on N+3 versus 7.8:1 on N6. N+3 also shows less top rounding, with an estimated radius of ~2 nm, compared with 2.8 nm on N6. Even though the fin widths differ, the ratio of top rounding to fin width tells the same story, with N+3 at 0.37 and N6 at 0.44. In a geometric sense, lower is better; a perfectly rectangular fin would have no top-rounding penalty. These are single-digit-nanometer features measured from a handful of cuts, so treat the absolute numbers as approximate. The important result is the relative gap: N+3’s fins are consistently taller, narrower and less rounded than N6’s. We’re diving deep into the most advanced datacenter and AI hardware hitting the market. To learn more about what’s in the pipeline or to commission a custom teardown, contact sales@semianalysis.com. Interested in joining us on this ride and think you can be a difference maker? Check out our Careers page. Standard Cell A standard cell is the basic building block of chip layout: a fixed-height row pairing one NMOS and one PMOS transistor that share a gate, tiled in a grid to build logic blocks. The key dimensions are contacted gate pitch (CGP), cell height (CH), fin count, and the lower-metal routing grid. To measure density, we use the Bohr metric: a weighted average of NAND2 gate area (60%) and scan flip-flop area (40%). This represents a realistic mix of combinational and sequential logic. This metric has its limitations, especially for complex cell layouts like TSMC’s FinFLEX, which alternates cells with different fin counts. Even so, it is the best metric for a pure process-level comparison. Another important measurement is the fin pitch; it refers to the distance between two fins of the same transistor. In a FinFET process, multiple fins are used in each transistor to increase the drive current and thus performance. TSMC N6 ships both a high-density (HD) library with 2 PMOS and 2 NMOS fins per cell, and a high-performance (HP) library with 3 of each. More fins under the shared gate mean more effective channel width. HP cells switch harder at the cost of area. Designers mix the two on a die, primarily spending HP cells on timing-critical paths, and matching their PPA targets. In the Cortex-A55 core of the Helio G99, we found a cell height of 240 nm for the HD cell. MediaTek has used HD cells in the G99 to minimize die size and thus cost. As an SoC for budget smartphones at ~$100, this is essential. By contrast, we found only one library in the Kirin 9030, with 2 NMOS and 2 PMOS fins. This suggests a narrower library strategy than TSMC N6, where both HD and HP libraries are widely used. This likely reflects the smaller customer base and the more constrained domestic design and electronic design automation (EDA) ecosystem. In all three CPU cores of the Kirin 9030, we found cell heights of 228 nm, 5% smaller than on N6. This is also a reduction of 9.5% over SMIC N+2’s cell height of 252 nm. SMIC N+3 and TSMC N6’s HD library both feature a CGP of 57 nm. For SMIC, this is a 9.5% shrink over N+2. In the past, CGP and cell height alone may have been enough to compare transistor density. Now, however, we must consider scaling boosters and DTCO as well. SMIC’s density gain does not come from EUV. It comes from using every available DTCO booster aggressively. First is fin depopulation: reducing the number of NMOS and PMOS fins in each cell. The first FinFET nodes started with 3 or 4 fins for each transistor. SMIC N+3 and TSMC N6 HD both use only 2 fins per transistor, trading drive strength for density. Next is contact over active gate (COAG). By landing the gate contact directly over the active gate, instead of out over the isolation region, the cell height drops. N+3 integrates COAG while N6 does not. Our N+3 gate-cut cross-sections indicate COAG, with the gate contact sitting over the active region, while N6 shows an off-gate contact. Last is single diffusion break (SDB). Diffusion breaks are inserted between cells in the same row to provide electrical isolation, but they also introduce local layout effects (LLE), layout-dependent shifts in electrical characteristics. In the past, a double diffusion break was used, consuming the space of two CGPs. SMIC N+3 and TSMC N6 instead use SDB, saving area but increasing LLE sensitivity. This must be controlled at the process level and accurately modeled in the process design kit (PDK) so that EDA tools can account for it. Overall, SMIC N+3 has a transistor density of 113.4 MTr/mm², slightly above TSMC N6 at 107.7 MTr/mm². Even without EUV, SMIC has achieved density beyond TSMC’s mature N6 node which utilizes EUV. Metal Stack The smallest critical dimension in the teardown is M0; SMIC N+3 uses a 32.5 nm local metal pitch. That is smaller than the 36 nm M0 pitch on Intel 18A in Panther Lake. However, this does not mean that SMIC has a better process than Intel 18A or TSMC N3P. M0 is a local intra-cell routing layer. Its usefulness depends on the full interconnect stack: M1 and M2 pitch, track count, via and line resistance, design rules, mask count, overlay control, and routing flexibility. The 32.5 nm M0 is consistent with self-aligned quadruple patterning (SAQP), whose four-population line-width loading we read coarsely as alternating widths of 21.5 to 24 nm; M1 and M2, at 38 and 40 nm, are consistent with self-aligned double patterning (SADP), a single A/B split. On TSMC N6, M0, M2, and M3 sit at a relaxed ~40 nm and are consistent with SADP-class double patterning, with no need for quadruple patterning. That said, we measure M2 for example at ~43 nm, likely inflated by sparse routing. We do not assign any specific layer to EUV from our cross-sections; the distinction we can draw is double versus quadruple patterning, not lithography wavelength. Transistor-level density in the front-end-of-line (FEOL) sets an upper bound, but the design is ultimately limited by what the interconnect stack can route. The lowest metals are the most important for standard-cell density, but the semi-global and global layers determine how usable that density is at the block and chip level. Two axes are commonly used for chip cross-sections: the fin-cut and the gate-cut. The micrograph above is a fin-cut and shows metals 0 through 3. This axis lets us see the even-numbered metals, with M0 right above the fins. There are two kinds of M0 lines. The first are the power rails; these are wide wires for the VDD and VSS running horizontally at the top and bottom edges of each standard cell. The wide wires measure 55 nm across, more than double the other M0 lines. Their width minimizes resistance and reduces IR drop. The second kind are intra-cell wires, short segments within the cell that connect terminals to M1. These have alternating widths between 21.5 and 24 nm. The M0 pitch is 32.5 nm, a 19% reduction versus N+2 and N6. At this pitch, DUV patterning requires more aggressive multi-patterning, increasing mask count, overlay sensitivity, process complexity and cost. M0 is below what a single DUV-defined spacer (SADP) can resolve, so SMIC cascades a second spacer step (SAQP). The cross-section reflects the cost: the M0 trenches are visibly more re-entrant (narrower at the bottom than the top) than M1 or M2 on the same chip and carry a bright barrier-rich foot where the trench meets the etch-stop layer. That shape is partly the intended damascene profile, as a slightly narrow bottom helps void-free copper fill, but its magnitude at M0 is driven by the tight pitch and the higher trench aspect ratio. Intel 18A supports an M0 pitch of 32 nm, although Panther Lake has only shipped with a looser 36 nm pitch. This is due to Intel’s heavy usage of HP libraries. Among leading-edge nodes, 18A has the loosest M0 pitches due to PowerVia. With power routing moving to the backside, congestion is reduced, and the entire front-side metal stack can be used for signal routing. M2 is the first true inter-cell routing layer. It runs horizontally like M0 but spans across multiple cells to carry block-level signals. The M2 pitch sets the cell’s track height – the number of M2 tracks that fit between the VDD and VSS rails, defining what the library calls a 6-track or 7.5-track cell. This layer is the most important, limiting the routing of entire blocks. SMIC N+3 features a 5.7-track cell. The M2 pitch is 40 nm, a 5% decrease over N+2 and the same as N6. This shrink keeps the pitch at the edge of what is possible with double patterning. Future nodes will need to increase the number of masks for M2 as reducing the number of tracks is much harder due to the limitations in routing. The micrograph above is in the perpendicular direction, the gate-cut, and shows metals 0 through 4. This allows us to see and measure the odd-numbered vertical metal layers. The M1 pitch is 38 nm, 9.5% less than N+2 and 33% less than