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Thousands of artificial satellites orbit the Earth every day at various distances from the Earth. Satellites that orbit the Earth below an altitude of 1,600 km are considered to be orbiting in low-Earth orbit (LEO). Research satellites and Earth observation satellites are usually placed in LEO, and mostly orbit the Earth in elliptical orbits. Navigation satellites are placed in medium-Earth orbit (MEO), ranging from 2,000 km to 36,000 km from the surface of the Earth. Meanwhile, communication satellites orbit the Earth at approximately 36,000 km in geostationary or geosynchronous Earth orbits (GEO).These satellites mostly have circular orbits, and their orbital periods are equal to the Earth's rotation period.

The total energy of satellites in circular orbits is conserved and can be derived using Newton's law of gravitation. In such an orbit, the kinetic energy of the satellite is numerically half of its potential energy, and hence the total energy becomes equal to the negative of kinetic energy. The negative sign here indicates that the satellite is gravitationally bound to the Earth.

In elliptical orbits, since the distance of the satellite from the Earth changes every instant, its kinetic energy and potential energy vary. However, its total energy, the sum of its kinetic and potential energy, remains constant.

This text is adapted from Openstax, University Physics Volume 1, Section 13.4: Satellite Orbits and Energy.

Tags

Satellite EnergyCircular OrbitLow Earth Orbit LEOMedium Earth Orbit MEOGeostationary Orbit GEOKinetic EnergyPotential EnergyTotal EnergyOrbital PeriodNewton s Law Of GravitationGravitational BindingElliptical Orbits

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14.14 : Energy of a Satellite in a Circular Orbit

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14.1 : Gravitation

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14.2 : Newtons Gesetz der Gravitation

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14.3 : Gravitation zwischen kugelsymmetrischen Massen

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14.4 : Schwerkraft zwischen kugelförmigen Körpern

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14.5 : Reduzierte Massenkoordinaten: Isoliertes Zweikörperproblem

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14.6 : Beschleunigung durch Schwerkraft auf der Erde

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14.7 : Beschleunigung durch Schwerkraft auf anderen Planeten

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14.8 : Das scheinbare Gewicht und die Erdrotation

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14.9 : Variation der Beschleunigung aufgrund der Schwerkraft in der Nähe der Erdoberfläche

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14.10 : Potentielle Energie durch Gravitation

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14.11 : Das Prinzip der Überlagerung und des Gravitationsfeldes

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14.12 : Fluchtgeschwindigkeit

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14.13 : Zirkuläre Umlaufbahnen und kritische Geschwindigkeit für Satelliten

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14.15 : Keplers erstes Gesetz der Planetenbewegung

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