3. A small object has charge +1.3 × 10-6C. A certain amount of charge q is removed from it and placed on a second small object. The two objects are placed 1 m apart. For the following two questions, if your answer is “Yes", please determine the value for q; if your answer is “No", please briefly explain the reason. B. If we do not know whether q is positive or negative, then can you find what should be q to make the electric force that each object exerts o the other to be a maximum?

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3. A small object has charge +1.3 × 10-°C. A certain amount of charge q is removed
from it and placed on a second small object. The two objects are placed
1 m apart. For the following two questions, if your answer is “Yes", please determine
the value for q; if your answer is “No", please briefly explain the reason.
B. If we do not know whether q is positive or negative, then can you find what
should be q to make the electric force that each object exerts o the other to be
a maximum?
Transcribed Image Text:3. A small object has charge +1.3 × 10-°C. A certain amount of charge q is removed from it and placed on a second small object. The two objects are placed 1 m apart. For the following two questions, if your answer is “Yes", please determine the value for q; if your answer is “No", please briefly explain the reason. B. If we do not know whether q is positive or negative, then can you find what should be q to make the electric force that each object exerts o the other to be a maximum?
Expert Solution
Step 1

Given:

The charge on the small object is 1.3×10-6 C.

The charge removed from the small object is q.

The distance between the two objects is 1 m.

Introduction:

According to Coulomb’s law, the force of attraction or repulsion between two charged bodies is directly proportional to the product of their charges and inversely proportional to the square of the distance between them. It acts along the line joining the two charges considered to be point charges.

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