Airforce X Y / Indian Navy SSR Exam  >  Airforce X Y / Indian Navy SSR Notes  >  DC Pandey Solutions: Current Electricity - 2

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR PDF Download

Introductory Exercise 20.4

Ques 1: In the circuit shown in figure, a 12 V power supply with unknown internal resistance r is connected to a battery with unknown emf. E and internal resistance 1Ω  and to a resistance of 3Ω . carrying a current of 2 A. The current through the rechargeable battery is 1 A in the direction shown. Find the unknown current i, internal resistance r and the emf E.
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Ans: 
Applying loop law equation in upper loop we have,
E + 12 - ir - 1 = 0 ...(i)
Applying loop law equation in lower loop we have where i = 1 + 2 = 3A
E + 6 - 1 = 0 ...(ii)
Solving these two equations we get, E = -5Vand r = 2Ω

Ques 2: In the above example, find the power delivered by the 12 V power supply and the power dissipated in 3 W resistor.
Ans: 
Power delivered by a battery = Ei
= 12 × 3 = 36 W
Power dissipated in resistance = i2R
= (3) (2)2 = 12W

Introductory Exercise 20.5

Ques 1: Find the equivalent emf and internal resistance of the arrangement shown in Fig.
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Ans: 

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
r = 0.5 W

Ques 2: If a battery of emf E and internal resistance r is connected across a load of resistance R. Show that the rate at which energy is dissipated in R is maximum when R = r and this maximum power is P = E2/4r.
Ans:

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
P = power across R = i2R
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
For power to be maximum,
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
By putting weDC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR get, R = r
Further, by putting R = r in Eq. (i)
we get,DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

Ques 3: Two identical batteries each of emf E = 2 volt and internal resistance r =1 ohm are available to produce heat in an external resistance by passing a current through it. What is the maximum power that can be developed across an external resistance R using these batteries.
Ans: 
As derived in the above question,
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Here, E = net emf = 2 + 2 = 4 V
and r= net internal resistance
= 1 + 1 = 2Ω
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

Ques 4: The full scale deflection current of a galvanometer of resistance 1Ω is 5 mA. How will you convert it into a voltmeter of range 5 V ?
Ans: 
V = ig(G + R)
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR = series resistance connected with galvanometer
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

Ques 5: A micrometer has a resistance of 100Ω and full scale deflection current of 50μA. How can it be made to work as an ammeter of range 5 mA ?
Ans:

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

Ques 6: A voltmeter has a resistance G and range V. Calculate the resistance to be used in series with it to extend its range to nV.
Ans: 
V = igG
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Now, nV = ig(G + R) = V/G (G + R) R = (n - 1)G

Ques 7: The potentiometer wire AB is 600 cm long.
(a) At what distance from A should the jockey J touch the wire to get zero deflection in the galvanometer.
(b) If the jockey touches the wire at a distance 560 cm from A, what will be the current through the galvanometer.
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Ans: 
(a)
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSRor emf of lower battery
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Solving this equation we get,
l = 320 cm

(b) Resistance of 560 cm =DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
= 14r Now the circuit is as under,
DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR
Applying loop law in upper loop we have,
E - 14r(i1 - i2) - i1r - i1r = 0 ...(i)
Applying loop law in lower law loop we have,
-E/2 - i2r + (i:- i2)(14r) = 0 ...(ii)
Solving these two equations we getDC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

Introductory Exercise 20.6

Ques 1: For the given carbon resistor, let the first strip be yellow, second strip be red, third strip be orange and fourth be gold. What is its resistance?
Ans: 
Yellow → 4
Red → 2
Orange → 10
Gold → 5
R = (4.2 × 103 + 5%) Ω

Ques 2: The resistance of the given carbon resistor is (2.4 ×106Ω ± 5%)Ω . What is the sequence of colours on the strips provided on resistor?
Ans: 2 → Red
4 → Yellow
106 → Blue
5% → Gold

The document DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR is a part of Airforce X Y / Indian Navy SSR category.
All you need of Airforce X Y / Indian Navy SSR at this link: Airforce X Y / Indian Navy SSR

Top Courses for Airforce X Y / Indian Navy SSR

FAQs on DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

1. What is the formula to calculate electric current?
Ans. The formula to calculate electric current is given by Ohm's law: I = V/R, where I represents the electric current, V represents the voltage, and R represents the resistance.
2. How can we measure electric current?
Ans. Electric current can be measured using an ammeter, which is connected in series with the circuit. The ammeter measures the flow of electric charges passing through a point in the circuit and provides the reading in amperes (A).
3. What is the significance of the direction of electric current?
Ans. The direction of electric current represents the flow of positive charges. In reality, the flow of electric charges is due to the movement of negatively charged electrons. However, conventionally, the direction of electric current is considered to be opposite to the flow of electrons, i.e., from the positive terminal to the negative terminal of a battery or power source.
4. What factors affect the resistance of a conductor?
Ans. The resistance of a conductor is influenced by several factors, including its length, cross-sectional area, material, and temperature. Longer conductors have higher resistance, while conductors with larger cross-sectional areas have lower resistance. The type of material also affects resistance, with materials like copper having lower resistance compared to materials like iron. Additionally, the resistance of most conductors increases with an increase in temperature.
5. How does the resistance affect the flow of electric current in a circuit?
Ans. According to Ohm's law, the flow of electric current in a circuit is inversely proportional to the resistance. This means that as the resistance increases, the flow of electric current decreases, and vice versa. Therefore, higher resistance in a circuit leads to lower current, while lower resistance allows for a higher current flow.
Download as PDF
Explore Courses for Airforce X Y / Indian Navy SSR exam

Top Courses for Airforce X Y / Indian Navy SSR

Signup for Free!
Signup to see your scores go up within 7 days! Learn & Practice with 1000+ FREE Notes, Videos & Tests.
10M+ students study on EduRev
Related Searches

mock tests for examination

,

practice quizzes

,

ppt

,

Summary

,

Free

,

MCQs

,

shortcuts and tricks

,

Viva Questions

,

pdf

,

Extra Questions

,

study material

,

Sample Paper

,

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

,

Important questions

,

Semester Notes

,

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

,

video lectures

,

Previous Year Questions with Solutions

,

Exam

,

past year papers

,

DC Pandey Solutions: Current Electricity - 2 - Airforce X Y / Indian Navy SSR

,

Objective type Questions

;