2. The motion of a pendulum is described by 0(t) = 0 cos() where L = 1.5 m and mass m=1.0 kg. (a) Find e (radian) from the figure and calculate the period T. (b) Plot 0(1), w(t) x(t), and dt d? a(t): e(t) for t=0 – 2.0T in the following graph. dr Pivot point 50 Omax = 1/2T 1T 3/2T 2T 2.5T w(t) = a(t) =

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Oscillatory Motion
Section: Chapter Questions
Problem 17P: A simple pendulum makes 120 complete oscillations in 3.00 min at a location where g = 9.80 m/s2....
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2. The motion of a pendulum is described by 0(t) = 0 cos() where L = 1.5 m and mass m=1.0 kg. (a)
Find e (radian) from the figure and calculate the period T. (b) Plot 0(1), w(t)
x(t), and
dt
d?
a(t):
e(t) for t=0 – 2.0T in the following graph.
dr
Pivot
point
50
Omax =
1/2T
1T
3/2T
2T
2.5T
w(t) =
a(t) =
Transcribed Image Text:2. The motion of a pendulum is described by 0(t) = 0 cos() where L = 1.5 m and mass m=1.0 kg. (a) Find e (radian) from the figure and calculate the period T. (b) Plot 0(1), w(t) x(t), and dt d? a(t): e(t) for t=0 – 2.0T in the following graph. dr Pivot point 50 Omax = 1/2T 1T 3/2T 2T 2.5T w(t) = a(t) =
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