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nydus/The Theory of Heat RadiationPublic

This text examines the physical distinction between heat conduction and heat radiation, noting that radiation is independent of the medium through which it passes. It establishes that heat rays are physically identical to light rays and applies the principles of experimental optics to the study of thermal radiation.

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equal to N k for T = ∞ . A. EinsteinA. Einstein, Ann. d. Phys. 22, p. 180, 1907. Compare also M. Born und Th. von Kárman, Phys. Zeitschr. 13, p. 297, 1912. has made an important application of this equation to the heat capacity of solid bodies, but a closer discussion of this would be beyond the scope of the investigations to be made in this book.

For the constants α and γ in the expression [eqn:(220)] (220) for the distribution density w we find from [eqn:(221)] (221): α=ehνkT1γ=ehνkT\Label[eqn](227)\upshape (227) and finally for the entropy S of our system as a function of temperature: S=kN{hνkTehνkT1log(1ehνkT)}.\Label[eqn](228)\upshape (228)

[Direct Calculation of the Entropy] IVDirect Calculation of the Entropy in The Case of Thermodynamic Equilibrium

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