From the Helmholtz free energy, the pressure, the mole fraction, the internal energy and the specific heat capacity at constant volume in temperature range of 1 000 to 20 000 K in the plasma formed of insulator vapours of PC and POM for various densities (0.05 kg/m3 to 5 kg/m3) and at LTE are calculated. The virial and Debye-Hückel corrections on pressure are discussed. The graphite formation is studied
Chemically functionalized surfaces may be produced via plasma polymerization, however a high degree ...
The influence of several parameters: vibrational temperature, thermal disequilibrium, pressure, copp...
An extremely accurate analytical expression for electron molar fractions in LTE air plasma...
From the Helmholtz free energy, the pressure, the mole fraction, the internal energy and the specif...
Calculated values of viscosity, thermal conductivity, electrical conductivity, density and specific ...
With the Gibbs free energy minimization method, we determine the molar fraction in a plasma out of t...
With the Gibbs free energy minimization method, we determine the mole fraction of graphite in plasma...
Calculated values of viscosity, thermal conductivity, electrical conductivity, density and specific ...
In the temperature range 5000-30000 K, thermodynamic properties of plasmas from vaporization of Calp...
Composition at equilibrium, electrical and thermal conductivities, and dynamic viscosity coefficient...
The use of plasma in conjunction with silicones is a new application field that allows interesting s...
A tool based on the mass action law was developed to calculate plasma compositions and thermodynamic...
Mass spectrometry is a diagnosis that might aid in the understanding of the chemical kinetic of the ...
At atmospheric pressure, the values of density, enthalpy, specific heat, sonic velocity, viscosity, ...
© 2018 Institute of Physics Publishing. All rights reserved. The composition of the gas formed durin...
Chemically functionalized surfaces may be produced via plasma polymerization, however a high degree ...
The influence of several parameters: vibrational temperature, thermal disequilibrium, pressure, copp...
An extremely accurate analytical expression for electron molar fractions in LTE air plasma...
From the Helmholtz free energy, the pressure, the mole fraction, the internal energy and the specif...
Calculated values of viscosity, thermal conductivity, electrical conductivity, density and specific ...
With the Gibbs free energy minimization method, we determine the molar fraction in a plasma out of t...
With the Gibbs free energy minimization method, we determine the mole fraction of graphite in plasma...
Calculated values of viscosity, thermal conductivity, electrical conductivity, density and specific ...
In the temperature range 5000-30000 K, thermodynamic properties of plasmas from vaporization of Calp...
Composition at equilibrium, electrical and thermal conductivities, and dynamic viscosity coefficient...
The use of plasma in conjunction with silicones is a new application field that allows interesting s...
A tool based on the mass action law was developed to calculate plasma compositions and thermodynamic...
Mass spectrometry is a diagnosis that might aid in the understanding of the chemical kinetic of the ...
At atmospheric pressure, the values of density, enthalpy, specific heat, sonic velocity, viscosity, ...
© 2018 Institute of Physics Publishing. All rights reserved. The composition of the gas formed durin...
Chemically functionalized surfaces may be produced via plasma polymerization, however a high degree ...
The influence of several parameters: vibrational temperature, thermal disequilibrium, pressure, copp...
An extremely accurate analytical expression for electron molar fractions in LTE air plasma...