# Twelve wires of equal resistance $$R$$ are connected to form a cube. The effective resistance between two diagonal ends $$A$$ and $$E$$ will be: 1. $$\dfrac{5 R}{6}$$ 2. $$\dfrac{6 R}{5}$$ 3. $$12 R$$ 4. $$3 R$$

Subtopic:  Kirchoff's Voltage Law |
71%
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A charged particle having drift velocity of $$7.5\times10^{-4}~\text{ms}^{-1}$$ in an electric field of $$3\times10^{-10}~\text{Vm}^{-1}$$, has mobility of:
1. $$2.5\times 10^{6}~\text{m}^2\text{V}^{-1}\text{s}^{-1}$$
2. $$2.5\times 10^{-6}~\text{m}^2\text{V}^{-1}\text{s}^{-1}$$
3. $$2.25\times 10^{-15}~\text{m}^2\text{V}^{-1}\text{s}^{-1}$$
4. $$2.25\times 10^{15}~\text{m}^2\text{V}^{-1}\text{s}^{-1}$$

Subtopic:  Current & Current Density |
82%
From NCERT
NEET - 2020
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Two solid conductors are made up of the same material and have the same length and the same resistance. One of them has a circular cross-section of area ${A}_{1}$ and the other one has a square cross-section of area ${A}_{2}$. The ratio ${A}_{1}/{A}_{2}$ is:

 1 $$1.5$$ 2 $$1$$ 3 $$0.8$$ 4 $$2$$
Subtopic:  Derivation of Ohm's Law |
82%
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NEET - 2020
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The equivalent resistance between $$A$$ and $$B$$ for the mesh shown in the figure is:

 1 $$7.2$$  $$\Omega$$ 2 $$16$$  $$\Omega$$ 3 $$30$$  $$\Omega$$ 4 $$4.8$$  $$\Omega$$
Subtopic:  Combination of Resistors |
87%
From NCERT
NEET - 2020
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For the given circuit, the value of the resistance in which the maximum heat is produced is:

1. $$2~\Omega$$
2. $$6~\Omega$$
3. $$4~\Omega$$
4. $$12~\Omega$$

Subtopic:  Heating Effects of Current |
63%
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A potential divider is used to give outputs of $$2~\text{V}$$ and $$3~\text{V}$$ from a $$5~\text{V}$$ source, as shown in the figure.

Which combination of resistances, from the ones given below, $$R_1, R_2, ~\text{and}~R_3$$ give the correct voltages?
 1 $${R}_1=1~\text{k} \Omega, {R}_2=1 ~\text{k} \Omega, {R}_3=2 ~\text{k} \Omega$$ 2 $${R}_1=2 ~\text{k} \Omega, {R}_2=1~\text{k} \Omega, {R}_3=2~\text{k} \Omega$$ 3 $${R}_1=1 ~\text{k} \Omega, {R}_2=2~ \text{k} \Omega, {R}_3=2~ \text{k} \Omega$$ 4 $${R}_1=3~\text{k} \Omega, {R}_2=2~\text{k} \Omega, {R}_3=2~ \text{k} \Omega$$
Subtopic:  Combination of Resistors |
79%
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Two batteries, one of emf $$18~\text{V}$$ and internal resistance $$2~\Omega$$ and the other of emf $$12$$ V and internal resistance $$1~\Omega$$, are connected as shown. Reading of the voltmeter is:
(if voltmeter is ideal)

1. $$14$$ V
2. $$15$$ V
3. $$18$$ V
4. $$30$$ V

Subtopic:  Grouping of Cells |
78%
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Current through the $$2~\Omega$$ resistance in the electrical network shown is:

 1 zero 2 $$1$$ A 3 $$3$$ A 4 $$5$$ A
Subtopic:  Grouping of Cells |
77%
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The dependence of resistivity $$(\rho)$$ on the temperature $$(T)$$ of a semiconductor is, roughly, represented by:

 1 2 3 4
Subtopic:  Derivation of Ohm's Law |
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What is the reading of the voltmeter of resistance $$1200~\Omega$$ connected in the following circuit diagram?

 1 $$2.5$$ V 2 $$5.0$$ V 3 $$7.5$$ V 4 $$40$$ V
Subtopic:  Combination of Resistors |
67%
From NCERT
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