Three charges are placed on three corners of a square, as shown in the figure. Each side of the square is 24.0 cm. Compute the magnitude and direction of the electric field at the fourth corner.

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter23: Electric Fields
Section: Chapter Questions
Problem 23.11OQ: Three charged particles are arranged on corners of a square as shown in Figure OQ23.11, with charge...
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Answers must be expressed in engineering notation (when the exponent of the base 10 multiplier is not a 
multiple of 3, press ENG or SHIFT+ENG, whichever the case.)
Example: 0.06N or 6.0x10-2 N must be expressed to 60x10-3N or 60mN

4. Three charges are placed on three corners of a square, as shown in the figure. Each side of the square is
24.0 cm. Compute the magnitude and direction of the electric field at the fourth corner.
91 = +4.0 nC
92 = -6.5 nC
93 = -3.5 nC
5. Two persons, weighing 784 N each, carry an excess charge of 1.0 Coulomb, one positive and one negative.
a) If they are two meters apart, what is the magnitude of the force of attraction due to the excess charge?
b) How far apart must the two persons be such that the force of attraction due to the excess charge is equal
to their 784-N weight?
Transcribed Image Text:4. Three charges are placed on three corners of a square, as shown in the figure. Each side of the square is 24.0 cm. Compute the magnitude and direction of the electric field at the fourth corner. 91 = +4.0 nC 92 = -6.5 nC 93 = -3.5 nC 5. Two persons, weighing 784 N each, carry an excess charge of 1.0 Coulomb, one positive and one negative. a) If they are two meters apart, what is the magnitude of the force of attraction due to the excess charge? b) How far apart must the two persons be such that the force of attraction due to the excess charge is equal to their 784-N weight?
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