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D. C. Agrawal - One of the best experts on this subject based on the ideXlab platform.
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comment on the stefan boltzmann Constant in n dimensional space
Journal of Physics A, 1998Co-Authors: V J Menon, D. C. AgrawalAbstract:The expression for the Stefan-Boltzmann Constant in n-dimensions as obtained by Landsberg and De Vos is modified by the appropriate spin-degeneracy factor of the photon.
V J Menon - One of the best experts on this subject based on the ideXlab platform.
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comment on the stefan boltzmann Constant in n dimensional space
Journal of Physics A, 1998Co-Authors: V J Menon, D. C. AgrawalAbstract:The expression for the Stefan-Boltzmann Constant in n-dimensions as obtained by Landsberg and De Vos is modified by the appropriate spin-degeneracy factor of the photon.
Arnold M. D. - One of the best experts on this subject based on the ideXlab platform.
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The Stefan-Boltzmann Constant re-visited for photons thermally generated within matter
2021Co-Authors: Smith G. B., Gentle A. R., Arnold M. D.Abstract:The Stefan-Boltzmann Constant arose from photon densities inside a cavity, but inside matter photon mode densities are material specific. Photon speeds are governed by the mode they occupy, so mode densities can be expressed in terms of speed. Cavity intensities at temperature \(T_{K}\) combined \(\left[\frac {8\pi k^4}{c^3h^3}\right] T_{K }^4\) with \(({\pi^4}/{15})\). A material dependent number from summation of internal photon spectral energy densities replaces \(\frac {\pi^4}{15}\). Spectral densities are presented for water, germanium and silver. Output intensity combines revised hemispherical emittance \(\epsilon_{Q,H}\) based on these densities, with universal factor \(\left[\frac {8\pi k^4}{c^3h^3}\right] T_{K }^4\). Emitted radiance after interface internal reflectance of directionally invariant internal radiance elements defines \(\epsilon_{Q,H}\). Predicted internal densities are verifiable using measured external spectral intensities, provided refraction upon exit is accounted for in emissivity, which the Kirchhoff rule neglects. Virtual bound state photon resonances are predicted in dielectrics and observed.Comment: 20 page
Jose Alvarez Garcia - One of the best experts on this subject based on the ideXlab platform.
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the stefan boltzmann Constant obtained from the i v curve of a bulb
European Journal of Physics, 2013Co-Authors: Francisco J Abellan, Jose A Ibanez, Ramon P Valerdi, Jose Alvarez GarciaAbstract:In this paper a process for estimating the Stefan–Boltzmann law Constant is proposed through a study of the current–voltage curve of a 12 V bulb. The least squares treatment of the data allows the value of the Constant to be determined with results that are in accordance with the data in the literature.
Smith G. B. - One of the best experts on this subject based on the ideXlab platform.
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The Stefan-Boltzmann Constant re-visited for photons thermally generated within matter
2021Co-Authors: Smith G. B., Gentle A. R., Arnold M. D.Abstract:The Stefan-Boltzmann Constant arose from photon densities inside a cavity, but inside matter photon mode densities are material specific. Photon speeds are governed by the mode they occupy, so mode densities can be expressed in terms of speed. Cavity intensities at temperature \(T_{K}\) combined \(\left[\frac {8\pi k^4}{c^3h^3}\right] T_{K }^4\) with \(({\pi^4}/{15})\). A material dependent number from summation of internal photon spectral energy densities replaces \(\frac {\pi^4}{15}\). Spectral densities are presented for water, germanium and silver. Output intensity combines revised hemispherical emittance \(\epsilon_{Q,H}\) based on these densities, with universal factor \(\left[\frac {8\pi k^4}{c^3h^3}\right] T_{K }^4\). Emitted radiance after interface internal reflectance of directionally invariant internal radiance elements defines \(\epsilon_{Q,H}\). Predicted internal densities are verifiable using measured external spectral intensities, provided refraction upon exit is accounted for in emissivity, which the Kirchhoff rule neglects. Virtual bound state photon resonances are predicted in dielectrics and observed.Comment: 20 page