Centripetal Acceleration definition help

Join the discussion
Registration is free. Ask a follow-up in this thread, or start your own.
5 replies · 2K views
oneplusone
Messages
127
Reaction score
2
Hello, my textbook says that the magnitude
of centripetal acceleration is equal to the sum of the forces acting on that object.
(this is in regard to an object in a circular path, by a string. See https://upload.wikimedia.org/wikipedia/commons/thumb/c/c9/Centripetal_force_diagram.svg/220px-Centripetal_force_diagram.svg.png for an example)

I was wondering why is this so? To me, it doesn't make sense that they are equal in magnitude, since the forces are perpendicular.

Please help.
 
Physics news on Phys.org
oneplusone said:
My textbook says that the magnitude of centripetal acceleration is equal to the sum of the forces acting on that object.
Only the sum of forces component that is perpendicular to the path of an object results in centripetal acceleration. The sum of forces component in the direction of the path of an object results in tangental acceleration.
 
So could you please briefly describe how will you solve for Tension? generically?
 
oneplusone said:
So could you please briefly describe how will you solve for Tension? generically?
The link to the diagram isn't working for me. In what direction is the string rotating, horizontally or vertically or ... ?
 
Looking at that diagram, there are no other forces acting on the mass other than centripetal force, which equals m v^2 / r or m ω^2 r. The centripetal acceleration would be v^2 / r or ω^2 r.
 
  • Like
Likes   Reactions: 1 person