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1 Kirchhoff's law of thermal radiation, relating emissivit
2 s confirm that the deltaC(P) obtained from a Kirchhoff analysis of DSC data (i.e., deltaH vs Tm) is i
3 ed by absorptive losses in the metal because Kirchhoff's law prescribes that only good absorbers make
4 ann transport equation and using the Beckman-Kirchhoff surface scattering theory with shadowing to pr
5 e stoichiometric matrix, we demonstrate both Kirchhoff's flux law sigma(l)J(l)=0 over a biochemical s
8 tion of the classical GNM, by defining a new Kirchhoff matrix, is the way to improve the residue flex
10 n, described mathematically by the nonlinear Kirchhoff differential equations with boundary condition
16 in delta Cp determined by application of the Kirchhoff relation to DSC data and that determined by th
17 absorptance alpha(lambda), implying that the Kirchhoff's law can adequately describe thermal radiatio
18 are consistent with the conclusion that the Kirchhoff's law of thermal radiation can be extended (wi
23 the D'' region beneath the Cocos plate using Kirchhoff migration of horizontally polarized shear wave
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