By the example of molybdenum, the detailed correlation investigation between the volume thermal expansion coefficient, o(T), and the heat capacity, C(T), of the refractory metal is carried out. It is shown that distinct correlation of o(C) takes place not only within the low temperature region where it is linear and is known as the Gruneisen law but also within a much wider temperature region, up to the melting point of the metal. Essential deviation of the o(C) dependency from the low temperature linear behavior takes place when the heat capacity achieves its classical Dulong and Petit limit, 3R
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...
The correlation between the volumetric thermal expansion coefficient (VLEC) o(T ) and specific heat ...
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...
By the example of molybdenum, the detailed correlation investigation between the volume thermal expa...
In continuing the series of publications started by the article about molybdenum, a detailed study o...
In continuing the series of publications started by the article about molybdenum, a detailed study o...
Following the course of previously published series, this work studies in detail the correlation of ...
Following the course of previously published series, this work studies in detail the correlation of ...
Correlation dependence of volumetric thermal expansion coefficient o(T) on heat capacity C(T) for si...
Correlation dependence of volumetric thermal expansion coefficient o(T) on heat capacity C(T) for si...
A detailed analysis of the correlation between the volumetric thermal expansion coefficient o(T) and...
A detailed analysis of the correlation between the volumetric thermal expansion coefficient o(T) and...
The correlation between the volume expansivity beta(T) and heat capacity C(T) of a solid inert gas (...
The correlation between the volume expansivity beta(T) and heat capacity C(T) of a solid inert gas (...
The correlation between the volumetric thermal expansion coefficient (VLEC) o(T ) and specific heat ...
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...
The correlation between the volumetric thermal expansion coefficient (VLEC) o(T ) and specific heat ...
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...
By the example of molybdenum, the detailed correlation investigation between the volume thermal expa...
In continuing the series of publications started by the article about molybdenum, a detailed study o...
In continuing the series of publications started by the article about molybdenum, a detailed study o...
Following the course of previously published series, this work studies in detail the correlation of ...
Following the course of previously published series, this work studies in detail the correlation of ...
Correlation dependence of volumetric thermal expansion coefficient o(T) on heat capacity C(T) for si...
Correlation dependence of volumetric thermal expansion coefficient o(T) on heat capacity C(T) for si...
A detailed analysis of the correlation between the volumetric thermal expansion coefficient o(T) and...
A detailed analysis of the correlation between the volumetric thermal expansion coefficient o(T) and...
The correlation between the volume expansivity beta(T) and heat capacity C(T) of a solid inert gas (...
The correlation between the volume expansivity beta(T) and heat capacity C(T) of a solid inert gas (...
The correlation between the volumetric thermal expansion coefficient (VLEC) o(T ) and specific heat ...
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...
The correlation between the volumetric thermal expansion coefficient (VLEC) o(T ) and specific heat ...
This work presents the detailed joint study of temperature dependences of thermal expansion and heat...