Question

Two plastic spheres, each carrying charge uniformly distributed throughout its interior, are initially placed in contact...

Two plastic spheres, each carrying charge uniformly distributed throughout its interior, are initially placed in contact and then released. One sphere has a diameter of 59.0 cmcm , a mass of m1m1 gg , and contains -11.0 μC of charge. The other sphere has a diameter of 45.0 cm , a mass of m2m2 = 160.0 g and contains -33.0 μC of charge. Assume that no other forces are acting on them.

A. Find the maximum speed achieved by the sphere of mass 46.0 gg .

B. Find the maximum speed achieved by sphere of mass 160.0 gg .

C. Find the maximum acceleration achieved by the sphere of mass 46.0 gg .

D. Find the maximum acceleration achieved by the sphere of mass 160.0 gg .

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Two plastic spheres, each carrying charge uniformly distributed throughout its interior, are initially placed in contact...
Two plastic spheres, each carrying charge uniformly distributed throughout its interior, are initially placed in contact and then released. One sphere has a diameter of 65.0 cm , a mass of m1 = 53.0 g , and contains -12.0 μC of charge. The other sphere has a diameter of 45.0 cm , a mass of m2 = 160.0 g and contains -29.0 μC of charge. Assume that no other forces are acting on them. a)Find the maximum speed achieved by...
5. Two identical metal spheres are placed 15.0 cm apart. A charge of 6.00 µC is...
5. Two identical metal spheres are placed 15.0 cm apart. A charge of 6.00 µC is placed on one sphere while a charge of −2.00 µC is placed upon the other. What is the force on each sphere? If the two spheres are brought together and touched and then separated to their original separation, what will be the force on each sphere? Answer: F12 =4.80 N attractive     q = 2.00 μC           F12 = 1.60 N repulsive 7. Three charges q1...
Two red blood cells each have a mass of 9.0××10-14 kg and carry a negative charge...
Two red blood cells each have a mass of 9.0××10-14 kg and carry a negative charge spread uniformly over their surfaces. The repulsion arising from the excess charge prevents the cells from clumping together. One cell carries -2.20 pC of charge and the other -3.30 pC, and each cell can be modeled as a sphere 7.5 μμm in diameter. 1) What speed would they need when very far away from each other to get close enough to just touch? Assume...