High-Temperature Heat Capacity of Orthovanadates Ce1 – xBixVO4
oxides CeO2, Bi2O3, and
V2O5 upon step-by-step burning. The high-temperature heat capacity of Ce1 – x
Synthesis and High-Temperature Heat Capacity of Neodymium Titanate=СИНТЕЗ И ИССЛЕДОВАНИЕ ВЫСОКОТЕМПЕРАТУРНОЙ ТЕПЛОЕМКОСТИ ТИТАНАТА НЕОДИМАDenisova, L. T.,
Kargin, Yu. F.,
Чумилина, Л. Г.,
Ryabov, V. V.,
Belousova, N. V.,
Denisov, V. M. has been determined by differential scanning calorimetry. The experimental C (p) (
T) data have been
Heat Capacity of Holmium Orthovanadate HoVO4 in the Range of 336–1039 K
in the range of 336–1039 K. It is found that the Cp(
T) dependence does not exhibit extreme points, and
the data
Peculiarities of self-diffusion of alkane molecules in kaolinite studied in the wide temperature interval (
T=253-383 K). The translational mobility of alkane molecules
High-Temperature Heat Capacity of Oxides of the CuO–V2O5 SystemCu
V2O6 and Cu2
V2O7 compounds have been produced from initial components CuO and
V2O5 by solid
High-temperature specific heat of Bi2GeO5 and SmBiGeO5 compounds) are measured by differential scanning calorimetry. Basing on the experimental dependences CP = f(
T