Statistics – Computation
Scientific paper
May 1987
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1987ap%26ss.133..197k&link_type=abstract
Astrophysics and Space Science (ISSN 0004-640X), vol. 133, no. 1, May 1987, p. 197, 198.
Statistics
Computation
1
Angular Momentum, Computational Astrophysics, Cosmology, Dwarf Galaxies, Eigenvalues, Asteroids, Hubble Constant, Light Speed, Plancks Constant, Stars
Scientific paper
A reasonable set of characteristic actions with the functional form (h/2 pi)(s) = f(G/H) (where G is the Newtonian gravitational constant and H is the Hubble parameter) is proposed which is constant throughout the evolution of the universe. It is found that the characteristic actions with s = 1, 2, and 3 correspond to the angular momentum of galaxies, stars, and larger asteroids, respectively, and that the action with s = 0 may correspond to the scale of the universe. It is noted that if the typical mass of a dwarf galaxy is substituted in the relation for the mass of the universe, a result similar to that of DerSarkissian (1984), is derived which might be considered to be a quantum of action on the galactic scale.
Arai Kenzo
Kaminisi Keisuke
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