see pluto.
I kid but seriously it would be really cold and unable to support life, due to the ammount of water on the planet it would have a ton of ice, in fact it would probably just be a giant sphere of ice.
Different latitudes on Earth receive different amounts of solar energy because of the Earth's spherical shape and its tilted axis. The angle at which sunlight strikes the Earth varies, with higher latitudes receiving sunlight at a more oblique angle, spreading the energy over a larger surface area. This results in less solar energy reaching higher latitudes compared to lower latitudes, which receive sunlight more directly.
Without solar energy, Earth would be an icy and uninhabitable planet. Solar energy drives our climate system, supporting life through photosynthesis, providing warmth, and creating weather patterns. The absence of solar energy would lead to extreme cold temperatures, lack of plant growth, and overall a barren and desolate world.
Different places on Earth receive varying amounts of solar energy due to factors such as the angle of sunlight hitting the surface, the length of the day, and the presence of clouds or atmospheric conditions that can affect sunlight absorption. The Earth's spherical shape also means that the equator receives more direct sunlight, leading to higher solar energy intensity compared to the poles.
The Earth receives about 174 petawatts of solar energy from the sun. This energy is enough to power all human activity on the planet many times over.
Different areas of the Earth have different amounts of heat energy due to variations in solar radiation received, influenced by factors like the angle of sunlight, Earth's tilt, and the presence of clouds or atmospheric gases. These variations in heat energy drive differences in temperature, pressure, and humidity, creating the diverse climate and weather patterns observed on Earth.
explain how earh would be different if it did not receive solar energy
Different latitudes on Earth receive different amounts of solar energy because of the Earth's spherical shape and its tilted axis. The angle at which sunlight strikes the Earth varies, with higher latitudes receiving sunlight at a more oblique angle, spreading the energy over a larger surface area. This results in less solar energy reaching higher latitudes compared to lower latitudes, which receive sunlight more directly.
Without solar energy, Earth would be an icy and uninhabitable planet. Solar energy drives our climate system, supporting life through photosynthesis, providing warmth, and creating weather patterns. The absence of solar energy would lead to extreme cold temperatures, lack of plant growth, and overall a barren and desolate world.
In The Online world It Says That, "Because The Earth is tilted and it rotates."
Different regions of the Earth receive different amounts of solar energy.
Different places on Earth receive varying amounts of solar energy due to factors such as the angle of sunlight hitting the surface, the length of the day, and the presence of clouds or atmospheric conditions that can affect sunlight absorption. The Earth's spherical shape also means that the equator receives more direct sunlight, leading to higher solar energy intensity compared to the poles.
It may be called by different names, for example:* Solar energy * Solar radiation * Electromagnetic waves * Light (actually this is only part of the radiation we receive)
It may be called by different names, for example:* Solar energy * Solar radiation * Electromagnetic waves * Light (actually this is only part of the radiation we receive)
It may be called by different names, for example:* Solar energy * Solar radiation * Electromagnetic waves * Light (actually this is only part of the radiation we 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.
The Earth receives about 174 petawatts of solar energy from the sun. This energy is enough to power all human activity on the planet many times over.
By the sun