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A Buoy Oscillates in Simple Harmonic Motion as Waves

Question 42

Multiple Choice

A buoy oscillates in simple harmonic motion A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)   as waves move past it. The buoy moves a total of 13.5 feet (vertically) between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t.


A) A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)
B) A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)
C) A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)
D) A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)
E) A buoy oscillates in simple harmonic motion   as waves move past it. The buoy moves a total of 13.5 feet (vertically)  between its low point and its high point. It returns to its high point every 10 seconds. Determine the velocity of the buoy as a function of t. A)    B)    C)    D)    E)

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