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Use the following to answer question: Use the following to answer question:   -The graph shows the average power delivered to an oscillating system as a function of the driving frequency.According to these data,the damping is greatest for system(s)  A) 1 B) 2 C) 3 D) 4 E) 1 and 2 -The graph shows the average power delivered to an oscillating system as a function of the driving frequency.According to these data,the damping is greatest for system(s)


A) 1
B) 2
C) 3
D) 4
E) 1 and 2

F) A) and B)
G) A) and C)

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Use the following to answer question: Use the following to answer question:   -The graph shows the displacement of an oscillator as a function of time.The oscillator that is overdamped is A) 1 B) 2 C) 3 D) 4 E) 1,2,3,and 4 -The graph shows the displacement of an oscillator as a function of time.The oscillator that is overdamped is


A) 1
B) 2
C) 3
D) 4
E) 1,2,3,and 4

F) A) and E)
G) All of the above

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A body of mass 0.50 kg moves in simple harmonic motion with a period of 1.5 s and an amplitude of 20 mm.Which of the following equations correctly represents this motion?


A) x = 40 cos(t/1.5) mm
B) x = 40 cos(2 π\pi t/1.5) mm
C) x = 20 sin(t/1.5) mm
D) x = 20 sin(1.5 π\pi t) mm
E) x = 20 sin(2 π\pi t/1.5) mm

F) A) and C)
G) C) and D)

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Which of the following statements concerning the motion of a simple pendulum is incorrect?


A) The kinetic energy is a maximum when the displacement is a maximum.
B) The acceleration is a maximum when the displacement is a maximum.
C) The period is changed if the mass of the bob is doubled and the length of the pendulum is halved.
D) The time interval between conditions of maximum potential energy is one period.
E) The velocity is a maximum when the acceleration is a minimum.

F) A) and E)
G) B) and E)

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When you push a child in a swing,you most likely


A) push with as large a force as possible.
B) push with a periodic force as often as possible.
C) push with a periodic force,with a period that depends on the weight of the child.
D) push with a periodic force,with a period that depends on the length of the ropes on the swing.
E) push with a force equal to the weight of the child.

F) None of the above
G) A) and B)

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A thin test tube is partially filled with lead pellets so that it floats vertically in a fluid.Use Archimedes' Principle to calculate that if displaced slightly from its equilibrium position the test tube will undergo SHM in the vertical direction and derive how the time period is related to the density of the fluid.


A) T proportional to ρ\rho (liquid)
B) T proportional to ρ\rho (liquid) 1/2
C) T proportional to ρ\rho (liquid) 2
D) T proportional to ρ\rho (liquid) -2
E) T proportional to ρ\rho (liquid) -1/2

F) C) and E)
G) All of the above

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A 1.81-kg block slides on a horizontal frictionless table with a speed of 1.22 m/s.It is brought to rest by compressing a spring in its path.If the spring has a force constant of 7.30 N/m,it is compressed


A) 6.89 m
B) 1.22 m
C) 1.71 m
D) 0.305 m
E) by none of these amounts

F) B) and D)
G) None of the above

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The width of a resonance curve is an indication of


A) the damping of the system.
B) the Q-value of the system.
C) the extent to which the system is oscillatory.
D) the rate at which energy is being dissipated each cycle.
E) all of the above

F) A) and E)
G) A) and D)

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Use the following to answer question: Use the following to answer question:   -The graph shows the displacement of an oscillator as a function of time.The oscillator that is critically damped is A) 1 B) 2 C) 3 D) 4 E) 1,2,3,and 4 -The graph shows the displacement of an oscillator as a function of time.The oscillator that is critically damped is


A) 1
B) 2
C) 3
D) 4
E) 1,2,3,and 4

F) A) and E)
G) B) and D)

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If the length of a simple pendulum is increased by 4% and the mass is decreased by 4%,the period is


A) not changed.
B) increased by 2%.
C) decreased by 4%.
D) increased by 4%.
E) decreased by 2%.

