A wire carrying a steady 10 A current (dc), has a length of 10 cm between the pole faces of a magnet. The wire is at an angle of 30 degrees to the magnetic field. The magnetic field is uniform at 1 Tesla. Ignore the field beyond the pole pieces. (i) Find the magnitude on the current carrying wire due to the external magnetic field. (ii) Find the direction of the magnetic force.
A wire carrying a steady 10 A current (dc), has a length of 10 cm between the pole faces of a magnet. The wire is at an angle of 30 degrees to the magnetic field. The magnetic field is uniform at 1 Tesla. Ignore the field beyond the pole pieces. (i) Find the magnitude on the current carrying wire due to the external magnetic field. (ii) Find the direction of the magnetic force.
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![A wire carrying a steady 10 A current
(dc), has a length of 10 cm between the
pole faces of a magnet. The wire is at
an angle of 30 degrees to the magnetic
field. The magnetic field is uniform at 1
Tesla. Ignore the field beyond the pole
pieces.
(i) Find the magnitude on the current
carrying wire due to the external
magnetic field.
(ii) Find the direction of the magnetic
force.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4706af77-4ded-42ea-84a9-326893d2c13b%2Ffb6291b2-6657-4dfc-919c-edf571c2995f%2Fp56cbhh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A wire carrying a steady 10 A current
(dc), has a length of 10 cm between the
pole faces of a magnet. The wire is at
an angle of 30 degrees to the magnetic
field. The magnetic field is uniform at 1
Tesla. Ignore the field beyond the pole
pieces.
(i) Find the magnitude on the current
carrying wire due to the external
magnetic field.
(ii) Find the direction of the magnetic
force.
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