Scientists remain uncertain about why ice is slippery

A thin watery layer on ice's surface makes it slick, but the exact reason for this layer's formation remains unclear despite centuries of scientific inquiry. This longstanding puzzle continues to intrigue researchers in materials science. The explanation highlights the complexities of everyday phenomena like weather and water behavior.

For generations, scientists have theorized about the slipperiness of ice, yet a definitive answer eludes them. The key factor appears to be a thin, watery coating on the ice's surface, which reduces friction and causes the slick sensation underfoot or on skates.

Despite extensive study, the precise mechanism behind this quasi-liquid layer is not fully understood. Theories have abounded over the centuries, but none fully explain why it forms at temperatures where ice should remain solid. This mystery touches on broader questions in physics and chemistry, particularly how water behaves at interfaces.

The topic gained renewed attention through an article in Quanta Magazine, republished by WIRED on January 25, 2026. As noted in the piece, the slippery nature of ice affects everything from winter safety to sports, underscoring the practical implications of unresolved scientific questions.

Researchers continue to explore this phenomenon using advanced tools in materials science, hoping to clarify the molecular interactions at play. Until then, the watery layer remains a slippery concept in both literal and figurative senses.

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A viral challenge involves trapping people in a carved-out ice bowl, testing their ability to climb out on a highly slippery surface. An article explains three physics-based methods using frictional forces to overcome the slope. The bowl's spherical shape makes escape increasingly difficult as one ascends.

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A fresh look at data from NASA's Cassini mission indicates that Saturn's largest moon, Titan, likely lacks a vast subsurface ocean and instead features a slushy interior with isolated pockets of liquid water. This finding challenges earlier assumptions and could reshape the search for life on icy worlds. Researchers published their results on December 17 in the journal Nature.

A Chinese research team has warned that collecting water ice from the moon's south pole could be challenging due to its unique properties. The ice is locked in frozen soil, held only by extreme cold and vacuum. This insight comes ahead of the Chang'e-7 mission.

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