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 m = 400 g %3D then the angular frequency w is equal to 1.25 rad/s 20 rad/s O 10 rad/s 2.5 rad/s O 5 rad/s

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Chapter13: Vibrations And Waves
Section: Chapter Questions
Problem 65AP: A simple pendulum has mass 1.20 kg and length 0.700 m. (a) What is the period of the pendulum near...
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A docs.google.com
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 m = 400 g
then the angular frequency w is equal
to
1.25 rad/s
20 rad/s
10 rad/s
2.5 rad/s
5 rad/s
In an oscillatory motion of a simple
pendulum, the ratio of the maximum
angular acceleration, e"max, to the
maximum angular velocity, O'max, is
s^(-1). What is the time needed for the
pendulum to complete one-half
oscillation?
2 sec
0.5 sec
Transcribed Image Text:4:47 A docs.google.com 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 m = 400 g then the angular frequency w is equal to 1.25 rad/s 20 rad/s 10 rad/s 2.5 rad/s 5 rad/s In an oscillatory motion of a simple pendulum, the ratio of the maximum angular acceleration, e"max, to the maximum angular velocity, O'max, is s^(-1). What is the time needed for the pendulum to complete one-half oscillation? 2 sec 0.5 sec
4:47
A docs.google.com
2.5 rad/s
5 rad/s
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 t
s^(-1). What is the time needed for the
pendulum to complete one-half
oscillation?
2 sec
0.5 sec
4 sec
1 sec
0.25 sec
The wavefunction of a mechanical
wave on a string is described by: y(x,t)
= 0.012cos(TTX-100rtt-2t/3), where x
and y are in meters and t is in seconds.
The transverse velocity of an element
9 on the string at the left end (x = 0), at
time t = 0 is
Transcribed Image Text:4:47 A docs.google.com 2.5 rad/s 5 rad/s 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 t s^(-1). What is the time needed for the pendulum to complete one-half oscillation? 2 sec 0.5 sec 4 sec 1 sec 0.25 sec The wavefunction of a mechanical wave on a string is described by: y(x,t) = 0.012cos(TTX-100rtt-2t/3), where x and y are in meters and t is in seconds. The transverse velocity of an element 9 on the string at the left end (x = 0), at time t = 0 is
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