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Headlines 2026-07-26 | : EDC | : Entrepreneurship Development Cell Organising "START UP COMPETITION" on 31st July 2026, Venue Decennial block seminar hall.    2026-07-25 | : B.Tech - Mech | : Department of ME and Robotics organized One Day Seminar on "Machine learning with Python" , resource person Boopathi Raj M, Falcon IT training and educational services, chennai    2026-07-23 | : B.Tech - Mech | : Department of Mechanical Engineering and Robotics Organized an Interaction session for III yr mechanical students with YESWANTH an Alumni student of Mechanical on topic " Career Guidance & Interview preparation tips"    2026-07-21 | : B.Tech - Mech | : Department of ME and Robotics organized an interactive session for II,III,IV year students with "F4 TRAFCK COACH AND FITNESS TRAINER UJJWAL KIREET " for conducting workshop on GO KARTING    2026-07-21 | : MBA | : Department of MBA Congratulates Ms. J. T. L. Srija on Her Selection as Associate at Wipro    2026-07-20 | : B.Tech - Mech | : Mechanical Engineering Department organizes One Day Seminar on "TIME & STRESS MANAGEMENT IN PROFESSIONAL LIFE AND SOCIAL WELLBEING" Resource person Dr. Sowjanya Kattupalli Professor, Dept of Pharmaceutical Chemistry, Nirmala college of Pharmacy mangalagiri, Guntur    2026-07-18 | : B.Tech - Mech | : Congratulations to YEGIRALA OBUL REDDY Robotics student for being selected as Graduate Trainee Engineer at INTERACTIVE DATA SYSTEMS LIMITED    2026-07-17 | : MCA | : MCA- Patent: G Adiseshu Assistant Professor of Department of MCA, have successfully published an Indian Patent Application titled "Secure Image-Based Framework for Seed Phrase Protection and Recovery." This innovative work presents a secure and user-friendly approach to protecting and recovering cryptocurrency seed phrases by combining image-based storage techniques with advanced cryptographic security. The proposed framework enhances the confidentiality, integrity, and accessibility of sensitive digital assets while providing a reliable recovery mechanism. This achievement reflects our institution's strong commitment to research, innovation, and the development of cutting-edge technologies in the fields of cybersecurity, blockchain, and digital asset protection.    2026-07-13 | : B.Tech - Mech | : Congratulations to Mr Abdul Azeez for publishing a research paper " Development of Helianthus annuus waste derived activated biocarbon and hampa hybrid fibre reinforced rigid ester biocomposites for electromagnetic shielding applications" in Journal of Materials Science: Materials in Electronics.    2026-07-10 | : B.Tech - EEE | : Happy to announce that the Department of IV EEE student, Mr. Jagatha Jagadeswara (24A25A0203), has successfully participated in the summer research internship program organised by the School of Electronics Engineering, VIT-AP University (VSRI-SENSE 2026), held for 1 month during June-July 2026.    2026-07-04 | : MCA | : The Department of Master of Computer Applications (MCA), successfully organized a Technical Talk on "MACHINE LEARNING ALGORITHMS AND ITS REAL-TIME APPLICATIONS IN Our DAY-TO-DAY LIFE" on 04 July 2026 Dr. B. V. Subba Rao, Professor and Head, Department of Information Technology, PVP Siddhartha Institute of Technology, Vijayawada, who shared valuable insights into the fundamentals of Machine Learning, popular algorithms, and their practical applications across various domains such as healthcare, finance, education, and smart technologies.    2026-07-01 | : BCA(H) | : Mr. K Lakshamana Rao , Assistant Professor, Department of BCA, have successfully presented a research paper titled "Quantum Optimized Intrusion Detection Framework using Grover's Algorithm for Secure AI-Driven Smart City Networks" at the Third International Conference on Innovations in Cybersecurity and Data Science (ICIDCS-2026), organized by S.E.A. College of Engineering & Technology in association with Shinawatra University, Thailand, held during 25–27 June 2026.    2026-06-30 | : BCA(H) | : FDP–BCA: Ms. Yedlapalli Sai Swarupa ,Mrs Ravuri sunitha Assistant professors in BCA Dept, have actively participated and successfully completed the One-Day Seminar on "Federated Learning: Privacy Preserving in Artificial Intelligence" organized by the Department of Computer Science and Engineering, Visakha Institute of Engineering & Technology (Autonomous), Visakhapatnam, held in online mode on 26th June 2026.    