Dielectric relaxation time behavior of complexed spores: A modified equation for relaxation time

Authors

  • Dr. Rai Chandra Shekhar Prasad Assistant Professor, Department of Physics, Government Engineering College, Aurangabad, Bihar Author
  • Dr. Yogendra Kumar Assistant Professor, Department of Physics, Gaya College of Engineering, Gaya, Bihar Author

DOI:

https://doi.org/10.29070/m3a8b195

Keywords:

Dielectric relaxation behaviour, Complexed species, relaxation time, Individual molecules, Pyridine pyrrole, Quinaline pyrrole, Quinaline Pyridine indole, Experimental theory

Abstract

A study deals with “Dielectric relaxation time behavior of complexed sporis: A modified equation for relaxation time.” The theory was determination of relaxation time of regard polar molecule gives an average effect representing that over all relaxation. The method was studied that experimental theory of dielectric relaxation behaviour of modified equation of Complexed species for relaxation time. The result was formed that individual molecules, Pyridine pyrrole, Quinaline pyrrole, and Quinaline Pyridine indole, also dielectric the experimental of thermodynamics parameter's etc.

Downloads

Download data is not yet available.

References

Schallamach’s, M.A., Orekhov V.D. and Barenko, E.V. Doklady Akad. Nauk S.S.S.R. 103, 651 (1955)

Shukla et. al., and Kehnokh, M.A., (2009) Zhr. Obshchei Khim 928, pp, 56-76.

Haian, K., Sundar, S. & Graber, P. (2016), Bull. Soc. Chim. Biol. 29, pp116-132.

Elpiner, I.E. & Sokol Skaya, A.V. (2003), Bio. Fiz., 3, 190, V-II –(I) p67.

Mothappa, V. G. & Carlin, B. Ultrasonic of Molecules, 2009 9th Edn., McGraw Hill, New York.

David, S. & Crawford, A.E. (2007) Ultrasonic, 9th Edn., McGraw Hill, New York.

Xin, P.P. & Glichstein, C. (2014), Basic Ultrasonics, Ridar, A new concept, New York/Chapman and Hall London.

Holmes, K. Andrew and Challis E. Richard (1992), J. Chem, Soc. Faraday Trans., 88(3), 443-447.

Downloads

Published

2024-03-01