Vol. 5 (03) pp. 1452-1456 DOI: 10.21474/IJAR01/3652

THERMO ACOUSTIC STUDY OF BINARY LIQUID MIXTURES OF DIMETHYL SULFOXIDE AND TRIETHYLAMINE BY ULTRASONIC INTERFEROMETRIC TECHNIQUES.

  • Department of Electronics, Anand Niketan College, Warora, India 442907.
  • Department of Physics, RTM, Nagpur (MS), India (40001).
30 Downloads 160 Views
Crossref

Abstract

The ultrasonic velocity, density and viscosity have been measured in the binary systems of dimethyl sulfoxide (DMSO) with triethylamine (TEA). From the experimental data, various acoustical parameters such as adiabatic compressibility (b), intermolecular free length (Lf), free volume (Vf), internal pressure (?i), Relaxation time (?), Acoustic impedance (Z) , Gibb’s free energy (?G) and Vander Waal’s constant (b) were calculated. The results are interpreted in terms of molecular interaction between the components of the mixtures.

Keywords

How to Cite This Article

Shweta Rode, V. D. Bhandakkar and O. P. Chimankar. (2017); THERMO ACOUSTIC STUDY OF BINARY LIQUID MIXTURES OF DIMETHYL SULFOXIDE AND TRIETHYLAMINE BY ULTRASONIC INTERFEROMETRIC TECHNIQUES. , International Journal of Advanced Research (IJAR), 5 (03), 1452-1456, ISSN 2320-5407. DOI: https://doi.org/10.21474/IJAR01/3652

Corresponding Author

Shweta Suresh Rode

Article Analytics

References

  1. P S Nikam, B S Jagdale, A B Sawant and Mehdi Hasan, Indian J Pure Appl Phys., 39,(2001),
  2. Shipra Baluja and Swati Oza, Fluid Phase Equilib. 178, (2001), 233.
  3. A Ali, A K Nain and M Kamil, Acta, 274, (1996), 209.
  4. C V Suryanarayana, J Acoust Soc Ind., 13,(1983), 11.
  5. Fletcher A, J Phys Chem., 73,(1969), 2217.
  6. G C Pimental and A L Maclellan, “The Hydrogen Bond, (WH Freeman and Co, San Fransisco) (1960).
  7. M E Hobbs and W W Bates, J Am Chem Soc., 74, (1952), 746.
  8. O P Chimankar, R Shriwas and V A Tabhane, Chem Pharm Res, 3(3),(2011),587-596.
  9. A N Kannappan & V Rajendran , Indian J. Pure &Applied Physics, 30,(1992) ,176.
  10. V D Bhandakkar et al, Pure appl. & Ind. Phys. 3(2),(2013), 80-86.
  11. O P Chimankar, K G Rewatkar & V A Tabhane, Indian J. of Phys., 75 B (2), (2001),141-145.
  12. V D Bhandakkar, O P Chimankar & N R Pawar, of Chemical & Pharmaceutical Research, 4,(2010), 873-877.
  13. G R Bedare, V D Bhandakkar and B M Suryavanshi, IJAPM, 2(3),( 2012),197-200.
  14. O P Chimankar, V A Tabhane, & G K Beghel, Acoust Soc Of India, 34(4), (2007),126.
  15. J Vogal, Practical organic chemistry, 4th edn. Longman, London. (1978).
  16. H Eyring& J F Kincaud, Chem Phys, , DOI: 10.1063/1.1750134, 6, (1938), 620-629.
  17. B Hemalatha, D thesis, Annmalai University, (2004).
  18. Dhana Lakshmi and Sekhars, Ind J. Pure & Appl Ultrasons, 21, 3, (1999), 97.
  19. L E Kinser and A R Fray, Fundamentals of Acoustics. New Delhi Eiley Eastern,(1989).
  20. Ali Hyder S and A K Nain 200. Phys. 74(B1), 63-67.
  21. G K Johri & R L Mishra, J Pure & Appl Phys, 22,(1984), 677.
 

Similar Articles