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Titlebook: Diffusion-Wave Fields; Mathematical Methods Andreas Mandelis Textbook 2001 Springer-Verlag New York 2001 Plasma.density.diffusion.experimen

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Diffuse Photon Density Wave Fields in Turbid Media and Tissue,If an . source of radiation is immeresed in a homogeneous, optically strongly scattering medium, the linear transport equation which describes the conservation of scattered photons in a volume element, is given by the Boltzmann transport equation [Case and Zweifel, 1967]
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https://doi.org/10.1007/978-1-4757-3548-2Plasma; density; diffusion; experiment; fields; heat; laser; mathematical method; photoacoustic; photon; scatt
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https://doi.org/10.1007/978-3-663-11269-3sion-wave fields is the consideration of time-domain equations of diffusion. Owing to the relative simplicity and popularity of the thermal-wave field, in the first eight chapters consideration will be given to the time-dependent partial differential equation of heat conduction in three dimensions a
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Entscheidungsorientierte Regierungslehreamental geometric configurations, which are of theoretical interest and of experimental relevance. As was discussed in the Introduction, Green functions are field distributions in response to an impulsive source inside, or on the boundaries of, the spatial region of interest. The mathematical analys
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https://doi.org/10.1007/978-3-663-07664-3one-dimensional thermal-wave problems most frequently encountered in applications. The Green-function approach results in the use of very few constitutive formulas, which are, nevertheless, capable of covering a large spectrum of boundary-value problems. A thermal-wave field generated by a spatially
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