2026-06-29 | : B.Tech - IT | : IT Department is conducting 5 days "Hands on workshop on Prompt Engineering" from 29-06-2026 to 03-07-2026 for final year students -The session aimed to provide students with a practical understanding of prompt engineering, the foundational skill for effectively utilizing modern AI models and tools in academic, research, and industrial applications.    2026-06-27 | : MBA | : The Department of MBA, Swarnandhra College of Engineering & Technology, successfully celebrated International MSME Day on 27th June 2026 to create awareness among students about the vital role of Micro, Small, and Medium Enterprises (MSMEs) in promoting entrepreneurship, innovation, employment generation, and sustainable economic development.    2026-06-27 | : BBA(H) | : The Department of BBA, Swarnandhra College of Engineering & Technology, successfully celebrated International MSME Day on 27th June 2026 to create awareness among students about the vital role of Micro, Small, and Medium Enterprises (MSMEs) in promoting entrepreneurship, innovation, employment generation, and sustainable economic development.    2026-06-22 | : B.Tech - CSE | : Congratulations & Appreciation: The Management, Principal, Head of the Department – CSE, and all Staff Members extend their heartfelt congratulations to Assistant Professor N.V. Raghava Rao Yelisetti for successfully completing the NPTEL courses in: 1. Programming in Java 2. Fundamentals of Object-Oriented Programming. Your dedication to continuous learning and upskilling is truly commendable. Wishing you continued success in your academic journey.    2026-06-22 | : B.Tech - CSEBS | : Faculty Development Program: Mrs B.Srilatha, Assistant Professor CSE-BS Department Participated in Faculty Development Programme on "Instructional Design Delivery Systems(IDDS)" Organized by the IQAC held from 15th June to 20th June 2026 at Swarnandhra college of Engineering and Technology.    2026-06-22 | : B.Tech - CSECS | : Faculty Development Program: Ms V.Ganga Bhavani, Assistant Professor CSE-BS Department Participated in Faculty Development Programme on "Instructional Design Delivery Systems(IDDS)" Organized by the IQAC held from 15th June to 20th June 2026 at Swarnadhra college of Engineering and Technology.    2026-06-20 | : NCC | : Proud Moment : Our NSS Secretary Gets Direct Ph.D - CSE Admit at SRM University After B.Tech    
EEE Department - Course Outcomes
R23 - Course Outcomes
R23-COURSE OUTCOMES I B. Tech-EEE
COURSE CODE COURSE TITLE NBA CODE SUB CODE COURSE OUTCOMES
23HS1T01 COMMUNICATIVE ENGLISH C101 C101.1 Understand the context, topic, and pieces of specific information from social or Transactional dialogues. [K2]
C101.2 Apply grammatical structures to formulate sentences and correct word forms. [K3]
C101.3 Analyze discourse markers to speak clearly on a specific topic in informal discussions. [K4]
C101.4 Evaluate reading / listening texts and to write summaries based on global comprehension of these texts. [K5]
C101.5 Create a coherent paragraph, essay, and resume. [K6]
23BS1T01 CHEMISTRY C102 C102.1 Compare the materials of construction for battery. [K4]
C102.2 Explain the preparation, properties, and applications of thermoplastics, thermosetting & elastomers conducting polymers. [K2]
C102.3 Explain the fundamentals of quantum mechanics and molecular orbital theory. [K2]
C102.4 Apply the principle of Band diagrams in the application of conductors and semiconductors. [K4]
C102.5 Summarize the concepts of Instrumental methods. [K5]
23BS1T03 LINEAR ALGEBRA AND CALCULUS C103 C103.1 Solve a given system of linear equations (K2)
C103.2 Develop the matrix algebra techniques that are needed by engineers for practical applications (K4)
C103.3 Utilize mean value theorems for real life problems (K2)
C103.4 Apply the concept of partial differentiation in various engineering applications (K3)
C103.5 Evaluate double, triple integrals and their applications (K3)
23ME1T01 BASIC CIVIL AND MECHANICAL ENGINEERING C104 C104A.1 Understand various sub-divisions of Civil Engineering and toappreciate their role in ensuring better society. [K2]
C104A.2 Know the concepts of surveying and to understand the measurement of distances, angles and levels through surveying. [K2]
C104A.3 Realize the importance of Transportation in nation's economy and the engineering measures related to Transportation. [K3]
C104A.4 Understand the importance of Water Storage and Conveyance Structures so that the social responsibilities of water conservation will be appreciated. [K2]
