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2. Click Reset All again and this time drag the Beetle on the turntable and put it at (3,0). Set the angular velocity of 100

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2. Click \"Reset All\" again and this time drag the Beetle on the turntable and put it at (3,0). Set the angular velocity of 100 degrees/s. Now click \"Go\" and stop it after the turntable rotates twice. Make sure you did click on 9,0),v graph to answer the following questions a. What are the values you read after it completes its rotation Ladybug: B = degree, a) = degrees/s, v = m/s Beetle: 9 = degree, 0) = degrees/s, v = mfs Click on \"radians\" and write the values you read Ladybug: B = rad, a) = rad/s, v = m/s Beetle: B = rad, a) = radfs, v = mfs What are the angular and centripetal accelerations Ladybug: aR = m/sz, on = rad/s2 Beetle: aR = m/sz, on = rad/s2 Set the ladybug default position by clicking \"Reset All\" and enter an angular velocity of 50 degrees/ second. Running the simulation, you will be able to nd the following position versus time graph. What are the positions of the ladybug at the following scenario _I 1a Inns (5) . What are the speed, velocity and accelerations of the ladybug in question 3? a. Vladybug = mfs, Vxladybug = m/s, Vyladybug = m/s, aladybug = b. Vladybug = m/s, Vxladybug = m/s, Vyladybug = m/s, aladybug = If the beetle located at 3 m from the center of the turntable when it starts its motion at 0, what are the position, speed, velocity and accelerations of the beetle at the following

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