Problem 4 ots A constant net torque 11 N.m is applied on a uniform solid cylinder with radius 2 m and mass 1.2 Kg. The cylinder starts the rotation from rest and rotates with a constant angular acceleration a int Which formula can be used to calculate the cylinder's moment of inertia? (refer to the formula-sheet and select the number of the correct formula from the list) ÷ b) (5 p Find the cylinder's Moment of Inertia (1) 1= c) Find rotational kinetic energy (Krot) of the cylinder at rest Krot d) Which formula can be used to calculate the final angular speed? (refer to the formula-sheet and select the number of the correct formula from the list): ↑ s) Find the angular speed (w) of the cylinder after 3 seconds Wys
Problem 4 ots A constant net torque 11 N.m is applied on a uniform solid cylinder with radius 2 m and mass 1.2 Kg. The cylinder starts the rotation from rest and rotates with a constant angular acceleration a int Which formula can be used to calculate the cylinder's moment of inertia? (refer to the formula-sheet and select the number of the correct formula from the list) ÷ b) (5 p Find the cylinder's Moment of Inertia (1) 1= c) Find rotational kinetic energy (Krot) of the cylinder at rest Krot d) Which formula can be used to calculate the final angular speed? (refer to the formula-sheet and select the number of the correct formula from the list): ↑ s) Find the angular speed (w) of the cylinder after 3 seconds Wys
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Angular speed, acceleration and displacement
Angular acceleration is defined as the rate of change in angular velocity with respect to time. It has both magnitude and direction. So, it is a vector quantity.
Angular Position
Before diving into angular position, one should understand the basics of position and its importance along with usage in day-to-day life. When one talks of position, it’s always relative with respect to some other object. For example, position of earth with respect to sun, position of school with respect to house, etc. Angular position is the rotational analogue of linear position.
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