Home
Class 12
PHYSICS
A circular coil of radius 8.0 cm and 20 ...

A circular coil of radius 8.0 cm and 20 turns rotates about its vertical diameter with an angular speed of 50 `s^(-1)` in a uniform horizontal magnetic field of magnitude `3 xx 10^(-2) T`. Obtain the maximum and average e.m.f. induced in the coil . If the coil forms a closed loop of resistance `10 Omega`, calculate the maximum value of current in the coil. Calculate the average power loss due to Joule heating.

Text Solution

Verified by Experts

Flux through each turn of the loop `=pi r^2 B cos (omegat)`
`epsi =-N omega pi r^2 B sin (omegat)`
`epsi_("max")=-Nomega pi r^2 B`
`=20 xx 50 xx pi xx 64 xx 10^(-4) xx 3.0 xx 10^(-2) = 0.603 V`
`epsi_("avg") ` is zero over a cycle
`I_("max") = 0.0603 A`
`P_("average") = 1/2 epsi_("max") I_("max") = 0.018 W`
The induced current causes a torque opposing the rotation of the coil. An external agent (rotor) must supply torque (and do work) to counter this torque in order to keep the coil rotating uniformly. Thus, the source of the power dissipated as heat in the coil is the external rotor.
Promotional Banner

Topper's Solved these Questions

  • ELECTROMAGNETIC INDUCTION

    NCERT BANGLISH|Exercise ADDITIONAL EXERCISES|7 Videos
  • ELECTROMAGNETIC INDUCTION

    NCERT BANGLISH|Exercise ADDITIONAL EXERCISES|7 Videos
  • ELECTRIC CHARGES AND FIELDS

    NCERT BANGLISH|Exercise EXERCISES|29 Videos
  • ELECTROMAGNETIC WAVES

    NCERT BANGLISH|Exercise ADDITIONAL EXERCISES|5 Videos

Similar Questions

Explore conceptually related problems

A circular coil of radius 8.0 cm and 20 turns rotates about its vertical diameter with an angular speed of 50 rad. s^(-1) in a uniform horizontal magnetic field of magnitude 3.0xx10^(-2)T . Obtain the maximum and average emf induced in the coil. If the coil forms a closed loop of resistance 10 Omega , calculate the maximum value of current in the coil. Calculate the average power loss due to Joule heating. Where does this power come from?

A coil of inductance 0.50 H and resistance 100Omega is connected to a 240 V, 50Hz ac supply. what is the maximum current in the coil?

A circular coil of 30 turns and radius 8.0 cm carrying current of 6.0 A is suspended vertically in a uniform horizontal magnetic field of magnitude 1.0 T. The field lines make an angle of 60^@ with the normal to the coil. Calculate the magnitude of the counter torque, that must be applied to prevent the coil from turning.

A circular coil of 30 turns and radius 8.0 cm carrying a current of 6.0A is suspended vertically in a uniform horizontal magnetic field of magnitude 1.0 .The field lines make an angle of 60^(@) with the normal of the coil. Calculate the magnitude of the counter torque that must be applied to prevent the coil turning.

A rectangular coil of area 20cm times 15cm and of 485 turns is rotating with a speed pf 1800 rpm in a magnetic field of intensity 20Wb .m^-2 .When the coil is inclined at 60^@ with the magnetic field , what will be the induced emf in the coil?

A coil of inductance 0.50 H and resistance 100Ω is connected to a 240 V, 50 Hz ac supply. What is the maximum current in the coil?

A square coils of side 10 cm consists of 20 turns and carries a current of 12A. The coil is suspended vertically and the normal to the plane of the coil makes an angle of 30^(@) with the direction of a uniform horizontal magnetic field of magnitude 0.80T . What is the magnitude to torque experienced by the coil ?

A circular conducting coil of radius a and resistance R is placed with its plane perpendicular to a magnetic field. The magnetic field varies with time according to the equation B=B_(0)sinomegat . Obtain the expression for the induced current in the coil.

A rectangular coil of N turns and area of cross section A is held in a magnetic field B=B_0 sin omega t. Deduce an expression for the emf induced in the coil.