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Byju's Answer
Standard IX
Physics
Force on a Current Carrying Conductor
A circular co...
Question
A circular coil rotates about its diameter which is normal to the magnetic field. If Eo is the Maximum value of the induced emf. The instantaneous emf when the plane of coil makes an angle 60 degrees with the magnetic field
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Q.
A circular coil of conducting wire has an area A and number of turns N. It is lying in a vertical plane in a region where uniform magnetic field B exist with field direction normal to the coil plane. If the coil is rotated about a vertical axis by an angle
π
in 0.5 seconds, then the value of the emf induced at the ends of the coil is
Q.
A plane circular coil
P
of area
A
is placed in a uniform magnetic induction field
B
such that the normal to the coil plane makes an angle of
30
∘
with the direction of the field. The coil is now rotated in the field by ''wobbling'' such that the normal always makes angle
30
∘
with the field during rotation, the angular velocity of rotation being
ω
. Then the emf induced in the coil will be :
Q.
A circular coil of radius
10
cm
is placed in a uniform magnetic field of
3.0
×
10
–
5
T
with its plane perpendicular to the field initially. It is rotated at constant angular speed about an axis along the diameter of the coil and perpendicular to the magnetic field so that it undergoes half of the rotation in
0.2
s
. The maximum value of
E
M
F
induced
(
in
μ
V
)
in the coil will be close to the integer
Q.
A coil is rotated with constant angular speed in a uniform magnetic field about an axis that is perpendicular to the field.
STATEMENT-1
:
The EMF induced in the coil is maximum at the instant the magnetic flux through the coil is zero.
STATEMENT-2
:
The angle between the normal to the coil and magnetic field induction is
90
∘
.
Q.
When a rectangular coil is rotated in a uniform magnetic field about an axis passing through its centre and perpendicular to the field, the emf induced in the coil varies:
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