[4] viXra:2609.0086 [pdf] replaced on 2026-10-02 21:04:40
Authors: Mykola Kosinov
Comments: 21 Pages.
Measurements of the gravitational constant G conducted at the world’s leading laboratories contradict one another and diverge in an unexplained manner. To determine the cause of the discrepancies, we solved the inverse problem: based on the known experimental "Big G" discrepancies, we calculated the magnitude of the hidden acceleration. The hidden acceleration coincided in order of magnitude with the critical acceleration of MOND, which is driven by the gravity of the entire universe. This fact refutes the seemingly chaotic spread of G values and calls into question the very possibility of using Newton’s local equation without accounting for the gravity of the entire universe. Is this an intriguing coincidence, or a direct consequence of the fact that all research groups calculated "Big G" from the local gravity equation without accounting for the acceleration caused by the gravity of the universe? Discrepancies were not caused by instrument errors, but by the omnipresent gravity of the universe, which was not accounted for in the calculations. Paradoxically, it was precisely the discrepancies that became the most valuable result of all the G measurements. In their pursuit of "Big G," the experimenters missed a scientific discovery. A new law of nature was right within their grasp, yet they mistook it for equipment malfunction. Dear metrologists! Hidden within your vast archives lies the most monumental discovery in the field of gravity since Newton! Don’t let it slip away! Remember: the number of fundamental laws of nature is limited—there aren’t enough to go around!
Category: Quantum Gravity and String Theory
[3] viXra:2609.0079 [pdf] replaced on 2026-10-02 21:03:46
Authors: Nigel B. Cook
Comments: 74 Pages. (Note by viXra Admin: Please cite listed scientific reference)
String theory is not a quantum theory. It’s a classical theory in which "discrete quantization" is supposed to emerge by analogy to the various discrete vibration frequencies of a taut wire in a piano or guitar. The problem is this is a circular argument: the wire is composed of particles. The whole thing is riddled with error. What they’re doing is not quantum field theory, but classical field theory fiddled to get quantization. But it doesn’t work. Then they block any other avenue using peer-review dogma. The mainstream theory is "standard" because it’s "peer-reviewed" (just groupthink dogma enforced), everything else is non-standard and thus dangerous, which must be suppressed. String theory is a classical continuum model with quantization applied to it. It does not derive quantum field theory from particles; it quantizes classical geometry and declares the result quantized. This paperreplaces that classical-continuum error with a fully mechanistic, non-speculative, empirically grounded quantum-gravity framework derived entirely from measured quantities. (This version 2.0 replaces some of the sociological analysis in version 1.0 with a patient refutation step-by-step of key string theory tactics. The original version 1.0 is much briefer at just 20 pages, and less technical, and goes more deeply into the political and financial motivations of string theory as a result of Parkinson's Law. Some readers may want to read both versions, or version 1.0 first. There are possibly multiple ways to get the facts across, so it's not clear which version will have the most appeal.)
Category: Quantum Gravity and String Theory
[2] viXra:2609.0061 [pdf] submitted on 2026-09-22 01:05:53
Authors: A. E. Mammadov
Comments: 22 Pages. (Note by viXra Admin: Please submit article written with AI assistance to ai.viXra.org)
Lattice Tension Theory (LTT) is a theoretical framework that explores the possibility that observable space is composed of discrete quantum-scale cells whose structural response gives rise to gravitational phenomena. Matter is modeled as persistent configurations of quantum energy packets occupying this cellular network, while occupation modifies the elastic state of the surrounding structure.A central feature of LTT is the distinction between an empty cell, an occupied cell, and a missing or non-operative cell. Under sufficiently strong and sustained loading, the cellular structure may undergo fracture and lose its ability to support ordinary three-dimensional propagation. Such a persistent cell-free region is proposed as a spatial rupture, with black holes interpreted as spatial ruptures surrounded by an active, gravitating boundary.The paper develops both discrete and continuum descriptions of the framework. A variational scalar action leads to a nonlinear gravitational field equation with a load-dependent elastic coefficient, while a corresponding discrete lattice energy provides a microscopic counterpart. The formulation reproduces the Newtonian weak-field limit and admits an exact spherical exterior solution. A surface-source formulation demonstrates how an attractive exterior gravitational field can arise around an excised region without requiring an ordinary matter source in its interior.The study also introduces candidate mechanisms for lattice fracture and repair, higher-dimensional energy exchange, boundary radiation, area-scaling entropy, and a universal ordering parameter distinct from physical clock readings.This work is intended as a foundational formulation rather than a completed alternative to general relativity. Its purpose is to define the physical assumptions and mathematical structure of LTT clearly enough for subsequent numerical simulations, compact-object studies, galaxy-scale tests, propagation analyses, and comparison with observational constraints.
Category: Quantum Gravity and String Theory
[1] viXra:2609.0003 [pdf] submitted on 2026-09-04 00:18:43
Authors: Antoine Khai Nguyen
Comments: 17 Pages. (Note by viXra Admin: For the last time please cite and list scientific references!)
The Cosmic wavefunction model that governs the cosmic world, and the Nuclear wavefunction model that governs the quantum world.These two discovery-postulated Quantum wavefunction models are separated by their action realms but very similar in their ingrained structural mechanisms.The core element of this Quantum wavefunction model set is the concept of orbital/motion frequencies for both cosmic and quantum objects, and the quantization principle of the ingrained feature determination mechanisms for these objects.Each wavefunction model can demonstrate that the orbital positions (from the captor out) of all the captives inside their system are not random, but are coordinated according to the model's mechanism which uses the orbital/motion frequencies as the shared factor.
Category: Quantum Gravity and String Theory