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Short Abstract

Dr. Mills has built on the field
generally known as Quantum Mechanics by deriving a new atomic theory--The
Grand Unified Theory of Classical Physics (GUT-CP)--from first principles,
which unifies Maxwell’s Equations, Newton’s Laws, and Einstein’s
General and Special Relativity. The central feature is that physical
laws hold over all scales, from the scale of subatomic particles
to that of the cosmos.
Quantum Mechanics has remained
mysterious to all who have encountered it. Whereas Schrödinger postulated
a boundary condition that the wavefunction goes to zero as the radius
goes to infinity, resulting in a purely mathematical model of the
hydrogen atom, GUT-CP was derived from known physics, i.e. Maxwell's
Equations. Under special conditions, an extended distribution of
charge may accelerate without radiating energy. This leads to a
physical model of subatomic particles, atoms, and molecules. Equations
are closed-form solutions containing fundamental constants only
and agree with experimental observations.
Further, the Schwarzschild Metric
is derived by applying Maxwell’s Equations to electromagnetic and
gravitational fields at particle production. This modifies General
Relativity to include conservation of spacetime and gives the origin
of gravity, the masses of fundamental particles, the acceleration
of the expansion of the universe (predicted by Dr. Mills in 1995
and since confirmed experimentally), and overturns the Big Bang
model of the origin of the universe.
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“Mills proposes such a basic approach
to quantum theory that it deserves considerably more attention from
the general scientific community than it has received so far. The
new theory appears to be a realization of Einstein's vision and
a fitting closure of the "Quantum Century" that started
in 1900...” Dr. Reinhart Engelmann, Professor of Electrical
Engineering, Oregon Graduate Institute of Science and Technology
Read Review...
“Dr. Mills has apparently completed
Einstein’s quest for a unified field theory… without largesse from
the US Government, and without the benediction of the US scientific
priesthood.” - Shelby T. Brewer, former Assistant Secretary
of Energy Read Review...
“Mills’ ingenious way of thinking
creates in different physical areas astonishing results with fascinating
mathematical simplicity and harmony. And his theory is strongly
supported by the fact that nearly all these results are in comfortable
accordance with experimental findings, sometimes with breathtaking
accuracy.” - Dr Günther Landvogt, retired scientist, Philips
Research Lab Read Review...
“Mills’ theory explains the answers
to some very old scientific questions, such as ‘what happens to
a photon upon absorption’ and some very modern ones, such as ‘what
is dark matter.’ ...Lastly, Mills has made an extremely important
contribution to the philosophy of science. He has reestablished
cause and effect as the basic principle of science.” - Dr. John
J. Farrell, Franklin & Marshall College Read
Review...
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The Grand Unified Theory of Classical
Physics (GUT-CP) is derived from first principles that successfully
applies physical laws on all scales. Using the classical wave equation
with the constraint of nonradiation based on Maxwell's equations,
GUT-CP gives closed form solutions for the atom including the stability
of the n=1 state and the instability of the excited states, the
equation of the photon and electron in excited states, the equation
of the free electron, and photon which predict the wave particle
duality behavior of particles and light. The current and charge
density functions of the electron may be directly physically interpreted.
For example, spin angular momentum results from the motion of negatively
charged mass moving systematically, and the equation for angular
momentum, r x p, can be applied directly to the wave function (a
current density function) that describes the electron. The magnetic
moment of a Bohr magneton, Stern Gerlach experiment, g factor, Lamb
shift, resonant line width and shape, selection rules, correspondence
principle, wave particle duality, excited states, reduced mass,
rotational energies, and momenta, orbital and spin splitting, spin-orbital
coupling, Knight shift, spin-nuclear coupling are derived in closed
form equations based on Maxwell's equations. The calculations agree
with experimental observations.
For any kind of wave advancing
with limiting velocity and capable of transmitting signals, the
equation of front propagation is the same as the equation for the
front of a light wave. By applying this condition to electromagnetic
and gravitational fields at particle production, the Schwarzschild
metric (SM) is derived from the classical wave equation which modifies
general relativity to include conservation of spacetime in addition
to momentum and matter/energy. The result gives a natural relationship
between Maxwell's equations, special relativity, and general relativity.
It gives gravitation from the atom to the cosmos. The universe is
time harmonically oscillatory in matter energy and spacetime expansion
and contraction with a minimum radius that is the gravitational
radius. In closed form equations with fundamental constants only,
GUT-CP gives the deflection of light by stars, the precession of
the perihelion of Mercury, the particle masses, the Hubble constant,
the age of the universe, the observed acceleration of the expansion,
the power of the universe, the power spectrum of the universe, the
microwave background temperature, the uniformity of the microwave
background radiation, the microkelvin spatial variation of the microwave
background radiation, the observed violation of the GZK cutoff,
the mass density, the large scale structure of the universe, and
the identity of dark matter which matches the criteria for the structure
of galaxies. In a special case wherein the gravitational potential
energy density of a black hole equals that of the Plank mass, matter
converts to energy and spacetime expands with the release of a gamma
ray burst. The singularity in the SM is eliminated.
Molecular
and Atomic Physics Summary Tables
The geometrical parameters and total bond energies of over 800 exemplary
organic molecules have been calculated from the functional group
composition. Includes calculated and experimental values for Ratios
of Masses of Fundamental Particles, Electron g-factor, Excited State
Lifetimes, Excited States of Helium, One- Through Twenty-Electron
Atoms, the Hydrogen Molecular Ion and Hydrogen Molecule, and Diatomic
and Triatomic Molecules.
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