Abstract

In 2013, World-Universe Model (WUM) proposed a principally different way to solve the problem of Newtonian Constant of Gravitation measurement precision. WUM revealed a self-consistent set of time-varying values of Primary Cosmological parameters of the World: Gravitation parameter, Hubble’s parameter, Age of the World, Temperature of the Microwave Background Radiation, and the concentration of Intergalactic plasma. Based on the inter-connectivity of these parameters, WUM solved the Missing Baryon problem and predicted the values of the following Cosmological parameters: gravitation G, concentration of Intergalactic plasma, relative energy density of protons in the Medium, and the minimum energy of photons, which were experimentally confirmed in 2015-2018. Between 2013 and 2018, the relative standard uncertainty of G measurements decreased x6. The set of values obtained by WUM was recommended for consideration in CODATA Recommended Values of the Fundamental Physical Constants 2014.

Highlights

  • It doesn’t make any difference how beautiful your guess is, it doesn’t make any difference how smart you are, who made the guess, or what his name is

  • The set of values obtained by World-Universe Model (WUM) was recommended for consideration in CODATA Recommended Values of the Fundamental Physical Constants 2014

  • The Lambda Cold Dark Matter (ΛCDM) model is a parametrization of the Big Bang Model (BBM) in which the universe contains three major components: first, a Cosmological constant Λ associated with Dark Energy; second, the postulated Cold Dark Matter (CDM); and third, Ordinary Matter

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Summary

Introduction

It doesn’t make any difference how beautiful your guess is, it doesn’t make any difference how smart you are, who made the guess, or what his name is. If it disagrees with experiment, it’s wrong. In 2013 WUM proposed principally different way to solve the problem of G measurement precision and made some predictions of values of Primary Cosmological parameters [5] [6] (see Section 3.1)

WMAP Mission Results
Newtonian Constant of Gravitation
Method
Ordinary Matter
Missing Baryon Problem
Energy-Varying Photons
Mass-Varying Neutrinos
Multicomponent Dark Matter
Predicted Distribution of the World’s Energy Density
Hypersphere World-Universe Model
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