what a lie it needs to be green houise gases or somthing else \
If a surface absorbs insolation, its temperature tends to increase as the absorbed energy is converted into heat. The surface absorbs sunlight and converts it into thermal energy, leading to a rise in temperature.
The air in the troposphere is warmed by heat from the Earth's surface through the process of conduction and convection. As the Earth's surface absorbs solar radiation, it heats up and transfers some of this heat to the air directly above it. This warming of the air creates temperature gradients and drives weather patterns and atmospheric circulation.
The sun heats the atmosphere. Solar radiation largely passes through the atmosphere and warms the surface of the earth. The earth then radiates heat up into the lower levels of the atmosphere where greenhouse gases warm. The warmed greenhouse gases then continue to radiate heat in all directions warming the atmosphere and again the earth's surface.
The atmosphere near Earth's surface is heated from below primarily through the process of conduction. This occurs as the Earth's surface absorbs solar radiation and heats up, transferring this heat to the adjacent air molecules through direct contact. As the air warms, it becomes less dense and rises, creating convective currents that distribute the heat throughout the atmosphere.
It absorbs the heat from the sun, it is a better conductor of heat than the air so it remains warm longer.
Greenhouse gases.
"endothermic"
If a surface absorbs insolation, its temperature tends to increase as the absorbed energy is converted into heat. The surface absorbs sunlight and converts it into thermal energy, leading to a rise in temperature.
The air in the troposphere is warmed by heat from the Earth's surface through the process of conduction and convection. As the Earth's surface absorbs solar radiation, it heats up and transfers some of this heat to the air directly above it. This warming of the air creates temperature gradients and drives weather patterns and atmospheric circulation.
pressure from the heat under the earths surface
The area around the Equator receives the most direct sunlight, thus absorbs the most heat.
It is called vaporization, and it happens because the water vapor is taking away some of the heat in the form of energy, and so the surface has less heat energy.
Earth's surface is free to radiate heat into space. The interior is not. The interior does transfer heat the the surface, but rather slowly. It is hot due to residual heat from Earth's formation and from the heat generated by the decay of radioactive elements.
Beneath the surface of the earth temperature remains the same. Within the Earth, irregular convection cells within the mantle transfer heat from the core to the surface of the planet. Volcanoes and earthquakes are two examples of heat transferring from the interior to the surface.
Most of the light's energy gets converted into heat.
Heat from the sun
A black surface absorbs all colors of light, as it does not reflect any color back to the observer. Instead, it converts the light energy into heat.