Vertical circular motion with a changing radius

In summary, vertical circular motion with a changing radius is a type of motion where an object moves in a circular path while also changing its distance from the center of the circle. This is commonly seen in amusement park rides like Ferris wheels. It is caused by two forces - gravity and normal force - that must be balanced for the object to continue moving. The velocity of the object constantly changes direction and can be calculated using the equation v = √(rg). The speed of the object is inversely proportional to the radius, meaning that as the radius decreases, the speed increases and vice versa. This is known as the law of conservation of angular momentum. Energy is conserved through the conversion between kinetic and potential energy as the object moves up
  • #1
ddddd28
73
4
Hello,
I am curious to see how the mathematical analysis of a vertical circular motion with a sensible rope, that is to say, a rope that streches easily, looks like. k- constant of the rope.
thanks,
 
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  • #2
What have you done so far to get an idea? My tip: Use a Lagrangian!
 
  • #3
stretchable rope is of infinitely many degrees of freedom system even though the rope lies on a straight fixed line.

In addition to this OP says "vertical motion" this implies gravity. Then what is a circular motion in this context?
And how is mass distributed along the rope?
 
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Related to Vertical circular motion with a changing radius

1. What is vertical circular motion with a changing radius?

Vertical circular motion with a changing radius is a type of motion in which an object moves in a circular path while also changing its distance from the center of the circle. This type of motion is commonly seen in amusement park rides, such as a Ferris wheel, where the radius of the circular path changes as the ride moves up and down.

2. What causes an object to undergo vertical circular motion with a changing radius?

An object undergoing vertical circular motion with a changing radius is experiencing two forces: the force of gravity pulling it towards the center of the circle and the normal force from the surface of the object that is providing the circular path. These two forces must be balanced for the object to continue moving in a circular path with a changing radius.

3. How does the velocity of an object change in vertical circular motion with a changing radius?

In vertical circular motion with a changing radius, the velocity of an object is constantly changing direction, which means it is undergoing acceleration. The speed of the object may also change if the radius of the circular path changes. The velocity can be calculated using the equation v = √(rg), where r is the radius and g is the acceleration due to gravity.

4. What is the relationship between the radius and speed in vertical circular motion with a changing radius?

In vertical circular motion with a changing radius, the speed of an object is inversely proportional to the radius. This means that as the radius decreases, the speed of the object increases, and vice versa. This relationship is known as the law of conservation of angular momentum and is an important principle in understanding circular motion.

5. How is energy conserved in vertical circular motion with a changing radius?

In vertical circular motion with a changing radius, energy is conserved through the conversion between kinetic energy and potential energy. As the object moves from the top of the circle to the bottom, its potential energy decreases and its kinetic energy increases. This energy conversion ensures that the total energy of the system remains constant throughout the motion.

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