Unpredictability and the transmission of numbers
John M. Myers, F. Hadi Madjid

TL;DR
This paper explores how the transmission of numbers in physics relies on unpredictable channels, using quantum theory to show how logical synchronization constrains networks and influences spacetime structures.
Contribution
It introduces the concept of logical synchronization in number transmission, linking unpredictability to physical regularities and spacetime features.
Findings
Unpredictability affects the transmission of numbers in physics.
Logical synchronization constrains number-carrying networks.
Networks of live clocks can serve as references to locate events.
Abstract
Curiously overlooked in physics is its dependence on the transmission of numbers. For example the transmission of numerical clock readings is implicit in the concept of a coordinate system. The transmission of numbers and other logical distinctions is often achieved over a computer-mediated communications network in the face of an unpredictable environment. By unpredictable we mean something stronger than the spread of probabilities over given possible outcomes, namely an opening to unforeseeable possibilities. Unpredictability, until now overlooked in theoretical physics, makes the transmission of numbers interesting. Based on recent proofs within quantum theory that provide a theoretical foundation to unpredictability, here we show how regularities in physics rest on a background of channels over which numbers are transmitted. As is known to engineers of digital communications,…
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Taxonomy
TopicsComputability, Logic, AI Algorithms · Quantum Mechanics and Applications · Cellular Automata and Applications
