Mathematical Physics

   

Dimensional Mechanics of Time and Space

Authors: Stephen H. Jarvis

This paper presents the case for a mechanics between the paradigms of time and space and what those mechanics prescribe as general symmetries and asymmetries for physical reality, most notably the field forces of electromagnetism and gravity. This paper presents the key principle “that the basis of gravity-mass and electromagnetism is by understanding the dimensional relationship between time and space”. As this paper shall highlight in acknowledging the incompleteness theorem of Gödel, it is not mathematics that is the core issue, it is what mathematics is applied to, what concept, primarily time or space, that prescribes a successful outcome of theory. The lens of data analysis the new approach proposed for the mathematics of time and space offers highlights a key fundamental flaw in spacetime theory, largely unnoticed by the professional physics community, namely that in seeking the mass-spacetime link while trying to uphold all the features of SR, the overall context of uncertainty that exists between the dimensions of time and space is not being addressed. In other words, every calculation physics makes that is closer to resolving mass and spacetime (as gravity) will be inherently flawed if the nature of relationship between the dimensions of space and time is itself governed by a principle of uncertainty.

Comments: 27 Pages.

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Submission history

[v1] 2020-05-31 19:18:35
[v2] 2020-06-05 21:37:26

Unique-IP document downloads: 273 times

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