2. Three charged particles are arranged in a line as below. Calculate the net electrostatic force on particle 3 (the -4.0µC on the right) due to the other two charges. 0.30 m -0.20 m-| Q2 = Q3 = -8.0 μC +3.0 μC -4.0 μC

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter24: Gauss’s Law
Section: Chapter Questions
Problem 24.46P: A thin, square, conducting plate 50.0 cm on a side lies in the xy plane. A total charge of 4.00 108...
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1. What is the magnitude of the electric force between two positive charges, Q1=Q=1µC, five
meters apart?
2. Three charged particles are arranged in a line as below. Calculate the net electrostatic force on
particle 3 (the -4.0µC on the right) due to the other two charges.
-0.30 m -0.20 m-|
Q1 =
-8.0 μC
Q2 =
Q3 =
%3D
43.0 μC-4.0 μC
3. Calculate the magnitude and direction of the electric field at a point P which is 30 cm to the right
of a point charge Q = -3.0µC.
Transcribed Image Text:1. What is the magnitude of the electric force between two positive charges, Q1=Q=1µC, five meters apart? 2. Three charged particles are arranged in a line as below. Calculate the net electrostatic force on particle 3 (the -4.0µC on the right) due to the other two charges. -0.30 m -0.20 m-| Q1 = -8.0 μC Q2 = Q3 = %3D 43.0 μC-4.0 μC 3. Calculate the magnitude and direction of the electric field at a point P which is 30 cm to the right of a point charge Q = -3.0µC.
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