On the Possibility that Space is Intrinsically Curved
Aswan Korula · Zenodo (CERN European Organization for Nuclear Research) · 2021
This paper examines the possibility that space is intrinsically curved and the consequences of this to measurements involving time. If you would like to see an easy-to-understand video walk through of this paper, follow this url: https://youtu.be/SelZZPr42bs Or for a more technical presentation of the material, use this link : https://youtu.be/1p-uYSsiys0 I begin by demonstrating an error in the way we construct our clocks and how this error invalidates the theories of Special and General Relativity. I further demonstrate how this error may be rectified using curved space geometry and the implications of curved space on the constancy of the speed of light. I propose a hypothesis of 4 spatial dimensions that describes our universe and extend this idea to a model of a curved space multiverse where particles in a recursive structure of concentric shells cast their shadows into the dimensions within. I then present existing evidence that supports the hypothesis of intrinsically curved space. Finally, I suggest a method to begin unifying Quantum Mechanics and General Relativity and discuss the uncertainties in constructing a simulation of our universe.