About half of it is absorbed, reflected, or scattered within the atmosphere. The remainder reaches the earth, where it heats it. This radiation emitted by the earth heats the lower atmosphere and generates the earth's weather.
A:Some is absorbed to make ozone (UV-C and more energetic), some is absorbed to break ozone back down (UV-B and more energetic). Some is absorbed and radiated back to space (infrared and less energetic) or captured by greenhouse gases. Lots of it is passed down to Earth's surface (UV-A thru the near infrared).it gets absorbed by the ground
Solar radiation enters the Earth's atmosphere. Some of the solar energy is absorbed by the Earth's surface and warms it. The Earth's surface radiates heat energy back towards the atmosphere. Greenhouse gases, such as carbon dioxide and methane, trap some of this heat energy in the atmosphere, leading to a warming effect known as the greenhouse effect.
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The fuel driving the atmosphere is primarily solar energy. Solar radiation from the sun heats the Earth's surface, causing air to rise and creating weather patterns and atmospheric circulation. This solar energy is the main driver of weather and climate systems on Earth.
Solar energy that is absorbed at Earth's surface is transformed into heat, which warms the surface. This heat can then be radiated back into the atmosphere as infrared radiation. Some of this heat is trapped by greenhouse gases, contributing to the Earth's overall temperature.
it gets absorbed by the ground
When solar energy enters Earth's atmosphere, a portion of it is absorbed by gases and particles, while some is reflected back into space. The absorbed energy warms the atmosphere and the Earth's surface, driving weather patterns and climate systems. Additionally, solar energy is crucial for photosynthesis in plants, supporting life on Earth. Overall, this interaction affects global temperatures and ecosystems.
Over half is either reflected, deflected or absorbed as it enters our atmosphere. Of the remaining 47% that hits our planet, most is reflected as visible light and passes through the atmosphere and out into space. Some energy is absorbed by the planet and released as infrared radiation. A small portion of this is absorbed by water vapor and CO2 and is released at night to keep the planet warm and alive.
Usually meteors that collide with the earth's atmosphere are burned upon entry. The become what is known as "shooting stars".
Not all of the energy from the sun that enters the atmosphere reaches the Earth because some of it is reflected back into space by clouds, atmospheric particles, and the Earth's surface. Additionally, some of the energy is absorbed and scattered by the atmosphere before reaching the Earth's surface. This results in only a portion of the total solar energy reaching the Earth's surface for use.
Solar radiation enters the Earth's atmosphere. Some of the solar energy is absorbed by the Earth's surface and warms it. The Earth's surface radiates heat energy back towards the atmosphere. Greenhouse gases, such as carbon dioxide and methane, trap some of this heat energy in the atmosphere, leading to a warming effect known as the greenhouse effect.
What happens to Solar Energy is that some of it gets absorbed into air, land and water while the rest gets reflected back to space.
The energy Earth receives from the Sun is often called solar energy. The rate at which this energy arrives at Earth is about 174 petawatts ( 1 petawatt = 1,000 trillion watts) at the upper atmosphere. About 30% is reflected back to space. The sun energy at the Earth's surface is mostly in the visible and near-infrared ranges with a small amount in the near-ultraviolet.
The Thermosphere primarily blocks solar energy.
What happens to Solar Energy is that some of it gets absorbed into air, land and water while the rest gets reflected back to space.
Our atmoshere can protect Earth from solar energy,but the atmoshere gets weaker every time it happens.Most of the solar energy doesn't pass ,so does and that's how we get sun burns and skin cancer from ultra violet rays.
Solar energy provides heat. It makes the atmosphere warm.