0.1 rad/s O 0.8 rad/s O 0.2 rad/s O 0.4 rad/s

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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4:48
B/s
0.046 J
0.052 J
In an oscillatory motion of a simple
pendulum, the ratio of the maximum
angular acceleration, O"max, to the
maximum angular velocity, O'max, is
Tt s^(-1). What is the time needed for
the pendulum to complete two
oscillations?
1 sec
4 sec
0.5 sec
0.25 sec
2 sec
A simple pendulum is made of a 50
cm-string and a bob of mass m. At t =
O, the pendulum is at its equilibrium
position and is given an initial velocity
v = 0.2 m/s. The maximum angular
Transcribed Image Text:4:48 B/s 0.046 J 0.052 J In an oscillatory motion of a simple pendulum, the ratio of the maximum angular acceleration, O"max, to the maximum angular velocity, O'max, is Tt s^(-1). What is the time needed for the pendulum to complete two oscillations? 1 sec 4 sec 0.5 sec 0.25 sec 2 sec A simple pendulum is made of a 50 cm-string and a bob of mass m. At t = O, the pendulum is at its equilibrium position and is given an initial velocity v = 0.2 m/s. The maximum angular
4:48
0.5 sec
0.25 sec
2 sec
A simple pendulum is made of a 50
cm-string and a bob of mass m. At t =
O, the pendulum is at its equilibrium
position and is given an initial velocity
v = 0.2 m/s. The maximum angular
speed, O'max, is:
0.05 rad/s
0.1 rad/s
0.8 rad/s
0.2 rad/s
0.4 rad/s
A block-spring system has a
maximum restoring force Fmax = 0.1
N. If the amplitude of the motion is A
= 0.01 m and the mass of the block is
Transcribed Image Text:4:48 0.5 sec 0.25 sec 2 sec A simple pendulum is made of a 50 cm-string and a bob of mass m. At t = O, the pendulum is at its equilibrium position and is given an initial velocity v = 0.2 m/s. The maximum angular speed, O'max, is: 0.05 rad/s 0.1 rad/s 0.8 rad/s 0.2 rad/s 0.4 rad/s A block-spring system has a maximum restoring force Fmax = 0.1 N. If the amplitude of the motion is A = 0.01 m and the mass of the block is
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