The thermal expansion of magnesium oxide has been measured below room temperature from 140°K to 284.5°K, using an interferometric method. The accuracy of measurement is better than 3% in the temperature range studied. The agreement of these results with Durand's is quite good, but consistently higher over most of the range by 2 or 3%, for the most part within the estimated experimental error. The Grüneisen parameter remains constant at about 1.51 over the present experimental range; but an isolated measurement of Durand at 85°K suggests that at lower temperatures it rises quite sharply above this value. This possibility is therefore investigated theoretically. With a non-central force model to represent MgO, γ(−3) and γ(2) are calculated an...
The generalized Gruneisen parameters (gamma'(j)) an(gamma"(j)) for cadmium and zirconium were calcul...
We report measurements about the thermal conductivity (K) in magnesium oxide (MgO) powders in a rang...
The generalized Gruneisen parameters γ″ = - ∂ log ω/∂ε″ and γ′ = - ∂ log ω/∂ε′ have been calculated ...
The literature cited covers a comprehensive survey on temperature measurement methods in thermal exp...
An investigation into the effect of oxygen on the three ultraviolet optical absorption bands in magn...
X-ray line widths, surface areas and heats of solution of MgO samples prepared by vacuum dehydration...
The effects of temperature variation on the spin-Hamiltonian parameters of several paramagnetic ions...
International audienceWe derive new temperature dependent Sellmeier equations for the extra-ordinary...
Compounds which crystallize with the cubic spinel structure are believed to be unusually anharmonic....
A thermodynamically complete ab initio equation of state (EOS) for MgO was obtained using electron d...
The temperature dependence of the Grüneisen parameter of MgSiN2 (80¯1600 K), AlN (90¯1600 K), and -S...
International audienceThe p-V-T equation of state of magnesium metal has been measured up to 20 GPa ...
The purpose of this investigation was the determination of the nature of certain imperfections in ma...
The effects of high temperature on the electronic structure of a material consist of two major contr...
The particle growth characteristics of active MgO in the size range 70-400 Å have been studied by t...
The generalized Gruneisen parameters (gamma'(j)) an(gamma"(j)) for cadmium and zirconium were calcul...
We report measurements about the thermal conductivity (K) in magnesium oxide (MgO) powders in a rang...
The generalized Gruneisen parameters γ″ = - ∂ log ω/∂ε″ and γ′ = - ∂ log ω/∂ε′ have been calculated ...
The literature cited covers a comprehensive survey on temperature measurement methods in thermal exp...
An investigation into the effect of oxygen on the three ultraviolet optical absorption bands in magn...
X-ray line widths, surface areas and heats of solution of MgO samples prepared by vacuum dehydration...
The effects of temperature variation on the spin-Hamiltonian parameters of several paramagnetic ions...
International audienceWe derive new temperature dependent Sellmeier equations for the extra-ordinary...
Compounds which crystallize with the cubic spinel structure are believed to be unusually anharmonic....
A thermodynamically complete ab initio equation of state (EOS) for MgO was obtained using electron d...
The temperature dependence of the Grüneisen parameter of MgSiN2 (80¯1600 K), AlN (90¯1600 K), and -S...
International audienceThe p-V-T equation of state of magnesium metal has been measured up to 20 GPa ...
The purpose of this investigation was the determination of the nature of certain imperfections in ma...
The effects of high temperature on the electronic structure of a material consist of two major contr...
The particle growth characteristics of active MgO in the size range 70-400 Å have been studied by t...
The generalized Gruneisen parameters (gamma'(j)) an(gamma"(j)) for cadmium and zirconium were calcul...
We report measurements about the thermal conductivity (K) in magnesium oxide (MgO) powders in a rang...
The generalized Gruneisen parameters γ″ = - ∂ log ω/∂ε″ and γ′ = - ∂ log ω/∂ε′ have been calculated ...