Solar radiation is sunlight, including the ultraviolet and infrared ends of the light spectrum that we can't see. Much of the sun's radiation is deflected by the earth's magnetic field causing the aurora borealis, and our atmosphere diffuses another significant portion. During the summer we receive more radiation because of the tilt of the Earth.
The ozone layer, located in the stratosphere, screens out harmful ultraviolet (UV) radiation from the sun. This layer absorbs and filters out much of the UV radiation before it reaches the Earth's surface, protecting living organisms from its harmful effects.
Harmful UV radiation is mainly absorbed by the ozone layer, which is located in the stratosphere of the atmosphere. The ozone layer helps protect Earth by absorbing most of the sun's harmful UV radiation before it reaches the surface.
The ozone layer, located in the stratosphere, helps to screen out harmful ultraviolet (UV) radiation from the sun. This layer absorbs the majority of the sun's UV radiation before it reaches the Earth's surface, protecting living organisms from its harmful effects.
The ozone layer is the second layer in Earth's atmosphere that blocks most of the harmful radiation from the sun, particularly UV rays. It absorbs and scatters the majority of the UV-B and UV-C radiation before it reaches the Earth's surface.
Chlorofluorocarbons (CFCs) are harmful to the ozone gas in the atmosphere. They are known to deplete the ozone layer, which helps protect the Earth from harmful ultraviolet radiation. This depletion can lead to increased levels of UV radiation reaching the Earth's surface, causing health and environmental problems.
Solar radiation reaches the surface of the Earth through the process of electromagnetic radiation emitted by the Sun. This radiation travels through space and reaches Earth's atmosphere, where it penetrates and warms the surface of the planet. The atmosphere helps block harmful radiation while allowing sunlight to reach the surface.
to trap heat from the sun to shield the planet from harmful radiation and to disintigrate space debris before it reaches the surface
to trap heat from the sun to shield the planet from harmful radiation and to disintigrate space debris before it reaches the surface
The shortwave radiation that reaches Earth's surface and is not reflected is absorbed by the surface, warming it up.
The solar radiation that reaches the earths surface from the sun is called INSOLATION
The ozone layer, located in the stratosphere, screens out harmful ultraviolet (UV) radiation from the sun. This layer absorbs and filters out much of the UV radiation before it reaches the Earth's surface, protecting living organisms from its harmful effects.
Most of the solar radiation is absorbed when it reaches the surface of the earth. Some of the solar radiation is also absorbed in the atmosphere.
Harmful UV radiation is mainly absorbed by the ozone layer, which is located in the stratosphere of the atmosphere. The ozone layer helps protect Earth by absorbing most of the sun's harmful UV radiation before it reaches the surface.
The ozone layer, located in the stratosphere, helps to screen out harmful ultraviolet (UV) radiation from the sun. This layer absorbs the majority of the sun's UV radiation before it reaches the Earth's surface, protecting living organisms from its harmful effects.
When radiation reaches Earth's surface, it can be absorbed, reflected, or scattered. The amount of radiation that is absorbed can contribute to heating of the surface and atmosphere. This process is fundamental for maintaining Earth's energy balance and climate.
Thermal energy reaches Earth's surface primarily through radiation from the sun. The sun emits electromagnetic radiation that travels through space and warms the Earth's surface upon contact. This process is known as solar radiation.
The oxygen in Earth's atmosphere is not able to absorb ultraviolet radiation. It is the ozone layer, made up of O3 molecules, that absorbs most of the Sun's harmful UV radiation before it reaches the surface of the Earth.