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0:03:44
A 0.10 kg block oscillates back and forth along a straight line on a frictionless...
0:04:27
Hanging from a horizontal beam are nine simple pendulums of the following lengths: (a) 0.10...
0:05:17
If the phase angle for a block-spring system in SHM is p/6 rad and the block’s position...
0:04:46
The suspension system of a 2000 kg automobile “sags” 10 cm when the chassis is placed on it...
0:02:26
Figure 15-39 shows the kinetic energy K of a simple harmonic oscillator versus its position x.
0:04:22
Figure 15-38 gives the one- dimensional potential energy well for a 2.0 kg particle...
0:03:22
An oscillating block-spring system has a mechanical energy of 1.00 J, an amplitude of 10.0 cm...
0:07:02
In Fig. 15-37, two blocks (m = 1.8 kg and M = 10 kg) and a spring (k = 200 N/m) are arranged
0:06:22
Figure 15-33a is a partial graph of the position function x(t) for a simple harmonic oscillator
0:04:00
What is the phase constant for the harmonic oscillator the velocity function given in Fig. 15-32
0:01:43
An oscillating block-spring system takes 0.75s to begin repeating its motion. Find (a) the period
0:02:40
What is the phase constant for the harmonic oscillator with the position function x(t) given in
0:04:16
Which of the following describe phi (phase constant) for the SHM of Fig.15-20a
0:03:40
A 0.12 kg body undergoes simple harmonic motion of amplitude 8.5 cm and period 0.20 s...
0:05:47
An automobile can be considered to be mounted on four identical springs as far as vertical...
0:02:39
A particle with a mass of 1.00 * 10^20 kg is oscillating with simple harmonic motion with a period
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