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Titlebook: Laser Optoacoustic Spectroscopy; Vladimir P. Zharov,Vladilen S. Letokhov Book 1986 Springer-Verlag Berlin Heidelberg 1986 information.lase

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Vladimir P. Zharov,Vladilen S. Letokhovlso track the behavior of the dust temperature and the chemical evolution of the gas. We model four clouds with different metallicities (10., 10., 10.Z., and 0), and determine the properties of each cloud at the point at which it undergoes gravitational fragmentation. We find evidence for fragmentat
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Vladimir P. Zharov,Vladilen S. LetokhovThese ingredients include again a lattice Boltzmann method describing hydrodynamic long range interactions mediated by the plasma between cells. The cells themselves are simplified as rigid ellipsoidal particles, where we describe the more complex short-range behavior by anisotropic model potentials
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Vladimir P. Zharov,Vladilen S. LetokhovThese ingredients include again a lattice Boltzmann method describing hydrodynamic long range interactions mediated by the plasma between cells. The cells themselves are simplified as rigid ellipsoidal particles, where we describe the more complex short-range behavior by anisotropic model potentials
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Vladimir P. Zharov,Vladilen S. Letokhovate it only once for an iteration subset of each stage of the multi-stage workflow considering several frequency ranges. The performance is shown for a simple transmission geometry application. Source and receiver artifacts were removed sufficiently and the inversion was successfully performed. The
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Vladimir P. Zharov,Vladilen S. Letokhovit a good parallel scalability. The implementation of the code has first been validated by means of one-dimensional premixed flames, where the calculated flame profiles are compared with results from the commercially Chemkin code. To demonstrate the applicability of the code for three-dimensional pr
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