SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: ) Time: 1 Hour ELECTRICAL ENGINEE

Similar documents
SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT

Aligarh College of Engineering & Technology (College Code: 109) Affiliated to UPTU, Approved by AICTE Electrical Engg.

Question Paper Profile

KINGS COLLEGE OF ENGINEERING DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING QUESTION BANK UNIT I BASIC CIRCUITS ANALYSIS PART A (2-MARKS)

Hours / 100 Marks Seat No.

QUESTION BANK ETE (17331) CM/IF. Chapter1: DC Circuits

SIDDHARTH GROUP OF INSTITUTIONS :: PUTTUR (AUTONOMOUS) Siddharth Nagar, Narayanavanam Road QUESTION BANK (DESCRIPTIVE) UNIT I INTRODUCTION

Downloaded from / 1

Sample Question Paper

V.S.B ENGINEERING COLLEGE DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING I EEE-II Semester all subjects 2 & 16 marks QB

EE6201 CIRCUIT THEORY QUESTION BANK PART A

Module 1. Introduction. Version 2 EE IIT, Kharagpur

CHAPTER 6: ALTERNATING CURRENT

VALLIAMMAI ENGINEERING COLLEGE

Questions Bank of Electrical Circuits

Reg. No. : BASIC ELECTRICAL TECHNOLOGY (ELE 101)

PART B. t (sec) Figure 1

Spring 2000 EE361: MIDTERM EXAM 1

1. A battery has an emf of 12.9 volts and supplies a current of 3.5 A. What is the resistance of the circuit?

VETRI VINAYAHA COLLEGE OF ENGINEERING AND TECHNOLOGY


B.Tech II SEM Question Bank. Electronics & Electrical Engg UNIT-1

148 Electric Machines

Figure Derive the transient response of RLC series circuit with sinusoidal input. [15]

Chapter 30 Inductance, Electromagnetic. Copyright 2009 Pearson Education, Inc.

86 chapter 2 Transformers

UNIVERSITY OF TECHNOLOGY By: Fadhil A. Hasan ELECTRICAL MACHINES

Lesson Plan. Week Theory Practical Lecture Day. Topic (including assignment / test) Day. Thevenin s theorem, Norton s theorem

ELECTROMAGNETIC INDUCTION AND ALTERNATING CURRENT (Assignment)

Transformer & Induction M/C

Chapter 2-1 Transformers

Code No: RR Set No. 1

AC Power Instructor Notes

1. (a) Determine the value of Resistance R and current in each branch when the total current taken by the curcuit in figure 1a is 6 Amps.

VALLIAMMAI ENGINEERING COLLEGE

CHAPTER 2. Transformers. Dr Gamal Sowilam

Downloaded From All JNTU World

DIPLOMA IN (ELECTRICAL/ INSTRUMENTATION & CONTROL ENGG I-SEMESTER ELECTRICAL ENGINEERING (COURSE NO: BEE-101)

WALJAT COLLEGES OF APPLIED SCIENCES In academic partnership with BIRLA INSTITUTE OF TECHNOLOGY Question Bank Course: EC Session:

Module 7. Transformer. Version 2 EE IIT, Kharagpur

MAHARASHTRA STATE BOARD OF TECHNICAL EDUCATION

ECE 2006 University of Minnesota Duluth Lab 11. AC Circuits

Alternating Current Page 1 30

Chapter 11. Alternating Current

INSTITUTE OF AERONAUTICAL ENGINEERING (Autonomous) Dundigal, Hyderabad

Chapter 33. Alternating Current Circuits

Contents. Core information about Unit

Transformers. gpmacademics.weebly.com

SETH JAI PARKASH POLYTECHNIC, DAMLA

INSTITUTE OF AERONAUTICAL ENGINEERING (Autonomous) Dundigal, Hyderabad

Experiment 45. Three-Phase Circuits. G 1. a. Using your Power Supply and AC Voltmeter connect the circuit shown OBJECTIVE

INSTITUTE OF AERONAUTICAL ENGINEERING (Autonomous) Dundigal, Hyderabad ELECTRICAL AND ELECTRONICS ENGINEERING

Physics for Scientists & Engineers 2 2 = 1 LC. Review ( ) Review (2) Review (3) e! Rt. cos "t + # ( ) q = q max. Spring Semester 2005 Lecture 30 U E

CHAPTER 9. Sinusoidal Steady-State Analysis

Chapter 7. Copyright The McGraw-Hill Companies, Inc. Permission required for reproduction or display.

