This book delves into finite mathematics and its application in physics, particularly quantum theory. It is shown that quantum theory based on finite mathematics is more general than standard quantum theory, whilst finite mathematics is itself more general than standard mathematics.As a consequence, the mathematics describing nature at the most fundamental level involves only a finite number of numbers while the notions of limit, infinite/infinitesimal and continuity are needed only in calculations that describe nature approximately. It is also shown that the concepts of particle and antiparticle are likewise approximate notions, valid only in special situations, and that the electric charge and baryon- and lepton quantum numbers can be only approximately conserved.
This book delves into finite mathematics and its application in physics, particularly quantum theory. It is shown that quantum theory based on finite mathematics is more general than standard quantum theory, whilst finite mathematics is itself more general than standard mathematics.As a consequence, the mathematics describing nature at the most fundamental level involves only a finite number of numbers while the notions of limit, infinite/infinitesimal and continuity are needed only in calculations that describe nature approximately. It is also shown that the concepts of particle and antiparticle are likewise approximate notions, valid only in special situations, and that the electric charge and baryon- and lepton quantum numbers can be only approximately conserved.
Demonstrates that quantum theory based on finite mathematics is more general than standard theory Shows also that finite mathematics is itself more general than standard mathematics Presents that the concepts of particles and antiparticles emerge as an approximate notion valid in special situations, while electric charge and baryon- and lepton quantum numbers can be only approximately conserved
Felix Lev
Finite Quantum theory Foundation of Quantum Theory Quantum de Sitter Symmetry Foundation of Mathematics Gravity in Finite Quantum Theory Cosmological Accelleration and de Sitter Symmetry Particle and Antiparticle Quantum Numbers Quantal Paradox for Photons from Stars Dirac Singletons Nature of Time Conjecture