Theoretical determination of the mass defect outside the spacetime geometry properties; JP Journal of Heat and Mass Transfer; Vol. 14, iss. 4

書誌詳細
Parent link:JP Journal of Heat and Mass Transfer
Vol. 14, iss. 4.— 2017.— [P. 547-558]
第一著者: Shamanin I. V. Igor Vladimirovich
団体著者: Национальный исследовательский Томский политехнический университет Инженерная школа ядерных технологий Научная лаборатория изотопного анализа и технологий
その他の著者: Trutnev Yu. A. Yury Alekseevich
要約:Title screen
The article describes a theoretical approach to determining the mass defect of a tangible object and cohesive energy of its constituent parts. It is shown that the mass defect emergence at the interacting objects’ fusion into a unified whole is a common phenomenon regardless of the fusion process spatial scale. The mass defect emergence regularities are true for all cases of exchange interactions regardless of their intensity. In particular, for strong interaction, for the verification purposes, the derived equations are used to calculate a tangible object’s mass defect in approximation of pairwise and triple interactions of particles comprising the object as a whole. The determined values are: the cohesive energy of protons in nucleus and neutrons in nucleus as well as the distance between protons in nucleus.
Режим доступа: по договору с организацией-держателем ресурса
言語:英語
出版事項: 2017
主題:
オンライン・アクセス:http://dx.doi.org/10.17654/HM014040547
フォーマット: 電子媒体 図書の章
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=667132

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330 |a The article describes a theoretical approach to determining the mass defect of a tangible object and cohesive energy of its constituent parts. It is shown that the mass defect emergence at the interacting objects’ fusion into a unified whole is a common phenomenon regardless of the fusion process spatial scale. The mass defect emergence regularities are true for all cases of exchange interactions regardless of their intensity. In particular, for strong interaction, for the verification purposes, the derived equations are used to calculate a tangible object’s mass defect in approximation of pairwise and triple interactions of particles comprising the object as a whole. The determined values are: the cohesive energy of protons in nucleus and neutrons in nucleus as well as the distance between protons in nucleus. 
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