Canonical average effective potential for viscosity of Non-polar (SO2), Polar (NH3) and Complex polar water (H2O)

Authors(3) :-Jeet Singh, Pankaj Pathak, S.P.Singh

The canonical average effective potential is very useful to computed the viscosity for non polar sulphur dioxide (SO2), polar ammonia (NH3) and complex polar fluids water (H2O). .The agreement between theoretical and experimental results conform the validity of the canonical average effective potential for the viscosity of non polar sulphur dioxide (SO2), polar ammonia (NH3) and complex polar fluids water(H2O).The collision integral Ω(2,2)* [1]for the viscosity (η) of a single dilute polar gas has been obtained for a central pair potential which is an average of the Stockmayer potential [2] over all orientation of the dipoles. The collision integrals show better agreement with the canonical average effective potential as well as experimental value.

Authors and Affiliations

Jeet Singh
Physics Department, S.S.V.P.G.College, Hapur, Uttar Pradesh, India
Pankaj Pathak
Physics Department, Dr.B.R.Ambedkar Government Degree College, Mainpuri, Uttar Pradesh, India
S.P.Singh

L-J Potential, Canonical Average Potential, Viscosity, Collision integral.

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Publication Details

Published in : Volume 4 | Issue 2 | January-February 2018
Date of Publication : 2018-02-28
License:  This work is licensed under a Creative Commons Attribution 4.0 International License.
Page(s) : 892-895
Manuscript Number : IJSRST1841187
Publisher : Technoscience Academy

Print ISSN : 2395-6011, Online ISSN : 2395-602X

Cite This Article :

Jeet Singh, Pankaj Pathak, S.P.Singh, " Canonical average effective potential for viscosity of Non-polar (SO2), Polar (NH3) and Complex polar water (H2O) ", International Journal of Scientific Research in Science and Technology(IJSRST), Print ISSN : 2395-6011, Online ISSN : 2395-602X, Volume 4, Issue 2, pp.892-895, January-February-2018.
Journal URL : https://ijsrst.com/IJSRST1841187
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