Thoughts on the entanglement of electromagnetism and life: A theoretical study

Author:

Zsarnovszky Attila1

Affiliation:

1. Agribiotechnology and Precision Breeding for Food Security National Laboratory, Department of Animal Physiology and Health, Institute of Physiology and Nutrition, Hungarian University of Agriculture and Life Sciences, Gödöllő, Hungary

Abstract

AbstractDissection of the matter into its constituents leads us to the smallest particles that we know. These particles form a material structure that is determined by the electromagnetic field generated and carried by those particles. Changes in any of the two major constituents leads to changes in that material system, be it a living organism or a lifeless object. The latter statement carries the mystery of life that is born from a continuous and programmed series of system changes fuelled by an energy source with a yet unknown functioning mechanism. The present work is a theoretical approach towards the understanding and potential discovery of the aforementioned, not-yet-known cellular energetic mechanism. Understanding the energetic basis of intracellular biochemistry is equally important in human and animal therapeutics. Additionally, as all such discoveries offer novel solutions in various fields of the global industry, the final outcome of this theoretical work also brings about the idea of a new discovery in electronics industry.

Publisher

Akademiai Kiado Zrt.

Reference6 articles.

1. Structure at 2.8 Å resolution of F 1 -ATPase from bovine heart mitochondria;Abrahams, J. P.,1994

2. The binding change mechanism for ATP synthase – Some probabilities and possibilities;Boyer, P. D.,1993

3. The ATP synthase – a splendid molecular machine;Boyer, P. D.,1997

4. A Hystory of Luminescence. From the Earliest Times until 1900;Harvey, E. N.,1957

5. Általános és szervetlen kémiai praktikum;Lengyel, B.,1967

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