N6. The M1-to-gate ratio matters because it sets local routing flexibility. N+2 and N+3 use a 3:2 ratio, while N6 uses a 1:1 ratio, explaining the huge differences in M1 pitch. The more M1 lines there are compared with the gates, the more flexibility there is for power and signal crossing within the cell. Routing flexibility enables more complex and better cells. Clean fractional ratios are also preferred as a grid is periodic and improves layouts. The 3:2 ratio gives SMIC more local routing flexibility than a strict 1:1 grid, but it also complicates layout and patterning. This is a DTCO choice, with SMIC increasing process complexity to recover density and routability without EUV. This 3:2 ratio is not very popular in the leading-edge nodes. TSMC has only used it on N7+, the N5 family, and the short-lived N3(B). They have switched back to a 1:1 ratio for N3E. Intel has only used it on the 10 nm/Intel 7 family, with Intel 4, 3 and 18A all using a 1:1 ratio. Samsung is the only one still using a 3:2 ratio at the leading edge, using it in the SF4 and SF3 families. It remains to be seen if SMIC will remain at a 3:2 ratio or move to a 1:1 ratio with its future nodes. The industry is still actively exploring these local-routing ratios. At VLSI 2026, imec will be presenting work on even higher ratios, including a 2:1 scheme that can reduce area by up to 14%. We will be covering the conference in a future newsletter article. Subscribe We’re diving deep into the most advanced datacenter and AI hardware hitting the market. To learn more about what’s in the pipeline or to commission a custom teardown, contact sales@semianalysis.com. Interested in joining us on this ride and think you can be a difference maker? Check out our Careers page. The final local interconnect layer for N+3 is M3, with a pitch of 44 nm. The M3 pitch is the same as on N+2 and 10% larger than on N6. The semi-global layers carry the majority of block-level signal routing. They have a coarser pitch than the lower local layers. On leading-edge nodes, they are designed to sit at the limit of DUV single patterning. M4 through M11 pitches were found divided between 80–82 nm (M4–M6), 128 nm (M7–M10), and 148 nm (M11). Given limited sampling, it is possible these are divided further in dense routing areas. At the top are two giant metal layers, M12 and M13. These have kept the same pitches as N+2 at 1920 nm and 4600 nm respectively. While the lower layers’ pitches are generally fixed by the process and library, the upper layers vary much more in pitch and count, depending on the design. Even two smartphone SoCs on the same process can have wildly different metal stacks. The Helio G99 carries fewer routing layers, reaching coarse metal pitches of 850 nm by M9, while the larger and higher-performance Kirin 9030 keeps fine pitches until M11. SRAM At the leading edge, SRAM is much more difficult to scale than logic. TSMC’s latest nodes have seen little to no bitcell scaling, while logic still has more DTCO levers to pull. While looking for other logic libraries in the GPU compute units, we stumbled upon the SRAM. The most common type of SRAM has 6 transistors (6T), but this cell had 8 transistors (8T) instead. 8T SRAM adds two transistors to form a dedicated read port. Unlike a 6T cell, where reading disturbs the storage, the decoupled read port removes read-disturb, improving read stability and letting the cell be pushed harder for performance. At first glance, the cut looked like an unusual logic library, with each cell row having 3 fins of one polarity and 5 fins of another. The rows also alternated in orientation. Energy-dispersive X-ray spectroscopy (EDS) resolved our confusion. The cut had not landed on the GPU logic, but on the SRAM macro beside it. The unusual fin pattern was due to the SRAM library. We return to EDS in the process flow analysis behind the paywall. SRAM libraries are not like traditional logic libraries. Due to the unequal number of PMOS and NMOS transistors, they require specialized rules and layout libraries. They do not need the flexibility of logic libraries, so they are hyper-optimized for one purpose: dense, reliable memory. The SRAM cell we found is a 1:2:2-2:2 cell. This means there is 1 fin per pull-up (PU) PMOS transistor, and 2 fins per pull-down (PD) and pass-gate (PG) NMOS transistor. These 2 PU, 2 PD and 2 PG transistors would usually form a single 6T high-current cell (HCC). An 8T HCC adds a read-pull-down (RPD) and a read-pass-gate (RPG) NMOS transistor, each with two fins. We measured a cell height of 406 nm, which brings the bitcell size to 0.0463 µm². That is a theoretical peak density of 21.6 Mib/mm². We estimate that a 6T HCC would have a cell height of 292 nm and a size of 0.0337 µm². This is ~12% larger than a 6T HCC on Intel 3 and 4. We also estimate the 6T high-density cell (HDC) to have a cell height of 228 nm and a size of 0.0260 µm². This is coincidentally the same as the logic standard-cell height measured earlier. The estimate puts the cell near Samsung 7LPP/5LPP and slightly below TSMC N7/N6. That is a theoretical peak density of 38.5 Mib/mm². 6T HDC is arguably the most important cell as it is used for the largest caches in a chip, the L3 caches and system-level cache (SLC). Both the Kirin 9020 and 9030 have split the SLC into 4 banks to raise total SLC bandwidth. In the Kirin 9030, the SLC increased from 2 MiB to 3 MiB per bank. Correspondingly, the number of arrays within the bank also increased by 50%, from 16 to 24. Each array can store 128 KiB and forms an orderly pattern on the die shot. From the Kirin 9020 to the Kirin 9030, the area of a 128 KiB SLC array decreased from 0.0477 mm² to 0.0392 mm², an 18% shrink. The achieved density is 25.5 Mib/mm², 66% of the theoretical maximum. While the SLC was quite similar across both chips, the L3 has seen some major changes, particularly in terms of its layout. The total capacity also went up from 10 MiB to 12 MiB. Much like the SLC, the L3 is also split into 4 banks. In the Kirin 9020, an L3 bank consisted of 16× 128 KiB arrays and 16× 32 KiB arrays. However, an L3 bank in the Kirin 9030 instead consists of 48× 64 KiB arrays. In the Kirin 9020 L3, a 128 KiB array was 0.0513 mm² and a 32 KiB array was 0.0154 mm². The size of the 128 KiB array is different on the L3 and SLC as the assist circuitry for the two arrays differs depending on their purpose. In the Kirin 9030 L3, a 64 KiB array is 0.0210 mm². Although not a like-for-like comparison, normalized for capacity, it is 18% smaller than the 9020’s 128 KiB L3 array and 31% smaller than its 32 KiB L3 array. The achieved density is slightly lower than the SLC, at 23.8 Mib/mm², 62% of the theoretical maximum. Unlike the L3 and SLC, the prime cores’ private L2 cache uses a 2-bank design. As the prime cores’ L2 is latency-critical, it likely uses 6T HCC instead of 6T HDC. The 9020 has 16 arrays in each bank while the 9030 has 32. Each array has a capacity of 32 KiB. A 32 KiB array in the L2 shrank from 0.0171 mm² to 0.0142 mm², ~17% smaller. The density is 17.6 Mib/mm², ~59% of the theoretical maximum for 6T HCC. SRAM scaled well from N+2 to N+3, shrinking by ~19%, close to the theoretical logic shrink. The caveat is that N+2’s bitcells were unusually large, bigger than comparable 7 nm-class nodes, so part of the gain is catch-up rather than true scaling. With the insights from STEEL’s teardowns, we will be doing a deep dive into SRAM in a future newsletter article. Subscribe Everything above came out of a single STEEL teardown: die annotation, block-level area analysis and TEM cross-sections through logic and SRAM. We’re diving deep into the most advanced datacenter and AI hardware hitting the market. To learn more about what’s in the pipeline or to commission a custom teardown, contact sales@semianalysis.com. Future Roadmap The same cross-sections that pin down N+3 also show where SMIC can go next. Although N+3 is already close to the practical limits of DUV multi-patterning in several layers, SMIC still has a few scaling levers left. A theoretical N+4 would likely start with cell height. N+3 uses 5 M0 tracks between its power rails. Moving to 4 M0 tracks, as on SMIC N+2 and TSMC N6, could reduce cell height by roughly 15%. The routing grid is only one side of the shrink; the front end also must fit into the smaller cell. One possible FEOL lever is reducing the p-to-n isolation spacing from two diffusion grid units to one. Intel used this scaling booster on Intel 4, and TSMC did so on its N3 family. This path trades layout flexibility for density. Fewer M0 tracks reduce local routing resources, while tighter p-to-n spacing raises integration and design-rule difficulty. M2 is also constrained by the cell height shrink. For SMIC to maintain a ~5.7-track cell, M2 would need to move toward ~35 nm. That would move another layer into SAQP territory. SMIC could also reduce the CGP from 57 nm to 54 nm. Intel reached a similar CGP on Intel 10 nm/Intel 7 without EUV. The local interconnect is also tougher. If SMIC keeps the 3:2 M1-to-gate ratio, M1 would need to shrink to 36 nm and would likely require SAQP as well. If SMIC moves to a 1:1 ratio, M1 could relax to 54 nm, but it would give up routing flexibility. Under this theoretical path, we estimate that SMIC N+4 could reach a cell height of 198 nm and a CGP of 54 nm, implying a Bohr density of 137.8 MTr/mm², on par with TSMC N5 or Samsung SF4. However, the difficulty is cumulative. Each step is individually plausible, but together they make N+4 harder than the transition from N+2 to N+3. It will likely take longer, cost more, and carry less process margin. A theoretical N+5 would require a larger integration shift. One possible path is backside contacts (BSCon), moving power routing and source/drain contacts to the backside, which would reduce front-side routing pressure and enable another reduction in cell height. The front-side metal pitches could relax to reduce the process complexity. M0 would likely relax slightly to ~34 nm, and M2 and M4 pitches could relax further. CGP is unlikely to shrink much further. Even with EUV, 48 nm has been the practical limit for yield and process control. This approach would allow N+5’s cell height to fall to 170 nm and its CGP to 53 nm. This implies a Bohr density of 163.6 MTr/mm², on par with Intel 18A’s HP library. However, this would not make N+5 cost-competitive with the leading edge. It would reach a similar density through a much more expensive route. The integration difficulty rises sharply, with new process flows for backside alignment, wafer thinning, contact reveal, and backside metallization. Past this point, standard density and interconnect scaling become increasingly unattractive. That is where Huawei’s roadmap stops looking like a normal foundry roadmap and starts looking like a packaging roadmap. At ISCAS 2026, Huawei unveiled its tau (τ) scaling law, reframing process scaling in the time domain. τ is the time cost of data movement and processing: switching delays in transistors, RC signal propagation delays in circuits, compute, memory, and networking latency. Outside Huawei’s terminology, this is called system-technology co-optimization. This is Huawei’s answer to its lack of EUV lithography. Without EUV, planar density cannot keep pace with TSMC, Intel, or Samsung. If transistor density cannot shrink further, Huawei’s alternative is to shorten wires, reduce buffering, and stack logic vertically. “LogicFolding”, Huawei’s implementation of this new scaling idea, is, in practice, an aggressive 3D stacking approach. AMD V-Cache places SRAM above or below a CPU die. AMD’s MI350X places active interposer dies (AIDs) underneath accelerator and compute dies (XCDs), with the AIDs handling cache, IO interfaces, the network-on-chip (NoC) and embedded metal-insulator-metal (MIM) capacitors. With LogicFolding, parts of the same logic block are split across multiple active dies bonded face-to-face at ultra-fine pitch. This allows Huawei to shorten some critical paths and reduce buffer overhead, not merely add cache capacity or offload the IO and interconnect. Shortening wires is where the higher clocks come from. A large share of a modern core’s delay and energy budget goes into driving long interconnects and the repeater buffers along them. LogicFolding distributes a block’s critical-path gates across multiple stacked tiers bonded at a very fine pitch, so the bond interface behaves like an additional metal layer and the longest paths get shorter. That is how Huawei expects to recover frequency and efficiency it cannot get from the process alone. Huawei’s roadmap shows its intent. Prime core frequency is targeted to rise from 2.75 GHz in the Kirin 9030 to roughly 5 GHz by 2031, far beyond what planar scaling alone could deliver. Prime cores with 3.1 and 3.39 GHz clocks are being tested in its labs, although their power consumption is unknown. Beyond that, chips are in the design, simulation or pathfinding phase, meaning the frequencies are targets. However, the direction matters more: LogicFolding also helps with performance, not just density. The catch is that Huawei’s density claim is not directly comparable to foundry densities. A stacked design can report more transistors per package footprint by adding active layers, even if each patterned die remains well behind TSMC or Intel in front-end density. This is how Huawei can claim to reach foundry 14A-equivalent density by 2031. This is not a like-for-like foundry comparison, with Huawei using stacked logic and measuring density per package footprint. On a normalized Bohr-density basis, SMIC N+3 is ~114 MTr/mm², 38% less than Intel 18A’s HD library. Huawei’s 3D roadmap closes the gap by stacking active logic, reaching 215 MTr/mm² by 2030. In 2031, the roadmap density jumps to 295 MTr/mm², implying either a third active layer, partial EUV insertion or aggressive planar DUV scaling. Huawei’s methodology makes other foundries look much denser as well. Applying it to AMD’s MI450X with an N2 top die on an N3P base die yields a theoretical density of 460.2 MTr/mm² in 2026, compared with Huawei’s 295 MTr/mm² in 2031. This Kirin 9030 does not use LogicFolding, remaining in a conventional mobile SoC package. Instead, it forms the baseline for how far Huawei and SMIC can push planar scaling. Future teardowns of Kirin and Ascend chips will show both planar logic density and Huawei’s hybrid bonding solutions. Export controls changed China’s optimization problem rather than ending it. EUV restrictions raised the cost and complexity of leading-edge manufacturing without freezing it. SMIC reaches N6-class logic density through DUV immersion, SAQP and DTCO, while Huawei shifts more of the burden onto architecture, packaging and system-level integration. Future nodes will be tougher. N+3 still had room to tighten local metals and reduce cell height and CGP. Further scaling without EUV leaves fewer levers. More aggressive multi-patterning adds masks and overlay error. SMIC can keep pushing DUV, but each step will get more expensive and less forgiving. The design side is just as critical. Huawei had domestic EDA tools and flows before the Kirin 9030, with the Kirin 9000s, 9010 and 9020 making that clear. Huawei was able to ship multiple consumer SoCs on SMIC N+2 and N+3 while cut off from the Western EDA stack. US export controls restricted EDA tools for advanced chips in 2022 but did not target tools for more mature chips. In 2025, the US government briefly placed much broader restrictions on EDA software from Synopsys, Cadence, and others, before lifting them less than two months later as part of a trade deal tied to rare earths. Huawei has been unable to access those tools because it remains on a US trade blacklist. That forced Huawei, SMIC and Chinese academic institutions to build their own tools and flows. Researchers at Peking University recently announced a prototype EDA tool for Huawei’s LogicFolding architecture, which requires a new flow to handle the multilayer layout and floorplan. This is not the same as replacing the full Synopsys or Cadence stack, but it shows where domestic EDA is headed: toward tighter co-optimization between architecture, process and packaging. These advances are also diffusing into the Chinese ecosystem. SMIC is licensing its N+2 and N+3 processes to HLMC/Hua Hong at the government’s direction rather than by choice. If the same process learning feeds into Ascend accelerators for AI training and inference, the choke point shifts from one named fab to an ecosystem. Alibaba’s T-Head silicon arm and Cambricon, a Chinese AI chip designer that is expected to supply ByteDance, could also be major beneficiaries. Sanctions aimed at SMIC alone become less effective once the manufacturing knowledge has spread to other fabs and design houses. China is not closing the gap with Intel, Samsung and TSMC. The teardown shows the opposite in several places: no EUV, no backside power, higher process complexity, and visible trade-offs. But China is still advancing. If domestic chips become good enough for phones, inference, networking and security-sensitive workloads, they can matter strategically without matching TSMC at the leading edge. Behind the paywall, we show what else STEEL can do, with material and process flow analysis of SMIC N+3, and analysis of the Kirin 9030 package. We’re diving deep into the most advanced datacenter and AI hardware hitting the market. To learn more about what’s in the pipeline, access the full Kirin 9030 and SMIC N+3 analysis or to commission a custom teardown, contact sales@semianalysis.com.

