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ISSN: 2641-6921

Modern Approaches on Material Science

Perspective(ISSN: 2641-6921)

The Ether and The Electrical Universe Volume 2 - Issue 4

Paul TE Cusack*

  • BScE, DULE, 23 Park Ave, Saint John, NB E2J 1R2, Canada

Received: February 26, 2020;   Published: March 10, 2020

*Corresponding author: Paul TE Cusack, BScE, DULE, 1641 Sandy Point Rd., Saint John, NB E2K 5E, Canada


DOI: 10.32474/MAMS.2020.02.000143

Abstract PDF

Abstract

Here we provide some basic calculations on the ellipsoid universe and the matter that makes it up called Ether. We see that, if we model the Ether as Teflon, a polymer, that certain constants drop out ion the calculations. This paper is to be read with the Astrotheology series by the same author, especially the paper The Ether: The Universal Material.

Keywords: Ether; Capacitance; Teflon; Polytetrafluoroethylene

Introduction

Using well established formula from the Physics of Electricity, we show that the ellipsoid universe can be modeled as a giant capacitor with the characteristics of Teflon [1,2]. We calculate the Mass Gap; Forces; Power and Capacitance.

Density ρ=2200 kg/m3 (light weight concrete)
Young’s modulus E=0.5GPa cf 0.4233
Bulk Resistance =1018
Coefficient of Friction=0.05-0.10=μ (third Lowest)
Dielectric Strength 60MV/m=α
Magnetism 10.28 (10-6)
Note that Teflon is similar in structure to Beryllium Dichloride. The Ether mimics both Teflon and BeCl2. Note also that Teflon has the third lowest coefficient of friction. This property is conducive to the Super force generating space as we have shown above.
Permittivity of Free space

Figure 1: Magnetic Energy Density.

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Figure 2: Torus Universe.

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Ln (4.482) = Ln (2l / r)
1.5 = 2(4 / 3) / r
r = 1.777 = sqrt Pi
Power PP = i ^ 2 R
1.777 = (4 / 3) ^ 2R
R = 3.159 ~ Pi = Cap.
For a loop (Torus Universe)
l = 4 / 3
r = 1.777
Circumference = 2π R
L = 2π (1.777) = 1.116
= 1 / c ^ 2
Short Circuit Power:

Conclusion

We see that the field of electricity provides basic formula that can be used to model the ellipsoid universe.

References

  1. Cusack PTE (2016) The Ether: The Universal Material. Fluid Mech Open Acc 3: 132.
  2. Benenson, W, Harris JW, Stöcker H, Lutz H(2012) Handbook of Springer New York, USA.

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