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The average solar radiation hitting the planet is considered to be about 352 watts/meter squared. Total radiation hitting our atmosphere is about 1366 watts/meter squared.

The rest of this energy is absorbed or reflected by the atmosphere.

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Does tilt affect the amount of solar energy earth receives?

No, the tilt of the earth doesn't affect the amount of solar energy received from the sun. It does mean that at different seasons, different parts of the earth will get more than others, but the overall amount remains the same.


What is the main source of energy for most processes at earths surface?

the sun because it gives energy to every living thing on earth


Where does the amount of solar energy Earth receives in a year vary the greatest?

The amount of solar energy Earth receives in a year varies the greatest near the poles. This is because of the tilt of Earth's axis, which causes the angle of sunlight to change throughout the year, leading to more extreme differences in solar energy received in polar regions compared to equatorial regions.


What is the amount of heat energy in the earth's surface referredd to?

The amount of heat energy in the Earth's surface is referred to as geothermal energy. This energy is generated from the heat stored within the Earth's crust and can be harnessed for various applications such as electricity generation and heating.


What factor most influences amount of solar energy an area on earth receives?

The latitude of an area on Earth most influences the amount of solar energy it receives. Areas closer to the equator receive more direct sunlight and therefore more solar energy, while areas farther from the equator receive less direct sunlight and less solar energy. Other factors such as cloud cover, air pollution, and elevation can also affect the amount of solar energy received.

Related Questions

What are these resoures on the earth?

solar energy...because the sun makes most enenrgy from earth every plant or animal needs solar energy:)


Does tilt affect the amount of solar energy earth receives?

No, the tilt of the earth doesn't affect the amount of solar energy received from the sun. It does mean that at different seasons, different parts of the earth will get more than others, but the overall amount remains the same.


What is the solar constant formula used to calculate the amount of solar energy received at the outer atmosphere of Earth?

The solar constant formula is used to calculate the amount of solar energy received at the outer atmosphere of Earth. It is represented by the equation: Solar Constant Solar Irradiance / Distance from the Sun squared.


Is the amount of solar energy intercepted by earth affected by the presence of clouds in the sky?

Yes, the presence of clouds can affect the amount of solar energy intercepted by Earth. Clouds can reflect, absorb, and scatter solar radiation, reducing the amount of sunlight that reaches the Earth's surface. This can impact the overall energy balance of the Earth's climate system.


What two factors determine the amount of solar energy that an area receives?

Two factors that determine the amount of solar energy an area receives are the amount of atmosphere it has to travel through and the tilt of the Earth. The more atmosphere the solar energy goes through the less energy there will be when it hits the surface. Also, the tilt of the Earth determines the amount of solar energy because if you are tilted towards the sun you are a little bit closer, so the energy doesn't have to go through as much atmosphere as the side of the Earth tilted away from the sun. Hope this helps!


Is solar energy being wasted?

Vast amounts of solar energy land on the earth every day, and only a tiny amount is captured for generating electricity. It is hardly being wasted, though, as much of it is used to warm the earth, to grow crops, to power photosynthesis in plants etc.


How to calculate the solar constant and what does it represent in the context of solar energy?

The solar constant is the amount of solar energy that reaches the Earth's atmosphere per unit area. It is typically measured as 1.366 kilowatts per square meter. To calculate the solar constant, scientists use measurements from satellites and ground-based instruments to determine the amount of solar radiation reaching the Earth. In the context of solar energy, the solar constant represents the maximum amount of energy that can be harnessed from the sun at a given location. This value is important for understanding the potential for solar energy generation and for designing solar power systems.


What are the three things controlling the amount of solar energy reaching Earth?

The amount of solar energy reaching Earth is primarily controlled by three factors: the Earth's distance from the Sun, which varies due to its elliptical orbit; the Sun's output, which can fluctuate due to solar cycles; and the Earth's atmosphere, which can absorb or reflect solar radiation. Additionally, clouds and aerosols can influence how much solar energy reaches the surface. Together, these factors determine the overall solar radiation received by the planet.


How do rotation and tilt affect the amount of solar energy that different parts of earth receive?

Rotation and tilt affect the amount of solar energy the earth receives because when the earth is tilted and or rotating, one specific part of the earth is more directed towards the sun then all the others.


What is the main source of energy for most processes at earths surface?

the sun because it gives energy to every living thing on earth


What term Describes the amount of energy available to heat the earth's land water and air?

The term that describes the amount of energy available to heat the Earth's land, water, and air is "solar radiation." Solar radiation, or sunlight, is the primary source of energy that heats the Earth's surface and drives weather and climate systems.


Where does the amount of solar energy Earth receives in a year vary the greatest?

The amount of solar energy Earth receives in a year varies the greatest near the poles. This is because of the tilt of Earth's axis, which causes the angle of sunlight to change throughout the year, leading to more extreme differences in solar energy received in polar regions compared to equatorial regions.