the rotation and tilt
The primary factor that affects the amount of solar energy reaching any point on Earth's surface is the angle at which the sunlight hits the surface. This angle, known as the solar zenith angle, determines the path length through the atmosphere that the solar radiation must travel, affecting the amount of absorption and scattering that occurs. The higher the angle, the more direct the sunlight, and the more energy that reaches the surface.
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.
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.
The latitude of an area on Earth most influences the amount of solar energy it receives. Areas closer to the equator receive more direct sunlight and therefore more solar energy, while areas farther from the equator receive less direct sunlight and less solar energy. Other factors such as cloud cover, air pollution, and elevation can also affect the amount of solar energy received.
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.
well what affects solar energy i dont have a clue the question is what affects the amount of the solar energy that the planet receives.....
The directness of sunlight affects the amount of energy received on Earth. When sunlight is more direct, less of it is scattered or absorbed by the atmosphere, leading to higher energy levels. This is why regions closer to the equator receive more direct sunlight and have higher energy potential compared to regions further from the equator where sunlight is less direct.
No
The total amount of energy in any process will neither increase nor decrease.
The mass, and the speed.
The primary factor that affects the amount of solar energy reaching any point on Earth's surface is the angle at which the sunlight hits the surface. This angle, known as the solar zenith angle, determines the path length through the atmosphere that the solar radiation must travel, affecting the amount of absorption and scattering that occurs. The higher the angle, the more direct the sunlight, and the more energy that reaches the surface.
Different batteries have different capacities, and will therefore store a different amount of energy - and require a different power if you want to charge them in the same time.
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.
The angle of the sun affects climates by determining the amount of solar energy received at a location. Higher sun angles result in more direct sunlight and warmer temperatures, while lower angles lead to indirect sunlight and cooler temperatures. This variation in solar energy influences factors such as temperature, seasonality, and weather patterns in different regions.
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.
The wavelength of light affects photosynthesis by determining the amount of energy available for the process. Different wavelengths of light provide different amounts of energy, with red and blue light being most effective for photosynthesis. This energy is used by plants to convert carbon dioxide and water into glucose and oxygen.
it gives you energy and some foods have different affects on your body