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Areas closer to the equator receive more direct sunlight and experience higher temperatures compared to areas farther away from the equator. This leads to warmer climates and greater biodiversity in equatorial regions.
Because they receive more direct sunlight
The amount of direct solar energy at different areas of the Earth is affected by factors such as the angle of incoming sunlight, atmospheric conditions like cloud cover and pollution, and the Earth's axial tilt. Areas closer to the equator receive more direct sunlight throughout the year, while areas closer to the poles receive less direct sunlight due to the tilt of the Earth's axis.
Regions of the earth that receive less heat, such as polar regions and higher altitudes, tend to have colder air temperatures compared to areas near the equator. This is due to the angle of the sun's rays and the amount of daylight hours these regions receive, resulting in less direct sunlight and warmth. This leads to cooler temperatures in these areas.
During the summer in the Northern Hemisphere, areas near the Tropic of Cancer receive the most direct sunlight due to the tilt of the Earth's axis. This results in longer daylight hours and more intense sunlight in these regions.
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Plants are typically located in areas where they receive adequate sunlight for photosynthesis. Most plants are positioned in such a way that they receive direct or indirect sunlight throughout the day to carry out their metabolic processes effectively.
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Mixter right-angled forceps are commonly used in surgical procedures for grasping and manipulating delicate tissues or structures in confined spaces, such as during neurosurgery or vascular surgery. The right-angled design allows for better access and visibility in hard-to-reach areas without causing damage to surrounding tissues.
Different areas of Earth receive different amounts of solar radiation due to the angle at which sunlight strikes the Earth's surface. The equator receives more direct sunlight as the sun's rays are more perpendicular, leading to higher solar radiation at the equator. Areas closer to the poles receive less direct sunlight as the rays are more spread out, resulting in lower solar radiation.