C104A.5 Understand the basic characteristics of Civil Engineering Materials and attain knowledge on prefabricated technology[K2]
C104B.1 Understand the different manufacturing processes. [K2]
C104B.2 Explain the basics of thermal engineering and its applications. [K2]
C104B.3 Describe the working of different mechanical power transmission systems and power plants. [K2]
C104B.4 Describe the basics of robotics and its applications. [K2]
23CS1T01 INTRODUCTION TO PROGRAMMING C105 C105.1 Understand basics of computers, the concept of algorithm and algorithmic thinking. [K2]
C105.2 Analyze a problem and develop an algorithm to solve it. [K4]
C105.3 Implement various algorithms using the programming language. [K3]
C105.4 Understand more advanced features of C language. [K2]
C105.5 Develop problem-solving skills and the ability to debug and optimize the code. [K6]
23HS1L01 COMMUNICATIVE ENGLISH LAB C106 C106.1 Understand the different aspects of the English language proficiency with emphasis on LSRW skills. [K2]A
C106.2 Apply communication skills through various language learning activities[K3]
C106.3 Analyse the English speech sounds, stress, rhythm, intonation and syllable division for better listening and speaking comprehension. [K4]
C106.4 Evaluate and exhibit professionalism in participating in debates and group discussions. [K5]
C106.5 Create effective Course Objectives[K6]
23BS1L01 CHEMISTRY LAB C107 C107.1 Determine the cell constant and conductance of solutions. [K5]
C107.2 Prepare advanced polymer Bakelite materials. [K3]
C107.3 Measure the strength of an acid present in secondary batteries. [K5]
C107.4 Determine the redox potentials and emf. [K5]
C107.5 Calculate strength of acid in Pb-Acid battery. [K3]
23ME1L01 ENGINEERING WORKSHOP C108 C108.1 Identify workshop tools and their operational capabilities. [K3]
C108.2 Practice on manufacturing of components using workshop trades including fitting, carpentry, foundry and welding [K3]
C108.3 Apply fitting operations in various applications. [K3]
C108.4 Apply basic electrical engineering knowledge for House Wiring Practice [K3]
23CS1L01 COMPUTER PROGRAMMING LAB C109 C109.1 Read, understand, and trace the execution of programs written in C language. [K1]
C109.2 Select the right control structure for solving the problem. [K1]
C109.3 Develop C programs which utilize memory efficiently using programming constructs like pointers. [K6]
C109.4 Develop Debug and Execute programs to demonstrate the applications of arrays, functions, basic concepts of pointers in C. [K6]
23BS1P01 HEALTH AND WELLNESS, YOGA AND SPORTS C110 C110.1 Understand the importance of yoga and sports for Physical fitnessand sound health. [K2]
C110.2 Demonstrate an understanding of health-related fitness components [K2]
C110.3 Compare and contrast various activities that help enhance theirhealth. [K3]
C110.4 Assess current personal fitness levels. [K5]
C110.5 Develop Positive Personality. [K6]
23BS2T02 ENGINEERING PHYSICS C111 C111.1 Analyze the intensity variation of light due to polarization, interference and diffraction. [K4]
C111.2 Familiarize with the basics of crystals and their structures. [K3]
C111.3 Explain fundamentals of quantum mechanics and apply it to one-dimensional motion of particles. [K2]
C111.4 Summarize various types of polarization of dielectrics and classify the magnetic materials. [K2]
C111.5 Explain the basic concepts of Quantum Mechanics and the band theory of solids. [K2]
23BS2T04 DIFFERENTIAL EQUATIONS AND VECTOR CALCULUS C112 C112.1 Solve the differential equations related to various engineering fields. [K3]
C112.2 Identify solution methods for partial differential equations that model physical processes. [K3]
C112.3 Interpret the physical meaning of different operators such as gradient, curl and divergence. [K5]
C112.4 Estimate the work done against a field, circulation and flux using vector calculus. [K6]
C112.5 Solve the differential equations related to various engineering fields. [K3]
23EE2T01 BASIC ELECTRICAL AND ELECTRONICS ENGINEERING C113 C113.1 Describe fundamental laws, operating principles of motors/generators, MC/MI instruments (K2)
C113.2 Demonstrate the working of electrical machines, measuring instruments and power generation stations. (K2)
C113.3 Apply mathematical tools and fundamental concepts to derive various equations related to electrical circuits and machines. (K3)
C113.4 Calculate electrical load and electricity bill of residential and commercial buildings. (K4)
