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Dropped objects and other motions relative to the noninertial earth

2000/02/01 by Martin S. Tiersten, Harry Soodak · 1 citation
Physics and Astronomy · #Experimental and Theoretical Physics Studies #Relativity and Gravitational Theory #Solar and Space Plasma Dynamics

paper · doi:10.1119/1.19385

openalex publication_date 2000/02/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

Earth is a noninertial frame of reference due to its spin and its orbital free-fall acceleration in the gravity fields of the sun, moon, and other external attractors. Three particularly interesting aspects of motion relative to the earth are discussed: (a) the effect of the sun and the moon and other external gravitational attractors; (b) the Foucault pendulum at middle latitudes; (c) the venerable and surprising problem of the deviation of the path of a dropped object away from the plumb line. A selective review of the twentieth century physics literature on motion relative to the earth demonstrates that errors and omissions abound. A fourth example is also presented, the interesting textbook problem of the free motion of a particle on a frictionless horizontal plane, as a simple illustration of carelessly incorrect treatment in much of the literature.

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