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| Author |
Article |
Page |
Select |
| Volume 11 Number 1 March 1998 |
| E. Panarella |
Editorial: Ten Years Later |
p. 3 |
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| Christopher G. Jesudason |
On Some Difficulties Concerning Heisenberg Uncertainty and Quantum Mechanical Relations |
p. 6 |
|
| Yuri Keilman |
Nonelementary Particles |
p. 34 |
|
| Damian Canals-Frau |
Bells Theorem: A New Perspective |
p. 46 |
|
| David W. Talmage and Richard J. Sanderson |
On the Unification of Gravity and Inertia |
p. 53 |
|
| Frank M. Meno |
Instantaneous Spectrum |
p. 60 |
|
| Vladimir V. Kisil |
Relativistic Quantization and Improved Equation For a Free Relativistic Particle |
p. 69 |
|
| E.J. Betinis |
Time Dilation Derived From the Electromagnetic Fields of a Moving Point Source |
p. 81 |
|
| N. Umakantha |
Represental Approach to Quantum Mechanics |
p. 96 |
|
| Hsiao-bai Aj |
Resolution of Some Paradoxes in Relativistic Statics |
p. 123 |
|
| J.N. Percival |
Special Relativity: “Inconsistent” or Just “Incomplete (Comments on McCausland’s Paper) |
p. 130 |
|
| Allen D. Allen |
A Novel Use of Very Long Baseline Interferometry to Photograph Past Events For Stellar and Planetary Sciences: Implications for Basic Theory |
p. 132 |
|
| V. Arunasalam Pauli |
Nonrelativistic versus Dirac Relativistic Theory of the Electron |
p. 137 |
|
| Boye Ahiborn, Marcel Lefrancois, and D.H. King |
The Clockwork of Vortex Shedding |
p. 144 |
|
| Thomas E. Phipps, Jr. |
An Alternative Approach to Quantum Projection |
p. 155 |
|
| William M. Honig |
Realistic Fluid Models For h and For de Broglie Waves, and Wave Equations From the Quantum Potential |
p. 166 |
|
| Anthony P. Stone |
Erratum: A Program Model of Becoming |
p. 180 |
|
| Mahmoud A. Melehy |
Erratum: Thermal Momentum in Thermodynamics, Part 1: Nature of Pressure, Equilibrium, and Nonequilibium and Generalization of the Maxwell—Einstein Diffusion Force |
p. 181 |
|
| Jo. Guala-Valverde |
Gravitational Mutual Energy in Weber-Type Mechanics |
p. 184 |
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| Author |
Article |
Page |
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| Volume 11 Number 2 June 1998 |
| T.S. McLeod |
The Implications of Time Dilation Measurements on Special Relativlty Theory |
p. 187 |
|
| Stephen Gamboa-Eastman |
The Topological Unification of General Relativity and Quantum Mechanics |
p. 194 |
|
| D. Brough andA.D. Rivers |
A Symmetrical-Time Resolution of the Clock Paradox |
p. 200 |
|
| V.G. Kachanov |
Structure of the Neutron |
p. 213 |
|
| A.S. Daoud |
Mean Occupation Number of Photons As a Function of Mean Free Path |
p. 216 |
|
| C.W. Rietdfijk |
A Rough Derivation of mp/me By Abandoning an Assumption About Space and Time |
p. 222 |
|
| Fred H. Thaheld |
Can We Determine the Role of the Observer in Quantum Mechanics? |
p. 235 |
|
| J.C. Aron |
Complement to the Study of the Baryon Speřtrum |
p. 241 |
|
| I.J. Good |
The Self-Consistency of the Kinematics of Special Relativity, IV |
p. 248 |
|
| C.Y. Lo |
On Compatibility of Covariance to the Equivalence Principle and Space-Time Coordinate Systems |
p. 264 |
|
| Edward S. Barkin |
Possibility of Describing Quantum Gravity Without Matter Field Interactions |
p. 273 |
|
| Hans Montanus |
Compton Scattering, Pair Annihilation, and Pion Decay in an Absolute Euclidean Space-Time |
p. 280 |
|
| J. Chevalier |
Why the Energy of the Gravitational Field Can Be Localized |
p. 293 |
|
| Marcin Molski |
A Compact Representation of the Dirac Field Equations |
p. 302 |
|
| H. Ephraim |
Note on S. Xu and X. Xu’s “Investigation of the Einstein-Lorentz Group” |
p. 305 |
|
| Frank M. Meno |
A Smaller Bang? |
p. 307 |
|
| E.J. Betinis |
Electromagnetic Theory Relativistic Schradinger Equation; Its Solution and the Scattering Cross Section For Superluminal Particles |
p. 311 |
|
| Yuri Keilman |
On the Breakdown of the Principle of Relativity |
p. 325 |
|
| Mendel Sachs |
A Speculation on Einstein’s Reply to “Quantum Teleportation” |
p. 330 |
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| Author |
Article |
Page |
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| Volume 11 Number 3 September 1998 |
| Joseph J. Bevelacqua |
Reinterpretation of Nuclear Scattering Experiments in Terms of Nucleon-Nucleon Interaction Properties |
