Physics
Scientific paper
May 1996
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1996aps..may.f1011v&link_type=abstract
American Physical Society, APS/AAPT Joint Meeting, May 2-5, 1996, abstract #F10.11
Physics
Scientific paper
From these experiments, particles and stationary radiation's (SRs) must have same physical laws. Effectively, the linear properties of a single quantum SR particle model agree with basic physics and all the G tests [Vera, R. A. Int. J. of Th. Phys. 20, 19-50 (1981)]. Coherent wavelet interferences must fix positions, energies and momentum's of particles. Random ones fix linear (non quantized) G field properties. An eventual universe expansion causes a model expansion, due to wavelet redshift or potential increase, by a factor d λ/λ=Hdt=dr/r. This expands waves and atoms in same proportions as the universe, without changing relative values (laws), indefinitely. Thus, anyway, Hubble redshifts do not depend on time. The lineal BHs, after capturing matter and radiation, regenerate free H (jets and explosions) as star clusters and galaxies. Matter must evolve, idefinitely, between gas and BHs states, and vice versa. Most of the universe must be in superdense states, cooled down by BHs, producing low temperature background.
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