How the Voyager missions rewrote planetary science, tested the limits of 1970s engineering, and became humanity's longest-running experiment in institutional patience
Voyager 1 was launched in 1977 with a suite of 10 science instruments — as of 2026, only two remain switched on, and the spacecraft's nuclear power source loses roughly 4 watts every year, a slow drain that is now deciding what humanity still gets to learn from interstellar space
Scientists have now made the most comprehensive tally yet of deep-sea exploration — 43,681 dive records dating back to 1958 — and found that humans have directly seen less than 0.001% of the deep ocean floor, an area roughly the size of Rhode Island, leaving the vast seafloor across 66% of Earth’s surface essentially unobserved.
Voyager 2’s three surviving instruments are part of humanity’s only direct scientific presence in interstellar space—and with no approved successor under development, engineers remotely reconfigured the 49-year-old probe’s power system in July 2026, completing a delicate operation across a 39-hour command-and-response delay that should preserve its science for at least another year.
Scientists led by UCLA found that permanently shaded parts of pits on the Moon stay near a constant 17°C while the exposed surface swings between 127°C and −173°C — meaning humanity's first permanent lunar address may be underground.