Calculate the period of oscillation of a 103 pendulum on a planet of density pp = 3.9 x 10° km, kg m3 with radius Rp = while period of the same pendulum on Earth is TE = 1.9 s. Assume the Earth to be a sphere = 6.4 × 10° km and density of of radius RE PE = 5.5 × 10³ kg m3. Give your answer in Sl units.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter12: Oscillatory Motion
Section: Chapter Questions
Problem 29P: The angular position of a pendulum is represented by the equation = 0.032 0 cos t, where is in...
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Calculate the period of oscillation of a
103
pendulum on a planet of density pp
= 3.9 x 10° km,
kg m3 with radius Rp
while period of the same pendulum on Earth
is TE = 1.9 s. Assume the Earth to be a sphere
of radius RE = 6.4 × 10° km and density of
PE = 5.5 x 10° kg m3. Give your answer in
Sl units.
Transcribed Image Text:Calculate the period of oscillation of a 103 pendulum on a planet of density pp = 3.9 x 10° km, kg m3 with radius Rp while period of the same pendulum on Earth is TE = 1.9 s. Assume the Earth to be a sphere of radius RE = 6.4 × 10° km and density of PE = 5.5 x 10° kg m3. Give your answer in Sl units.
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