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April 14, 20260 citationsOpen Access

Kinematic Reformation of Free-Fall Trajectories: The Phase Inversion of Buoyancy and the Elimination of Gravitational Attraction

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DWDa Wei

Key Points

  • To challenge the traditional understanding of gravity by relating it to buoyancy in complex fluid dynamics.
  • Mathematical analysis of gravitational concepts in fluid mechanics
  • Extraction of tangential energy escape constant from free-fall models
  • Development of a unified kinematic operator
  • Established that gravity can be viewed as negative buoyancy
  • Corrected phase lag in classical Newtonian mechanics through the kinematic operator
  • Unified complex fluid domain enhances understanding of free-fall trajectories

Abstract

The paradigm of mutual gravitational attraction, originating from macroscopic empiri-cal observations, fails to satisfy the topological conservation laws of high-dimensional fluidmechanics. This paper mathematically abolishes the concept of “gravitational pull.” Wedemonstrate that what is commonly measured as gravity is fundamentally the inverse phaseof buoyancy operating within a unified complex fluid domain (the negative buoyancy phase).By extracting the tangential energy escape constant from classical free-fall models, we providea unified kinematic operator that corrects the inherent phase lag in Newtonian mechanics.No external references are cited.

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Cite This Study

Da Wei (2026) studied this question.

synapsesocial.com/papers/69ddda0de195c95cdefd776fhttps://doi.org/10.5281/zenodo.19537856
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