ELEN 140 ELECTRICAL CIRCUITS II Winter 2013

Hours / 100 Marks Seat No.

INSTITUTE OF AERONAUTICAL ENGINEERING (Autonomous) Dundigal, Hyderabad

Downloaded From JNTU World. B.Tech II Year II Semester (R09) Supplementary Examinations December/January 2014/2015 GENERATION OF ELECTRIC POWER

ET1210: Module 5 Inductance and Resonance

PART A. 1. List the types of DC Motors. Give any difference between them. BTL 1 Remembering

Sirindhorn International Institute of Technology Thammasat University

SERIES A.C. CIRCUITS. Learning Objectives. This chapter discusses series AC circuits, and how they function

Hours / 100 Marks Seat No.

University of Jordan School of Engineering Electrical Engineering Department. EE 219 Electrical Circuits Lab

ELECTRICAL MEASUREMENTS

BEE COURSE FILE PREPARED BY: BHARTI TUNDWAL (ECE DEPARTMENT)

K. MAHADEVAN. Professor Electrical and Electronics Engineering PSNA College of Engineering and Technology Dindigul, Tamil Nadu C.

Power. Power is the rate of using energy in joules per second 1 joule per second Is 1 Watt

MCQ Questions. Elements of Electrical Engineering (EEE)

Exercises of resistors 1. Calculate the resistance of a 10 m long Copper wire with diameter d = 1.0 mm.

TRANSFORMERS PART A. 2. What is the turns ratio and transformer ratio of transformer? Turns ratio = N2/ N1 Transformer = E2/E1 = I1/ I2 =K

Code No: R Set No. 1

Experiment No. Experiments for First Year Electrical Engg Lab

ELECTRIC CIRCUITS CMPE 253 DEPARTMENT OF COMPUTER ENGINEERING LABORATORY MANUAL ISHIK UNIVERSITY

Electrical Theory. Power Principles and Phase Angle. PJM State & Member Training Dept. PJM /22/2018

ALTERNATING CURRENT. Lesson-1. Alternating Current and Voltage

Basic Electrical Engineering

BASIC ELECTRICITY/ APPLIED ELECTRICITY

BASIC ELECTRICITY/ APPLIED ELECTRICITY

11. AC-resistances of capacitor and inductors: Reactances.

Alternating Current. Slide 1 / 69. Slide 2 / 69. Slide 3 / 69. Topics to be covered. Sources of Alternating EMF. Sources of alternating EMF

Alternating Current. Slide 2 / 69. Slide 1 / 69. Slide 3 / 69. Slide 4 / 69. Slide 6 / 69. Slide 5 / 69. Topics to be covered

An induced emf is the negative of a changing magnetic field. Similarly, a self-induced emf would be found by

2015 ELECTRICAL SCIENCE

AC reactive circuit calculations

UNIT 1 CIRCUIT ANALYSIS 1 What is a graph of a network? When all the elements in a network is replaced by lines with circles or dots at both ends.

3. What is hysteresis loss? Also mention a method to minimize the loss. (N-11, N-12)

Bakiss Hiyana binti Abu Bakar JKE, POLISAS BHAB

ENGINEERING ACADEMY X V

RC circuit. Recall the series RC circuit.

