3. Charge qi and q2 are located at y-axis as follows: charge q₁ = -1.50 nC at y = -0.700 m and charge 92 +3.20 nC at the origin (y = 0). What is the total force (magnitude and direction) exerted by these two charges on a third charge q3 = +5.00 nC located at y = -0.500 m?

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter23: Electric Forces
Section: Chapter Questions
Problem 29PQ: Two particles with charges q1 and q2 are separated by a distance d, and each exerts an electric...
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Answer the following and provide sketch for the given problem:
3. Charge qi and q2 are located at y-axis as follows: charge q₁ = -1.50 nC at y = -0.700 m and charge
92 +3.20 nC at the origin (y = 0). What is the total force (magnitude and direction) exerted by these
two charges on a third charge q3 = +5.00 nC located at y = -0.500 m?
4. Three charges are placed in a plane as follows:
q₁ +2.50 μC at the origin
92 -4.00 μC at x = +0.400 m, y = 0
q3= -4.00 μC at x = 0 m, y = +0.500 m
What would be the net electric force exerted by these three charges on a fourth charge q4 =
at x = +0.400m, y = +0.500m?
+3.00 μC
5. Calculate the magnitude and direction of the net electric field at the origin due to these two-point
charges: a point charge q₁ = +6.00 nC at the point x = 0.600 m, y = 0.800 m and a second point
charge q2 = +4.00 nC at the point x = 0.600 m, y = 0.
Transcribed Image Text:Answer the following and provide sketch for the given problem: 3. Charge qi and q2 are located at y-axis as follows: charge q₁ = -1.50 nC at y = -0.700 m and charge 92 +3.20 nC at the origin (y = 0). What is the total force (magnitude and direction) exerted by these two charges on a third charge q3 = +5.00 nC located at y = -0.500 m? 4. Three charges are placed in a plane as follows: q₁ +2.50 μC at the origin 92 -4.00 μC at x = +0.400 m, y = 0 q3= -4.00 μC at x = 0 m, y = +0.500 m What would be the net electric force exerted by these three charges on a fourth charge q4 = at x = +0.400m, y = +0.500m? +3.00 μC 5. Calculate the magnitude and direction of the net electric field at the origin due to these two-point charges: a point charge q₁ = +6.00 nC at the point x = 0.600 m, y = 0.800 m and a second point charge q2 = +4.00 nC at the point x = 0.600 m, y = 0.
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