Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids

Expressions have been derived which describe the pressure coefficient and temperature coefficient at constant pressure and volume of the "collision factor" s which determines, in Schaaffs' molecular-kinetic theory, the values of the velocity and attenuation coefficient of ultrasonic w...

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Main Author: Eugeniusz SOCZKIEWICZ
Format: Article
Language:English
Published: Institute of Fundamental Technological Research Polish Academy of Sciences 2016-03-01
Series:Archives of Acoustics
Online Access:https://acoustics.ippt.pan.pl/index.php/aa/article/view/3461
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author Eugeniusz SOCZKIEWICZ
author_facet Eugeniusz SOCZKIEWICZ
author_sort Eugeniusz SOCZKIEWICZ
collection DOAJ
description Expressions have been derived which describe the pressure coefficient and temperature coefficient at constant pressure and volume of the "collision factor" s which determines, in Schaaffs' molecular-kinetic theory, the values of the velocity and attenuation coefficient of ultrasonic waves propagating in liquid. The values of the former coefficients have been determined for homologous series of saturated hydrocarbons, alkyl iodides, and benzene derivatives.
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id doaj-art-7e0f5bc6e109417a837766220d6498c8
institution DOAJ
issn 0137-5075
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language English
publishDate 2016-03-01
publisher Institute of Fundamental Technological Research Polish Academy of Sciences
record_format Article
series Archives of Acoustics
spelling doaj-art-7e0f5bc6e109417a837766220d6498c82025-08-20T02:39:20ZengInstitute of Fundamental Technological Research Polish Academy of SciencesArchives of Acoustics0137-50752300-262X2016-03-0134Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquidsEugeniusz SOCZKIEWICZ0Silesian University of TechnologyExpressions have been derived which describe the pressure coefficient and temperature coefficient at constant pressure and volume of the "collision factor" s which determines, in Schaaffs' molecular-kinetic theory, the values of the velocity and attenuation coefficient of ultrasonic waves propagating in liquid. The values of the former coefficients have been determined for homologous series of saturated hydrocarbons, alkyl iodides, and benzene derivatives.https://acoustics.ippt.pan.pl/index.php/aa/article/view/3461
spellingShingle Eugeniusz SOCZKIEWICZ
Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
Archives of Acoustics
title Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
title_full Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
title_fullStr Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
title_full_unstemmed Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
title_short Temperature and pressure changes of the "collision factor" in Schaaffs' molecular-kinetic theory of wave propagation in liquids
title_sort temperature and pressure changes of the collision factor in schaaffs molecular kinetic theory of wave propagation in liquids
url https://acoustics.ippt.pan.pl/index.php/aa/article/view/3461
work_keys_str_mv AT eugeniuszsoczkiewicz temperatureandpressurechangesofthecollisionfactorinschaaffsmolecularkinetictheoryofwavepropagationinliquids