Thermoelectric materials and devices: Lectures presented during the course on thermoelectric materials and devices sponsored by the Dept. of Metallurgical Engineering in cooperation with the Office of Special Services to Business and Industry, New York University, New York, N. Y., June 1959 and 1960
Irving B. Cadoff, Edward Miller
Reinhold Pub. Corp., 1960 - Computers - 344 pages
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THE THERMOELECTRIC CIRCUIT Irving Codoff
16 other sections not shown
alloys atoms calculated charge carriers circuit coefficient of performance cold junction conductors contact resistance cooling couple crystal decrease density doping effect efficiency electrical resistivity electron energy entropy equation experimental factor figure of merit fluxes fuel given heat pumping heat pumping rate heat source heat transfer high temperatures hot junction impurity increase ingot insulation ionic irreversible isotopes Joule heat junction temperature lattice liquid longitudinal heat flow melting point metals method mobility Nomograph obtained optimum oxide p-type parameters PbTe Peltier effect Peltier heat perature phonon Phys potential power output radial heat flow radiation radioisotopes ratio reactor result Seebeck coefficient semiconductors shown in Figure specimen surface tellurium temperature difference temperature gradient temperature range thermal conductivity thermal diffusivity thermionic thermo thermocouple thermodynamics thermoelectric cooling thermoelectric devices thermoelectric effects thermoelectric elements thermoelectric materials thermoelectric power thermoelectric properties thermoelement Thomson heat tion ture vacancy vapor voltage watts