FIGURE 2 shows two parallel long straight rigid wires X and Y, each of the wire carry the current of 20 A and 10A in opposite directions. The wires are 1m apart. Determine the magnitude and direction of the magnetic flux density at point Q which is equidistance from wire X and wire Y. (from front view) Calculate the distance, r from wire X to point A where the resultant magnetic field strength is zero. (i) (ii)
FIGURE 2 shows two parallel long straight rigid wires X and Y, each of the wire carry the current of 20 A and 10A in opposite directions. The wires are 1m apart. Determine the magnitude and direction of the magnetic flux density at point Q which is equidistance from wire X and wire Y. (from front view) Calculate the distance, r from wire X to point A where the resultant magnetic field strength is zero. (i) (ii)
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![•A
Wire Y
Q.
Wire X
FIGURE 2
FIGURE 2 shows two parallel long straight rigid wires X and Y, each of the
wire carry the current of 20 A and 10A in opposite directions. The wires are
Im apart.
Determine the magnitude and direction of the magnetic flux density at
point Q which is equidistance from wire X and wire Y. (from front view)
Calculate the distance, r from wire X to point A where the resultant
magnetic field strength is zero.
(i)
(ii)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb5712c0d-d767-47f4-8c87-3c79d2b0f9a6%2F14f71339-2980-4032-9c61-3af0505520ea%2Fhdkimjok_processed.jpeg&w=3840&q=75)
Transcribed Image Text:•A
Wire Y
Q.
Wire X
FIGURE 2
FIGURE 2 shows two parallel long straight rigid wires X and Y, each of the
wire carry the current of 20 A and 10A in opposite directions. The wires are
Im apart.
Determine the magnitude and direction of the magnetic flux density at
point Q which is equidistance from wire X and wire Y. (from front view)
Calculate the distance, r from wire X to point A where the resultant
magnetic field strength is zero.
(i)
(ii)
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