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What is Climate?01:16

What is Climate?

Climate refers to the prevailing weather conditions in a specific area over an extended period. As the saying goes, “Climate is what you expect. Weather is what you get.” Climate is influenced by geographic factors, such as latitude, terrain, and proximity to bodies of water.
Global Climate Change01:50

Global Climate Change

Throughout its ~4.5 billion year history, the Earth has experienced periods of warming and cooling. However, the current drastic increase in global temperatures is well outside of the Earth’s cyclic norms, and evidence for human-caused global climate change is compelling. Paleoclimatology, the study of ancient climate conditions, provides ample evidence for human-caused global climate change by comparing recent conditions with those in the past.
Conditions on Early Earth02:06

Conditions on Early Earth

Around 4 billion years ago, oceans began to condense on earth while volcanic eruptions released nitrogen, carbon dioxide, methane, ammonia, and hydrogen into the primordial atmosphere. However, organisms with the characteristics of life were not initially present on earth. Scientists have used experimentation to determine how organisms evolved that could grow, reproduce, and maintain an internal environment.
Conditions on Early Earth02:06

Conditions on Early Earth

Around 4 billion years ago, oceans began to condense on earth while volcanic eruptions released nitrogen, carbon dioxide, methane, ammonia, and hydrogen into the primordial atmosphere. However, organisms with the characteristics of life were not initially present on earth. Scientists have used experimentation to determine how organisms evolved that could grow, reproduce, and maintain an internal environment.
Temperature Dependent Deformation01:12

Temperature Dependent Deformation

In a nonhomogeneous rod made up of steel and brass, restrained at both ends and subjected to a temperature change, several steps are involved in calculating the stress and compressive load. Due to the problem's static indeterminacy, one end support is disconnected, allowing the rod to experience the temperature change freely. Next, an unknown force is applied at the free end, triggering deformations in the rod's steel and brass portions. These deformations are then calculated and added together...
Microbes and Climate Change01:27

Microbes and Climate Change

Microorganisms are pivotal agents in Earth's biogeochemical cycles, significantly influencing climate dynamics through their metabolic activities. These microbes modulate the levels of key greenhouse gases by both contributing to and helping mitigate climate change.Microbial Contributions to Greenhouse Gas EmissionsRising global temperatures accelerate microbial metabolism, which, in turn, speeds up the decomposition of organic matter. This process releases carbon dioxide (CO₂) through...

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Related Experiment Video

Updated: Jun 18, 2026

Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside
09:06

Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside

Published on: July 3, 2016

Devon island ice cap: core stratigraphy and paleoclimate.

R M Koerner

    Science (New York, N.Y.)
    |April 1, 1977
    PubMed
    Summary

    Melt layers in Devon Island ice cores reveal a warming trend since 1925, impacting Arctic ice caps and sea ice. This paleoclimatic data suggests warmer summers influenced historical exploration, like the search for the Northwest Passage.

    Area of Science:

    • Paleoclimatology
    • Glaciology
    • Arctic Research

    Background:

    • Deep ice cores contain valuable paleoclimatic information.
    • Melt layer analysis provides insights into past summer temperatures and ice cap conditions.

    Purpose of the Study:

    • To reconstruct paleoclimatic conditions using melt layer data from the Devon Island ice cap.
    • To correlate ice cap melt layers with mass balance, sea ice extent, and historical events.

    Main Methods:

    • Drilling and analyzing ice cores from the Devon Island ice cap.
    • Quantifying melt layer ice percentage and plotting it against time and depth.
    • Comparing Devon Island data with other Canadian Arctic ice caps and sea ice records.

    Main Results:

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    • Devon Island experienced colder summers from ~1600 to 1925, with a peak cold period from 1680-1730, followed by warmer summers since 1925.
    • A high correlation exists between melt-layer ice percentage and ice cap mass balance, indicating zero balance during colder periods and negative balance currently.
    • Melt layer variations on Devon Island are representative of other major Canadian Arctic ice caps and correlate with regional sea ice conditions.

    Conclusions:

    • The Arctic has experienced significant summer warming since 1925, affecting ice cap mass balance.
    • Paleoclimatic data from ice cores can illuminate historical climate shifts and their impact on human activities, such as Arctic exploration.
    • The study highlights the interconnectedness of ice cap dynamics, regional climate, and sea ice conditions in the Arctic.