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Hydro-gravitational-dynamics cosmology is crucial to astrobiology and the biological big bang at two million years

机译:重力流体动力学宇宙学对于200万年的天体生物学和生物大爆炸至关重要

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Hydro-Gravitational-Dynamics (HGD) cosmology predicts that the 10~(12) s (30 Kyr) H-He~4 plasma protogalaxies become, by viscous fragmentation, proto-globular-star-cluster PGC clumps of a trillion small planets, at the 10~(13) s transition to gas. Larger planets and stars result from mergers of these hot 3000 K hydrogen planets in the PGCs. Stardust oxides of life chemicals C, N, O, Fe, Si seed the planets when the stars explode as supernovae. Hydrogen reduces the metal oxides and silicates to metal and rocky planet cores with massive hot water oceans at critical water temperature 647 K in which organic chemistry and life can develop. Because information is continually exchanged between the merging planets, they form a cosmic soup. The biological big bang occurs between 2 Myr when liquid water rains hot deep oceans in the cooling cosmos, and 8 Myr when the oceans freeze. Thus, HGD cosmology explains the Hoyle/Wickramasinghe concept of cometary panspermia by giving a vast, hot, nourishing, cosmological primordial soup for abiogenesis, and the means for transmitting the resulting life forms and their evolving RNA/DNA mechanisms widely throughout the universe. A primordial astrophysical basis is provided for astrobiology by HGD cosmology. Concordance ACDMHC cosmology is rendered obsolete by the observation of complex life on Earth.
机译:水动力引力动力学(HGD)宇宙学预测,通过粘性分裂,10〜(12)s(30 Kyr)H-He〜4等离子体原星系将变成一万亿个小行星的原球状星团PGC团簇,在10〜(13)s转变为气体。这些炽热的3000 K氢行星在PGC中的合并产生了更大的行星和恒星。当恒星爆炸为超新星时,生命化学物质C,N,O,Fe,Si的星尘氧化物会播种行星。在临界水温647 K下,氢气会通过大量热水将金属氧化物和硅酸盐还原为金属和岩石行星核,从而发展有机化学和生命。因为信息在不断合并的行星之间不断交换,所以它们形成了一个宇宙汤。生物大爆炸发生在液态水在冷却的宇宙中向深海加热时的2 Myr和海洋冻结时的8 Myr之间。因此,HGD宇宙学解释了霍伊尔/维克拉玛辛格的彗星泛精症的概念,它给出了巨大的,热的,滋养的,宇宙生物学的原始生物汤,并解释了由此产生的生命形式及其在整个宇宙中广泛传播的生命形式及其不断发展的RNA / DNA机制的方法。 HGD宇宙学为天体生物学提供了原始的天体物理学基础。通过观察地球上复杂的生命,协和ACDMHC宇宙学变得过时了。

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