Universal Mechanics: A Unified Physics Framework
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Description
Modern physics achieves extraordinary predictive precision through mathematical formalism while leaving fundamental questions unanswered: What physically exists? What are particles? What is space? This work identifies the physical reality underlying established equations by recognizing space as a material medium with measurable properties—density, compressibility, and resistance to deformation.
From this foundation, mechanical explanations emerge for all observed phenomena. Quantum mechanics describes compression waves in spatial medium and definite particle structures, resolving wave-particle duality and restoring determinism. Electromagnetism describes teslon field dynamics and photon propagation, explaining current as photon flux and unifying electrical engineering with photonics. Relativity describes physical processes in compressed space, preserving absolute time while explaining gravitational and kinematic effects through spatial compression. Cosmology requires no expansion, no Big Bang, and no dark energy—redshift and time stretching result from photon energy loss and propagation delay through spatial medium over cosmological distances.
The framework eliminates 95% of supposedly "dark" universal content. Dark matter observations reflect spatial compression field dynamics rather than exotic particles—explaining 40+ years of null detection results. Dark energy is eliminated entirely. Wave-particle duality, quantum nonlocality, spacetime geometry, cosmic inflation, and Big Bang singularity are reinterpreted as mathematical abstractions rather than physical reality.
All established mathematical formalism remains valid—quantum mechanics, Maxwell's equations, relativity, thermodynamics. What changes is identification of what the mathematics describes: compression waves, topological structures, and medium dynamics rather than probability clouds, abstract fields, and curved spacetime. The framework makes falsifiable predictions distinguishing it from standard interpretations, including measurable compression effects from electromagnetic radiation and correlation between galaxy rotation curves and central black hole masses.
By requiring only that space exists as physical medium and matter consists of topological structures in this medium, the framework provides comprehensive mechanical explanations for all physical phenomena while preserving all experimental predictions. This work demonstrates that parsimony, comprehensibility, and predictive accuracy are compatible when physical mechanisms are identified rather than obscured by mathematical abstraction.
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Universal Mechanics v1.6.pdf
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(409.3 kB)
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