Really confused on how to do these. Please help! Answers
attached



Really confused on how to do these. Please help! Answers attached 1. 1 rad 2. 8m/s...
please help
A uniform disk of radius 0.65 m rotates clockwise about its central axis and accelerates with constant angular acceleration. At time 1-0 it is rotating at 34 rad/s, at timeに15 s later, its angular speed is 13 rad/s. (Recall 2π rad-1 rev). a. What is the direction of the angular velocity? b. What is the direction of the angular acceleration? c. Calculate the magnitude of the angular acceleration d. Through how many radians has the disk turned in...
A spinning disk is rotating at a rate of 2 rad/s in the clockwise direction as shown in the figure. What is the direction of the angular velocity vector? If the disk is slowing down at a rate of 4 rad/s2, what is the direction of the angular acceleration vector? Find the wheel's angular velocity after 2 s. Find the angle through which the wheel has turned after 2 s in radians. Find the magnitude of the velocity (speed) of...
A 50 kg solid disk (I = ½ mr2) with a radius of r starts from rest and rotates about an axis through its center. It takes 30 rotations to reach an angular velocity of ω. Let ω = 24 rad/s Let r = 2.8 m Let θ = 32° What is the disk’s angular acceleration? (4 pts) How much time does it take to reach the final velocity? (4 pts) What is the net torque on the disk during...
A wheel on a game show is given an initial angular speed of 1.22 rad>s. It comes to rest after rotating through 0.75 of a turn. (a) Find the average torque exerted on the wheel given that it is a disk of radius 0.71 m and mass 6.4 kg. (b) If the mass of the wheel is doubled and its radius is halved, will the angle through which it rotates before coming to rest increase, decrease, or stay the same?...
QUESTION 3 5 points Save Answer A solid disk is initially rotating at 25 rad/s and has a constant angular acceleration. After 7.0 s it has rotated through 960 rad. Its angular acceleration in rad/s is:
A uniform solid disk of mass m = 3.06 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 6.09 rad/s. (a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass. kg · m2/s (b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim?...
A uniform solid disk of mass m = 3.08 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 6.09 rad/s. (a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass. kg · m2/s (b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim?...
A uniform solid disk of mass m = 2.99 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 5.96 rad/s. (a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass. kg · m2/s (b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim?...
the angular position of a point on a rotating wheel is given
by theta=2+4t^2+3t^3
rad/s? or rotates at 84 rad/s in idle mode. When shut off, its angular acceleration is -29 (a) What is the angular velocity after 1.0 s? (b) How long will it take for the motor to completely stop? (C) How many revolutions does the motor make before stopping after it 15 turned off? 5.) The angular position of a point on a rotating wheel is given...
1. (4 points) Four forces are acting on a disk as shown in the Figure 1. The radius and the mass of the disk are 10 cm and 2 kg, respectively. The disk is free to rotate about a frictionless axle going through its center. (laisk = {MR2) y (a) Find the torque produced by each force. Make 10 N V2N sure to specify the directions. 15 N (b) Find the angular acceleration of the disk. (c) How many turns...