2. Given that q = +10 µC and d = 15 cm in the figure to the right: a. What is the net electrostatic force exerted 91 = +9 93 = +3.0g 2 = -2.0g on q2? b. How does your answer change if d is tripled? 3. Use the figure from question 2. Suppose that q2 is allowed to move left or right along the line connecting all of the charges. If q = +10 µC find the distance from q1 where q2 will experience a net electrostatic force of 0 N. The distance between q1 and q3 is fixed at 35 cm. (Hint: Let x be the distance between q. and q2, and the distance between q2 and q3 is [35 cm-x].) (quadratic warning)

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2. Given that q = +10 µC and d = 15 cm in the figure to the right:
a. What is the net electrostatic force exerted
91 = +9
93 = +3.0g
2 = -2.0g
on q2?
b. How does your answer change if d is
tripled?
3. Use the figure from question 2. Suppose that q2 is allowed to move left or right along the line
connecting all of the charges. If q = +10 µC find the distance from q1 where q2 will experience a net
electrostatic force of 0 N. The distance between q1 and q3 is fixed at 35 cm. (Hint: Let x be the distance
between q. and q2, and the distance between q2 and q3 is [35 cm-x].) (quadratic warning)
Transcribed Image Text:2. Given that q = +10 µC and d = 15 cm in the figure to the right: a. What is the net electrostatic force exerted 91 = +9 93 = +3.0g 2 = -2.0g on q2? b. How does your answer change if d is tripled? 3. Use the figure from question 2. Suppose that q2 is allowed to move left or right along the line connecting all of the charges. If q = +10 µC find the distance from q1 where q2 will experience a net electrostatic force of 0 N. The distance between q1 and q3 is fixed at 35 cm. (Hint: Let x be the distance between q. and q2, and the distance between q2 and q3 is [35 cm-x].) (quadratic warning)
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