The centripetal acceleration is giving by:

the velocity:

10. An object is moving in a circular path with a centripetal acceleration of 100 m/s2...
The centripetal force exerted on a 2.0kg object moving along a circular path of radius 3.0m is 12N. What is the magnitude of its velocity?
A large circus ride has a centripetal acceleration at 6.0 m/s2. If the circular ride has a radius of 11.0 m, what is its velocity at the edge?
A large circus ride has a centripetal acceleration at 6.0 m/s2. If the circular ride has a radius of 11.0 m, what is its velocity at the edge?
Consider an object with a mass of 12.5 kg moving at a constant speed in a circular path with a radius of 7.30 m. The object makes one full revolution in 12.60 seconds. Calculate the centripetal acceleration of the object. Give your answer in m/s2 and with 3 significant figures.
For an object moving in uniform circular motion a) What is the direction of the centripetal force (Fc) b) What is the direction of its acceleration? c) What is the direction of its instantaneous velocity?
A rotating object has a linear speed of 1.7 m/s. It undergoes a centripetal acceleration of 4.5m/s2. What is the radius of the mass's circular motion?
An object is moving in a circular path of radius 4.00 m. If the object moves through an angle of 1.2 radians, then the tangential distance traveled by the object is 2.8 m. 3.2 m. 3.8 m. 4.3 m. 4.8 m.
(b) For an object in uniform circular motion, derive the expression which relates centripetal force to speed. (5 marks] (c) A person swings an object around in a circle on the end of a steel wire, at a constant speed completing one revolution every 1.9 s. The object has a mass of 1.75 kg. The radius of the circle is 2.3 m. (i) Draw a diagram indicating the direction of the following vectors: velocity, centripetal acceleration, centripetal force. [3 marks]...
A particle is moving along a straight path such that the acceleration a = (3v2-2) m/s2, where v is in m/s. If v = 15 m/s when s = 0 and t = 0, please determine the particle’s position, velocity, and acceleration as functions of time.
A particle is moving along a straight path such that the acceleration a = (3v-2) m/s2, where v is in m/s. If v = 15 m/s when s = 0 and t = 0, please determine the particle’s position, velocity, and acceleration as functions of time.