A Time Dependent Quasi One Dimensional Analysis Of Population Inversions In An Expanding Gas

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A Time-dependent Quasi-one-dimensional Analysis of Population Inversions in an Expanding Gas

A Time-dependent Quasi-one-dimensional Analysis of Population Inversions in an Expanding Gas
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Total Pages : 70
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ISBN-10 : UOM:39015095150564
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Book Synopsis A Time-dependent Quasi-one-dimensional Analysis of Population Inversions in an Expanding Gas by : John David Anderson (Jr.)

Download or read book A Time-dependent Quasi-one-dimensional Analysis of Population Inversions in an Expanding Gas written by John David Anderson (Jr.) and published by . This book was released on 1969 with total page 70 pages. Available in PDF, EPUB and Kindle. Book excerpt: A time-dependent technique for the numerical solution of convergent-divergent, nonequilibrium nozzle flows was used to analyze the rapid, vibrational nonequlibrium, supersonic expansion of CO2-N2-H2O and CO2-N2-He mixtures, wherein the finite rate molecular energy transfer processes can result in a population inversion between the (001) and (100) vibrational energy levels of CO2. Results for such population inversions are presented. Among these, a comparison was made between the present results and the recent results of Basov et al; this comparison indicates that Basov's calculations overestimate the population inversion in an expanding mixture of CO2 and N2. In addition, results are presented from a series of numerical experiments conducted to assess the validity of several simplified methods for computing population inversions. (Author).


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A Time-dependent Quasi-one-dimensional Analysis of Population Inversions in an Expanding Gas
Language: en
Pages: 70
Authors: John David Anderson (Jr.)
Categories: Expansion of gases
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A time-dependent technique for the numerical solution of convergent-divergent, nonequilibrium nozzle flows was used to analyze the rapid, vibrational nonequlibr
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It is well established that population inversions between the (001) and (100) vibrational energy levels of CO2 can be created by rapid expansions of CO2-N2-H2O
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Numerical solutions are given for vibrational population inversions created in CO2-N2-He mixtures due to shock wave heating of a cold gas. The results indicate