College and Engineering Physics Quiz 8 Rotational Equations

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College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass 1

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass 1

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Use one

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Use one of the rotational constant acceleration equations. You have a wheel that starts at 10 rad/s. It accelerates with a rotational acceleration of -0. 5 rad/s 2. What is the magnitude of its angular displacement after 20 s? 2

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see four cars from an airplane. Being bored you derive an equation for each of their positions. The first is x(t) = 2 t+5. The second is x(t) = -6 t-4. The third is y(t) = 4 t. The fourth is x(t) = -4 and y(t) = 7 t+5. At time t = 0, what is the center of mass of the four car system? 3

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see four cars from an airplane. Being bored you derive an equation for each of their positions. The first is x(t) = 2 t+5. The second is x(t) = -6 t-4. The third is y(t) = 4 t. The fourth is x(t) = -4 and y(t) = 7 t+5. At time t = 2, what is the center of mass of the four car system? 4

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass You see four cars from an airplane. Being bored you derive an equation for each of their positions. The first is x(t) = 2 t+5. The second is x(t) = -6 t-4. The third is y(t) = 4 t. The fourth is x(t) = -4 and y(t) = 7 t+5. What is the speed of the center of the mass of this system? 5

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass A pole

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass A pole has a linear density of (0. 3 x) kg/m. If it has a length of 200 cm, where is the center of mass from the lighter end of the bat? 6

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Which of

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Which of the following is the rotational counterpart of force? 1. q 2. w 3. a 4. I 5. t 6. K 7. L 7

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is the name of the variable t? 1. Angular Acceleration 2. Moment of Inertia 3. Torque 4. Rotational Kinetic Energy 5. Angular Momentum 6. Angular displacement (angle) 7. Angular velocity 8. Angular Force 8

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is the magnitude of the force that the ball is putting on the cross-beam? y x m = 200 kg 9

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Given the

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Given the board below and using the equation and assuming that the point of rotation is the one shown, what is the magnitude of the torque that the ball is putting on the cross-beam? y Point of rotation x 30 o 10 m m = 200 kg 10

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Given the

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Given the board below and using the equation and assuming that the point of rotation is the one shown, what is the direction of the torque that the ball is putting on the cross-beam? y Point of rotation x 30 o 10 m m = 200 kg 1. i 2. -i 11 3. j 4. -j 5. k 6. -k

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What keeps

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What keeps the truck from flipping over? y Point of rotation x 30 o 10 m m = 200 kg 12 1. 2. 3. 4. The tension in the cable The weight of the truck The torque from the cable The torque from the weight of the truck

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is the magnitude of the torque from the weight of the truck? y Point of rotation x 30 o 10 m m = 200 kg 13

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass What is the direction of the torque from the weight of the truck? y Point of rotation x 30 o 10 m m = 200 kg 1. i 2. -i 14 3. j 4. -j 5. k 6. -k

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass If the

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass If the truck weight 2000 kg, how far is the center of mass of the truck from the center of rotation? y Point of rotation x 30 o 10 m m = 200 kg 15

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Adding 100

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Adding 100 kg to the mass of the ball, we change the total torque. If the entire truck rotates with an acceleration of 5 rad/s 2, what is its moment of inertia? y Point of rotation x 30 o 10 m m = 200 kg 16

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Using the

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Using the moment of inertia from the last question and the angular acceleration of 5 rad/s 2, what is the magnitude of the angular momentum of the truck after 10 seconds? y Point of rotation x 30 o 10 m m = 200 kg 17

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Using the

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass Using the moment of inertia from the last question and the angular acceleration of 5 rad/s 2, what is the rotational kinetic energy of the truck after 10 seconds? y Point of rotation x 30 o 10 m m = 200 kg 18

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass A spinning

College and Engineering Physics Quiz 8: Rotational Equations and Center of Mass A spinning cue ball hits the eight ball in a game of billiards. Which of the following quantities are conserved? 1. Translational Velocity 2. Translational Momentum 3. Force 4. Translational Kinetic Energy 5. Angular Velocity 6. Angular Momentum 7. Torque 8. Rotational Kinetic Energy 19