A simple pendulum is made of a 50 cm-string and a particle like bob of mass m = 10 g. At t= 0, the pendulum is at its equilibrium position and is given an ini- tial velocity v = + 0.2 m/s as shown. The potential energy has zero reference at the lowest point of the pendulum. Take g = 10 m/s'. %3D 9) The displacement angle corresponding to v = 0.1 m/s is: a. 0 = 0.43 rad %3D b. 0 = 4.44 rad c. 0 = 4.44° d. 0 = 44.4° Va = + 0.2 m/s %3D

Classical Dynamics of Particles and Systems
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ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter3: Oscillations
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A simple pendulum is made of a 50 cm-string and a particle like bob of mass
m 10 g. At t = 0, the pendulum is at its equilibrium position and is given an ini-
tial velocity v =+ 0.2 m/s as shown The potential energy has zero reference at
the lowest point of the pendulum. Take g = 10 m/s².
max
9) The displacement angle corresponding to v = 01 m/s is:
a. 0 = 0.43 rad
b. 0 = 4.44 rad
c. 0 = 4.44°
d. 0 = 44.4°
Vo = + 0.2 m/s
a.
O b.
Transcribed Image Text:A simple pendulum is made of a 50 cm-string and a particle like bob of mass m 10 g. At t = 0, the pendulum is at its equilibrium position and is given an ini- tial velocity v =+ 0.2 m/s as shown The potential energy has zero reference at the lowest point of the pendulum. Take g = 10 m/s². max 9) The displacement angle corresponding to v = 01 m/s is: a. 0 = 0.43 rad b. 0 = 4.44 rad c. 0 = 4.44° d. 0 = 44.4° Vo = + 0.2 m/s a. O b.
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