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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.
Phase Transitions: Melting and Freezing02:39

Phase Transitions: Melting and Freezing

Heating a crystalline solid increases the average energy of its atoms, molecules, or ions, and the solid gets hotter. At some point, the added energy becomes large enough to partially overcome the forces holding the molecules or ions of the solid in their fixed positions, and the solid begins the process of transitioning to the liquid state or melting. At this point, the temperature of the solid stops rising, despite the continual input of heat, and it remains constant until all of the solid is...
Phase Transitions: Sublimation and Deposition02:33

Phase Transitions: Sublimation and Deposition

Some solids can transition directly into the gaseous state, bypassing the liquid state, via a process known as sublimation. At room temperature and standard pressure, a piece of dry ice (solid CO2) sublimes, appearing to gradually disappear without ever forming any liquid. Snow and ice sublimate at temperatures below the melting point of water, a slow process that may be accelerated by winds and the reduced atmospheric pressures at high altitudes. When solid iodine is warmed, the solid sublimes...
Solid–Solid Solutions01:24

Solid–Solid Solutions

The temperature-composition phase diagram of two solids, A and B, which are immiscible in the solid phase but form miscible liquids, shows that when the temperature is low, these two exist as separate, pure solids (A and B). As the temperature increases, they transition into a single-phase liquid solution where A and B coexist. Moving from point a1 to a2 in the phase diagram, the composition changes such that solid B begins to separate from the solution, enriching the remaining liquid with A.
Average Value on a Rectangle01:27

Average Value on a Rectangle

A snowfall map can represent how snow depth varies across a region, such as Colorado, over a fixed time period. Since different locations may receive different amounts of snow, the snowfall depth is described by a function of two variables. If f(x,y) represents the snow depth at a point in a rectangular region, then the average snowfall over the entire region is found by comparing the total accumulated snowfall with the area being measured.Total Snowfall over a RegionThe total snowfall over a...

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Updated: Jul 10, 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

氷河期/氷河間変化の亜北極北太平洋層分化

S L Jaccard1, G H Haug, D M Sigman

  • 1Department of Earth Sciences, Sonneggstrasse 5, ETHZ, 8092 Zurich, Switzerland. jaccard@erdw.ethz.ch

Science (New York, N.Y.)
|May 14, 2005
PubMed
まとめ

北太平洋の氷河期における藻類の低生産性は,海氷の覆いではなく,海洋層分化に関連していた. この発見は,氷河のサイクルと大気中の二酸化炭素濃度の理解に影響を与えます.

科学分野:

  • パレオセアノグラフィー
  • マリン・バイオロジー マリン・バイオロジー
  • 気候科学 気候科学

背景:

  • 以前の研究では,氷河期における南極海域の藻類の生産性が低いことが指摘されていた.
  • これは海洋層分化によるものなのか,それとも光の利用可能性に影響を与える海氷の覆いの減少によるものなのか,議論はあった.
  • 氷河期における藻類の低生産性は,世界の炭素循環に影響を及ぼします.

研究 の 目的:

  • サバークティック北太平洋の氷河期における藻類の生産性の低い原因を調査する.
  • 層分化や海氷の広がりが,この地域の生産性を制限しているかどうかを判断する.
  • 氷河周期中の大気中の二酸化炭素濃度への影響を評価する.

主な方法:

  • 海洋掘削プログラムサイト882.2からの堆積物核の分析
  • 藻類の生産性のプロキシとして生物学的バリウム濃度の測定.
  • 場所の位置を氷河の海氷の範囲と比較する.

主要な成果:

  • 堆積物分析により,亜北極北太平洋の氷河期における藻類の生産性が低いことが明らかになった.
  • 海洋掘削プログラムサイト882は,夏の海氷の範囲の南に位置し,氷河の最大期にもあります.

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Using Generative Art to Convey Past and Future Climate Transitions
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関連する実験動画

Last Updated: Jul 10, 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

Laser-Induced Fluorescence Emission (L.I.F.E.) as Novel Non-Invasive Tool for In-Situ Measurements of Biomarkers in Cryospheric Habitats
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Laser-Induced Fluorescence Emission (L.I.F.E.) as Novel Non-Invasive Tool for In-Situ Measurements of Biomarkers in Cryospheric Habitats

Published on: October 26, 2019

Using Generative Art to Convey Past and Future Climate Transitions
06:10

Using Generative Art to Convey Past and Future Climate Transitions

Published on: March 31, 2023

  • この地理的文脈は,主要な原因として,海氷による光の制限を排除しています.
  • 結論:

    • 亜北極北太平洋の氷河期における藻類の生産性の低下の主な要因として,海洋層分化が特定されています.
    • 発見は,海氷の覆いではなく,層分化が重要な要因であることを支持しています.
    • これは,過去の氷河周期における大気中の二酸化炭素の調節を理解する上で重要な意味を持つ.