S.No. Name of the Subject/Lab Semester Page No. 1 Electronic devices II 2 2 Circuit theory II 6

Course ELEC Introduction to electric power and energy systems. Additional exercises with answers December reactive power compensation

Electrical Circuits and Systems

SECTION 4 TRANSFORMERS. Yilu (Ellen) Liu. Associate Professor Electrical Engineering Department Virginia Tech University

2.0 AC CIRCUITS 2.1 AC VOLTAGE AND CURRENT CALCULATIONS. ECE 4501 Power Systems Laboratory Manual Rev OBJECTIVE

GRADE 12 SEPTEMBER 2012 ELECTRICAL TECHNOLOGY

SRI SATYA SAI INSTITUTE OF SCIENCE AND TECHNOLOGY

CHAPTER 2. Basic Concepts, Three-Phase Review, and Per Unit

Alternating Current Study Guide. Preface. This module is DIFFICULT.

Transcription:

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) Three identical resistors of 20 ohm each are connected in star to 415 V, 50 Hz three Phase. Calculate: a) The total power consumed. b) The total power consumed if they are connected in delta. c) The total power consumed, if one of the resistors is opened. [Q.7] [3+2] Q2) A 3 phase balanced load connected across 3 phase 400 V a.c. supply draws a line current of 10A.Two watt meters are used to measure input power.the ratio of two wattmeter readings is 2:1. Find the readings of both watt meters. [Q.15] [2.5+2.5] Part B [20 Marks] Q3). Short Answer type questions: a) State whether a delta connected three phase supply can be fed to a household or not? Give reasons.[1] b) Why are the iron losses also called fixed losses. [1] c) What is flux density? [1] d) Explain the Lenz law? [1] e) Explain the condition of maximum efficiency of transformer? [1] Q4) The efficiency of a 400KVA, single phase transformer is 98.77% at full load 0.8 power factor and 99.13% at half full load unity power factor. (a) Iron losses at full and half full loads [2.5] (b) Cu losses at full and half full loads. [2.5] Q5) State and explain Thevenin s theorem and mention its important applications. [5] Q6) A balanced 3-phase star-connected load of 18KW taking a leading current of 60A when connected across a 3-phase 440V, 50Hz supply. Find the values and nature of the load components and also power factor of the load. [2+2+1] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 17/11/2014 Page-1

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) Three identical resistors of 20 ohm each are connected in star to 415 V, 50 Hz three Phase. Calculate: a) The total power consumed. b) The total power consumed if they are connected in delta. c) The total power consumed, if one of the resistors is opened. [Q.7] [3+2] Q2) A 3 phase balanced load connected across 3 phase 400 V a.c. supply draws a line current of 10A.Two watt meters are used to measure input power.the ratio of two wattmeter readings is 2:1. Find the readings of both watt meters. [Q.15] [2.5+2.5] Part B [20 Marks] Q3). Short Answer type questions: a) State whether a delta connected three phase supply can be fed to a household or not? Give reasons.[1] b) Why are the iron losses also called fixed losses. [1] c) What is flux density? [1] d) Explain the Lenz law? [1] e) Explain the condition of maximum efficiency of transformer? [1] Q4) The efficiency of a 400KVA, single phase transformer is 98.77% at full load 0.8 power factor and 99.13% at half full load unity power factor. (a) Iron losses at full and half full loads [2.5] (b) Cu losses at full and half full loads. [2.5] Q5) State and explain Thevenin s theorem and mention its important applications. [5] Q6) A balanced 3-phase star-connected load of 18KW taking a leading current of 60A when connected across a 3-phase 440V, 50Hz supply. Find the values and nature of the load components and also power factor of the load. [2+2+1] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 17/11/2014 Page-1

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) The power input to a 200V, 50Hz, 3 phase motor running on full load at an efficiency of 90% is measured by two wattmeter which indicates 300KW & 100KW respectively. Find a) The input power b) power factor c) line current and power output. [Q.3] [2+2+1] Q2) Three capacitors, each of 150μF, are connected in delta to a 400V, 3-phase, 50 Hz supply. What will be capacitance of each of the three capacitors such that when connected in star across the same supply, the line current remains the same? [Q.14] [5] Part B Q3). Short Answer type questions: [20 Marks] (a) What do you understand by power factor of a 3-phase circuit? [1] (b) If the thickness of the lamination is reduced to half, what effect will it have on the iron and copper losses for the same load. [1] (c) What is a B-H curve? [1] (d) Draw the no-load phaser diagram of the transformer. [1] (e) Write the formula and unit for active and reactive power for 3-phase. [1] Q4) The efficiency of a 400KVA, single phase transformer is 98.77% at full load 0.8 power factor and 99.13% at half full load unity power factor. (a) Iron losses at full and half full loads [2.5] (b) Cu losses at full and half full loads. [2.5] Q5) State and explain Thevenin s theorem and mention its important applications. [5] Q6) A balanced 3-phase star-connected load of 18KW taking a leading current of 60A when connected across a 3-phase 440V, 50Hz supply. Find the values and nature of the load components and also power factor of the load. [2+2+1] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 17/11/2014 Page-1

