This paper proposes an original framework for calculating gravitational force, moving away from static Newtonian constants. By introducing a dynamic interaction constant, ξ (xi), derived from orbital velocity and distance, we establish a scaling law known as the Dynamic Force Law (DFL) that accounts for kinetic energy flux in orbiting systems. Our model demonstrates a high degree of correlation (99.89%) with experimentally accepted values for the Earth-Moon system. We define the force as a dynamic interaction sensitive to time and velocity, suggesting that gravity may be better modeled as a velocity-dependent field interaction.
Vaidik Vaishnav (Sun,) studied this question.