newsletter.semianalysis.com logo
Jun 14 • 3:14 PM EDT • Technology • newsletter.semianalysis.com
When Does Argentina Play at the 2026 FIFA World Cup? Full Fixtures, Dates & Kick-Off Times

Defending champions Argentina begin their FIFA World Cup 2026 campaign in Group J as they look to retain the title they won in Qatar four years ago.

sports.yahoo.com logo
Jun 11 • 2:20 PM EDT • Sports • sports.yahoo.com
Politics: The State Of LGBTQ+ Rights In 2026

Across the U.S., cities and communities are celebrating Pride during the month of June.At the same time, a new poll from Gallup suggests attitudes around LGBTQ issues are shifting. After two decades, support for the community has now dropped. The swing is being largely driven by republicans. Just four years ago, polling data suggested a majority of Republicans supported same sex marriage at 55 percent. That number is now at 37 percent.Trans issues, specifically, is another story. Only 5 percent of Republicans say changing one’s gender is morally acceptable. That number was at 22 percent five years ago.Trans rights in the U.S. are a hot button issue among conservative politicians and voters. President Donald Trump campaigned on it, spending millions of dollars on anti-trans ads. Since then, the administration has rolled back protections for and access to gender-affirming care.What is the state of LGBTQ+ rights in the U.S. today? And what does this reported dip in acceptance mean for the community?Find more of our programs online. Listen to 1A sponsor-free by signing up for 1A+ at plus.npr.org/the1a.

