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February 24, 20260 citationsOpen Access

Gravity as a Controllable Physical Process . Physical Model, Rationale, Experiments, and Engineering Technologies

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YIYevgen Ivashura

Key Points

  • The aim is to present a physical model of gravity that allows practical experiments and engineering applications.
  • Developed a comprehensive physical model of gravity.
  • Outlined experimental setups for testing the model.
  • Proposed engineering technologies for creating an antigravity engine and modifying material plasticity.
  • Established gravity as a controllable physical process.
  • Identified pathways for creating a practical antigravity engine.
  • Outlined potential methods to control material plasticity in engineering applications.

Abstract

For a long time, the idea of an antigravity engine was considered unattainable not because it contradicts physics, but because there was no working physical model suitable for experiments and engineering calculations. This article presents exactly such a model—a physical theory of gravity that makes it possible to move from abstract reasoning to concrete experiments, experimental setups, and engineering technologies aimed at the development of an antigravity engine. The key implication of this model is that gravity is considered a controllable physical process rather than an immutable given. Within the framework of this theory, gravity is described as a real physical process—from the atomic level to planets and stars—with parameters that can be influenced. Based on this theory, two practical engineering applications become possible:• the creation of an antigravity engine;• controlled modification of material plasticity. Both directions are considered engineering technologies that can be implemented in the form of real installations and reproducible experiments.

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Cite This Study

Yevgen Ivashura (2026) studied this question.

synapsesocial.com/papers/699d4028de8e28729cf65342https://doi.org/10.5281/zenodo.18734047
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