p. 337 |
|
| R.A. Ashworth |
Confirmation of Helical Travel of Light through Microwave Waveguide Analyses |
p. 343 |
|
| Robert J. Hannon |
A Simple Algebraic Analysis and Its Relation to the Einstein-Lorentz Transformations |
p. 353 |
|
| Silas Sachell Santos |
The Interaction Between Classical Physics and Quantum Mechanics on the Experiments of Mass Variation and Ultimate Speed |
p. 357 |
|
| Curt Renshaw |
The Gravitational Potential for Dynamic Bodies: Mercury’s Perihelion and Photon Deflection |
p. 361 |
|
| Johannes F. Geurdes |
Quantum Remote Sensing |
p. 367 |
|
| J. Dunning-Davies and B.H. Lavenda |
Problems with the Entropy Concept in Modern Applications of Thermodynamics |
p. 375 |
|
| Edward S. Barkin |
Chaotic Prespace and the Origin of the Universe’s Quantum State |
p. 386 |
|
| Jacques Moret-Bailly |
Quantum Mechanics as a Classical Theory - Application to the Interaction of Light with an Extremely Diluted Gas: Redshifts and Black Matter in Astrophysics |
p. 389 |
|
| Hans Montanus |
A Geometrical Explanation for the Deflection of Light |
p. 395 |
|
| Valery P. Dmitriyev |
Backstage Mechanics of Electricity |
p. 400 |
|
| V. Arunasalarn |
Angular Momentum in Velocity-Dependent Potentials: Bloch versus Feynman |
p. 408 |
|
| Gordon Watson |
Bell’s Theorem Refuted: Real Physics and Philosophy for Quantum Mechanics |
p. 413 |
|
| Fred H. Thaheld |
A Proposed Experiment Concerning Nonlocal Correlations Between a Quantum Observer and Another Person |
p. 422 |
|
| Florin Constantin V. Ghiurea |
On the Experimental Basis of Ampere’s Theorem |
p. 426 |
|
| Mahmoud A. Melehy |
Thermal Momentum in Thermodynamics Part 2. Interfacial Electrification: A New Consequence of the First and Second Laws |
p. 430 |
|
| Allen Rothwarf |
An Aethor Model of the Universe |
p. 444 |
|
| Frank M. Meno |
The Photon and its Dynamic Structure |
p. 467 |
|
| W.M. Honig |
Erratum: Realistic Fluid Models for h and do Broglie Waves, and Wave Equations from the Quantum Potential |
p. 474 |
|
| E.J. Betinis |
Erratum: Electromagnetic Theory Relativistic Schroedinger Equation. Its Solution and the Scattering Cross Section for Superluminal Particles |
p. 475 |
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| Author |
Article |
Page |
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| Volume 11 Number 4 December 1998 |
| J.A. Lester |
Does Matter Matter? |
p. 481 |
|
| Chun-hsien Lee |
On the Space of a Hadron in the Multiparticle Production System |
p. 492 |
|
| Robert B. Dniscoll |
Sagnac Effect: Isotropic Light-Speed in the Corotating Frame |
p. 504 |
|
| Yakir Z. Shoshani |
Apriorics and the Proliferation of Elementary Particles in Parallel Subuniverses |
p. 512 |
|
| Minoru Harada and Mendel Sachs |
Reinterpretation of the Fitzgerald-Lorentz Contraction |
p. 521 |
|
| D.J. Larson |
A Derivation of Maxwell’s Equations from a Simple Two-Component Solid-Mechanical Aether |
p. 524 |
|
| Kern E. Kenyon |
Roll Wave Theory |
p. 531 |
|
| Chester J. Marcinkowski |
Wavelength Radiated by Aging Starlight |
p. 541 |
|
| Hans Mon fanus |
Hyperbolic Orbits in an Absolute Euclidean Space-Time |
p. 563 |
|
| D.D.M. Ho, J.J. Grabowski, S.T. Brandon, K.T. Tsang, andA.Y. Wong |
Transfer of Free Electrons to Chlorine and Its Consequences for Mitigating Ozone Depletion in a Computational Model of the Antarctic Stratosphere |
p. 569 |
|
| Robert J. Hannon |
An Alternative Explanation of the Cosmological Redshift |
p. 576 |
|
| Allen D. Allen |
A Coin-Tossing Experiment that Demonstrates Stochastic Interactions Between Statistically Independent Events |
p. 579 |
|
| Lawrence M. Stephenson |
The Significance of Precursor Electromagnetic Waves in Special and General Relativity |
p. 585 |
|
| Frank M. Meno and Kassem Awada |
Galaxy Size Limit |
p. 589 |
|
| J. Weber |
Gravitational Radiation Antenna Backgrounds and Cross-Sections |
p. 593 |
|
| William M. Honig |
Wave Equations from Laplacian and D’Alembertian Quantum Potentials |
p. 600 |
|
| E.J. Betinis |
Erratum: Time Dilation Derived from the Electromagnetic Fields of a Moving Point Source |
p. 609 |
|
| J.P. Wesley |
Erratum: Experimental Results of Aspect et al. Confirm Local Causality |
p. 610 |
|
| Stephen Gamboa-Eastman |
Erratum: The Topological Unification of General Relativity and Quantum Mechanics |
p. 611 |
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