Impact of the Gravitational Attractive Force (GAF) and the Buoyancy Force of the Gravitational Field
Abstract
In this study, we explore the interaction between two hypothesized fundamental forces in nature: the traditional Gravitational Attractive Force (GAF), as described by Newtonian mechanics, and a proposed Buoyancy Force of the Gravitational Field (BFGF). We suggest that the balance between these two forces governs various phenomena, including orbital motion, rotational dynamics, free-fall trajectories, and even evaporation processes. Using orbital velocity data of planets and their natural satellites, we propose a revised technique to reassess the masses of the Sun and planets. Our analysis suggests that these celestial bodies may possess significantly larger masses than previously estimated. Additionally, we argue that the interplay between GAF and BFGF could provide an alternative interpretation of redshift phenomena and support a steady-state model of the universe. The proposed model also links tidal forces to life processes on Earth, highlighting a novel perspective on planetary evolution and biological cycles. While this framework presents intriguing possibilities, further theoretical and observational validation is essential to confirm these ideas.