Distribution theory and thin shells in general relativity
Integral containing Heaviside and Dirac delta function in integrand with minus and plus infinity limits, computing value using thin spherical shells in general relativity
Engineering topics
Publications and source records attributed to Cohen, J. M..
Integral containing Heaviside and Dirac delta function in integrand with minus and plus infinity limits, computing value using thin spherical shells in general relativity
Neutron star models based on equation of state for cold degenerate matter, taking into account nuclear forces and clustering
General relativistic expressions for angular momentum and rotational kinetic energy of slowly rotating stars
Rotational properties of neutron star models for Crab Nebula energy source, using expressions for angular momentum and rotational kinetic energy
Equation of state for neutron, proton and electron gas mixture associated with cold matter above white dwarf densities and below nuclear density
Pulsating very dense white dwarfs models noting general relativity
Einstein field equations solutions generated via static spherically symmetric mass and charge distributions
Instability of stellar structures intermediate between white dwarfs and neutron stars shown by stellar models, discussing pulsar signals periodicities
Gravitational collapse of rotating bodies and effect on induced rotation of inertial frames
Field equations for metric of stationary rotating bodies in general relativity
Cauchy problem for scalar-tensor gravitational theory, splitting field equations into initial value equations and evolution equations
Angular momentum generated by body with Kerr rotating metric exterior
Mathematical model eigenvalue calculations for white dwarf stars as possible pulsars
Instability of stellar structures intermediate between dwarfs and neutron stars
Machian effects of axisymmetric stationary rotating bodies in general relativity
Friedman cosmological models describing spatially homogeneous and isotropic universe