What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

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What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

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Troy spins a ball attached to a string around in a vertical circle. Assume the ball travels at constant speed during its circular path. Which of the following is not constant throughout the ball's path?

Possible Answers:

The rate at which the string does work on the ball

Force of gravity on the ball

Angular momentum of the ball

All of these are constant

Correct answer:

Tension in the string

Explanation:

Let's go through each answer choice one by one. The force of gravity on the ball is always its mass times gravity, which is constant. The string's pull on the ball is always perpendicular to the ball's motion, so it isn't doing any work, and thus has a constant rate of work 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. The ball's angular momentum is always constant since its mass, the radius of the circle it's traveling in, and its speed are constant. The only the changing is the tension in the string. This is true because the ball needs the same center pulling force (centripetal force) throughout its path, but this centripetal force is constantly changing direction. For example, at the top of its path, the centripetal force must be down because that's the direction of the center of its circle of motion, but at the bottom, the centripetal force must be up. There are two forces on the ball, gravity and tension. The force of gravity is always down and constant, so the tension needs to change in order to keep the center pulling force the same. For example, when the ball is at the bottom of the circle, the force of gravity is away from the center of the circle, so tension must be higher to keep the center pull constant.

An airplane is traveling at 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 and performs a vertical loop in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the net force on the 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 pilot at the bottom of the loop.

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

Circumference of a circle:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Distance plane travels during loop (which will be the circumference)

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Centripetal acceleration:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Plugging in values:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

An airplane is traveling at 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 and performs a vertical loop in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the force due to the seat on the 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 pilot at the bottom of the loop

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

Circumference of a circle:

Distance plane travels during loop (which will be the circumference)

Centripetal acceleration:

Plugging in values:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

An airplane is traveling at 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 and performs a vertical loop in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the radius of the loop.

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

Circumference of a circle:

Distance plane travels during loop (which will be the circumference)

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 model train completes a circle of radius 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the centripetal acceleration.

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

One circle is equal to 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
, thus the linear velocity is:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Using

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 model train completes a circle of radius 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the centripetal force.

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

One circle is equal to 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
, thus the linear velocity is

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Using

Use Newton's second law:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 model train completes a circle of radius 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 in 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
. Determine the angular momentum.

Possible Answers:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Correct answer:

Explanation:

One circle is equal to 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
, thus the linear velocity is:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

The definition of angular momentum:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Plugging in values:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

An object has a mass M, velocity V, and moves in a circle with radius R.

What happens to the centripetal acceleration on the object when the mass is doubled?

Possible Answers:

The centripetal acceleration remains the same.

The centripetal acceleration remains the same.

The centripetal acceleration is halved.

The centripetal acceleration is quadrupled.

The centripetal acceleration is doubled.

Correct answer:

The centripetal acceleration remains the same.

Explanation:

The equation for centripetal acceleration is:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Where 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the centripetal acceleration on an object, 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the velocity of an object, and 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the radius in which the object moves in a circle.

We can see that mass does not play a role in the centripetal acceleration of an object, so no matter what happens to the mass, the centripetal acceleration remains the same.

An object has a mass M, velocity V, and moves in a circle with radius R.

What happens to the centripetal acceleration on the object when the radius is halved?

Possible Answers:

The centripetal acceleration of the object goes to zero.

The centripetal acceleration of the object is halved.

The centripetal acceleration of the object is quadrupled.

The centripetal acceleration of the object remains the same.

The centripetal acceleration of the object is doubled.

Correct answer:

The centripetal acceleration of the object is doubled.

Explanation:

The equation for centripetal acceleration is:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Where 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the centripetal acceleration on an object, 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the velocity of an object, and 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the radius in which the object moves in a circle.

The radius has an inverse relationship with centripetal acceleration, so when the radius is halved, the centripetal acceleration is doubled.

An object has a mass M, velocity V, and moves in a circle with radius R.

What happens to the centripetal acceleration on the object when the velocity is doubled?

Possible Answers:

The centripetal acceleration of the object is quadrupled.

The centripetal acceleration of the object is doubled.

The centripetal acceleration of the object is halved.

The centripetal acceleration of the object remains the same.

The centripetal acceleration of the object goes to zero.

Correct answer:

The centripetal acceleration of the object is quadrupled.

Explanation:

The equation for centripetal acceleration is:

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Where 

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the centripetal acceleration on an object, 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the velocity of an object, and 
What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?
 is the radius in which the object moves in a circle.

The velocity has an quadratic relationship with centripetal acceleration, so when the velocity is doubled, the centripetal acceleration is quadrupled.

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What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Sumita
Certified Tutor

Duke University, Bachelors, Chemistry. Barry University, Masters, Biomedical Sciences.

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Erik
Certified Tutor

University of Illinois at Urbana-Champaign, Bachelor of Science, Physics. University of California-San Diego, Master of Scien...

What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?

Sean
Certified Tutor

University of Illinois at Urbana-Champaign, Bachelor of Science, Physics.

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What happens to the centripetal acceleration of a car in a circular path if the velocity doubles and the radius remains constant?