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The repeated deformation of a body (for example, a moon) due to tides from another body (for example, a planet), which leads to heating of the former's interior. Tidal forces arise due to variations in the gravitational forces between bodies.
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Tidal heating (also known as tidal working or tidal flexing) occurs through the tidal friction processes: orbital and rotational energy is dissipated as heat ...

Tidal heating

Tidal heating occurs through the tidal friction processes: orbital and rotational energy is dissipated as heat in either the surface ocean or interior of a planet or satellite. When an object is in an elliptical orbit, the tidal forces acting on... Wikipedia
tidal heating from www.esi.utexas.edu
"A tide is a distortion in the shape of one body induced by the gravitational pull of another nearby object." In the case of the Earth, the moon and (to a ...
tidal heating from en.wikipedia.org
Tidal heating of Io (also known as tidal working) occurs through the tidal friction processes between Jupiter and its moon. Orbital and rotational energy are ...
This is a naturally occurring process in satel- lites where the driving force is the gravitational pull of the parent planet, and is commonly referred to as ...
tidal heating from www.universetoday.com
Apr 13, 2022 · Tidal heating happens when the gravity of an object is strong enough to flex and bend a planet or moon in orbit around it. All orbiting object ...
The mechanism responsible for heating the interior of Io is called Tidal Heating. This little tutorial is my attempted to explain a rather simplified version ...
Mar 5, 2021 · It's the tidal compression which is generating the heat to make it that way. It's not like Earth where there's large amounts of radioactive ...
tidal heating from astronomy.nmsu.edu
This is becuase stretching and flexing induce frictional heating, similar to rubbing your hands together on a cold day. There is enough tidal heating occurring ...
Tidal heating is the increase in internal thermal content of a planet or moon associated with the differential gravitational force (or tide) between two bodies ...