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Slide 5: If the pendulum from slide 3 is hanging at the bottom at rest, but is given a sharp kick that gives it an

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Slide 5: If the pendulum from slide 3 is hanging at the bottom at rest, but is given a sharp kick that gives it an initial velocity v = 1.5 m/s in the horizontal direction, what maximum height h[ above y = 0 will it attain? Slicfe 3: The simple pendulum shown has a mass of 45 g attached to a thread with length L- : (1.5m. It is initially at rest, and released from the position shown in the figure below at right at an initial angular displacement Q = 25". What is the maximal speed 131113,): of the mass at the bottom of the arc shown? What is the maximum height hf the mass achieves? What is the maximal speed the mass will achieve coming back down from its maximal height? For all of the previous questions, assume that the frictional drag force is negligible. Slide 4: For the pendulum described in slide 3, consider a thread that can withstand 2 N of force before snapping. Will the string snap during the motion analyzed in slide 3? Draw arrows representing the forces on the ball at the times for which its velocity is momentarily zero. What is the tension at those times

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