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The authors present a general and self-contained theory of iterative algorithms for evaluating transport coefficients in multicomponent gas mixtures, thereby filling a gap left by other books that give preference to pure (mostly monatomic) gases and to binary mixtures. The algorithms will be of interest in theoretical calculations and numerical modeling for fluid mechanics, combustion, crystal growth.

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Produktbeschreibung
The authors present a general and self-contained theory of iterative algorithms for evaluating transport coefficients in multicomponent gas mixtures, thereby filling a gap left by other books that give preference to pure (mostly monatomic) gases and to binary mixtures. The algorithms will be of interest in theoretical calculations and numerical modeling for fluid mechanics, combustion, crystal growth.

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Autorenporträt
The authors present a general and self-contained theory of iterative algorithms for evaluating transport coefficients in multicomponent gas mixtures, thereby filling a gap left by other books that give preference to pure (mostly monatomic) gases and to binary mixtures. The algorithms will be of interest in theoretical calculations and numerical modeling for fluid mechanics, combustion, crystal growth.