1
IAT (IISER) 2022
MCQ (Single Correct Answer)
+4
-1
Two uniformly charged concentric thin spherical shells of radii $r_1$ and $r_2$ have charges $+Q$ and $-Q$, respectively. How does the electrostatic potential vary with distance from the center of the shells? IAT (IISER) 2022 Physics - Electrostatics Question 3 English
A
IAT (IISER) 2022 Physics - Electrostatics Question 3 English Option 1
B
IAT (IISER) 2022 Physics - Electrostatics Question 3 English Option 2
C
IAT (IISER) 2022 Physics - Electrostatics Question 3 English Option 3
D
IAT (IISER) 2022 Physics - Electrostatics Question 3 English Option 4
2
IAT (IISER) 2022
MCQ (Single Correct Answer)
+4
-1

Consider a very long cylinder of radius $a$ having a uniform positive charge density $\rho$. A sphere of radius $a$ has been carved out (see figure), leaving no charge in that region. The distance radially outward to the cylinder, as measured from the center of the sphere is $x$. At what value of $x$ will the electric field be maximum?

IAT (IISER) 2022 Physics - Electrostatics Question 1 English
A
$a$
B
$(2 / 3) a$
C
$(3 / 2) a$
D
$(4 / 3) a$
3
IAT (IISER) 2022
MCQ (Single Correct Answer)
+4
-1
Consider that in a fission of a single Plutonium ( $\mathrm{Pu}^{239}$ ) atom 207 MeV energy is released. Assuming all atoms of Plutonium undergo fission, which of the following options is the closest estimate of the amount of Plutonium required for a 20,000 units of TNT explosion? (1 unit of TNT $=4.184 \times 10^9 \mathrm{~J}, 1 \mathrm{eV}=1.6 \times 10^{-19} \mathrm{~J}$ )
A
60.0 g
B
0.5 kg
C
1 kg
D
10 kg
4
IAT (IISER) 2022
MCQ (Single Correct Answer)
+4
-1
In the given circuit, the box $B$ either contains a capacitor, or an inductor or a resistor. The current $I$ versus time $t$ plots for three cases $\left(a_1, a_2, a_3\right)$ are shown in figures. The switch $S$ is closed at time $t=0$. Which of the following is correct? IAT (IISER) 2022 Physics - Current Electricity Question 1 English 1 IAT (IISER) 2022 Physics - Current Electricity Question 1 English 2
A
$a_1$ corresponds to an inductor, $a_2$ corresponds to a capacitor, $a_3$ correspond to a resistor.
B
$a_1$ corresponds to a resistor, $a_2$ corresponds to an inductor, $a_3$ corresponds to capacitor
C
$a_1$ corresponds to an inductor, $a_2$ corresponds to a resistor, $a_3$ corresponds to capacitor.
D
$a_1$ corresponds to a resistor, $a_2$ corresponds to a capacitor, $a_3$ corresponds to inductor.
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