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A 016-Kg Block on a Horizontal Frictionless Surface Is Attached to to an Ideal

Question 57

Multiple Choice

A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant) is 360 N/m. The block is pulled from its equilibrium position at x=0.000 m to a position x=+0.080 m and is released from rest. The block then executes simple harmonic motion along the horizontal x -axis. When the position is x=-0.037 m, what is the acceleration of the block?


A) A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant)  is  360 N/m. The block is pulled from its equilibrium position at  x=0.000  m to a position  x=+0.080 m  and is released from rest. The block then executes simple harmonic motion along the horizontal  x -axis. When the position is  x=-0.037 m, what is the acceleration of the block? A)    B)    C)    D)    E)
B) A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant)  is  360 N/m. The block is pulled from its equilibrium position at  x=0.000  m to a position  x=+0.080 m  and is released from rest. The block then executes simple harmonic motion along the horizontal  x -axis. When the position is  x=-0.037 m, what is the acceleration of the block? A)    B)    C)    D)    E)
C) A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant)  is  360 N/m. The block is pulled from its equilibrium position at  x=0.000  m to a position  x=+0.080 m  and is released from rest. The block then executes simple harmonic motion along the horizontal  x -axis. When the position is  x=-0.037 m, what is the acceleration of the block? A)    B)    C)    D)    E)
D) A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant)  is  360 N/m. The block is pulled from its equilibrium position at  x=0.000  m to a position  x=+0.080 m  and is released from rest. The block then executes simple harmonic motion along the horizontal  x -axis. When the position is  x=-0.037 m, what is the acceleration of the block? A)    B)    C)    D)    E)
E) A 0.16-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant)  is  360 N/m. The block is pulled from its equilibrium position at  x=0.000  m to a position  x=+0.080 m  and is released from rest. The block then executes simple harmonic motion along the horizontal  x -axis. When the position is  x=-0.037 m, what is the acceleration of the block? A)    B)    C)    D)    E)

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