F) All of the above
G) A) and B)

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B

The force constant for a simple harmonic motion is k and the amplitude of the motion is A.The maximum value of the potential energy of a mass m oscillating with simple harmonic motion is


A) The force constant for a simple harmonic motion is k and the amplitude of the motion is A.The maximum value of the potential energy of a mass m oscillating with simple harmonic motion is A)    B)    kA<sup>2 </sup> C) kA<sup>2 </sup> D) kA E) None of these is correct.
B) The force constant for a simple harmonic motion is k and the amplitude of the motion is A.The maximum value of the potential energy of a mass m oscillating with simple harmonic motion is A)    B)    kA<sup>2 </sup> C) kA<sup>2 </sup> D) kA E) None of these is correct. kA2
C) kA2
D) kA
E) None of these is correct.

F) B) and E)
G) D) and E)

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B

The kinetic energy K of a body executing simple harmonic motion is plotted against time,the time being expressed in terms of the period T.The initial conditions are such that the phase angle is zero.Such a graph would most closely resemble which of the following graphs? The kinetic energy K of a body executing simple harmonic motion is plotted against time,the time being expressed in terms of the period T.The initial conditions are such that the phase angle is zero.Such a graph would most closely resemble which of the following graphs?   A) 1 B) 2 C) 3 D) 4 E) 5


A) 1
B) 2
C) 3
D) 4
E) 5

F) C) and E)
G) B) and E)

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A particle moving in a circle of radius 15 cm makes 33.3 rev/min.If the particle starts on the positive x axis at time t = 0,what is the x component of the particle's velocity at time t = 1.2 s?


A) 45 cm/s
B) -3.8 cm/s
C) 26 cm/s
D) -45 cm/s
E) 13 cm/s

F) C) and D)
G) A) and B)

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A spring vibrates in simple harmonic motion according to the equation  A spring vibrates in simple harmonic motion according to the equation   where x is in centimeters and t is in seconds.The total number of vibrations this body makes in 10 s is A) 0.5 B) 10 C)  \pi  D) 15 E) 5 where x is in centimeters and t is in seconds.The total number of vibrations this body makes in 10 s is


A) 0.5
B) 10
C) π\pi
D) 15
E) 5

F) A) and B)
G) None of the above

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What is the length L of a simple pendulum with the same period as a physical pendulum consisting of a hoop suspended at its rim? What is the length L of a simple pendulum with the same period as a physical pendulum consisting of a hoop suspended at its rim?   A) L =   R B) L = 1/R C)    D) L = R E) L = 2R


A) L = What is the length L of a simple pendulum with the same period as a physical pendulum consisting of a hoop suspended at its rim?   A) L =   R B) L = 1/R C)    D) L = R E) L = 2R R
B) L = 1/R
C) What is the length L of a simple pendulum with the same period as a physical pendulum consisting of a hoop suspended at its rim?   A) L =   R B) L = 1/R C)    D) L = R E) L = 2R
D) L = R
E) L = 2R

F) A) and E)
G) B) and C)

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A pendulum does not have simple harmonic motion if its angular amplitude θ\theta 0 is not small.For large angular amplitudes,the period is given by T = T0[1 + (1/4) sin2 θ\theta 0 + (3/64) sin4 θ\theta 0 + · · · ] As the angular amplitude of the pendulum gets larger,the frequency of the pendulum


A) does not change.
B) increases.
C) decreases.
D) does whatever the period does.
E) changes in proportion to T0.

F) A) and B)
G) C) and E)

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A damped oscillator has a decay time constant τ\tau .After time t = τ\tau has passed,the fraction of the amount of energy remaining is


A) 0.25
B) 0.37
C) 0.5
D) 0.67
E) 0.75

F) B) and D)
G) B) and E)

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The acceleration of a particle moving with simple harmonic motion is given by The acceleration of a particle moving with simple harmonic motion is given by   where x is in meters and a is in meters per second squared.The period of the motion is A) 0.25 s B) 0.392 s C) 1.57 s D) 4.0 s E) 25.2 s where x is in meters and a is in meters per second squared.The period of the motion is


A) 0.25 s
B) 0.392 s
C) 1.57 s
D) 4.0 s
E) 25.2 s

F) D) and E)
G) A) and D)

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The period of oscillation of a simple pendulum of length 9.8 m and mass 5.0 kg is approximately


A) 0.10 s
B) 0.16 s
C) 2.0 s
D) 5.0 s
E) 6.3 s

F) A) and E)
G) C) and D)

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When the compression of a spring is doubled,the potential energy stored in the spring is


A) the same as before.
B) doubled.
C) tripled.
D) increased by a factor of 8.
E) None of these is correct.

F) A) and B)
G) D) and E)

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E

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