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Byju's Answer
Standard XII
Physics
Ampere's Circuital Law
Given, R 1 =...
Question
Given,
R
1
=
1
Ω
,
C
1
=
2
μ
F
R
2
=
2
Ω
,
C
2
=
4
μ
F
The time constant (in
μ
s
) for the circuits
I
,
I
I
,
I
I
I
respectively :
A
18
,
8
/
9
,
4
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B
18
,
4
,
8
/
9
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C
4
,
8
/
9
,
18
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D
8
/
9
,
18
,
4
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Solution
The correct option is
D
8
/
9
,
18
,
4
τ
1
=
8
9
μ
s
τ
2
=
18
μ
s
τ
3
=
4
μ
s
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Similar questions
Q.
Given,
R
1
=
1
Ω
,
C
1
=
2
μ
F
,
R
2
=
2
Ω
,
C
2
=
4
μ
F
The time constants
(
in
μ
S
)
for the circuits I, II, III are respectively
Q.
In the figure shown below,
R
1
=
1
Ω
,
R
2
=
2
Ω
,
C
1
=
4
μ
F
,
C
2
=
2
μ
F
, the time constants (in
μ
s
) for the circuits
I
,
I
I
and
I
I
I
respectively are
Q.
In the given circuit ,
R
1
=
1
Ω
;
R
2
=
2
Ω
;
C
1
=
4
μ
F
;
C
2
=
2
μ
F
, then the time constant (in
μ
s
) for the given
RC
circuits are
Q.
Given
L
1
=
1
m
H
,
R
1
=
1
Ω
,
L
2
=
2
m
H
,
R
2
=
2
Ω
Neglecting mutual inductance, the time constants (in ms) for circuits (i), (ii), and (iii) are:
Q.
In the circuit shown in figure,
R
1
=
1
Ω
,
R
2
=
2
Ω
,
,
C
1
=
1
μ
F
,
C
2
=
2
μ
F
and
E
=
6
V
. Calculate charge on each capacitor in steady state.
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