Difference between revisions of "Thermodynamic Basis of Electricity in Cancer Growth and other Systems Changing Structure"

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==Abstract==
 
==Abstract==
  
Generalization by this author of Einstein's theory of Brownian motion has revealed that the first and second laws of thermodynamics require the electrification of surfaces, membranes, and other interfaces.  This interesting result explains numerous phenomena, including capillarity, adhesion, atmospheric electricity, coalescence of drops, to mention a few examples.  Accordingly, upon phase change, healing of tissue, and growth of cancer cells, the flow of electric current is a thermodynamically required phenomenon.[[Category:Scientific Paper]]
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Generalization by this author of Einstein's theory of Brownian motion has revealed that the first and second laws of thermodynamics require the electrification of surfaces, membranes, and other interfaces.  This interesting result explains numerous phenomena, including capillarity, adhesion, atmospheric electricity, coalescence of drops, to mention a few examples.  Accordingly, upon phase change, healing of tissue, and growth of cancer cells, the flow of electric current is a thermodynamically required phenomenon.
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[[Category:Scientific Paper|thermodynamic basis electricity cancer growth systems changing structure]]

Latest revision as of 11:25, 1 January 2017

Scientific Paper
Title Thermodynamic Basis of Electricity in Cancer Growth and other Systems Changing Structure
Author(s) Mahmoud A Melehy
Keywords Thermodynamics, Electricity
Published 2004
Journal Proceedings of the NPA
Volume 1
Number 1
Pages 66-70

Abstract

Generalization by this author of Einstein's theory of Brownian motion has revealed that the first and second laws of thermodynamics require the electrification of surfaces, membranes, and other interfaces.  This interesting result explains numerous phenomena, including capillarity, adhesion, atmospheric electricity, coalescence of drops, to mention a few examples.  Accordingly, upon phase change, healing of tissue, and growth of cancer cells, the flow of electric current is a thermodynamically required phenomenon.