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THIS IS RIGHT ANSWER. PLEASE SHOW STEP BY STEP!!! A solid cylinder of mass m 3...
A 14 g bullet is fired at 436.9 m/s into a solid cylinder of mass 26.5 kg and a radius 0.28 m. The cylinder is initially at rest and is mounted on fixed vertical axis that runs through it's center of mass. The line of motion of the bullet is perpendicular to the axle and at a distance 8.3 cm from the center. What is the initial angular momentum of the system? Find the angular velocity of the system after...
1. A compost barrel can be considered as a solid cylinder of mass 50.0 kg and radius ofr= 30.0 cm, and a length of 0.900 m. It can be turned about the long axis axis of rotation marked by x on the picture) by applying a force to a handle located d=20.0 cm from the axis of the cylinder. The compost barrel needs to be turned through 250 complete revolutions. Assume you can apply a constant force of F =...
A solid cylinder has length L = 50.0 cm, radius R = 40.0 cm, and
mass m = 600 kg. Starting from rest, it is uniformly accelerated
for 5.0 seconds, until spinning around its axis at 20 rev/s.
a. What is the angular acceleration in rad/s2 ?
b. Through what angular displacement did the cylinder turn in
these 5.0 s?
ZOOM 40.0 cm, and mass m = 600 kg 2. A solid cylinder has length L = 50.0 cm, radius...
Constants Part A A solid, uniform cylinder with mass 8.30 kg and diameter 19.0 cm is spinning with angular velocity 205 rpm on a thin, frictionless axle that passes along the cylinder axis. You design a simple friction- brake to stop the cylinder by pressing the brake against the outer rim with a normal force. The coefficient of kinetic friction between the brake and rim is 0.345. What must the applied normal force be to bring the cylinder to rest...
(14%) Problem 6: A playground merry-go-round with a mass of 130 kg and a radius of 1.4 m is rotating with an angular frequency of 0.48 rev/s. Randomized Variables m = 130 kg m2 = 21 kg w; = 0.48 rev/s r=1.4 m * What is the magnitude of its angular velocity, in radians per second, after a 21 kg child gets onto it by grabbing its outer edge? The child is initially at rest.
A solid, uniform cylinder with mass 8.05kg and diameter 20.0cm is spinning with angular velocity 240rpm on a thin, frictionless axle that passes along the cylinder axis. You design a simple friction-brake to stop the cylinder by pressing the brake against the outer rim with a normal force. The coefficient of kinetic friction between the brake and rim is 0.336. What must the applied normal force be to bring the cylinder to rest after it has turned through 5.50 revolutions?
Q7 (15 points): A solid cylinder of mass 5 kg and radius R 0.15 m rolls without slipping on a horizontal surface and is accelerated to the right by a constant force F of magnitude 6 N that is applied at the cylinder by a massless rope as shown in the below figure. Find a) the magnitude of the acceleration of the center of mass of the cylinder, b) the magnitude of the angular acceleration of the cylinder about the...
6. A 25-kg solid cylinder with a radius of 11 cm, initially at rest, is free to rotate about the axis of the cylinder. A rope of negligible mass is wrapped around it and pulled with a force of 17 N. Assuming that the rope does not slip, determine the following a) The torque exerted on the cylinder by the rope b) The angular acceleration of the cylinder c) The angular speed of the cylinder after 0.5 s
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answer please and thank you!
8) A 3 kg solid sphere with a radius of 0.1 meters and a 5 kg cylinder with a radius of 0.2 meters are both at rest at the top of an incline plane with a height of 4 meters. A solid sphere has a moment of inertia I =-MR2. A solid cylinder has a moment of inertia about its central axis of I--MR". 2 If they are both...
1. A solid cylinder has a mass of 5 kg and a radius of 30 cm. A torque of 40 Nm is applied to the cylinder. What will be its angular acceleration? a) 37.5 rad/s2 b) 59.3 rad/s2 c) 89.0 rad/s2 d) 178 rad/s2 2. When an object is in static equilibrium a) the net force on it is zero b) the net torque on it is zero c) the net force and net torque are zero d) not enough...