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Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 | Extra Documents, Videos & Tests for Class 10 PDF Download

Lakhmir Singh Physics Class 10 Solutions Page No:44

Question 47:
How will you connect three resistors of 2 Ω, 3 Ω and 5 Ω respectively so as to obtain a resultant resistance of
 2.5 Ω ? Draw the diagram to show the arrangement.

Solution :

Given: Three resistances of 2ohms. 3ohms. 5ohms.

Their resultant. R = 2.5ohms 
Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 | Extra Documents, Videos & Tests for Class 10

Resistance of first line = 2+3 = 5 ohm

So, 1/R = 1/5 + 1/5

On solving we get that

R = 2.5ohms 

Question 48:
How will you connect three resistors of resistances 2 Ω, 3 Ω and 6Ω obtain a total n si stance of: (a) 4 Ω., and (b) 1Ω?

Solution :

(a) Connect 2ohms resistor in series with a parallel combination of 3ohms and 6ohms.
(b) Connect 2ohms. 3ohms. and 6ohms in parallel. 

Question 49:
What is (a) highest, and (b) lowest, resistance which can be obtained by combining Com resistors having the following resistances ?
 4 Ω, 8 Ω, 12 Ω, 24 Ω

Solution :

(a) For obtaining the highest resistance by combining the given resistances, we must connect them in series.

We get.

R = 4+8+12+24 = 48ohms

(b) For obtaining the lowest resistance by combining the given resistances, we must connect them in parallel.

We get.

1/R = 1/4+1/8+1/12+1/24

On solving we get. R = 2ohms 

Question 50:
What is the resistance between A and B in the figure given below ?

Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 | Extra Documents, Videos & Tests for Class 10

Solution :

The three resistance of 20 ohm. 10 ohm and 20 ohm on the extreme right side are in series.

So. the resultant of these three resistances = 20+20+10 = 50ohms.

This 50ohms is in parallel with 30ohms. So resultant of these two will be

1/R = 1/30+1/50

1/R = 80/1500

R = 18.75ohms

Now, the resistances 10 ohms. 18.75 ohms and 10 ohms are in series.

Therefore, resultant resistance = 18.75+10+10 = 38.75ohms.


Question 51:
You are given one hundred 1 Ω resister. What is the smallest and largest resistance you can make in a circuit using these ?

Solution :

Given: n=100. R=1 ohm

For obtaining the smallest resistance, these resistances are connected in parallel:

Equivalent resistance = 1/1 + 1/1 + 1/1 100 times = 100/1

Req = 1/100 = 0.01 ohm

For obtaining the largest resistance, these resistances are connected in series:

Equivalent resistance = 1 + 1 + 1 100 times = 100

Req = 100 ohm 

Question 52:
You are supplied with a number of 100 Ω How could you combine some of these resisters to make a 250 Ω resistor ?

Solution : For obtaining 250ohms. connect two 100ohms in series with a parallel combination of two 100ohms. 

Question 53:
The resistors R1, R2, R3 and R4 in the figure given below are all equal in value.

Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 | Extra Documents, Videos & Tests for Class 10

What would you expect the voltmeters A, B and C to read assuming that the connecting wires in the circuit have negligible resistance ?
Solution :

Req = R+R+R+R = 4R ohm

Total current in the circuit, I = V/R = 12/4R = 3/R

Reading of voltmeter A = Voltage across R1 = I x R1= 3/R x R = 3V

Reading of voltmeter B= Voltage across R2 = I X R2 = 3/R x R = 3V

Reading of voltmeter C= Voltage across the series combination of R3 and R4 = I X (R3+R4) = 3/R x 2R = 6V 

Question 54:
Four resistances of 16 ohms each are connected in parallel. Four such combinations are connected in series.
 What is the total resistance ?

Solution :

Resultant resistance of a parallel combination of four 16 ohm resistances is 1/R = 1/16 + 1/16 + 1/16 + 1/16 = 4/16

R = 4 ohm

Four such combinations are connected in series, so total resistance = 4+4+4+4 = 16 ohm. 

Question 55:
If the lamps are both the same in the figure given below and if A1, reads 0.50 A, what do A2, A3, A4 and A5read ?

Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 | Extra Documents, Videos & Tests for Class 10

Solution : The total current of 0.5 A flowing in the circuit distributes equally in the two arms having lamps (since the lamps have same resistances). So the current through each of these arms is 0.25 A. Hence A2, A3, A4 and A5, all will read 0.25 A. 

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FAQs on Solutions of Electricity (Page No- 44) - Physics By Lakhmir Singh, Class 10 - Extra Documents, Videos & Tests for Class 10

1. What are the different solutions of electricity?
Ans. The different solutions of electricity include the use of renewable energy sources such as solar power, wind power, hydroelectric power, and geothermal power. These sources provide a sustainable and environmentally friendly way of generating electricity.
2. How does solar power work as a solution for electricity?
Ans. Solar power works by harnessing the energy from the sun through the use of photovoltaic (PV) cells. These cells convert sunlight into electricity, which can then be used to power homes and buildings. Solar power is a clean and renewable source of electricity, making it an effective solution for reducing carbon emissions.
3. What is wind power and how is it used as a solution for electricity?
Ans. Wind power is generated by using wind turbines to convert the kinetic energy of the wind into electrical energy. Wind turbines consist of large blades that spin when the wind blows, which then turns a generator to produce electricity. Wind power is a sustainable and abundant source of energy, making it a viable solution for electricity generation.
4. How does hydroelectric power contribute to the solution of electricity?
Ans. Hydroelectric power is generated by harnessing the energy from flowing or falling water. It involves the construction of dams to create a reservoir, which then drives turbines to generate electricity. Hydroelectric power is a clean and renewable source of energy, and it provides a reliable and consistent supply of electricity.
5. What is geothermal power and how does it provide a solution for electricity?
Ans. Geothermal power utilizes the heat from the Earth's core to generate electricity. This is done by tapping into geothermal reservoirs, which contain hot water and steam. The steam is then used to drive turbines and generate electricity. Geothermal power is a reliable and sustainable source of energy, as the heat from the Earth is continuously replenished.
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