Angular displacement & velocity

AI Thread Summary
The discussion revolves around calculating the average angular acceleration of a bicycle wheel that initially spins at 7.05 rad/s and completes 13.7 revolutions before stopping. The user initially calculated the average angular acceleration as -0.327 rad/s² but received feedback that this approach was incorrect. It was clarified that average angular acceleration should be calculated as the total change in angular velocity over the total angle covered in radians, which differs from instantaneous quantities. The user was advised to try entering the answer without the negative sign, as the homework platform may have ambiguous requirements. The conversation highlights the importance of understanding the definitions and calculations related to angular motion.
pttest
Messages
16
Reaction score
0

Homework Statement


After fixing a flat tire on a bicycle you give the wheel a spin. Its initial angular speed was 7.05 rad/s and it rotated 13.7 revolutions before coming to rest. What was its average angular acceleration?



Homework Equations


ω2 = 2 alpha . theta


The Attempt at a Solution


ωi = 7.5 rad/s
ωf = 0
theta = 13.7 rev = 86.04 rad
alpha = ?

Using the above equation : alpha = -0.327rad/s^2. But the answer is wrong. Could someone help me??

Thanks in advance
 
Physics news on Phys.org
EDIT: Ignore this post. The poster below is correct.
 
Last edited:
slider142 said:
The "average angular acceleration" has a simple definition: the total change in angular velocity over the total angle covered (in radians), both of which are given by the problem. This is completely analogous to "average linear acceleration", as are most of the definitions of angular quantities. This gives quite a different answer to yours, which is part of an equation of instantaneous quantities (derivatives). Since it is quadratic in nature, it would need corrections to the linear approximation you are making with average quantities.

Angular acceleration is change in angular velocity divided by the time interval over which this change takes place. The dimensions don't come out right otherwise.

Your numerical answer seems to be correct. what makes you think it is not?
 
When I enter that answer in the box (masteringphysics HW), it says try again. So thought it might be a wrong answer.
 
pttest said:
When I enter that answer in the box (masteringphysics HW), it says try again. So thought it might be a wrong answer.

In my opinion, "Mastering Physics" sometimes behaves incredibly stupidly and by this I mean it asks ambiguous questions. Try entering your answer without the negative sign.
 
Kindly see the attached pdf. My attempt to solve it, is in it. I'm wondering if my solution is right. My idea is this: At any point of time, the ball may be assumed to be at an incline which is at an angle of θ(kindly see both the pics in the pdf file). The value of θ will continuously change and so will the value of friction. I'm not able to figure out, why my solution is wrong, if it is wrong .
TL;DR Summary: I came across this question from a Sri Lankan A-level textbook. Question - An ice cube with a length of 10 cm is immersed in water at 0 °C. An observer observes the ice cube from the water, and it seems to be 7.75 cm long. If the refractive index of water is 4/3, find the height of the ice cube immersed in the water. I could not understand how the apparent height of the ice cube in the water depends on the height of the ice cube immersed in the water. Does anyone have an...
Back
Top