answersLogoWhite

0

  1. A car moving around a curve on a road.
  2. A rock being swung in a circular path on a string.
  3. A rocket moving away from Earth into space.
  4. A satellite orbiting around a planet.

The rocket moving away from Earth into space is not an example of centripetal acceleration because centripetal acceleration is directed towards the center of the circular path, whereas the rocket moving away from Earth is not following a circular path.

User Avatar

AnswerBot

1y ago

What else can I help you with?

Related Questions

When an object experiences centripetal acceleration in which direction does it acceleration?

Centripetal acceleration always points towards the center of the circular path that the object is following.


Are not examples of centripetal acceleration Check all that apply.?

Examples of centripetal acceleration include a car turning a corner, a ball moving in a circular path on a string, and a planet orbiting around a star.


Ask us of the following are not examples of centripetal acceleration Check all that apply.?

Rotation of a planet around the sun A car turning around a curve Water flowing in a straight river Swinging a ball on a string The incorrect examples of centripetal acceleration are: Water flowing in a straight river A car turning around a curve


Are radial and centripetal acceleration the same?

No, radial and centripetal acceleration are not the same. Radial acceleration is the acceleration towards the center of a circle, while centripetal acceleration is the acceleration that keeps an object moving in a circular path.


Is radial acceleration the same as centripetal acceleration?

No, radial acceleration and centripetal acceleration are not the same. Radial acceleration is the acceleration directed towards the center of a circle, while centripetal acceleration is the acceleration that keeps an object moving in a circular path.


What is the formula for centripetal acceleration in terms of velocity and radius?

The formula for centripetal acceleration is a v2 / r, where a is the centripetal acceleration, v is the velocity, and r is the radius.


What is the difference between centripetal acceleration and tangential acceleration in circular motion?

Centripetal acceleration is the acceleration directed towards the center of a circular path, while tangential acceleration is the acceleration along the tangent of the circle, perpendicular to the centripetal acceleration.


What are examples centripetal acceleration?

Roulette. The ball going in a circle is an example of centripetal force, its speed (whatever it may be) is constantly changing so it is Acceleration. In other words, it is Centripetal Acceleration.A woman walking her dog around an oval jogging path.A race car on a curved stretch of track.


Is it possible to experience centripetal acceleration but not tangential acceleration?

Yes, it is possible to experience centripetal acceleration without tangential acceleration. Centripetal acceleration is the acceleration directed towards the center of a circular path, while tangential acceleration is the acceleration along the direction of motion. In cases where an object is moving in a circular path at a constant speed, there is centripetal acceleration but no tangential acceleration.


What is the acceleration toward the center of a curved or circular path is called what acceleration?

That's called 'centripetal acceleration'. It's the result of the centripetal forceacting on the object on the curved path.


What is the differences between tangential acceleration and centripetal acceleration?

Tangential acceleration is the acceleration in the direction of motion of an object, while centripetal acceleration is the acceleration towards the center of a circular path. Tangential acceleration changes an object's speed, while centripetal acceleration changes its direction.


How do you calculate centripetal acceleration?

Centripetal acceleration can be calculated using the formula a v2 / r, where a is the centripetal acceleration, v is the velocity of the object, and r is the radius of the circular path.