THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr

An inversion procedure is used to obtain from the extended principle of corresponding - states the pair interaction potentials for argon, krypton and its mixture over a tetnperature range from absolute zero to the onset of ionization. The experimentally-reduced viscosity collision integrals obtained...

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Format: Article
Language:English
Published: University of Tehran 1995-06-01
Series:Journal of Sciences, Islamic Republic of Iran
Online Access:https://jsciences.ut.ac.ir/article_31415_a4656f099a4c16afeb228ff287b8dc32.pdf
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collection DOAJ
description An inversion procedure is used to obtain from the extended principle of corresponding - states the pair interaction potentials for argon, krypton and its mixture over a tetnperature range from absolute zero to the onset of ionization. The experimentally-reduced viscosity collision integrals obtained from the corresponding - states correlation have been inverted directly to give the reduced-intermolecular potential energy curves corresponding to the collision integrals. These directly determined potentials are in good agreement with the potentials independently obtained from the molecular-beam scattering measurements, which were fitted by ESMSV for Ar-Ar and Kr-Kr and by SMSV for Ar-Kr
format Article
id doaj-art-cabd3f5f327a4e6e8e5f1989d0d81182
institution DOAJ
issn 1016-1104
2345-6914
language English
publishDate 1995-06-01
publisher University of Tehran
record_format Article
series Journal of Sciences, Islamic Republic of Iran
spelling doaj-art-cabd3f5f327a4e6e8e5f1989d0d811822025-08-20T03:13:36ZengUniversity of TehranJournal of Sciences, Islamic Republic of Iran1016-11042345-69141995-06-016231415THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-KrAn inversion procedure is used to obtain from the extended principle of corresponding - states the pair interaction potentials for argon, krypton and its mixture over a tetnperature range from absolute zero to the onset of ionization. The experimentally-reduced viscosity collision integrals obtained from the corresponding - states correlation have been inverted directly to give the reduced-intermolecular potential energy curves corresponding to the collision integrals. These directly determined potentials are in good agreement with the potentials independently obtained from the molecular-beam scattering measurements, which were fitted by ESMSV for Ar-Ar and Kr-Kr and by SMSV for Ar-Krhttps://jsciences.ut.ac.ir/article_31415_a4656f099a4c16afeb228ff287b8dc32.pdf
spellingShingle THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
Journal of Sciences, Islamic Republic of Iran
title THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
title_full THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
title_fullStr THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
title_full_unstemmed THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
title_short THE EXTENDED LAW OF CORRESPONDING - STATES AND THE INTERMOLECULAR POTENTIALS FOR Ar-Ar, Ar-Kr AND Kr-Kr
title_sort extended law of corresponding states and the intermolecular potentials for ar ar ar kr and kr kr
url https://jsciences.ut.ac.ir/article_31415_a4656f099a4c16afeb228ff287b8dc32.pdf