1. Espen Gaarder Haug and Gianfranco Spavieri, Can Lorentz relativistic mass ....

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Volume 36: Pages 123-128, 2023

Can Lorentz relativistic mass explain the lack of velocity time dilation in quasars?

 

Espen Gaarder Haug1,a) and Gianfranco Spavieri2

 

1Norwegian University of Life Sciences, Chr. Magnus Falsens vei 18, 1430 A°s, Norway

2Centro de Fisica Fundamental, Universidad de Los Andes, Merida 5101, Venezuela

 

 

Researchers in standard gravity theory and cosmology seldom take into account Lorentz relativistic mass. The dismissal of Lorentz relativistic mass by the research community has happened without first properly investigating what predictions incorporating it in gravity models have led to. We show that the inclusion of Lorentz relativistic mass in some gravity theories has a dramatic impact on the predicted redshift from objects with high gravitational field such as stellar objects fitting the mathematical properties of black holes. Taking into account Lorentz relativistic mass provides diverse interpretations of quasars and many other objects. As relevant example, it may explain the lack of observed velocity time dilation in quasars.

 

 

Les chercheurs en théorie de la gravité standard et en cosmologie prennent rarement en compte la masse relativiste de Lorentz. Le rejet de la masse relativiste de Lorentz par la communauté des chercheurs s'est produit sans d'abord enquêter correctement sur les prédictions qui l'intègrent dans les modèles de gravité. Nous montrons que l'inclusion de la masse relativiste de Lorentz dans certaines théories de la gravité a un impact dramatique sur le décalage vers the rouge prédit des objets à champ gravitationnel élevé, tels que les objets stellaires correspondant aux propriétés mathématiques des trous noirs. La prise en compte de la masse relativiste de Lorentz fournit diverses interprétations des quasars et de nombreux autres objets. Comme exemple pertinent, cela peut expliquer le manque de dilatation temporelle de la vitesse observée dans les quasars.

 

Key words: Gravitational Redshift; Lorentz Relativistic Mass; Escape Velocity; Quasars; Black Holes; Galactic Centers.

Received: January 7, 2023; Accepted: February 22, 2023; Published Online: March 13, 2023

 

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