'olicies Current Attempt in Progress The figure shows a rectangular array of charged particles foxed in place, with distance a 50.0 cm and the charges shown as integer multiples of q₁ -4.04 pC and 42 6.03 pC. With V-0 at infinity, what is the net electric potential at the rectangle's center? Number i eTextbook and Media Units +291 +492 a -391 % +492 +291
'olicies Current Attempt in Progress The figure shows a rectangular array of charged particles foxed in place, with distance a 50.0 cm and the charges shown as integer multiples of q₁ -4.04 pC and 42 6.03 pC. With V-0 at infinity, what is the net electric potential at the rectangle's center? Number i eTextbook and Media Units +291 +492 a -391 % +492 +291
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!['olicies
Current Attempt in Progress
The figure shows a rectangular array of charged particles foxed in place, with distance a 50.0 cm and the charges shown as integer
multiples of q₁ -4.04 pC and 42 6.03 pC. With V-0 at infinity, what is the net electric potential at the rectangle's center?
Number i
eTextbook and Media
Units
+291
+492
a
-391
%
+492
+291](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F78a3d881-0be9-4ce5-9273-ce819a5db4ea%2F494bb049-b06d-4611-996d-cf19e03dd26d%2Fgm3xcal_processed.jpeg&w=3840&q=75)
Transcribed Image Text:'olicies
Current Attempt in Progress
The figure shows a rectangular array of charged particles foxed in place, with distance a 50.0 cm and the charges shown as integer
multiples of q₁ -4.04 pC and 42 6.03 pC. With V-0 at infinity, what is the net electric potential at the rectangle's center?
Number i
eTextbook and Media
Units
+291
+492
a
-391
%
+492
+291
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