Statistics – Computation
Scientific paper
May 1994
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1994ap%26ss.215...53c&link_type=abstract
Astrophysics and Space Science, vol. 215, no. 1, p. 53-58
Statistics
Computation
Big Bang Cosmology, Computational Astrophysics, Gravitation Theory, Mass Distribution, Relativistic Effects, Cosmic Dust, Dimensional Analysis, Einstein Equations, Space-Time Functions, Time Dependence
Scientific paper
A class of non-vacuum expanding cosmological solutions of Wesson's five-dimensional (5D) theory of gravity with variable rest mass is derived. The models are spatially homogeneous and isotopic and the source of gravitation is a pressureless fluid (dust) plus a cosmological constant term. The general and unified solution is found for the equations and some properties of different limiting cases are studied. Particularly, it is shown that for null cosmological constant the predicted age of the universe is smaller than the ones of the 4D Flat Robertson-Walker (FRW) models.
Carvalho João C.
Lima A. S. J.
Nelson Ronald O.
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