A wire 88 cm long bent into a circular loop is kept with plane of the coil perpendicular to the magnetic induction 2.5 wb/m². Within 0.5 second, the coil is changed to a square and magnetic induction is increased by 0.5 Wb/ m². Calculate the e.m.f. induced in the wire. .
A wire 88 cm long bent into a circular loop is kept with plane of the coil perpendicular to the magnetic induction 2.5 wb/m². Within 0.5 second, the coil is changed to a square and magnetic induction is increased by 0.5 Wb/ m². Calculate the e.m.f. induced in the wire. .
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![A wire 88 cm long bent into a circular
loop is kept with plane of the coil
perpendicular to the magnetic induction
2.5 wb/m². Within 0.5 second, the coil is
changed to a square and magnetic induction is
increased by 0.5 Wb/ m². Calculate the e.m.f.
induced in the wire.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F44ad48d7-4e64-454d-89e6-c0d757fadaba%2Fd028b26c-71e2-4941-9f86-7165527680aa%2Fshhylws_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A wire 88 cm long bent into a circular
loop is kept with plane of the coil
perpendicular to the magnetic induction
2.5 wb/m². Within 0.5 second, the coil is
changed to a square and magnetic induction is
increased by 0.5 Wb/ m². Calculate the e.m.f.
induced in the wire.
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