A) Two horizontal metal plates are 0.05 m apart. A small sphere remains midway between the plates when a force electrical force of 15 4.5 10 N-x balances the force of gravity. The load on the sphere is 19 6.4 10 C-x. I. What is the potential difference between the plates? II. What is the mass of the small sphere? B) Calculate the number of electrons that must be removed from an isolated conductive sphere and neutral to give it a positive charge of 8.0 x 10-8 C. C) A distance of 0.50m separates loads of -2.0 x 10-7 C and 5.0 x 10-6 C. What is the electrical potential energy between the two charges?

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Please help me answer A. B. C. Question, well explained thank you!
A) Two horizontal metal plates are 0.05 m apart. A small sphere remains midway between
the plates when a force electrical force of 15 4.5 10 N - balances the force of gravity. The
load on the sphere is 19 6.4 10 C-x.
I. What is the potential difference between the plates?
II. What is the mass of the small sphere?
B) Calculate the number of electrons that must be removed from an isolated conductive
sphere and neutral to give it a positive charge of 8.0 x 10-8 C.
C) A distance of 0.50m separates loads of -2.0 x 10-7 C and 5.0 x 10-6 C.
What is the electrical potential energy between the two charges?
Transcribed Image Text:A) Two horizontal metal plates are 0.05 m apart. A small sphere remains midway between the plates when a force electrical force of 15 4.5 10 N - balances the force of gravity. The load on the sphere is 19 6.4 10 C-x. I. What is the potential difference between the plates? II. What is the mass of the small sphere? B) Calculate the number of electrons that must be removed from an isolated conductive sphere and neutral to give it a positive charge of 8.0 x 10-8 C. C) A distance of 0.50m separates loads of -2.0 x 10-7 C and 5.0 x 10-6 C. What is the electrical potential energy between the two charges?
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