INTERACTION ENERGY IN GEOMETROSTATICS
Interaction energy in geometrostatics - geometrodynamic description of particles by topological features of empty space-time
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Interaction energy in geometrostatics - geometrodynamic description of particles by topological features of empty space-time
Geometrodynamical description of particles satisfying time-symmetric initial value equations of gravitation and electromagnetism
General relativity lectures concerning geometrodynamics and gravitational radiation, emphasizing geometrization and axisymmetric waves
This textbook on gravitation physics (Einstein's general relativity or geometrodynamics) is designed for a rigorous full-year course at the graduate level. The material is presented in two parallel tracks in an attempt to divide key physical ideas from more complex enrichment material to be selected at the discretion of the reader or teacher. The full book is intended to provide competence relative to the laws of physics in flat space-time, Einstein's geometric framework for physics, applications with pulsars and neutron stars, cosmology, the Schwarzschild geometry and gravitational collapse, gravitational waves, experimental tests of Einstein's theory, and mathematical concepts of differential geometry.
Particle theory in which additive particle labels are defined in geometric terms of classical gauge theories of Yang-Mills type
Rotating masses effect on inertial frames, analyzing stress energy tensor and Schwarzschild geometry
Models of spherically symmetric nonstatic processes, including relativistic collapse to Schwarzschild sphere, constructed by space-time metrics