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direction and velocity

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Uniform circular motion deals with objects moving with what speed in a circular path?

When an object is moving in a uniform circular motion while traveling in a circular path, this means it has a constant speed. When an object is moving in a circular path, this indicates it is constantly being pulled towards the center of the circle.


What is circular motion?

Circular Motion -a motion along a circular path or the motion of an object in a circular Example -blades of a ceiling fan when the fan is switched on. or The motion of body along the circular path is called circular motion


Why is a particle in uniform circular motion not moving at a constant velocity?

No. Velocity has direction and magnitude. The magnitude can be constant, but if the body is in circular motion, the direction of the movement is constantly changing, which means that the velocity is constantly changing. Changing velocity means that the body is accelerating. In this case, because the motion of the body is always changing away from a straight line to cause it to go round the circle, the acceleration acts towards the centre of the circle.


How universe is changing?

The universe is expanding, and it was recently discovered that the universe is expanding much faster than was originally thought. Also, objects within the universe are constantly changing, such as the birth and death of stars, expanding and/or contraction of gas clouds, and objects in motion (the spinning of galaxies and solar systems, rogue stars or planets) are constantly changing.


In what direction do objects travel in a circular path accelerate?

Objects traveling in a circular path accelerate towards the center of the circle due to centripetal acceleration. This acceleration is needed to keep the object moving in a curved path.


What are the key characteristics of objects in horizontal circular motion?

Objects in horizontal circular motion experience a centripetal force that keeps them moving in a circular path. They have a constant speed but changing velocity due to the direction of their motion. Additionally, they experience acceleration towards the center of the circle, known as centripetal acceleration.


How the universe changed?

The universe is expanding, and it was recently discovered that the universe is expanding much faster than was originally thought. Also, objects within the universe are constantly changing, such as the birth and death of stars, expanding and/or contraction of gas clouds, and objects in motion (the spinning of galaxies and solar systems, rogue stars or planets) are constantly changing.


Does the law of acceleration apply to objects having circular motion?

No, the law of acceleration does not apply to objects in circular motion. Instead, objects in circular motion follow the principles of centripetal acceleration and centripetal force, which keep the object moving in its circular path.


What is the circular orbit equation used to calculate the motion of objects in a circular path?

The circular orbit equation used to calculate the motion of objects in a circular path is called the centripetal force equation, which is F mv2/r.


How do you find permutation?

If there are n objects and you have to choose r objects then the number of permutations is (n!)/((n-r)!). For circular permutations if you have n objects then the number of circular permutations is (n-1)!


What is the type of force that keeps objects moving in a circle or an arc?

The type of force that keeps objects moving in a circle or an arc is called centripetal force. It acts towards the center of the circular path and is responsible for changing the direction of the object's velocity without changing its speed.


What are examples of centipetal acceleration?

Examples of centripetal acceleration include a car moving around a curve, a spinning top, or a satellite orbiting around Earth. These objects experience centripetal acceleration because their velocity is constantly changing direction towards the center of the circular path they follow.