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. `Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) Three similar coils connected in star take a total power of 1.5 KW at power factor of 0.2 lagging from a 3 phase 400 V, 50 Hz supply.calculate resistance and inductance of each coil. [Q.6] [2+3] Q2) A 400 V supply is connected across a balanced load of three impedances each consisting of 32 ohm resistance and 24 ohm inductive reactance. Determine the current drawn from power mains, if three Impedances are (a) Star connected (b) Delta connected. [Q.11] [2.5+2.5] Q3). Short Answer type questions: Part B [20 Marks] (a) Which torque is not present in an integrating type instrument? [1] (b) What is the difference between permeability and permittivity? [1] (c) What are the values of leakage reactances of a single phase transformer if the coupling between primary and secondary winding fluxes is perfect?. [1] (d) What is meant by Q-factor of parallel resonant circuit? [1] (e) Explain the term capacitive reactance. [1] Q4) The efficiency of a 400KVA, single phase transformer is 98.77% at full load 0.8 power factor and 99.13% at half full load unity power factor. (a) Iron losses at full and half full loads [2.5] (b) Cu losses at full and half full loads. [2.5] Q5) State and explain Thevenin s theorem and mention its important applications. [5] Q6) A balanced 3-phase star-connected load of 18KW taking a leading current of 60A when connected across a 3-phase 440V, 50Hz supply. Find the values and nature of the load components and also power factor of the load. [2+2+1] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma,Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 17/11/2014 Page-1

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-3 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) A permanent magnet moving coil instrument gives full scale reading of 25mA when a potential difference across its terminal is 75mV.Show how it can be used a)as an ammeter for a range 0-100A.b)as a voltmeter for a range 0-75V.Also find multiplying power of the shunt and voltage amplification? [Q.8] [2+3] Q2) Three 40 ohms non inductive resistances are connected in delta across 400 V 3 phase lines.calculate the Power taken from the mains.if one of the resistances is disconnected what would be the power taken from the mains?[q.9] [5] Part B Q3). Short Answer type questions: [20 Marks] a) What is the function of current and voltage coil in a wattmeter? [1] b) If a pure sin wave is fed to the input of a PMMC instrument, what will be its reading? [1] c) What is the difference between electric and magnetic fluxes?. [1] d) What is the necessity of Dot convention? [1] e) What is the value of reluctance if the length of the magnetic path is doubled? [1] Q4) The efficiency of a 400KVA, single phase transformer is 98.77% at full load 0.8 power factor and 99.13% at half full load unity power factor. (a) Iron losses at full and half full loads [2.5] (b) Cu losses at full and half full loads. [2.5] Q5) State and explain Thevenin s theorem and mention its important applications. [5] Q6) A balanced 3-phase star-connected load of 18KW taking a leading current of 60A when connected across a 3-phase 440V, 50Hz supply. Find the values and nature of the load components and also power factor of the load. [2+2+1] X EEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 17/11/2014 Page-1

