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  2. Illustrative model of greenhouse effect on climate change

    en.wikipedia.org/wiki/Illustrative_model_of...

    Earth constantly absorbs energy from sunlight and emits thermal radiation as infrared light. In the long run, Earth radiates the same amount of energy per second as it absorbs, because the amount of thermal radiation emitted depends upon temperature: If Earth absorbs more energy per second than it radiates, Earth heats up and the thermal radiation will increase, until balance is restored; if ...

  3. File:Greenhouse Effect (2017 NASA data).svg - Wikipedia

    en.wikipedia.org/wiki/File:Greenhouse_Effect...

    Of the surface heat captured by the atmosphere, more than 75% can be attributed to the action of greenhouse gases that absorb thermal radiation emitted by the Earth's surface. The atmosphere in turn transfers the energy it receives both into space (38%) and back to the Earth's surface (62%), where the amount transferred in each direction ...

  4. File:Earth Energy Budget with GHE.svg - Wikipedia

    en.wikipedia.org/wiki/File:Earth_Energy_Budget...

    Greenhouse gases interfere with energy leaving. They exchange thermal radiation with the surface, cancelling flows of radiative energy that would otherwise head towards space. And, while greenhouse gases emit thermal radiation that reaches space, they do so at a high altitude, where temperatures and thermal radiation emission rates are low.

  5. File:Greenhouse effect with energy flows shown by altitude.svg

    en.wikipedia.org/wiki/File:Greenhouse_effect...

    English: Energy flows down from the sun and up from the Earth, with the impact of greenhouse gases shown in raising temperatures. Color coding is yellow for downward radiation from sun, blue for upwards radiation from Earth, and gray for radiation trapped by greenhouse gases.

  6. File:Greenhouse Effect.svg - Wikipedia

    en.wikipedia.org/wiki/File:Greenhouse_Effect.svg

    Of the surface heat captured by the atmosphere, more than 75% can be attributed to the action of greenhouse gases that absorb thermal radiation emitted by the Earth's surface. The atmosphere in turn transfers the energy it receives both into space (38%) and back to the Earth's surface (62%), where the amount transferred in each direction ...

  7. Greenhouse gas - Wikipedia

    en.wikipedia.org/wiki/Greenhouse_gas

    This is an accepted version of this page This is the latest accepted revision, reviewed on 13 February 2025. Gas in an atmosphere with certain absorption characteristics This article is about the physical properties of greenhouse gases. For how human activities are adding to greenhouse gases, see Greenhouse gas emissions. Greenhouse gases trap some of the heat that results when sunlight heats ...

  8. Idealized greenhouse model - Wikipedia

    en.wikipedia.org/wiki/Idealized_greenhouse_model

    The idealized greenhouse model is based on the fact that certain gases in the Earth's atmosphere, including carbon dioxide and water vapour, are transparent to the high-frequency solar radiation, but are much more opaque to the lower frequency infrared radiation leaving Earth's surface.

  9. Greenhouse effect - Wikipedia

    en.wikipedia.org/wiki/Greenhouse_effect

    While the gases N 2 and H 2 ordinarily do not absorb infrared radiation, these gases absorb thermal radiation on Titan due to pressure-induced collisions, the large mass and thickness of the atmosphere, and the long wavelengths of the thermal radiation from the cold surface. [57] [86] [100]