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      Quantum Mechanics and the Principle of Least Radix Economy

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          Abstract

          A new variational method, the principle of least radix economy, is formulated. The mathematical and physical relevance of the radix economy, also called digit capacity, is established, showing how physical laws can be derived from this concept in a unified way. The principle reinterprets and generalizes the principle of least action yielding two classes of physical solutions: least action paths and quantum wavefunctions. A new physical foundation of the Hilbert space of quantum mechanics is then accomplished and it is used to derive the Schr\"odinger and Dirac equations and the breaking of the commutativity of spacetime geometry. The formulation provides an explanation of how determinism and random statistical behavior coexist in spacetime and a framework is developed that allows dynamical processes to be formulated in terms of chains of digits. These methods lead to a new (pre-geometrical) foundation for Lorentz transformations and special relativity. The Parker-Rhodes combinatorial hierarchy is encompassed within our approach and this leads to an estimate of the interaction strength of the electromagnetic and gravitational forces that agrees with the experimental values to an error of less than one thousandth. Finally, it is shown how the principle of least-radix economy naturally gives rise to Boltzmann's principle of classical statistical thermodynamics. A new expression for a general (path-dependent) nonequilibrium entropy is proposed satisfying the Second Law of Thermodynamics.

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          Most cited references14

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          The Uncertainty Principle

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            Zur Quantenmechanik einfacher Bewegungstypen

            E. Kennard (1927)
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              The unreasonable effectiveness of mathematics in the natural sciences. Richard courant lecture in mathematical sciences delivered at New York University, May 11, 1959

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                Author and article information

                Journal
                2014-01-05
                2015-01-08
                Article
                10.1007/s10701-015-9865-x
                1401.0963
                dfeded6a-1388-4fb6-bdd4-22a34a9ef74d

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                Found. Phys. 45, 295 (2015)
                39 pages, 2 figures. Final version. Accepted to Foundations of Physics (Springer)
                physics.gen-ph quant-ph

                Quantum physics & Field theory,General physics
                Quantum physics & Field theory, General physics

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