Dr. Sunil Kushwaha Solutions for Chapter: Electricity, Exercise 10: Mock Test

Author:Dr. Sunil Kushwaha

Dr. Sunil Kushwaha Physics Solutions for Exercise - Dr. Sunil Kushwaha Solutions for Chapter: Electricity, Exercise 10: Mock Test

Attempt the free practice questions on Chapter 1: Electricity, Exercise 10: Mock Test with hints and solutions to strengthen your understanding. SCIENCE [PHYSICS] Class-10 solutions are prepared by Experienced Embibe Experts.

Questions from Dr. Sunil Kushwaha Solutions for Chapter: Electricity, Exercise 10: Mock Test with Hints & Solutions

EASY
10th CBSE
IMPORTANT

Study the following circuit and answer the following questions:

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(ii) How much current is following through 15 Ω  resistors.

MEDIUM
10th CBSE
IMPORTANT

A bulb is rated at 200 V-1000 W. What is its resistance? Five such bulbs lighted for 4 hours. What is the electrical energy consumed? Calculate the cost, if the rate is 50 paise per unit.

EASY
10th CBSE
IMPORTANT

What is meant by saying that the potential difference between two points is 1 volt? Name a device that helps to measure the potential difference across a conductor.

EASY
10th CBSE
IMPORTANT

For the two circuits I and II shown below, the voltmeter readings would be:

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EASY
10th CBSE
IMPORTANT

To determine the equivalent resistance of a series combination of two resistors R1 and R2, a student arranges the following set up:
Which of the following statements will be true for this circuit?
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EASY
10th CBSE
IMPORTANT

In the experiment studying the dependence of current I on the potential difference V, three students plotted the following graphs between V and I. The graph that is likely to be correct is/are:

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EASY
10th CBSE
IMPORTANT

In the experiment on finding the equivalent resistance of two resistors connected in series, three students connected the ammeter in their circuits in the three ways X, Y and Z shown here.
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Assuming their ammeters to be ideal, the ammeter correctly connected in:

EASY
10th CBSE
IMPORTANT

In the electrical circuit shown in figure, the potential across 4Ω resistor is:

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