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Physical Process

Glacial Isostatic Rebound

Glacial and Periglacial Processes

The slow upward rise of the Earth's crust following the removal of the immense weight of an ice sheet, as the underlying mantle gradually flows back to relieve the depression the ice load once caused. Regions such as Scandinavia and Hudson Bay, freed of their last ice sheets roughly ten thousand years ago, are still measurably rising today as a result.

Facts
Partially Attested
Process Type
Tectonic 1
The source calls it the rise of land masses after ice-sheet removal and assigns no atlas process class; tectonic (crustal vertical motion) is chosen as the closest, with glacial the alternative reading.
First Proposed Year
1865 1
Earlier observations of falling sea level in Sweden (Anders Celsius marks) preceded this, so 1865 dates the theory linking the land rise to the ice age specifically.
Timescale
Many thousands of years 1
Scientific Consensus Year
1890 1
Sources
1. Post-glacial rebound, Wikipedia
  • Overview section, first sentence
    Post-glacial rebound (also called isostatic rebound or crustal rebound) is the rise of land masses after the removal of the huge weight of ice sheets during the last glacial period
  • Overview section, sentence on mantle viscosity
    Due to the extreme viscosity of the mantle, it will take many thousands of years for the land to reach an equilibrium level.
  • Discovery section, Jamieson sentence
    In 1865 Thomas Jamieson came up with a theory that the rise of land was connected with the ice age that had been first discovered in 1837.
  • Discovery section, De Geer sentence
    The theory was accepted after investigations by Gerard De Geer of old shorelines in Scandinavia published in 1890.
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