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-2 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) Two branches of parallel circuit draw current i 1 and i 2 such that i 1 =10 and i 2 =5. What is the total current drawn by them. [Q.4] [5] Q2) An R-L-C circuit consists of a resistance of 1000Ω, an inductance of 100mH and a capacitance of 10pF. If voltage of 100V is applied across the combination, find [Q.15] [1+2+2] (a) The resonant frequency (b) Q-factor of the circuit and (c) The half-power points Part B Q.3 Short Answer type questions: [20 Marks] (a) Differentiate between form factor and peak factor. [1] (b) Draw phasor between voltage and current for RL series circuit [1] (c) Find the instantaneous value of an alternating voltage having frequency 50Hz and maximum value of 100V at 0.001 sec. [1] (d) What do you understand by the term bandwidth of a series resonant circuit? [1] (e) Explain active and reactive power using power triangle. [1] Q4) Using Thevenin s Theorem find V TH and R TH for a circuit given in fig.1 and also draw the equivalent circuit for the same. [2+2+1] 4Ω 4Ω P 2Ω 8A 6Ω 16A 16V + - Q Fig.1. NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs Kavya Sharma,Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-1

Q5) For the circuit shown in fig. 2 determine: [1 4] i) Resonant Frequency ii) Total impedance of the circuit at resonance iii) Bandwidth iv) Quality factor Fig.2. Q6) A 3 phase, 400 V supply is connected to a 3 phase star connected balanced load. The line current is 20 A and the power consumed by the load is 12 kw. Calculate the impedance of the load, phase current and power factor. [2+2+2] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs Kavya Sharma,Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-2

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-2 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) A metal filament lamp, rated at 750 W, 100 V is to be connected in series with the capacitor across 230 V, 50 Hz supply. Calculate the value of capacitance required. Draw phasor diagram of the circuit. [Q.10] [3+2] Q2) A 230V 50Hz a.c. supply is applied to a coil of 0.06 H inductance and 2.5 Ω resistance connected in series with a 6.8μf capacitor. Calculate [Q.14] [2+1+2] (a) Impedance, current (b) Phase angle between current and voltage (c) Power factor and power consumed. Part B Q3). Short Answer type questions: [20 Marks] a) Draw voltage triangle for RL circuit. [1] b) Draw phasor between voltage and current for series RLC circuit when X L < X C. [1] c) The equation of an alternating current is given by, i=14.1421sin 100πt. Find the time taken by it to complete three cycles. [1] d) Give the expressions for upper and lower cut off frequencies for series resonance. [1] e) What is the main cause of low power factor? [1] Q4) Using Thevenin s Theorem, find V TH and R TH for a circuit given in fig.1 and also draw the equivalent circuit for the same. [2+2+1] 4Ω 4Ω P 2Ω 8A 6Ω 16A 16V + - Q Fig.1. NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-1

Q5) For the circuit shown in fig. 2 determine: [1.25 4] i) Resonant Frequency ii) Total impedance of the circuit at resonance iii) Bandwidth iv) Quality factor Fig.2. Q6) A 3 phase, 400 V supply is connected to a 3 phase star connected balanced load. The line current is 20 A and the power consumed by the load is 12 kw. Calculate the impedance of the load, phase current and power factor. [2+2+1] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-2

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-2 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) An ac sinusoidal voltage, v= (160+j120) v is applied to a circuit. The resulting current is I= (-4+j10). Find the impedance of the circuit and state whether it is inductive or capacitive. Also, find the power factor, active power and reactive power. [Q.7] [2+1+1+1] Q2) A series ac circuit has resistance of 15 ohm and inductive reactance of 10 ohm. Calculate the value of capacitor which is connected across this series combination so that the system has unity power factor. The frequency of ac supply is 50 Hz. [Q.13] [5] Part B Q3). Short Answer type questions: [20 Marks] (a) What do you understand by power factor of a circuit? [1] (b) Draw phasor between voltage and current for RC series circuit. [1] (c) The equation of an alternating quantity is v=282.84 sin 100πt, find its r.m.s value. [1] (d) Define series resonance of an RLC circuit and give expression for resonant frequency. [1] (e) Write the formula and unit for active and reactive power. [1] Q4) Using Thevenin s Theorem, find V TH and R TH for a circuit given in fig.1 and also draw the equivalent circuit for the same. [2+2+1] 4Ω 4Ω P 2Ω 8A 6Ω 16A 16V + - Q Fig.1. NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-1

