Thermoelectricity
Thermoelectricity is the conversion from heat differentials to electricity or vice versa.
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It is accomplished in one of several ways:
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- The Peltier-Seebeck effect
- Thermionic emission
- Indirectly through magnetohydrodynamics (see Rubidium).
The conducting material is not limited to solids with electrons as charge carriers. Such effects can be observed in conductors where the carriers are ions, or in semiconductors where the carriers are holes or electrons.
Related Topics:
Electron - Semiconductor
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It is the principle behind heat engines, heat pumps, thermocouples, thermal diodes, and solid-state refrigerators, etc.
Related Topics:
Heat engines - Heat pump - Thermocouple - Thermal diode - Refrigerator
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It can be used to electrically measure temperature, or to generate power from a heat source.
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The heat from radioactive decay has been used to electrically power several space probes, in the form of radioisotope thermoelectric generators.
Related Topics:
Space probe - Radioisotope thermoelectric generator
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Thermoelectric power sometimes refers to this direct conversion, but usually just refers to a power plant which converts heat into electricity, through the use of steam turbines or similar devices.
Related Topics:
Thermoelectric power - Steam turbine
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