

13. -14 points SerCP11 8.5.P.059. My Notes Ask Your Teacher A 1.10 kg solid, uniform disk...
A 1.90 kg solid, uniform ball of radius 0.200 m is released from
rest at point A in the figure below, its center of gravity a
distance of 1.90 m above the ground. The ball rolls without
slipping to the bottom of an incline and back up to point B where
it is launched vertically into the air. The ball then rises to its
maximum height hmax at point C.
a) At point B, find the ball's translational speed
vB...
A 1.90 kg solid, uniform ball of radius 0.200 m is released from
rest at point A in the figure below, its center of gravity a
distance of 1.90 m above the ground. The ball rolls without
slipping to the bottom of an incline and back up to point B where
it is launched vertically into the air. The ball then rises to its
maximum height hmax at point C.
a) At point B, find the ball's translational speed
vB...
A 1.90 kg thin, spherical shell of radius 0.200 m is released from rest at point A in the figure below, its center of gravity a distance of 1.80 m above the ground. The spherical shell rolls without slipping to the bottom of an incline and back up to point B where it is launched vertically into the air. The spherical shell then rises to its maximum height hmax at point C. HINT v-0 1.80 m max 0.450 m (a)...
A 1.50 kg solid, uniform disk rolls without slipping across a level surface, translating at 4.50 m/s. If the disk's radius is 0.480 m, find the following. (a) the disk's translational kinetic energy (in J) J (b) the disk's rotational kinetic energy (in J) J
My Notes Ask Your Teacher A bus contains a 1,500 kg flywheel (a disk that has a 0.600 m radius) and has a total mass of 10.000 kg. (a) Calculate the angular velocity (in rad/s) the flywheel must have to contain enough energy to take the bus from rest to a speed of 28.0 m/s, assuming $1.0% of the rotational Kinetic energy can be transformed into translational energy. rad's (b) How high a hilinm) can the bus cimb with this...
A solid, uniform disk of radius 0.250 m and mass 53.7 kg rolls down a ramp of length 4.20 m that makes an angle of 12.0° with the horizontal. The disk starts from rest from the top of the ramp. (a) Find the speed of the disk's center of mass when it reaches the bottom of the ramp. m/s (b) Find the angular speed of the disk at the bottom of the ramp. rad/s
V. A 10-cm diameter, solid, uniform circular disk with mass 0.2 kg rolls, without slipping, starting from rest, down a long 30° incline. It reaches an angular speed of 8 rad/s in 4 s. The distance moved by the center of mass of the disk in 2.0 s is: a. 0.8 m b. 0.1 m c. 0.2 m d. 2.0 m e. None of the above
V. A 10-cm diameter, solid, uniform circular disk with mass 0.2 kg rolls, without slipping, starting from rest, down a long 30° incline. It reaches an angular speed of 8 rad/s in 4 s. The distance moved by the center of mass of the disk in 2.0 s is: a. 0.8 m b. 0.1 m c. 0.2 m d. 2.0 m e. None of the above
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5. -2 points SerCP11 8.5.OP050 My NotesAsk Your Teacher A hoop, a solid cylinder, a solid sphere, and a thin, spherical shell each have the same mass of 4.73 kg and the same radius of 0.218 m (a) What is the moment of inertia (in kg m2) for each object as it rotates about its axis? hoop kg m solid cylinder kg m solid sphere kg m thin, spherical shell kg m (b) Each object is rolled down...
Rolling Motion Up and Down an Incline (a) A rolling (without slipping) hoop with a radius of 0.10 m and a mass of 1.80 kg climbs an incline. At the bottom of the incline, the speed of the hoop's center-of-mass is v. = 7.00 m/s. The incline angle is NOT needed in this problem. Vf=0 Max h What is the angular speed of the hoop's rotation? Enter a number rad/s Submit (5 attempts remaining) What is the hoop's translational kinetic...