In this study we obtain a linear variation of the specific heat Cp with the Raman frequency shifts 1/v (partial derivative v/partial derivative T)p for the rotatory lattice (librational) mode in the ammonia solid II near the melting point. From this linearity, we deduce values of the slope dP(m)/dT for the pressures of 3.65, 5.02 and 6.57 kbars in the ammonia solid II. Our calculated value of dP(m)/dT for the pressure of 3.65 kbar, is in good agreement with the experimentally measured value in the P-T phase diagram of this crystalline system. This indicates that the first Pippard relation modified for the rotatory lattice mode in the ammonia solid II, is satisfactory near the melting point
We establish here a linear variation of the specific heat C-p with the frequency shifts (l/v)(partia...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...
We relate in this study the thermal expansivity, alpha(p), to the Raman frequency shift (1/V)(delta ...
This study gives our calculation for the frequency shifts 1/V(partial derivative v/partial derivativ...
We correlate here the thermal expansivity alpha(p) to the frequency shifts 1/v(partial derivative v/...
We examine here our spectroscopic modification of the Pippard relation which is a linear variation o...
The specific heat C-p is correlated to the frequency shifts (1/v)(partial derivative v/partial deriv...
A correlation between thermal expansivity alpha(p) and frequency shifts (1/nu)(partial derivative nu...
This study gives our calculations for the Raman frequencies of the rotatory lattice mode in ammonia ...
This study gives our calculations of the Raman frequencies for the rotatory lattice (librational) mo...
We have performed in this study the calculation of the Raman frequencies for two translational modes...
Author Institution: Department of Physics, Istanbul Technical UniversityWe calculated here the Raman...
Author Institution: Department of Physics, Istanbul Technical UniversityWe calculated here the Raman...
Pippard relations in terms of the frequency shifts of the v(7) (40 cm(-1)) lattice mode, are establi...
We establish here a linear variation of the specific heat C-p with the frequency shifts (l/v)(partia...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...
We relate in this study the thermal expansivity, alpha(p), to the Raman frequency shift (1/V)(delta ...
This study gives our calculation for the frequency shifts 1/V(partial derivative v/partial derivativ...
We correlate here the thermal expansivity alpha(p) to the frequency shifts 1/v(partial derivative v/...
We examine here our spectroscopic modification of the Pippard relation which is a linear variation o...
The specific heat C-p is correlated to the frequency shifts (1/v)(partial derivative v/partial deriv...
A correlation between thermal expansivity alpha(p) and frequency shifts (1/nu)(partial derivative nu...
This study gives our calculations for the Raman frequencies of the rotatory lattice mode in ammonia ...
This study gives our calculations of the Raman frequencies for the rotatory lattice (librational) mo...
We have performed in this study the calculation of the Raman frequencies for two translational modes...
Author Institution: Department of Physics, Istanbul Technical UniversityWe calculated here the Raman...
Author Institution: Department of Physics, Istanbul Technical UniversityWe calculated here the Raman...
Pippard relations in terms of the frequency shifts of the v(7) (40 cm(-1)) lattice mode, are establi...
We establish here a linear variation of the specific heat C-p with the frequency shifts (l/v)(partia...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...
Author Institution: Department of Physics, Istanbul Technical UniversityWe have studied here the vol...