npr.org logo
Jun 9 • 2:16 PM EDT • Politics • npr.org
High-Signal Publisher
😐 Neutral (9%)
wow
34%
ahah
33%
love
33%
Weed removal business helps local find the right path

FAIRMONT – While the Curly Leaf Pondweed issue in Fairmont has affected many, removing it has helped one resident stay clean and keep the lakes clean. Dominic Hill of ClearShore Solutions said he was a troublemaker in his younger years and struggled with drug and alcohol addiction. That all changed four years ago when he […]

fairmontsentinel.com logo
Jun 5 • 8:00 PM EDT • Business • fairmontsentinel.com
College basketball coaching carousel grades, four years later: The best and worst from the 2022 hiring cycle

Matt Norlander looks back at the hirings from four years ago and hands out appraisals from Duke to Louisville and so many more

cbssports.com logo
Apr 28 • 10:18 AM EDT • Sports • cbssports.com
Local Business Spotlight: The Fisherman's Daughter

Four years ago, Katie and Parker Slanga became stewards of The Fisherman’s Daughter, taking over a business long shaped by local ownership. It was less a reinvention than a continuation. “It’s an honor to own The Fisherman’s Daughter,” said Katie Slanga. “Some really amazing entrepreneurs have been in that business before us and have paved...

wtip.org logo
Apr 27 • 1:55 PM EDT • Business • wtip.org
Storylines abound as Scottie Barnes, Raptors open series at Cavs

Success came quickly for Toronto Raptors power forward Scottie Barnes, who won the Rookie of the Year award and got a taste of the playoffs four years ago.

cbssports.com logo
Apr 17 • 5:09 PM EDT • Sports • cbssports.com
Federal judge dismisses South Texas woman’s wrongful arrest lawsuit

The lawsuit stems from the woman’s arrest four years ago in the Rio Grande Valley over a self-induced abortion.

spectrumlocalnews.com logo
Apr 2 • 2:00 PM EDT • Politics • spectrumlocalnews.com
New state mental health center set to open doors in Newark

The crisis receiving stabilization center is a final link in the crisis response system NJ launched four years ago with the 988 hotline.

newjerseymonitor.com logo
Apr 1 • 7:13 AM EDT • Health • newjerseymonitor.com
Colorado legislature should not reverse lottery modernization

By Bill Clayton Four years ago, the Colorado General Assembly passed bipartisan legislation to modernize the state’s lottery system and strengthen funding for Colorado’s outdoor projects and open spaces. Lawmakers recognized a simple reality: consumer behavior has evolved. Most Coloradans no longer rely on cash for everyday transactions. If the lottery was to remain viable […]

coloradopolitics.com logo
Mar 3 • 2:45 AM EST • Politics • coloradopolitics.com
What Business Students Should Know: The 'Job Hugging' Era

Four years ago, employees held all the leverage. Now, everyone is holding onto their jobs for dear life. Here's what has changed.

Celebrating Women in Science Day 2026 at CERN

Every year, on 11 February, CERN celebrates the International Day of Women and Girls in Science. In an effort to amplify diverse voices in STEM, six women scientists from CERN open up about their careers and the lessons they hope to pass on to the next generation. Francesca is an Italian biomedical engineer pursuing her PhD at CERN, working in the robotics team of the Beams Department. She’s currently working on the MARCHESE project, in affiliation with Campus Bio-Medico University of Rome, focusing on contactless monitoring of physiological parameters. Despite choosing a scientific career and often volunteering in scientific outreach initiatives, Francesca continues to nurture her passion for the humanities and arts. “I firmly believe that collaboration and inclusion are the right paths to improve the world together. I’m driven by a strong curiosity about everything around me.” Berare is a Turkish experimental physicist who worked with the ATLAS experiment during her MSc and PhD on searches for physics beyond the Standard Model. During her PhD, she became a Support Scientist for the Beamline for Schools (BL4S) competition, which marked the beginning of her journey combining research with science communication. She now works for both BL4S and ELISA, the mini proton accelerator at CERN’s Science Gateway. She fondly remembers the moment when the BL4S 2022 winners arrived at the experimental zone: “I felt incredibly lucky to share my passion with young, curious and really passionate people. We spent two weeks of beam time together watching their ideas turn into reality. All the intricate details of running an experiment, we accomplished them as a team.” Mia is a Canadian research fellow in the Accelerator Systems Department, working on beam developments for fundamental physics with radioactive molecules. Mia pursued a bachelor’s degree in mechanical engineering before moving to Vancouver for a master’s degree in engineering physics. Her interest in radioactive ion beam production brought her to CERN, where she studied actinide beams for three years as a PhD student in the Marie Curie European Training network “LISA” (Laser Ionisation and Spectroscopy of Actinides) at ISOLDE – a facility at CERN where scientists study the properties of atomic nuclei, with further applications in fundamental studies, astrophysics, and material and life sciences. Laura is a German mechanical engineer at CERN working on research and development to produce cavities for future accelerators. She studied mechanical and aerospace engineering at the Technical University of Munich. She joined CERN four years ago as a technical student for her master’s thesis and continued as a fellow working on collimators. Laura says that “as a child, I took part in girls’ day initiatives, which sparked my fascination for astrophysics and engineering. Later, it felt natural for me to give something back by organising workshops for young students to make STEM seem less intimidating and more accessible.” She particularly enjoys being close to the CERN Main Workshop and understanding how design ideas become real components. Paraskevi is a Greek physicist working at CERN’s HiRadMat (High-Radiation to Materials) facility, designed to deliver high-intensity beams to an irradiation area where material samples, as well as accelerator component assemblies, can be tested. She studied physics at NKUA, specialising in nuclear and particle physics, and is now pursuing her PhD at HiRadMat in collaboration with the University of Liverpool, studying novel materials for high-intensity beam diagnostics. “Continuous learning is one of my biggest motivators, and I am looking forward to exploring the limits of our knowledge on beam-material interactions,” says Paraskevi. Silvia is a Spanish physicist and deputy project manager for the Muon Drift Tube of the CMS detector, a general-purpose detector at the Large Hadron Collider (LHC). She started her career at CERN more than 20 years ago as a technical student, working on prototypes of the first dipoles for the LHC. “My first motivation came in high school, from my teacher,” says Silvia about what made her pursue a career in STEM. “My favourite part about my job is learning. You can learn something new every day.” In parallel to this initiative, like every year since 2017, from 2 to 6 February 66 women scientists and engineers visited schools in Geneva, Switzerland, and in the Haute-Savoie and Ain regions of France to meet with students. Organised in collaboration with CERN, the University of Geneva, EPFL, LAPP and LAPTh, this event allowed more than 4200 students between 6 and 17 years old to meet a woman scientist, discuss their profession and career path, ask questions and participate in classroom activities.

