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Physical Mathematics

ISSN: 2090-0902

Open Access

Volume 12, Issue 1 (2021)

Editor Note Pages: 1 - 1

Editor Note-Volume-11-Physical Mathematics

Richard Kerner

I am pleased to mention that during the year 2020, all issues of Journal of Physical Mathematics, volume 11 were published online well within the time and the print issues were also brought out and dispatched within 30 days of publishing the issue online. The objective of JPM is to publish up-to-date, high-quality and original research papers alongside relevant and insightful reviews. Impact factor of JPM for the year 2019-2020 was 0.332.

Awards 2021 Pages: 1 - 2

Award announcement for Astronomy, Astrophysics & Astrobiology

Mustafa Khamis

Conference series llc ltd. is organizing “2nd International Conference on Astronomy, Astrophysics & Astrobiology” which is going to be held in the month of December 02-03, 2020 at Auckland, Newzealand. The conference offers emerging scholar awards to outstanding researchers, scientists, exceptional graduates or early academicians who have distinctive enthrallment towards the conference theme. The Award strives in providing a strong professional development opportunity for early career academicians meeting experts in the field, interacting with colleagues from other parts of the world, and creating networks and long-term relations.

Extended Abstract Pages: 1 - 1

Does dark matter really exist?

Yukio Tomozawa

The physical metric in general relativity has been introduced by the author as the exact solution of Einstein equation that fits the observation of time delay measurement of the solar system. Applying the physical metric to the galaxy with a simple assumption of mass density and pressure, one can find that the gravity acts a repulsive force inside the galaxy. The attractive force inside the galaxy is provided by negative pressure. As a result, one gets the velocity distribution in the galaxy that is very similar to the observed one. This indicates that the necessity of dark matter from the velocity distribution of the galaxy does not exist. If you’ve ever read anything from the field of physics, you’ll most likely be aware of the topic of dark energy, or dark matter.This theory is widely accepted among astrophysicists and suggests that around 96% of the universe is unobservable.

Extended Abstract Pages: 1 - 2

The Unified Field 4-Dimensional Relativistic Dirac Equation

Wim Vegt

Albert Einstein, Lorentz and Minkowski together published in 1905 the Theory of Special Relativity and Einstein published in 1915 his Unified Field Theory of General Relativity based on a curved 4-dimensional Space-Time Continuum to integrate the gravitational field and the electromagnetic field in one Unified Field Theory. Since then the Method of Einstein’s Unifying Field Theory has been developed by many others in more than 4 dimensions resulting finally in the wellknown 10-dimensional and 11-dimensional “string theory”. The original Kaluza-Klein theory was one of the first attempts to create a unified field theory. After many years of research, the 11-dimensional Super String Theory did not lead to the fundamental answers on the fundamental questions in Physics. Why do elementary particles have the exact numbers for mass, charge and spin? To find answers a new path in Physics has been chosen. A path that has been based on a fundamental property in our universe. The fundamental property of Equilibrium.

Extended Abstract Pages: 1 - 1

Self-Similar Formation of Quantum Coherent Correlated States-the Universal Method for Solving and Optimization of LENR Problems

Vladimir Vysotskii

In the report the applications of quantum coherent correlated states (CCS) of interacting particles for solving of main problems of nuclear reactions at low energy (LENR) are discussed and short analysis of successful LENR experiments is done. Among well-known LENR problems and paradoxes three are the most important: a) Absolutely anomalous and mysterious for "standard" nuclear physics the very high (giant) Coulomb barrier transparency for light, intermediate and heavy charged particles at low (e.g. room temperature) energy; b) Absolute ban on realization of those channels of LENR that lead to the formation of radioactive daughter isotopes; c) Very sharp suppression of intensity of gamma-ray radiation during LENR (compared to the same reactions carried out at high energy).

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