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Self-gravitational fluid mechanical methods termed hydro-gravitational-dynamics (HGD) predict plasma fragmentation 0.03 Myr after the turbulent big bang to form protosuperclustervoids, turbulent protosuperclusters, and protogalaxies at the…

Astrophysics · Physics 2008-08-26 Carl H. Gibson , Rudolph E. Schild

Self gravitational fluid mechanical methods termed hydro-gravitational-dynamics (HGD) predict plasma fragmentation 0.03 Myr after the turbulent big bang to form protosuperclustervoids, turbulent protosuperclusters, and protogalaxies at the…

Astrophysics · Physics 2008-04-01 Carl H. Gibson , Rudolph E. Schild

From hydro-gravitational-dynamics theory HGD, gravitational structure formation begins 30,000 years after the turbulent big bang by fragmentation into super-cluster-voids and super-clusters. Proto-galaxies in linear and spiral clusters are…

Astrophysics · Physics 2008-09-15 C. H. Gibson , R. E. Schild

From hydro-gravitational-dynamics theory HGD, gravitational structure formation begins 30,000 years (10^12 s) after the turbulent big bang by viscous-gravitational fragmentation into super-cluster-voids and 10^46 kg…

Cosmology and Nongalactic Astrophysics · Physics 2011-05-10 Carl H. Gibson , Rudy E. Schild

Hydrogravitional-dynamics (HGD) cosmology of Gibson/Schild 1996 predicts proto-globular-star-cluster PGC clumps of Earth-mass planets fragmented from plasma at ~0.3 Myr. Protogalaxies retained the ~0.03 Myr baryonic density existing at the…

Cosmology and Nongalactic Astrophysics · Physics 2011-12-16 Carl H. Gibson , N. Chandra Wickramasinghe , Rudolph E. Schild

A key result of hydrogravitational dynamics cosmology relevant to astrobiology is the early formation of vast numbers of hot primordial-gas planets in million-solar-mass clumps as the dark matter of galaxies and the hosts of first life.…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-19 Carl H. Gibson , N. Chandra Wickramasinghe , Rudolph E. Schild

The standard model for gravitational structure formation in astrophysics, astronomy, and cosmology is questioned. Cold dark matter (CDM) hierarchical clustering cosmology neglects particle collisions, viscosity, turbulence and diffusion and…

Astrophysics · Physics 2007-05-23 Carl H. Gibson

Observations of the interstellar medium by the Herschel, Planck etc. infrared satellites throw doubt on standard {\Lambda}CDMHC cosmological processes to form gravitational structures. According to the Hydro-Gravitational-Dynamics (HGD)…

General Physics · Physics 2012-11-06 Carl H. Gibson

Nonlinear gravitational condensation theory and quasar-microlensing observations lead to the conclusion that the baryonic mass of most galaxies is dominated by dense clumps of hydrogenous planetoids. Star microlensing collaborations fail to…

Astrophysics · Physics 2007-05-23 Carl H. Gibson , Rudolph E. Schild

The standard model of gravitational structure formation is based on the Jeans 1902 acoustic theory, neglecting crucial effects of viscosity, turbulence and diffusion. A Jeans length scale L_J emerges that exceeds the scale of causal…

Cosmology and Nongalactic Astrophysics · Physics 2011-05-19 Rudolph E. Schild , Carl H. Gibson

The gravitational hydrodynamics of the primordial plasma with neutrino hot dark matter is considered as a challenge to the bottom-up cold dark matter paradigm. Viscosity and turbulence induce a top-down fragmentation scenario before and at…

Cosmology and Nongalactic Astrophysics · Physics 2009-12-08 Theo M. Nieuwenhuizen , Carl H. Gibson , Rudy E. Schild

Theory and observations reveal fatal flaws in the standard LambdaCDM model. The cold dark matter hierarchical clustering paradigm predicts a gradual bottom-up growth of gravitational structures assuming linear, collisionless, ideal flows…

Astrophysics · Physics 2009-09-16 C. H. Gibson , T. M. Nieuwenhuizen , R. E. Schild

We explore the conditions prevailing in primordial planets in the framework of the HGD cosmologies as discussed by Gibson and Schild. The initial stages of condensation of planet-mass H-4He gas clouds in trillion-planet clumps is set at…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-19 N. Chandra Wickramasinghe , Jamie H. Wallis , Carl H. Gibson , Rudolph E. Schild

The first structures were proto-voids formed in the primordial plasma. Viscous and weak turbulence forces balanced gravitational forces when the scale of causal connection at time 30,000 years matched the viscous and turbulent Schwarz…

Astrophysics · Physics 2007-05-23 Carl H. Gibson

Observations are compared to conflicting predictions about self-gravitational structure formation by the hydro-gravitational theory (HGT) of Gibson 1996-2003 versus cold-dark-matter hierarchical-clustering-cosmology (CDMHCC) and the Jeans…

Astrophysics · Physics 2007-05-23 Carl H. Gibson , Rudy Schild

The origin of life and the origin of the universe are among the most important problems of science and they might be inextricably linked. Hydro-gravitational-dynamics (HGD) cosmology predicts hydrogen-helium gas planets in clumps as the…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-18 Carl H. Gibson , Rudolph E. Schild , N. C. Wickramasinghe

[Abridged] Over the past two decades observations and theoretical simulations have established a global frame-work of galaxy formation and evolution in the young Universe. Galaxies formed as baryonic gas cooled at the centres of collapsing…

We hypothesise that planets are made by tidal downsizing of migrating giant planet embryos. The proposed scheme for planet formation consists of these steps: (i) a massive young protoplanetary disc fragments at R ~ several tens to hundreds…

Earth and Planetary Astrophysics · Physics 2015-05-19 Sergei Nayakshin

Recent spacecraft observations exploring solar system properties impact standard paradigms of the formation of stars, planets and comets. We stress the unexpected cloud of microscopic dust resulting from the DEEP IMPACT mission, and the…

Cosmology and Nongalactic Astrophysics · Physics 2010-12-30 Rudolph E. Schild , Carl H. Gibson

Planetary systems form in gas-dust protoplanetary discs via the growth of solid bodies. In this paper, we show that the most intriguing stage of such growth --- namely, the transformation of 1-10 m boulders into kilometre-sized…

Earth and Planetary Astrophysics · Physics 2015-06-11 Valeriy N. Snytnikov , Olga P. Stoyanovskaya
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