The static dielectric constant and the temperature and pressure derivatives of the static dielectric constant of KBr have been measured at several temperatures between 4·3°K and room temperature. The sample was prepared in the form of a three-terminal parallel-plate capacitor and the dielectric constant was determined from measurements of the capacitance with a high precision bridge. The dielectric constant decreases with temperature as does the magnitude of the temperature dependence and the magnitude of the pressure dependence. The data were used to calculate the fixed-volume temperature derivative of the dielectric constant. This quantity, (∂ ln ε/∂T) , exhibiting lattice-anharmonicity effects, decreases slightly from its room temperatur...
Temperature and pressure dependence of the dielectric constant and spontaneous polarization of ferro...
One common and seemingly simple laboratory investigation of capacitance consists of inserting multip...
Cell for dielectric constants measurements in the temperature range between 320 °K and 77.2 °K. We r...
The static dielectric constants and their pressure derivatives of KCl, NaCl, LiF, and MgO have been ...
It is shown that in alkali halides the increase of the static dielectric constant ε with temperature...
Contains fulltext : 91286.pdf (publisher's version ) (Open Access
The static dielectric constant of water was calculated by molecular dynamics simulations using the S...
The dielectric properties determine the electrical characteristics of materials. These properties ar...
According to literature, the dielectric constant (k) of barium titanate, a ferroelectric ceramic ma...
Dielectric resonators are widely used in microwave circuits due to their small size, low loss and hi...
The measurement of the dielectric constant of various substances has recently constituted a major de...
The electrical constants of dielectrics are the power factor and the dielectric constant, the power ...
The dielectric constant and the dielectric loss of potassium acetylacetonate, K(acac), are measured ...
Temperature dependences of longitudinal and transverse dielectric permeability of KDP and DKDP cryst...
The temperature dependence of the dielectric constant of diamond has been measured over the temperat...
Temperature and pressure dependence of the dielectric constant and spontaneous polarization of ferro...
One common and seemingly simple laboratory investigation of capacitance consists of inserting multip...
Cell for dielectric constants measurements in the temperature range between 320 °K and 77.2 °K. We r...
The static dielectric constants and their pressure derivatives of KCl, NaCl, LiF, and MgO have been ...
It is shown that in alkali halides the increase of the static dielectric constant ε with temperature...
Contains fulltext : 91286.pdf (publisher's version ) (Open Access
The static dielectric constant of water was calculated by molecular dynamics simulations using the S...
The dielectric properties determine the electrical characteristics of materials. These properties ar...
According to literature, the dielectric constant (k) of barium titanate, a ferroelectric ceramic ma...
Dielectric resonators are widely used in microwave circuits due to their small size, low loss and hi...
The measurement of the dielectric constant of various substances has recently constituted a major de...
The electrical constants of dielectrics are the power factor and the dielectric constant, the power ...
The dielectric constant and the dielectric loss of potassium acetylacetonate, K(acac), are measured ...
Temperature dependences of longitudinal and transverse dielectric permeability of KDP and DKDP cryst...
The temperature dependence of the dielectric constant of diamond has been measured over the temperat...
Temperature and pressure dependence of the dielectric constant and spontaneous polarization of ferro...
One common and seemingly simple laboratory investigation of capacitance consists of inserting multip...
Cell for dielectric constants measurements in the temperature range between 320 °K and 77.2 °K. We r...