9 (μC) and q₂ = 3 (μC) √13 are placed at the points 0(0, 0) and A(x, 0) meters as shown in the figure. The electrical potential at the point P(0, 2) meter is zero volts (VP = 0 V). Calculate the location of charge q₂. Q-1 Two point charges q₁ = 2 P(0, 2) O(OA) 91=- (Mc) V13 92= 3 (μ¤) A(x,0) 92
9 (μC) and q₂ = 3 (μC) √13 are placed at the points 0(0, 0) and A(x, 0) meters as shown in the figure. The electrical potential at the point P(0, 2) meter is zero volts (VP = 0 V). Calculate the location of charge q₂. Q-1 Two point charges q₁ = 2 P(0, 2) O(OA) 91=- (Mc) V13 92= 3 (μ¤) A(x,0) 92
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![9
√13 (μC) and q₂ = 3 (μC)
are placed at the points 0(0, 0) and A(x, 0) meters as shown in
the figure. The electrical potential at the point P(0, 2) meter is
zero volts (VP = 0 V). Calculate the location of charge q₂-
Q-1 Two point charges q₁
=
лу
P(0, 2)
O(OA) X
91=-
g (pc)
V13
92= 3 (ME)
A(x,0)
92](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F274123a1-b699-40c3-8400-c82dcc87224b%2Fc61c43fd-5a8f-4180-9e01-64772ec7147c%2Fa4larw_processed.jpeg&w=3840&q=75)
Transcribed Image Text:9
√13 (μC) and q₂ = 3 (μC)
are placed at the points 0(0, 0) and A(x, 0) meters as shown in
the figure. The electrical potential at the point P(0, 2) meter is
zero volts (VP = 0 V). Calculate the location of charge q₂-
Q-1 Two point charges q₁
=
лу
P(0, 2)
O(OA) X
91=-
g (pc)
V13
92= 3 (ME)
A(x,0)
92
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