Q.What is the angle between the equatorial plane and the orbital plane of
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Start your 14-day free trial to unlock the full solution →Polar satellites orbit perpendicular to the Earth's equatorial plane, making the angle , while geostationary satellites orbit within the equatorial plane itself, resulting in an angle of .
To understand the angle between the equatorial plane and a satellite's orbital plane, we first need to define these two planes.
- Equatorial Plane: This is an imaginary flat plane that passes through the Earth's equator. It is perpendicular to the Earth's axis of rotation.
- Orbital Plane: This is the flat plane in which a satellite orbits the Earth. The orientation of this plane can vary depending on the satellite's purpose.
Now, let's consider each type of satellite:
(a) Polar Satellite
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Purpose of Polar Satellites: Polar satellites are typically used for remote sensing, weather forecasting, and environmental monitoring. Their primary advantage is that they can scan the entire surface of the Earth over multiple orbits.
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Orbit Orientation: To achieve global coverage, a polar satellite's orbit is designed to pass over or very close to the Earth's North and South poles. This means its orbital path runs roughly from pole to pole.
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Angle with Equatorial Plane: Since the Earth's axis of rotation is perpendicular to the equatorial plane, and a polar satellite orbits along a path that includes the poles, its orbital plane must be oriented perpendicular to the equatorial plane.
ImportantThe angle between the equatorial plane and the orbital plane of a polar satellite is .
(b) Geostationary Satellite
- Purpose of Geostationary Satellites: Geostationary satellites are primarily used for communication, broadcasting, and continuous weather monitoring. They are designed to appear stationary in the sky from a fixed point on the Earth's surface.
- Conditions for Geostationary Orbit: For a satellite to appear stationary relative to an observer on Earth, it must satisfy three critical conditions:
- It must orbit in the same direction as the Earth's rotation (west to east).
- Its orbital period must be exactly 24 hours, matching the Earth's rotational period.
- Its orbital plane must coincide with the Earth's equatorial plane. …
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