Thwaites Glacier Volcanic Activity at Rodney Eubanks blog

Thwaites Glacier Volcanic Activity. But does the science support that idea? We show that the rapidly retreating thwaites and pope glaciers in particular are underlain by areas of largely elevated. Satellite studies have shown that its ‘grounding line’ — where ice attached to bedrock transitions to ice floating in the sea — has shifted 14 kilometres inland since the late 1990s, and some parts of it are retreating as fast as 1.2 kilometres per year. Our finding of a substantial volcanic heat source beneath a major wais glacier highlights the need to understand subglacial volcanism, its hydrologic interaction with the. In short, the answer is a definitive “no”.

The Race to Understand Antarctica’s Most Terrifying Glacier WIRED
from www.wired.com

In short, the answer is a definitive “no”. We show that the rapidly retreating thwaites and pope glaciers in particular are underlain by areas of largely elevated. Satellite studies have shown that its ‘grounding line’ — where ice attached to bedrock transitions to ice floating in the sea — has shifted 14 kilometres inland since the late 1990s, and some parts of it are retreating as fast as 1.2 kilometres per year. But does the science support that idea? Our finding of a substantial volcanic heat source beneath a major wais glacier highlights the need to understand subglacial volcanism, its hydrologic interaction with the.

The Race to Understand Antarctica’s Most Terrifying Glacier WIRED

Thwaites Glacier Volcanic Activity Satellite studies have shown that its ‘grounding line’ — where ice attached to bedrock transitions to ice floating in the sea — has shifted 14 kilometres inland since the late 1990s, and some parts of it are retreating as fast as 1.2 kilometres per year. Satellite studies have shown that its ‘grounding line’ — where ice attached to bedrock transitions to ice floating in the sea — has shifted 14 kilometres inland since the late 1990s, and some parts of it are retreating as fast as 1.2 kilometres per year. But does the science support that idea? We show that the rapidly retreating thwaites and pope glaciers in particular are underlain by areas of largely elevated. Our finding of a substantial volcanic heat source beneath a major wais glacier highlights the need to understand subglacial volcanism, its hydrologic interaction with the. In short, the answer is a definitive “no”.

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