home.cern logo
Feb 11 • 2:46 AM EST • Science • home.cern
😐 Neutral (21%)
ahah
50%
wow
50%
Science must move from materialism to mystery

Theoretical physicist and neuroscientist Àlex Gómez-Marín argues that modern science has become trapped in a framework that mistakes matter for the whole of reality. In this wide-ranging interview, Gómez-Marín challenges the foundations of materialism, defends the scientific study of near-death experiences, and calls for a new type of science grounded in mystery and a renewed sense of the sacred. He suggests that abandoning materialism could open the door to a deeper understanding of consciousness, death, and the purpose of human existence. Simon Custer: You are both a theoretical physicist and a neuroscientist, and you have also been fiercely critical of materialist theories of mind and consciousness. What do you think the ultimate nature of reality is?Àlex Gómez-Marín: I don't know what the ultimate nature of reality is, but what I try to first assess is whether the stories that they [mainstream science] have told us about it are right, or maybe whether there are other alternatives. That's why I've been a fierce critic of materialism. As a scientist, I realized that they had sold us this idea that to be a good scientist you also had to subscribe to many other -isms, like materialism, reductionism, and even secularism. And so first I think one needs to unmount these -isms, and then, as is happening today in consciousness studies, we have a huge landscape where there isn't only one game in town, the idea that matter is the only thing that really exists. But because we are studying the hard problem of consciousness, it may be the case that other views of reality, like idealism, or even dualism, or other theories like dual aspect monism... these are philosophical ideas that now, I think, have room in science to be taken seriously. How does something like materialism relate to dualism or idealism? What is materialism in the first place?Well, materialism is the philosophical position that matter is the only really ‘real’ thing in the universe. And I think that worked kind of well because science started 400 years ago and Galileo made that split, I call it the foundational wound. It was a great business move.He said, let's start doing science on that portion of reality that lends itself more easily to mathematization and measurement. So, for some reason, the solidity of this table or the movement of planets lend themselves very well to this foundational idea of science. But as time went on, 400 years later, we realized that we had forgotten the other side, which is what really matters.What really matters is pain, is love, is feelings, sensation, consciousness, which is very hard to define, but very intimate. We all know what it is. It's that thing that disappears when we go into deep sleep and comes back in the morning. SUGGESTED VIEWING On the edges of knowledge With Michael Shermer, Rupert Sheldrake, Güneş Taylor It's what it is like to be, as Nagel said. It's the feeling of being alive. So, materialism is good to study certain things, but then when it ossifies into this ideology and then is dressed like science, now it's preventing us from understanding these key questions that are really that everybody wants to know.Why are we here? Why do we feel reality? Where do we go when we die? And so we need other ways. We need pluralism. I'm only asking for having more options on the table and taking them seriously. Why does materialism fail to explain consciousness? For example, if you were to lobotomize me, I would not be a functional human being. What do you say to someone who might think that materialism adequately explains the mind?Well, here we could speak about different things. We could talk about physics or about neuroscience. I happen to have training with both.For instance, for neuroscientists, 99% of them, I'm not included in that portion, believe that the brain can only be a productive organ. It's an organ that somehow, somewhere, consciousness emerges. It's like a lamp. And then something happens, magic happens, and then consciousness emerges.That's the position you need to be if you're a materialist because if the only really ‘real’ thing is matter, then you need to say, just give us some more time and money and we'll figure out how mind emerges or is produced from matter. There are many philosophically sophisticated ways of criticizing this.Now there's another option, which is the brain as a permissive organ. This was said by William James more than 100 years ago.Now then the brain wouldn't be like this machine, like for instance, a heat engine whose smoke is consciousness, which is what we would have in the first big model, the productive model. But in the permissive model, the brain would be a kind of a filter. And so the brain would still have a very important role in consciousness, but it wouldn't be a productive role.It would be permissive, much like a filter or much like a prism which would receive light. And - I'm speaking metaphorically - it would receive the light of the mind and then it could reflect it and refract it.Now, with these two big options on the table, I think we can make progress into what I call the edges of consciousness, which are all these experiences, weird experiences that many people have, but we don't talk about enough, like near-death experiences, precognitive dreams, synchronicities. These experiences are very important for humans and they have a place in the permissive hypothesis and they are literally impossible in the productive hypothesis. So that's yet one more reason to explore alternatives to materialism. There may be anecdotal evidence for near-death experiences, but is there robust evidence that would be accepted by the majority of scientists who subscribe to the scientific method?Sure. And the plural of anecdotes, someone said, is data.And there's a lot of data. Actually, this year is the 50th anniversary, half a century, since Dr. Raymond Moody realized that we have two ears and one mouth and started listening to what his patients had to say about their experiences while they were clinically dead.The heart had stopped, breathing had stopped in these patients. These patients would come back and tell him these amazing stories that some people may say are hallucinations, but for the patients were hyper-real, like seeing light at the end of the tunnels, seeing deceased family members waiting for them, feeling bliss.___I would say the evidence suggests that the mind can survive the death of activity of the brain.___And so he and others started taking them seriously and writing their accounts down. And then you can do a science based on that material of experience that people have. Now, on the more objective side, more recently people have started to measure what's going on in the brain when people are clinically dead and brought back. This has opened a proper field of study, which is near-death studies.Evidence is a difficult word, because sometimes people think that when you say evidence, this is just the final proof. Evidence is like in a jury. You bring testimony, you bring pieces of data that point in one direction or another.I would say the evidence suggests that the mind can survive the death of activity of the brain. When brains are broken or shut off, there can still be mind going on. And that's revolutionary.That would entail that when we die, it's not game over, which, by the way, is the thesis of materialism. If consciousness survives, materialism dies. It's game over for materialism if something of us continues after we die. Do you think that there is mental continuity after death?Well, I think so, and I believe so, and I could also say I may have experienced it myself, because four years ago I had a near-death experience. I was in the hospital, I lost a lot of blood, and I saw those beings at the end of the tunnel, three beings, and there was yellow light. I was in a well, I was looking upwards, and I hadn't read about NDEs by then, but when I came back from this experience, I decided I would try to integrate this also in my professional life. Not just my personal life, of course, but my professional life as a physicist and as a neuroscientist. So I may have had the experience of glimpses of what an afterlife would be, and I'm not ashamed to say it in this way, and then one can do science of it, and then one can do philosophy of it.One can think about what -isms we were discussing, what views on reality would allow those experiences to be really ‘real,’ as opposed to, well, poor guy, the brain was kind of broken, it must have been a hallucination. Do you have a view about whether individuality or “the ego” persists after death, or whether we sort of merge into some sort of cosmic consciousness instead?I don't know, but my view would be along those lines you're suggesting. I think we could speak about a kind of universal mind, and then the problem is not how we emerge from matter, but how we fragment from a more holistic consciousness into these individual eddies and then when we die, this kind of dissipates.But I'm not sure. For instance, idealism would promote that view, but then what would survive of us after these eddies just vanish and become again the big Consciousness, I'm not sure what that would be. I don't know for sure, but I would tell you I believe something of us survives.And there are other lines of research, not just near-death experience, that can address this really hard question of survival. For instance, there are children who remember previous lives. This was studied by Ian Stevenson at the University of Virginia for more than 50 years.