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Phenomenological equations represent the relationship between pressure (P) and volume (V) which can expressed analytically involving two parameters and which are respectively, the isothermal bulk modulus and its pressure derivative both are zero pressure. This is not always the case for equation of state derived from interionic potentials using some specific potential function for the short range potential energy. For example, the Born-Mayer gives an expotential potential function for the short range potential energy. Equation of state where is a complicated expression involving potential parameters.…mehr

Produktbeschreibung
Phenomenological equations represent the relationship between pressure (P) and volume (V) which can expressed analytically involving two parameters and which are respectively, the isothermal bulk modulus and its pressure derivative both are zero pressure. This is not always the case for equation of state derived from interionic potentials using some specific potential function for the short range potential energy. For example, the Born-Mayer gives an expotential potential function for the short range potential energy. Equation of state where is a complicated expression involving potential parameters.
Autorenporträt
Dr. Sushil Kumar Pathak is an Assistant Professor and Head of the Department of Physics Chintamani at the College of Science-Chadrapur, Maharashtra (India). Gained his Ph.D. from St John¿s College, Agra, awarded by Dr. Bhimrao Ambedakar University, Agra (India) in 2011. Published more than 10 research titles.