gure shows the angular position and potential energy of a simple pendulum. Anguer Position Vs Time -20 15 Time (sec) Pot
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gure shows the angular position and potential energy of a simple pendulum. Anguer Position Vs Time -20 15 Time (sec) Pot
gure shows the angular position and potential energy of a simple pendulum. Anguer Position Vs Time -20 15 Time (sec) Potential Energy Vs Time 0.2 5 0.15) 0.1 $0.05 Time (sec) Figure 4 Using figure 4: a) What is the maximum angular position of the pendulum? b) What is the maximum potential energy of the pendulum? 0.2. c) Using the laws of energy conservation, determine the maximum kinetic energy. (Assume ideal conditions exist) d) If the mass of the pendulum is 40 g, calculate the maximum tangential velocity. e) If the length of the pendulum is 25 cm, find the maximum angular velocity and centripetal force. f) If the pendulum oscillates under ideal (frictionless) conditions plot the total energy vs time graph (mark all labels and quantities appropriately). g) Find the period of oscillation from graph.
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