1
AIPMT 2012 Mains
MCQ (Single Correct Answer)
+4
-1
Change Language
In a coil of resistance 10 $$\Omega $$, the induced current developed by changing magnetic flux through it, is shown in figure as a function of time. The magnitude of change in flux through the coil in weber is

AIPMT 2012 Mains Physics - Electromagnetic Induction Question 19 English
A
8
B
2
C
6
D
4
2
AIPMT 2012 Prelims
MCQ (Single Correct Answer)
+4
-1
Change Language
A coil of resistance 400 $$\Omega $$ is placed in a magnetic field. If the magnetic flux $$\phi $$ (Wb) linked with the coil varies with time t (sec) as $$\phi = 50{t^2} + 4$$.

The current in the coil at t = 2 sec is
A
0.5 A
B
0.1 A
C
2 A
D
1 A
3
AIPMT 2011 Prelims
MCQ (Single Correct Answer)
+4
-1
The current $$i$$ in a coil varies with time as shown in the figure. The variation of induced emf with time would be

AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 18 English
A
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 18 English Option 1
B
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 18 English Option 2
C
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 18 English Option 3
D
AIPMT 2011 Prelims Physics - Electromagnetic Induction Question 18 English Option 4
4
AIPMT 2010 Prelims
MCQ (Single Correct Answer)
+4
-1
A conducting circular loop is placed in a uniform magnetic field, B = 0.025 T with its plane perpendicular to the loop. The radius of the loop is made to shrink at a constant rate of 1 mm s$$-$$1. The induced emf when the radius is 2 cm, is
A
$$2\pi \mu V$$
B
$$\pi \mu V$$
C
$${\pi \over 2}\mu V$$
D
2$$\mu $$$$V$$
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