___Research takes place within a selection mechanism that also sometimes reinforces things that are not very scientific.___It's amazing research. He went all over the world, especially in the East, and collected all these case studies, all these stories. In plural, these were data of kids, very young age, who would describe up to 40 items that then he could go and verify.There was no internet. There was really no way the kid could know. Why would the kid say that when I was living in this other body and I was a woman and that's how my house would look like or that's how I would die, right? Again, there is evidence, not proof, but there's evidence not only that something weird and interesting is happening as we cross the threshold, but also when we come back to this life.Scientists should not be afraid of studying this, but they are because there's stigma. There's usually stigma upon the enigma, and this is so unfortunate. And one of the reasons is because of the ideology of materialism, because those things cannot be possible. What is wrong with the politics of science such that they have generated this stigma?So many things. Science is a human activity to begin with.So it falls prey to all our passions and ego and greed. That's one thing. Science is a job for the good and for the bad.You need to get a salary. You need to get grants. Research takes place within a selection mechanism that also sometimes reinforces things that are not very scientific.And then, we didn't have time to unpack this, but science for many years become entangled, as I was suggesting before, to other -isms, materialism, secularism. So anything that smells like the afterlife, people may think has to do with God, and then they freak out.Anything that suggests that there's something about the mind that may not need a physical material substrate to exist, it smells like non-materialism. So, all these -isms are ideologically blocking that kind of research, and then there are all these sociopolitical constraints as to what should be studied and what shouldn't be studied.I call it the backstage of science. Sometimes we scientists or science communicators seem to speak as if the data is the only thing that matters. We say, well, data and theory.But then there's a third leg of this stool, which is all the politics that goes behind the scenes. And we often don't speak about this, and it's quite vicious and petty, and it's very real. Why is materialism so attractive to most scientists?Well, an easy answer is because we've grown up with it.It's what the educational system promotes, and that's what you hear when you go to university. So it's like growing in a culture. It feels like the air in which you breathe.So it's very hard to begin with to detect, well, maybe there's another alternative. Maybe there are other ways of doing science, other environments in which one could do science. That's one reason.And other reasons maybe are more profound, and I'm not qualified to explain them, but I could say, looking at this 400-year history of science, since it started around 1623 with Galileo's book The Assayer, that science went and coupled with all what's going on in the West.And so the fall of religion, you could say, and science presented us this new alternative that then could be coupled very well with other -isms, and this idea of growth, and then science losing its good twin brother, which was philosophy. There's a whole natural history of science starting as philosophy, kind of emancipating or breaking out from philosophy, and then marrying technology, and then marrying other social systems.From that point of view, materialism is a very convenient idea to propose. There were attempts, like the German idealists tried to do a more romantic science. But no, the idea prevailed, like Francis Bacon said: You should pursue nature through all her corners, he said, and make her spill her secrets.Our attitude towards nature in the science that dominates is very much reflecting how we treat nature in our society, in our culture, like a resource to extract secrets by force and then dominate it. How is materialism related to the notions of growth and progress? What's wrong with having a productive citizenry?This is another very interesting and very difficult question to answer.But there's this recent book coming out by Paul Kingsnorth. In it, he explains this idea of the machine and this idea of progress. And this, again, this conflation of more is better, of we need to go forward always, and convincing us that the way to do that is to continually extract more from nature. But because we don't have the religious context anymore, because God is dead, then what do we have? We have what we can do as humans with our own gadgets.It's kind of the story of the Promethean fire. We will just build anything to make ourselves God.A good example today is transhumanism. Transhumanism is this pseudo-religion dressed in technoscientific language whose goal is very religious. They promise immortality, they promise redemption, they promise transformation of the entire natural world, but it's done by human means through technology. Are you suggesting that we can't have ethics without religion?Well, we should have ethics with or without religion. That's another pruning that has happened in science. We say, forget about aesthetics, although some physicists still think that beautiful means probably true, and forget about politics. We pretend there's no backstage of science, and even let's forget about ethics.___Science needs to be in the service of mankind.___Scientists, when they become more like engineers, they're just thinking how to make things work so that they can go to the moon, go to Mars, make machines that think, but they don't think whether that's a good idea.And also consider metaphysics. Many scientists for a long time pretended, and maybe that comes from the stream of positivisms, that really one doesn't need metaphysics at all, except that materialism is always the metaphysics running the system.You see, it's not just ethics. It's the pruning of all of these, you could say, five main legs of philosophy that just makes a kind of unconscious science, a science that doesn't really know what it's doing. It's doing it very well locally, but it just doesn't know what it's doing globally. Do you think science has to have an ultimate vision and purpose behind it for it to be effective or for it to be meaningful and transformative?Yes, a way I would say that is that science needs to be in the service of mankind. And it hasn't been that. And we can see it through, you know, when we discovered the secrets of the atom, and all of a sudden, the Manhattan Project, and then we create nuclear weapons.And now we're trying to crack how machines may think, and now we're creating this mess, right? So science needs to be in service of mankind, not in service of a few ideas that maybe want to make more money or just dominate upon nature. What about planes, trains, automobiles, and modern medicine? Hasn't science served mankind by helping us develop those technologies?Yes and no. I see where you're going, and it's fair.I came here by plane, and it's a blessing. When I almost died, the surgeons did their job, and they saved my life. But these