Physics
Scientific paper
Sep 1976
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1976ncimb..35...25c&link_type=abstract
Nuovo Cimento, Sezione B, vol. 35 B, Sept. 11, 1976, p. 25-34.
Physics
3
Gravitation Theory, Gravitational Fields, Mach Inertia Principle, Particle Acceleration, Newton Theory, Particle Motion, Steady State
Scientific paper
According to Sciama's (1961) interpretation of Mach's principle, when a body of mass m moves with acceleration a relative to a second mass M, the latter experiences a force of the form F = GmMa/c-squared r, where G is the gravitational constant, c is the speed of light, and r is the distance between the two masses. In the present paper it is proposed that, if Sciama's interpretation of Mach's principle is correct, the Newtonian force of gravity can be understood as resulting from the acceleration of particles within matter. It is shown that the structure of Newtonian vacuum gravitational fields is consistent with this proposal, that the random motion of a particle confined to a small volume generates a Newtonian-type gravitational force, and that the acceleration of a Dirac electron in a steady state leads to a gravitational force of the correct magnitude.
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