Effect of Magnetic Field on Viscosity and Excess Viscosity of Three Liquid Mixtures

International Journal of Electrical and Electronics Engineering
© 2017 by SSRG - IJEEE Journal
Volume 4 Issue 7
Year of Publication : 2017
Authors : P. Seshu Mani, Prof. S. Vijaya Bhaskara Rao
pdf
How to Cite?

P. Seshu Mani, Prof. S. Vijaya Bhaskara Rao, "Effect of Magnetic Field on Viscosity and Excess Viscosity of Three Liquid Mixtures," SSRG International Journal of Electrical and Electronics Engineering, vol. 4,  no. 7, pp. 10-18, 2017. Crossref, https://doi.org/10.14445/23488379/IJEEE-V4I7P103

Abstract:

Magnetic Field is applied between two fudicial marks of Ostwald Viscometer and flow time is measured with Microcontroller Embedded System. Viscosity and Excess Viscosity are calculated for the three liquid mixtures Benzene + Acetone, Nitrobenzene + Benzene and Nitrobenzene + Acetone. The mole Fraction versus Viscosity and Mole Fraction versus Excess Viscosity graphs are drawn.

Keywords:

 The mole Fraction versus Viscosity and Mole Fraction versus Excess Viscosity graphs are drawn

References:

1. Sunil, Pavan Kumar Bharti, Divya Sharma and Sharma R. C., Z. Naturforsch, 59A, 397-406 ( 2004 ).
2. Hooyman G. J., Mazur P. and De Groot S. R., Physica XXI, 355-359 ( 1955 ).
3. Rosensweig R. E., Kaisert R. and Miskolczy G., J. of Colloid and Interface Sci., 29 (4),680-686 ( 1969 ).
4. Roszkowski A., Bogdan M. Skoczynski W. and Marek B., Measurement of Sci. Review, 8 58-60, ( 2008).
5. Magnrtorheological Fluid, From Wikipedia, the free encyclopedia.
6. Fort, R. J., and Moore, W. R., Trans Faraday Soc., 62, 1112 ( 1996 ).
7. Liler and Kosanovic, Hydrogen Bonding ed. Hadzi, Pergamon Press, London ( 1959 ).
8. Rosensweig, R. E., Kaiser, R., and Miskolczy G., J. 0f Colloid and Interface Sci., 29, 4, 680-686 ( 1969 )
9. Rosensweig, R. E., and Kaiser R., NASA-CR-91684, 238 ( 1967 ).
10. Rosensweig, R. E., Miskolczy, G., and Pellegrino, J., J., AFFDL-TR-162, 126 p ( 1968 ).
11. Mackor, E. L., and Van Der Walls, J. H., J Colloid Sci., 7, 535 ( 1952 ).
12. Rosensweig, R. E.., Miskolczy, G., and Ezekiel, F. D., Machine Design 40 (8), 145-150 ( 1968 ).
13. Resler, E. L. Jr., andRosensweig, R. E., J. Eng. Power 89A,No 3. 399-406 ( 1967 ).
14. Final Report, Contract no. Nass-9431, AVSSD-0222-67- CR, Prepared for Goddard Space Fluight Center, Greenbelt, Maryland, March, 1967.
15. Chaffey, C, E., and Mason, S. G., J. Colloid and Interface Sci., 27, 115 ( 1968 ).
16. Rosensweig, R. E., Nestor, J. W., and Timmins, R. S., Proc. Symp. Series, 5, A.I.Ch.E-Inst. Chem. Eng., London, 104 ( 1965 ).
17. Kruyt, H. R., Colloid Science 1, 343, Elsvier, New York, 1952.
18. Debruyn, H., Rev. Trans. Chim., 61, 863 ( 1942 ). 19. Cowley, M. D., and Rosensweig, R. E., J. Fluid Mech., 30 (4), 671-688 ( 1967 ).
20. Roszkowski, A., Bogdan, M., Skoczynski, W., and Maerk, B., Measurement Sci. Review, 8, (3) , 58-60 ( 2008 ).
21. Carlson, J. D., Magnetorheological Fluid Devices U. S. Patent No. 5,284,330.
22. Lawniczak, A., and Milecki, A., CieczeElektro- I MagnetoreologiczneOrazIchZastosowania w Technice. Poznan, Poland, WydawnictwoPolitechnikiPoznanskiej, (1999 ).
23. Lord Corporation, MRF- 140 CG Magneto-rheological Fluid, Ds7012 (2006 ).
24. Lord Corporation RD-1005-03 Damper DS7017 ( 2006 ).
25. Olszowski A., DoswiadczeniaFizykochemiczne, Wroclaw, Poland, OfficynaWydawniczaPwr,( 2004 ).