megalloa
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Physics Problem please help!
An experiment is performed in deep space with two uniform spheres, one with mass 21.0 kg and the other with mass 100.0 kg. They have equal radii, = 0.40m . The spheres are released from rest with their centers a distance 39.0m apart. They accelerate toward each other because of their mutual gravitational attraction. You can ignore all gravitational forces other than that between the two spheres.
1. When their centers are a distance 25.0m apart, find the speed of the 21.0kg sphere.
2. Find the speed of the sphere with mass 100.0kg .
3. Find the magnitude of the relative velocity with which one sphere is approaching to the other.
4. How far from the initial position of the center of the 21.0kg sphere do the surfaces of the two spheres collide?
F_g = Gm1m2/r^2
Conservation of linear momentum(?)
K = 1/2mv^2
U = -Gm1m2/r
I am very lost. All i can think of is that the linear momentum of collision is conserved, and that the only forces acting in this system is the F_g, and because F_g on each object toward one another is equal, the net Force of the system is zero?(thats why linear momentum is conserved?)
I have no idea how and what equations i should utilize to solve these problems.
please help and offer some guidance as to how i should proceed!
thanks1!
Homework Statement
An experiment is performed in deep space with two uniform spheres, one with mass 21.0 kg and the other with mass 100.0 kg. They have equal radii, = 0.40m . The spheres are released from rest with their centers a distance 39.0m apart. They accelerate toward each other because of their mutual gravitational attraction. You can ignore all gravitational forces other than that between the two spheres.
1. When their centers are a distance 25.0m apart, find the speed of the 21.0kg sphere.
2. Find the speed of the sphere with mass 100.0kg .
3. Find the magnitude of the relative velocity with which one sphere is approaching to the other.
4. How far from the initial position of the center of the 21.0kg sphere do the surfaces of the two spheres collide?
Homework Equations
F_g = Gm1m2/r^2
Conservation of linear momentum(?)
K = 1/2mv^2
U = -Gm1m2/r
The Attempt at a Solution
I am very lost. All i can think of is that the linear momentum of collision is conserved, and that the only forces acting in this system is the F_g, and because F_g on each object toward one another is equal, the net Force of the system is zero?(thats why linear momentum is conserved?)
I have no idea how and what equations i should utilize to solve these problems.
please help and offer some guidance as to how i should proceed!
thanks1!
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