![]() ![]() Such a theory of quantum gravity would yield the same experimental results as ordinary quantum mechanics in conditions of weak gravity (gravitational potentials much less than c2) and the same results as Einsteinian general relativity in phenomena at scales much larger than individual molecules (action much larger than reduced Planck's constant), but moreover be able to predict the outcome of situations where both quantum effects and strong-field gravity are important (at the Planck scale, unless large extra dimension conjectures are correct). It is hoped that development of such a theory would unify into a single mathematical framework all fundamental interactions and to describe all known observable interactions in the universe, at both subatomic and cosmological scales. Quantum gravity (QG) is the field of theoretical physics which attempts to develop scientific models that unify quantum mechanics (describing three of the four known fundamental interactions) with general relativity (describing the fourth, gravity). Title: A theory for describing the quantum mechanics of gravityĪwards: Google Science Fair 2011 finalistĬoncepts: Quantum Harmonic Oscillator (QHD), Lagrangian density, Planck's constant, general relativity, space-time geometryÄescription: This project suggests a geometrical approach in order to integrate the force of gravity into quantum mechanics and quantum field theory A theory for describing the quantum mechanics of gravity
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