Classical Physics |
Authors: Paul Robert Mesler
We conducted an experiment where a rotator rotated in a horizontal plane with respect to the earth. The rotator at one end was connected to a vertical shaft that was embedded in a horizontal bearing assembly. The bearing assembly was attached to a sliding platform that was constrained to move with one degree of freedom along a linear track. The main point of the experiment was to determine if the orbital angular speed of the rotator increased due to fictitious forces. The accelerometer attached to the rotator showed a local increase in angular speed of the rotator when it passed the 90 degrees point and the 270 degrees point of its angular displacement. Based on this invariant increase in angular speed, we derived a general invariant impulse equation that remarkably predicted this increase leads to an increase in the center of mass momentum of a system.
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[v1] 2026-06-30 20:09:42
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