1) At high latitudes, the curve of the Earth causes the rays to strike a larger surface area, so the same amount of heat is distributed over a larger area. That means it does not warm up as much as at the equator. ... The sun at the equator also warms the surface ocean and causes water to evaporate.
2) It receives less solar radiation than the equator because the angle of incidence is much smaller. The sun's rays do not strike the Earth's surface as directly at the North Pole; they are less focused. ... The difference in the amount of solar energy the land receives causes the atmosphere to move the way it does.
3) Countries, towns and cities located around the equator experience hot weather throughout the year. It is because the sun remains almost directly overhead everyday. Countries that are further North or South of the equator experience a change in seasons, when hot weather follows cold weather. ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1. At the equator, the rays strike the Earth almost perpendicular to its surface, warming up a small area. At high latitudes, the curve of the Earth causes the rays to strike a larger surface area, so the same amount of heat is distributed over a larger area. That means it does not warm up as much as at the equator.
Temperature is inversely related to latitude. As latitude increases, the temperature falls, and vice versa. Generally, around the world, it gets warmer towards the equator and cooler towards the poles.
2. It receives less solar radiation than the equator because the angle of incidence is much smaller. The sun's rays do not strike the Earth's surface as directly at the North Pole; they are less focused. ... The difference in the amount of solar energy the land receives causes the atmosphere to move the way it does.
3. Countries, towns and cities located around the equator experience hot weather throughout the year. It is because the sun remains almost directly overhead everyday.
Answers & Comments
Answer:
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1) At high latitudes, the curve of the Earth causes the rays to strike a larger surface area, so the same amount of heat is distributed over a larger area. That means it does not warm up as much as at the equator. ... The sun at the equator also warms the surface ocean and causes water to evaporate.
2) It receives less solar radiation than the equator because the angle of incidence is much smaller. The sun's rays do not strike the Earth's surface as directly at the North Pole; they are less focused. ... The difference in the amount of solar energy the land receives causes the atmosphere to move the way it does.
3) Countries, towns and cities located around the equator experience hot weather throughout the year. It is because the sun remains almost directly overhead everyday. Countries that are further North or South of the equator experience a change in seasons, when hot weather follows cold weather. ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Explanation:
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Answer:
1. At the equator, the rays strike the Earth almost perpendicular to its surface, warming up a small area. At high latitudes, the curve of the Earth causes the rays to strike a larger surface area, so the same amount of heat is distributed over a larger area. That means it does not warm up as much as at the equator.
Temperature is inversely related to latitude. As latitude increases, the temperature falls, and vice versa. Generally, around the world, it gets warmer towards the equator and cooler towards the poles.
2. It receives less solar radiation than the equator because the angle of incidence is much smaller. The sun's rays do not strike the Earth's surface as directly at the North Pole; they are less focused. ... The difference in the amount of solar energy the land receives causes the atmosphere to move the way it does.
3. Countries, towns and cities located around the equator experience hot weather throughout the year. It is because the sun remains almost directly overhead everyday.
Explanation:
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