(16V)(5) -80 А: 36 131 В: 40 C:80 D: 16 6: Given two charges, q, = 1 X 10° coulomb and g2 = -5 X 10° coulomb. If q2 is located at 30 centimeters on the x-axis and g, is located at the origin of the Cartesian axis as shown. Find the electric field at the field point having coordinates y = -30 centimeters and x = 0. %3D %3D %3D A: 100 -5x10 B: 197 303. 72 C 200 30cm i3 0.30 B42 D: 222 -0.5 0,3 Ficld Point 7, Given two point charges, q = 1X 10° coulomb and q' = -2 X 106 coulomb located at 3 centimeter distance from each other. What is the magnitude and the force that q exerts on q'? %3D %3D

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter15: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 24P: (a) Find the magnitude and direction of the electric field at the position of the 2.00 C charge in...
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Please explain and how number 6

(16V)(5) -80
А: 36
131
В: 40
C:80
D: 16
6: Given two charges, q, = 1 X 10° coulomb and g2 = -5 X 10° coulomb. If q2 is located
at 30 centimeters on the x-axis and g, is located at the origin of the Cartesian axis as
shown. Find the electric field at the field point having coordinates y = -30 centimeters
and x = 0.
%3D
%3D
%3D
A: 100
-5x10
B: 197
303.
72
C 200
30cm
i3
0.30
B42
D: 222
-0.5
0,3
Ficld
Point
7, Given two point charges, q = 1X 10° coulomb and q' = -2 X 106 coulomb located at
3 centimeter distance from each other. What is the magnitude and the force that q
exerts on q'?
%3D
%3D
Transcribed Image Text:(16V)(5) -80 А: 36 131 В: 40 C:80 D: 16 6: Given two charges, q, = 1 X 10° coulomb and g2 = -5 X 10° coulomb. If q2 is located at 30 centimeters on the x-axis and g, is located at the origin of the Cartesian axis as shown. Find the electric field at the field point having coordinates y = -30 centimeters and x = 0. %3D %3D %3D A: 100 -5x10 B: 197 303. 72 C 200 30cm i3 0.30 B42 D: 222 -0.5 0,3 Ficld Point 7, Given two point charges, q = 1X 10° coulomb and q' = -2 X 106 coulomb located at 3 centimeter distance from each other. What is the magnitude and the force that q exerts on q'? %3D %3D
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