the heat from sun and latitude and longitude
The general trend of temperature shown on a North American surface temperature contour plot is that temperatures decrease as you move from south to north. This is due to the latitude effect, where regions closer to the equator receive more direct sunlight and therefore tend to be warmer compared to regions farther away.
Earth has a moderate greenhouse effect, while Venus has a severe case, with surface temperatures of 400-500 degrees C.
Not at all, mountain lions usually don't mine the water.
Solar radiation has a greater impact on climate at the equator compared to polar regions. This is because the equator receives more direct sunlight throughout the year, leading to warmer temperatures. In contrast, at polar regions, sunlight is spread out over a larger area, resulting in cooler temperatures.
No, the greenhouse effect is a natural process that occurs on Earth and other planets with atmospheres. For example, Venus has an extreme greenhouse effect that has resulted in high surface temperatures.
I had to complete a science fair project in high school about the effect of surface temp on fingerprints. My results showed that the colder the surface temperature, the more likely you are to see the fingerprint.
The greenhouse effect causes the extreme temperatures. The greenhouse gas is mainly carbon dioxide and gaseous sulphuric acid.
Venus and Earth are the two planets that experience the greenhouse effect. Both planets have atmospheres that trap heat from the sun, leading to high surface temperatures as a result of this warming effect.
Venus experienced a runaway greenhouse effect, not a runaway refrigerator effect. This phenomenon led to extremely high temperatures on the planet's surface, making it the hottest planet in our solar system.
The albedo effect in the polar regions refers to the high reflectivity of snow and ice, which causes sunlight to be reflected back into space rather than absorbed as heat. This reflection helps maintain cool temperatures in the polar regions by reducing the amount of solar energy that is absorbed and thus preventing excessive warming.
Yes. They can and they do. Any increase in the level of carbon dioxide or methane in the atmosphere will result in an increase in average global temperatures. This typically results in evaporation of additional water vapour, creating a slight amplifier effect, to further increase surface temperatures.
Ambient air and surface temperature do not usually equal each other. The air temperature will usually be higher than the surface temperature because the surface must absorb the temperature around it which happens steadily instead of right away.