Physics
Scientific paper
May 1985
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1985cqgra...2..409v&link_type=abstract
Classical and Quantum Gravity (ISSN 0264-9381), vol. 2, May 1, 1985, p. 409-418. Research supported by the Natural Sciences and
Physics
10
Gravitation Theory, Ideal Fluids, Relativity, Tensors, Conservation Equations, Equations Of State, Euler Equations Of Motion, Variational Principles
Scientific paper
The perfect-fluid energy-momentum tensor in the non-symmetric gravitation theory (NGT) is derived using a fluid variational technique. Two different approaches are used. The first involves conservation of rest mass as a fundamental fluid constraint in the total Lagrangian while the second involves the assumption of an equation of state P = P(rho sub zero). The relativistic fluid conservation equation and the Euler equation of motion for NGT are obtained using the derived fluid tensor.
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