6. Calculate the energy required to assemble the three charges into the configuration shown below. q1 = +6.0 µC, q2 = +12 µC,and q3 = -12 µC. The long sides of the rectangle are 0.40 m and the short sides are 0.20 m. +6.0 µc -12 µc 0.40 m 0.20 m 2 412 μC
6. Calculate the energy required to assemble the three charges into the configuration shown below. q1 = +6.0 µC, q2 = +12 µC,and q3 = -12 µC. The long sides of the rectangle are 0.40 m and the short sides are 0.20 m. +6.0 µc -12 µc 0.40 m 0.20 m 2 412 μC
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![6. Calculate the energy required to assemble the three charges into the configuration shown
below. q1 = +6.0 µC, q2 = +12 µC,and q3 = -12µC. The long sides of the rectangle are
0.40 m and the short sides are 0.20 m.
+6.0 με
-12 µc
0.40 m
0.20 m
+12 μC](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F23c82962-fdd3-4aae-a199-ce5241f64aad%2F280257f8-23bb-4a78-b04b-24bc4230e7f7%2Fab97omu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:6. Calculate the energy required to assemble the three charges into the configuration shown
below. q1 = +6.0 µC, q2 = +12 µC,and q3 = -12µC. The long sides of the rectangle are
0.40 m and the short sides are 0.20 m.
+6.0 με
-12 µc
0.40 m
0.20 m
+12 μC
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