The equator gets 12 hours of sunlight every day of the year (this only refers to the actual equator, not the Tropics in general, though sunlight doesn't vary much at the low latitudes either).
The two factors affecting sunlight intensity are latitude and time of year
Yes, Mars receives about half the amount of sunlight that Earth does due to its greater distance from the sun. Additionally, Mars has a thinner atmosphere that scatters and absorbs some of the sunlight that reaches the surface, further reducing the amount of light that reaches the ground.
There is no 'why' because that statement is false. The equator is right in the CENTER of the tropics. As the sun wiggles back and forth between the edges of the tropics each year, the equator is the place that receives the MOST average insolation.
the farther a place is from the equator, the less directly the sun hits it, because the earth's axis is tilted. this varying amount of sunlight affects the climate.
The greatest amount of solar energy reaches the surface of the ocean near the equator. This is because the sun's rays are more direct at the equator, resulting in higher solar intensity. Additionally, the equatorial regions generally experience less cloud cover, allowing more sunlight to reach the surface of the ocean.
Sunlight is more concentrated at the equator due to the Earth's curvature, which leads to higher average temperatures. Near the poles, sunlight is spread out over a larger area, resulting in lower temperatures. Additionally, the angle at which sunlight strikes the Earth's surface varies, affecting the amount of heat received.
The equator
About half the amount of sunlight reaches the surface of Mars compared to Earth, due to its greater distance from the Sun. The thin atmosphere on Mars also scatters and absorbs some of the sunlight before it reaches the surface.
The equator gets 12 hours of sunlight every day of the year (this only refers to the actual equator, not the Tropics in general, though sunlight doesn't vary much at the low latitudes either).
The poles receive less solar energy then the equator does because the radiation from the sun has to pass through much more atmosphere to reach the poles than to reach the equator. During that transit, more of the energy is scattered on the path to the poles, and less reaches the ground there.
Latitude
That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.That hemisphere is tilted towards the sun to its greatest amount. It is the summer solstice in that hemisphere. The sun reaches its highest point and you have the most amount of daylight hours. The further from the equator you are, the more hours of daylight there is.
Because of the Earth's positioning and tilt on its axis, the places on equator receive much sunlight, hence hotter, although not longest amount of time with sunlight.
From 0 degrees or the latitude of the equator, it is in line to receive the most direct rays of the sun, the higher up in latitude you go, less heat is given off, because there is a lower amount of direct sunlight entering the atmosphere.The higher the latitude the colder is gets.
Yes, the directness of sunlight at a specific latitude affects the amount of solar energy received. Closer to the equator, sunlight is more direct and intense, resulting in higher solar energy absorption compared to regions farther from the equator where sunlight is more spread out over a larger area.
because it is 0 degrees