
The working transistor with its three legs marked P,Q and R is tested using a multimeter. No conduction is found between P & Q. By connecting the common (negative) terminal of the multimeter to R and the other (positive) terminal to P or Q, some resistance is seen on the multimeter. The correct statement for the transistor is
(A) It is a n-p-n transistor with R as base
(B) It is a p-n-p transistor with R as collector
(C) It is a p-n-p transistor with R as emitter
(D) It is a n-p-n transistor with R as collector
Answer
232.8k+ views
Hint: No conduction between P and Q means they both are identical semiconductors. When the negative is connected to R and positive terminal is connected to P or Q, some conduction is obtained, therefore R is p-type semiconductor and acts as base, P and Q are n-type semiconductors.
Complete step by step solution
Firstly, we are given that no conduction is found between the legs P and Q which clearly indicates that both P and Q are the same type of semiconductors, i.e. either both P and Q are n-type or both P and Q are p-type. From here only we can conclude that R has to act as the base here. This indicates option(A) is correct.
Further, when some resistance/conduction is being obtained, the common (negative) terminal of the multimeter is connected to R which means that R is a p-type semiconductor, the other (positive) terminal is connected to either of P or Q which means that they are n-type semiconductors.
Therefore, by double verification, the given transistor is a n-p-n transistor with R as base. Option(A) is correct.
Note For a quick inference, we can say that no conduction is found between P and Q, this means that there has to be some connection between P and R or between Q and R so that R has to act as base. There is only one option in which R is base and that is option(A) so we need not check all the options.
Complete step by step solution
Firstly, we are given that no conduction is found between the legs P and Q which clearly indicates that both P and Q are the same type of semiconductors, i.e. either both P and Q are n-type or both P and Q are p-type. From here only we can conclude that R has to act as the base here. This indicates option(A) is correct.
Further, when some resistance/conduction is being obtained, the common (negative) terminal of the multimeter is connected to R which means that R is a p-type semiconductor, the other (positive) terminal is connected to either of P or Q which means that they are n-type semiconductors.
Therefore, by double verification, the given transistor is a n-p-n transistor with R as base. Option(A) is correct.
Note For a quick inference, we can say that no conduction is found between P and Q, this means that there has to be some connection between P and R or between Q and R so that R has to act as base. There is only one option in which R is base and that is option(A) so we need not check all the options.
Recently Updated Pages
JEE Main 2023 April 6 Shift 1 Question Paper with Answer Key

JEE Main 2023 April 6 Shift 2 Question Paper with Answer Key

JEE Main 2023 (January 31 Evening Shift) Question Paper with Solutions [PDF]

JEE Main 2023 January 30 Shift 2 Question Paper with Answer Key

JEE Main 2023 January 25 Shift 1 Question Paper with Answer Key

JEE Main 2023 January 24 Shift 2 Question Paper with Answer Key

Trending doubts
JEE Main 2026: Session 2 Registration Open, City Intimation Slip, Exam Dates, Syllabus & Eligibility

JEE Main 2026 Application Login: Direct Link, Registration, Form Fill, and Steps

Understanding the Angle of Deviation in a Prism

Hybridisation in Chemistry – Concept, Types & Applications

How to Convert a Galvanometer into an Ammeter or Voltmeter

Understanding Uniform Acceleration in Physics

Other Pages
JEE Advanced Marks vs Ranks 2025: Understanding Category-wise Qualifying Marks and Previous Year Cut-offs

Dual Nature of Radiation and Matter Class 12 Physics Chapter 11 CBSE Notes - 2025-26

Understanding the Electric Field of a Uniformly Charged Ring

JEE Advanced Weightage 2025 Chapter-Wise for Physics, Maths and Chemistry

Derivation of Equation of Trajectory Explained for Students

Understanding Electromagnetic Waves and Their Importance

