0.200 m -2.00 µC +6.00 µC 0.200 m 0.200 m +4.00 uC Three point charges, -2.00 µ C, +4.00 µ C, and +6.00 µ C, are located along the x-axis as shown in the figure. In symbolic representation, the electric potential at point P due to these charges may be expressed as, taking k as Coulomb constant, O Vp = kl-/2/0.3 + v2 + 20) x 10°³ J/C O Vp - k(-2/0.3 + 2 + 20) x 106 J/C O Vp - k(-2/0.5 + 2 + 10) x 106 J/C O Vp = k(-2.5/0.3 + 20 + 25) x 106 J/C

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0.200 m
-2.00 µC
+6.00 µC
0.200 m
0.200 m
+4.00 uC
Three point charges, -2.00 µ C, +4.00 µ C, and +6.00 µ C, are located along
the x-axis as shown in the figure. In symbolic representation, the electric
potential at point P due to these charges may be expressed as, taking k as
Coulomb constant,
O Vp = kl-/2/0.3 + 2 + 20) x 103 J/C
O Vp = k(-2/0.3 + 2 + 20) x 106 J/C
O Vp = k(-2/0.5 + 2 + 10) x 106 J/C
O Vp = k(-2.5/0.3 + 20 + 25) x 106 J/C
Transcribed Image Text:0.200 m -2.00 µC +6.00 µC 0.200 m 0.200 m +4.00 uC Three point charges, -2.00 µ C, +4.00 µ C, and +6.00 µ C, are located along the x-axis as shown in the figure. In symbolic representation, the electric potential at point P due to these charges may be expressed as, taking k as Coulomb constant, O Vp = kl-/2/0.3 + 2 + 20) x 103 J/C O Vp = k(-2/0.3 + 2 + 20) x 106 J/C O Vp = k(-2/0.5 + 2 + 10) x 106 J/C O Vp = k(-2.5/0.3 + 20 + 25) x 106 J/C
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