Q5) For the circuit shown in fig. 2 determine: [1 4] i) Resonant Frequency ii) Total impedance of the circuit at resonance iii) Bandwidth iv) Quality factor Fig.2. Q6) A 3 phase, 400 V supply is connected to a 3 phase star connected balanced load. The line current is 20 A and the power consumed by the load is 12 kw. Calculate the impedance of the load, phase current and power factor. [2+2+2] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-2

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-2 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. `Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) A two element series circuit is connected across an AC source v=300cos (314t+20 0 ) volts. The current drawn is 15cos (314t-20 0 ) amp. Determine the circuit impedance, magnitude and phase angle. What is average power drawn? [Q.6] [3+2] Q2) One branch of parallel circuit consists of coil of inductance 0.05 H and effective resistance of 5Ω and the other is 0.1 µf capacitor. Calculate resonant frequency, dynamic impedance and quality factor. [Q.11] [2+2+1] Q3). Short Answer type questions: Part B [20 Marks] (a) Differentiate between average value and rms value. [1] (b) Draw phasor between voltage and current for series RLC circuit when X L >X C [1] (c) Find the instantaneous value of an alternating current having r.m.s value of 7.071A at 120º. [1] (d) What is meant by Q-factor of series resonant circuit? [1] (e) Explain the term inductive reactance. [1] Q4) Using Thevenin s Theorem find V TH and R TH for a circuit given in fig.1 and also draw the equivalent circuit for the same. [2+2+1] 4Ω 4Ω P 2Ω 8A 6Ω 16A 16V + - Q Fig.1. NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma,Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-1

Q5) For the circuit shown in fig. 2 determine: [1 4] i) Resonant Frequency ii) Total impedance of the circuit at resonance iii) Bandwidth iv) Quality factor Fig.2. Q6) A 3 phase, 400 V supply is connected to a 3 phase star connected balanced load. The line current is 20 A and the power consumed by the load is 12 kw. Calculate the impedance of the load, phase current and power factor. [2+2+2] X NEE-101/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma,Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-2

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT B.Tech. [SEM I (EE, EN, EC, CE)] QUIZ TEST-2 (Session: 2014-15) Time: 1 Hour ELECTRICAL ENGINEERING Max. Marks: 30 (NEE-101) Roll No. Academic/26 Refer/WI/ACAD/18 Note: Attempt All Questions. (To be filled by the Student) Part A (Questions from Tutorial Sheet) [10 Marks] Q1) Voltage across R, L, and C are 5, 8 and 10 volts respectively. Calculate the value of supply voltage at 50 Hz. Also find the frequency at which this circuit would resonate. [Q.18] [2+3] Q2) A coil of resistance 8 ohms and inductance 0.12 Henry is connected in series with a capacitance of 140 µf across 230 volts. Determine impedance of entire circuit, Power factor of circuit and voltage across condenser. [Q.20] [2+1+2] Part B Q3). Short Answer type questions: [20 Marks] a) What is the effect of frequency on capacitive reactance? [1] b) Draw phasor between voltage and current for series RLC circuit when X L= X C [1] c) Find the maximum value of a sinusoidal voltage having magnitude of 200 V at 150º. [1] d) Define current magnification factor of parallel resonant circuit. [1] e) Give two disadvantages of low power factor. [1] Q4) Using Thevenin s Theorem find V TH and R TH for a circuit given in fig.1 and also draw the equivalent circuit for the same. [2+2+1] 4Ω 4Ω P 2Ω 8A 6Ω 16A 16V + - Q Fig.1. EEE-201/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-1

Q5) For the circuit shown in fig. 2 determine: [1.25 4] i) Resonant Frequency ii) Total impedance of the circuit at resonance iii) Bandwidth iv) Quality factor Fig.2. Q6) A 3 phase, 400 V supply is connected to a 3 phase star connected balanced load. The line current is 20 A and the power consumed by the load is 12 kw. Calculate the impedance of the load, phase current and power factor. [2+2+1] X EEE-201/Mr.Braj Kishor Verma, Mr. Gaurav Sharma, Mrs. Kavya Sharma, Mr. Bhupesh Kr. Pal, Mrs. Pankhuri Kishore Date: 27/10/2014 Page-2