A block attached to a spring, oscillates on a frictionless horizontal surface with a period of 0.3 s. The time needed by the block to move (for the first time) from position x = -A to x = -A/2 is: 0.15 sec 0.1 sec 0.05 sec 0.2 sec O 0.3 sec

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Chapter15: Oscillatory Motion
Section: Chapter Questions
Problem 15.11OQ: A block with mass m = 0.1 kg oscillates with amplitude .A = 0.1 in at the end of a spring with force...
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1000 W
250 W
A block attached to a spring, oscillates
on a frictionless horizontal surface with
a period of 0.3 s. The time needed by
the block to move (for the first time)
from position x = -A to x = -A/2 is:
0.15 sec
0.1 sec
0.05 sec
0.2 sec
0.3 sec
A mass-spring system oscillates on a
frictionless horizontal surface in simple
harmonic motion with an amplitude A =
0.16 m. At what position (x = ?) would
the kinetic energy of the system be
equal to three times its elastic potential
energy (K = 3U)?
At x = ±0.08 m
Transcribed Image Text:4:48 A docs.google.com 1000 W 250 W A block attached to a spring, oscillates on a frictionless horizontal surface with a period of 0.3 s. The time needed by the block to move (for the first time) from position x = -A to x = -A/2 is: 0.15 sec 0.1 sec 0.05 sec 0.2 sec 0.3 sec A mass-spring system oscillates on a frictionless horizontal surface in simple harmonic motion with an amplitude A = 0.16 m. At what position (x = ?) would the kinetic energy of the system be equal to three times its elastic potential energy (K = 3U)? At x = ±0.08 m
4:48
A docs.google.com
A traveling wave on a taut string with a
tension force T is given by the wave
function: y(x,t) = 0.1sin(4x+100t), where
x and y are in meters andt is in
seconds. The linear mass density of the
string is u = O.1 Kg/m. If the tension is
multiplied by a factor of four, while
keeping the same amplitude, same
frequency, and same linear mass
density, then the new power of the
wave, is
2000 W
125 W
500 W
1000 W
250 W
A block attached to a spring, oscillates
on a frictionless horizontal surface with
a period of 0.3 s. The time needed by
the block to move (for the first time)
from position x = -A to x = -A/2 is:
Transcribed Image Text:4:48 A docs.google.com A traveling wave on a taut string with a tension force T is given by the wave function: y(x,t) = 0.1sin(4x+100t), where x and y are in meters andt is in seconds. The linear mass density of the string is u = O.1 Kg/m. If the tension is multiplied by a factor of four, while keeping the same amplitude, same frequency, and same linear mass density, then the new power of the wave, is 2000 W 125 W 500 W 1000 W 250 W A block attached to a spring, oscillates on a frictionless horizontal surface with a period of 0.3 s. The time needed by the block to move (for the first time) from position x = -A to x = -A/2 is:
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