31Jan 2017

PHASE TRANSITION IN AND

  • Department of physics, university of Eldoret Kenya.
  • Abstract
  • Keywords
  • References
  • Cite This Article as
  • Corresponding Author

Thermodynamic properties of and have been calculated using an intergrated nuclear model substituted into the specific heat capacity formula. The transition temperature is obtained from the graphs of specific heat verses temperature. The transition temperature for is and for .


  1. kenneth shultis and Richard E. Faw, “Fundamentals of nuclear sciences and engineering” 2002
  2. Cooper, L. N., R. L. Mills, and A. M. Sessler, 1959, Phys. Rev. 114, 1377.
  3. Emery, V. J., and A. M. Sessler,1960, Phys. Rev. 119.
  4. Migdal, A., 1959, Nucl.Phys.13, 655.
  5. K.M, 1962,On Superfluidity and phase transition in Atomic Nucleus.Progress of theoretical Physics. Japan vol. 28, P205 and Proc of the National Institute of Sciences of India, Vol. 29 (1963) P 294.
  6. Hewish, A., J. S. Bell, J. D. H. Pilkington, P. F. Scott, and R. A. Collins, 1968, Nature 217, 709.
  7. Ghahramany, sh. Gharaati, M.Ghanaatian. “ New approach to nuclear binding energy in integrated nuclear model.”
  8. Cottingham W.N., Greenwood D.A. “An introduction to Nuclear physics.” Cambridge. Cambridge univ. Press, 2001
  9. Von Weizsacker C.F.//Z. Physik. 1935. Vol 96, pp431.

[K.K. Sirma, J.R. Faith and W.K Cheruiyot. (2017); PHASE TRANSITION IN AND Int. J. of Adv. Res. 5 (Jan). 2636-2639] (ISSN 2320-5407). www.journalijar.com


kenneth kipchumba sirma
university of eldoret

DOI:


Article DOI: 10.21474/IJAR01/3054      
DOI URL: https://dx.doi.org/10.21474/IJAR01/3054