A block-spring system has a maximum restoring force Fmax = 0.1 N. If the amplitude of the motion is A = 0.16 m and the mass of the block is m = 100 g then the angular frequency w is equal to O 1.25 rad/s O 2.5 rad/s 10 rad/s 20 rad/s 5 rad/s

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter12: Oscillatory Motion
Section: Chapter Questions
Problem 16P: A blockspring system oscillates with an amplitude of 3.50 cm. The spring constant is 250 N/m and the...
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0.046 J
O 0.066 J
A block-spring system has a maximum restoring force Fmax = 0.1 N. If the
amplitude of the motion is A = 0.16 m and the mass of the block is m = 100 g then
the angular frequency w is equal to
O 1.25 rad/s
2.5 rad/s
10 rad/s
20 rad/s
5 rad/s
at tw different times with different initial
Transcribed Image Text:0.046 J O 0.066 J A block-spring system has a maximum restoring force Fmax = 0.1 N. If the amplitude of the motion is A = 0.16 m and the mass of the block is m = 100 g then the angular frequency w is equal to O 1.25 rad/s 2.5 rad/s 10 rad/s 20 rad/s 5 rad/s at tw different times with different initial
nslate
O f = f/3
A simple pendulum consists of a 0.8-kg bob connected to a massless
inextensible cord with a length L = 1.9 m. The bob is set into motion and its
angular displacement is given by 0(t) = 0.11cos(wt), where e is in radians and t is
in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this
%3D
pendulum.
0.085 J
0.052 J
O 0.090 J
O0.046 J
O 0.066 J
has a maximum restoring force Fmax = 0.1 N. f the
then
Transcribed Image Text:nslate O f = f/3 A simple pendulum consists of a 0.8-kg bob connected to a massless inextensible cord with a length L = 1.9 m. The bob is set into motion and its angular displacement is given by 0(t) = 0.11cos(wt), where e is in radians and t is in seconds. Take g = 9.8 m/s^2, determine the mechanical energy of this %3D pendulum. 0.085 J 0.052 J O 0.090 J O0.046 J O 0.066 J has a maximum restoring force Fmax = 0.1 N. f the then
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