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Physics
Magnetic flux passing through a coil is initially <math><mn>4</mn><mo>×</mo><msup><mrow><mn>10</mn></mrow><mrow><mo>-</mo><mn>4 </mn></mrow></msup><mn>W</mn><mn>b</mn></math> . It reduces to <math><mn>10</mn><mi>%</mi></math> of its original value in <math><msup><mrow><mi>t</mi></mrow></msup></math> second. If the emf induced is 0.72 mV then <math><msup><mrow><mi>t</mi></mrow></msup></math> in second is
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Q. Magnetic flux passing through a coil is initially
4
×
10
-
4
W
b
. It reduces to
10
%
of its original value in
t
second. If the emf induced is 0.72 mV then
t
in second is
NTA Abhyas
NTA Abhyas 2022
A
0.3
B
0.4
C
0.5
D
0.6
Solution:
ϕ
1
=
4
×
10
-
4
Wb
ϕ
2
=
0
.1
×
ϕ
1
=
4
×
10
-
5
Wb
ε
=
0.72
m
V
∴
t
=
?
Using
ε
=
-
d
ϕ
d
t
⇒
d
t
⇒
d
ϕ
ε
=
4
×
10
-
4
-
4
×
10
-
5
72
×
10
-
5
=
4
×
10
-
5
(
9
)
72
×
10
−
5
=
1
2
=
0.5
s