File:Greenhouse Effect Overview.svg
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Summary
DescriptionGreenhouse Effect Overview.svg |
English: Greenhouse gases (GHGs) in dense air near the surface intercept most of the thermal radiation emitted by the warm surface. GHGs in sparse air at higher elevations emit thermal radiation to space, at a lower rate than surface emissions, due to the lower temperature. The temperatures at different elevations are connected via the environmental lapse rate. The surface is about 33℃ (59℉) warmer than the temperature needed to emit enough radiation to balance absorbed sunlight.
The key principle in play is that planetary temperature is determined by radiative equilibrium. In steady-state, a planet must balance the rate of thermal energy it is receiving from received sunlight (possibly supplemented by internal energy sources, in the case of certain celestial bodies) by emitting infrared thermal radiation to space at an equal rate. Greenhouse gases are gases that have the ability to absorb and emit that radiation. Their presence interferes with thermal radiation from the surface directly reaching space. The resulting temperature rise can be understood in either of two ways:
These two ways of understanding the effect are largely equivalent. The first formulation is easier to formulate in a totally rigorous fashion, and is the one most commonly used by scientists. Some people find the second explanation to be more intuitively understandable. References Similar figures
Background
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Date | |
Source | Own work |
Author | Robert Wentworth |
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9 May 2023
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 05:40, 13 May 2023 | 431 × 465 (9 KB) | wikimediacommons>Rhwentworth | Put Fahrenheit temperatures in parenthesis |
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Width | 431 |
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Height | 465 |