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Fluid Mechanics Explains Cosmology, Dark Matter, Dark Energy, and Life

2012/11/02 by Carl H. Gibson, Gibson, Carl H.
Physics and Astronomy · #FOS: Physical sciences #General Physics (physics.gen-ph) #physics.gen-ph

paper · pdf · doi:10.48550/arxiv.1211.0962

12 pages 6 figures, For Proceedings of 10 Aug. 2012 NASA-AMES Symposium: A Universe of Scales: from Nanotechnology to Cosmology, to honor the memory of Minoru Freund

arxiv created 2012/11/02 · arxiv updated 2012/11/06

Abstract

Observations of the interstellar medium by the Herschel, Planck etc. infrared satellites throw doubt on standard ΛCDMHC cosmological processes to form gravitational structures. According to the Hydro-Gravitational-Dynamics (HGD) cosmology of Gibson (1996), and the quasar microlensing observations of Schild (1996), the dark matter of galaxies consists of Proto-Globular-star-Cluster (PGC) clumps of Earth-mass primordial gas planets in metastable equilibrium since PGCs began star production at 0.3 Myr by planet mergers. Dark energy and the accelerating expansion of the universe inferred from SuperNovae Ia are systematic dimming errors produced as frozen gas dark matter planets evaporate to form stars. Collisionless cold dark matter that clumps and hierarchically clusters does not exist. Clumps of PGCs began diffusion from the Milky Way Proto-Galaxy upon freezing at 14 Myr to give the Magellanic Clouds and the faint dwarf galaxies of the 1022 m diameter baryonic dark matter Galaxy halo. The first stars persist as old globular star clusters (OGCs). Water oceans and the biological big bang occurred at 2-8 Myr. Life inevitably formed and evolved in the cosmological primordial organic soup provided by 1080 big bang planets and their hot oceans as they gently merged to form larger binary planets and small binary stars.

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