two forced choices between Luddites and Silicon Valley types, I think, of course, it's a false dichotomy.Progress, in a way, it's good, but we often don't speak about the dark side of the moon. We say the great things that progress has brought, and we don't speak about the disasters, the side effects that it has come with, and the same when we promise new technologies. We tend to think that any technology is great, that email is going to save us so much time because we don't need to write letters and send them anymore.Is that true? I spend so many hours a week writing emails. Let's just say there are great things about it and bad things about it. People like Harvard psychologist Steven Pinker, for example, argue that we've made moral progress over time because of the Enlightenment. Do you think that's totally wrong-headed?I think he's emphasizing a side of the moon, and he does that very well, and you can find tons of plots where there's a slope going up and say it's great. But I think he should also tell the not-so-friendly story.But if your ideology is just to resist and continue to explain that the Enlightenment is the best thing ever and reason is the best thing ever… this feels to me like you're worshipping these abstractions.I'm very critical of it and also of these, again, science communicators and scientists that say, Oh, science says, in the name of science, experts say. It's like, come on, let's be careful because we can shoot ourselves in the foot by putting forth to the people an image of science that we know is not really true. Recently there's been a resurgence of spirituality and of people who say that they're spiritual but not religious, especially in the United States. If materialism is going away, what is going to fill that gap? Are we going to return to traditional religion? Do you see that being connected with the rise of the political right?I'm not a fortune teller, so I don't know what's going to happen. But, yeah, we could say we're in this post-materialist age and even post-secular age. One cannot come back to the past, but maybe just to contact with the roots is a good idea.What do I mean by that? I think we need to do a science 2.0, a science that says thank you to Galileo and thank you to materialism, but we need to reinvent even a new kind of scientific method. We need to do so in a culture where we realize humans cannot thrive in a vacuum where there's this idea that the sacred has to be removed.Now, how do we do that without bringing in back all the vices of religion? I don't know. I'm from a Catholic country.Here we are in England, so there are differences and interreligious dialogue has always been a challenge. But I think maybe a way of putting it is: after all these conflicts and branchings I was quickly alluding to, science from philosophy and then also from religion, now there's a time of reconciliation perhaps and maybe debates in the proper sense, like exchange of ideas in service of learning and getting into something higher than both poles. We need science to talk to religious people and it's interesting when people say they're spiritual and not religious.I think this is just a way of saying, no, I don't want to go back, I want to go forward. But at the end of the day, religions have offered us practices and grounding that we now desperately need. Everybody can and should just meditate or pray or do whatever they want, but we're in a crisis and it's time for reconciliation. What do you say to critics that say you are merely projecting our need for meaning onto a fundamentally indifferent universe?Yeah, I know that the typical science communicator says something like this. But we're not projecting. Human beings feed on meaning.It's the other way around. If you're a materialist, because the only thing that there is is matter, all that comes next, free will, consciousness, meaning, this is a kind of illusion that we need to explain.They're just craving for meaning, but there isn't really for them. I would also like to remind my materialist friends that for decades, if not centuries, they've said in the name of science, we know that this and this and this doesn't really exist. I think now they sense they're forced to say, well, actually, we don't know. We've been saying, for instance, that there's nothing after you die, and now probably they need to admit that they don't know the answer.___We need to do a science 2.0, a science that says thank you to Galileo and thank you to materialism, but we need to reinvent even a new kind of scientific method.___So it's a moment to open up possibilities and also to gently but fiercely critique these claims that I think harm society. If you say in the name of science, get on with it, when your father dies, you'll never see him again. Well, what the F do you know about it? You haven't studied the literature, you haven't had any of those experiences, and basically what you're doing is you're just doing marketing on ideology. This needs to stop. Do you think that it's scarier for some people to entertain the thought that there might be life after death, compared to a materialist worldview where you just die, given that there might be consequences for unsavory behaviour?Well, death and dying is scary. It's maybe the ultimate ending. It's a limit on life, and when we're in this conquest mode, we don't like limits.And it also has, there's a shockwave backwards, so I think if you change your notion of what death is or may be, you live differently. It also has consequences, as you're saying, for the future because this is not our only goal here and we come back in whatever form. And again, different religions would say different things. I the East, they are more happy with the idea of reincarnation, and here in the West, there are other preferences. But in any case, it changes how we live, and that's really what matters.It's not about just projecting or imagining what we'll be after, but how we live now and also how we treat those who are dying. So it goes from the individual to the families, to the hospitals.Now in the near-death research I do, this has ramifications at all these levels, all the way to society.But our society is thanatophobic. It has a phobia of death. We don't want to hear about death, and this is another thing we need to put on the table and be willing to talk about it. Do you think that we might get closer to answering ultimate questions like why is there anything at all if we jettison materialism?That’s an excellent question, Simon. Two things: we should stop treating reality, I believe, as a great sudoku, as an enigma, as something that with intelligence, money, and time that we will crack and instead treat reality more like a mystery. And what you do for in front of a mystery is not to be the clever guy in a class and say “I’ll solve you” but more like “I will bow and you will transform me.”I know this sounds a bit like a scientist speaking like a mystic. But I think this reorientation is needed. In the end, we won’t crack the big questions, but they will transform us. If we free ourselves from this prison of materialism, the way we will explore these questions will be freer, more creative, and in service of mankind. Do you think exploring mystery is the reason why we are here?I think we are here because, and this pseudo-theological argument I’m making off the cuff, But the One, the Absolute, if there is such a thing, had everything except limitation. We are that absolute experiencing that contingency. It’s like an act of divine proprioception. It’s a wonderful adventure, it’s just incredible to be alive. Perhaps we have forgotten why we are here and the whole point is to experience the flesh.Let me end by saying this. I criticize materialism harshly. I bang on this dead horse, because I think it’s dead. But matter is a great mystery. So maybe my invitation is as follows: hey materialist friends, come here, let’s work on materialism 2.0! Consciousness is a mystery, but matter is also a mystery. The fact that we can have an intersubjective experience consensus, the fact that we can apply mathematics, that we can measure things... the physical world we take for granted, but it is a great mystery too.Maybe that’s related to your last question: why are we here? Why did spirit decide to incarnate? Being in the flesh may be a great thing if spirit decided to do so.Àlex Gómez-Marín, thank you very much.My pleasure.

iai.tv logo
Dec 1, 2025 • 7:00 AM EST • Science • iai.tv