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摘要:
The purpose of this paper is to show how the dark matter predictions of FSC differ with respect to the standard cosmology assertion of a universal dark matter-to-visible matter ratio of approximately 5.3-to-1. FSC predicts the correct ratio to be approximately 9-to-1, based primarily on the universal observations of global spatial flatness in the context of general relativity. The FSC Friedmann equations incorporating a Lambda?Λ?cosmological term clearly indicate that a spatially flat universe must have equality of the positive curvature (matter mass-energy) and negative curvature (dark energy) density components. Thus, FSC predicts that observations of the Milky Way and the nearly co-moving galaxies within 100 million light years will prove the 5.3-to-1 ratio to be incorrect. The most recent galactic and perigalactic observations indicate a range of dark matter-to-visible matter ratios varying from essentially zero (NGC 1052-DF2) to approximately 23-to-1 (Milky Way). The latter ratio is simply astonishing and promises an exciting next few years for astrophysicists and cosmologists. Within the next few years, the mining of huge data bases (especially the Gaia catalogue and Hubble data) will resolve whether standard cosmology will need to change its current claims for the cosmic energy density partition to be more in line with FSC, or whether FSC is falsified. A prediction is that standard cosmology must eventually realize the necessity of resolving the tension between their flatness observations and their assertion of dark energy dominance. The author makes the further prediction that FSC will soon become the new paradigm in cosmology.
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篇名 Predicted Dark Matter Quantitation in Flat Space Cosmology
来源期刊 现代物理(英文) 学科 地球科学
关键词 FLAT SPACE COSMOLOGY Standard COSMOLOGY COSMOLOGY Theory Dark Matter Cosmic Microwave Background PLANCK Collaboration GRAVITATIONAL Entropy Black Holes
年,卷(期) 2018,(8) 所属期刊栏目
研究方向 页码范围 1559-1563
页数 5页 分类号 P1
字数 语种
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FLAT
SPACE
COSMOLOGY
Standard
COSMOLOGY
COSMOLOGY
Theory
Dark
Matter
Cosmic
Microwave
Background
PLANCK
Collaboration
GRAVITATIONAL
Entropy
Black
Holes
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研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
现代物理(英文)
月刊
2153-1196
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
1826
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