As shown in the figure, two long parallel wires (#1 and #2) separated by a distance d = 34.0 cm carry a current I₁ = I and I2 = 21 respectively in opposite directions, where I = 4.00 A. y d P₁ 12 -wire #2 wire #1 P2 d (a) Determine the magnetic field at the point P₁ midway between the wires. (Express your answer in vector form.) B = T (b) Determine the magnetic field at the point P2. (Express your answer in vector form.) 13 B T
As shown in the figure, two long parallel wires (#1 and #2) separated by a distance d = 34.0 cm carry a current I₁ = I and I2 = 21 respectively in opposite directions, where I = 4.00 A. y d P₁ 12 -wire #2 wire #1 P2 d (a) Determine the magnetic field at the point P₁ midway between the wires. (Express your answer in vector form.) B = T (b) Determine the magnetic field at the point P2. (Express your answer in vector form.) 13 B T
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![As shown in the figure, two long parallel wires (#1 and #2) separated by a distance d = 34.0 cm carry a current I₁ = I and
I2 = 21 respectively in opposite directions, where I = 4.00 A.
y
d
P₁
12
-wire #2
wire #1
P2
d
(a) Determine the magnetic field at the point P₁ midway between the wires. (Express your answer in vector form.)
B =
T
(b) Determine the magnetic field at the point P2. (Express your answer in vector form.)
13
B
T](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F89ca5b3d-4a44-4738-b0d3-b51ea738aca1%2F85742343-b3d1-410f-9bf6-4ed5d906e146%2Fwyxuuf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:As shown in the figure, two long parallel wires (#1 and #2) separated by a distance d = 34.0 cm carry a current I₁ = I and
I2 = 21 respectively in opposite directions, where I = 4.00 A.
y
d
P₁
12
-wire #2
wire #1
P2
d
(a) Determine the magnetic field at the point P₁ midway between the wires. (Express your answer in vector form.)
B =
T
(b) Determine the magnetic field at the point P2. (Express your answer in vector form.)
13
B
T
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