23ME2T02 ENGINEERING GRAPHICS C114 C114.1 Understand the principles of engineering drawing, including engineering curves, scales, orthographic and isometric projections. [K2]
C114.2 Draw and interpret orthographic projections of points, lines, planes and solids in front, top and side views. [K3]
C114.3 Understand and draw projection of solids in various positions in first quadrant. [K2]
C114.4 Explain principles behind development of surfaces. [K2]
C114.5 Prepare isometric and perspective sections of simple solids. [K6]
23EE2T02 ELECTRICAL CIRCUIT ANALYSIS – I C115 C115.1 Remembering the basic electrical elements and different fundamental laws. [K1]
C115.2 Understand the network reduction techniques, transformations, concept of selfinductance and mutual inductance, phasor diagrams, resonance and network theorems. [K2]
C115.3 Apply the concepts to obtain various mathematical and graphical representations. [K3]
C115.4 Analyse nodal and mesh networks, series and parallel circuits, steady state response, different circuit topologies (with R, L and C components). [K4]
C115.5 Evaluation of Network theorems, electrical, magnetic and single-phase circuits. [K5]
23CS2L02 IT WORKSHOP C116 C116.1 Perform Hardware troubleshooting. [K3]
C116.2 Understand Hardware components and inter dependencies. [K2]
C116.3 Safeguard computer systems from viruses/worms. [K3]
C116.4 Document/ Presentation preparation. [K4]
C116.5 Perform calculations using spreadsheets[K3]
23BS2L02 ENGINEERING PHYSICS LAB C117 C117.1 Operate optical instruments like travelling microscope and spectrometer. [K3]
C117.2 Estimate the wavelengths of different colours using diffraction grating. [K6]
C117.3 Plot the intensity of the magnetic field of circular coil carrying current with distance. [K3]
C117.4 Evaluate dielectric constant and magnetic susceptibility for dielectric and magnetic materials respectively. [K5]
C117.5 Calculate the band gap of a given semiconductor. CO6: Identify the type of semiconductor using Hall Effect. [K3]
23EE2L01 ELECTRICAL AND ELECTRONICS ENGINEERING WORKSHOP C118 C118.1 Solve simple circuits involving multiple sources using KVL, KCL and superposition theorem. [K3]
C118.2 Apply Megger and Wheatstone bridge in different practical scenarios to measure resistance across a wide range values. [k4]
C118.3 Evaluate the performance of a dc shunt generator based on its magnetization characteristics. [k5]
C118.4 Analyze the relationship between power factor and energy efficiency in domestic electrical system. [K4]
C118.5 Understand and analyze the V-I characteristics of PN junction and Zener diode and also investigate the input and output characteristics of BJT and response of CE amplifier. [K1]
C118.6 Able to verify and validate the truth tables of logic gates and flip flops and also design a rectifier circuits. [k2]
23EE2L02 ELECTRICAL CIRCUIT LAB C119 C119.1 Analyze circuit with voltage and current sources using KCL, KVL, Nodal and Mesh methods. [k4]
C119.2 Apply series and parallel reduction to simple circuits and calculate self and mutual inductance in simple inductive circuits. [k3]
C119.3 Measure resonant frequency in series and parallel resonance circuits. [K3]
C119.4 Analyze the effect of parameter variation of series circuits. [k4]
C119.5 Analyze simple electrical circuits using theorems. [K4]
23BS2P02 NSS/NCC/SCOUTS AND GUIDES/COMMUNITY SERVICE C20 C120.1 Understand the importance of discipline, character and service motto. [K2]
C120.2 Solve some societal issues by applying acquired knowledge, facts, and techniques. [K3]
C120.3 Explore human relationships by analyzing social problems. [K4]
C120.4 Determine to extend their help for the fellow beings and downtrodden people. [K2]
C120.5 Develop leadership skills and civic responsibilities. [K3]
R23-COURSE OUTCOMES II B. Tech-EEE
COURSE CODE COURSE TITLE NBA CODE SUB CODE COURSE OUTCOMES
23BS3T01 COMPLEX VARIABLES AND NUMERICAL METHODS C201 C201.1 Evaluate the approximate roots of polynomial and transcendental equations by different algorithms. Apply Newton’s forward & backward interpolation and Lagrange’s formulae for equal and unequal intervals (K3)
C201.2 Apply numerical integral techniques to different Engineering problems. Apply different algorithms for approximating the solutions of ordinary differential equations with initial conditions to its analytical computations (K3)
C201.3 Apply Cauchy-Riemann equations to to determine complex functions in whether a given continuous function is analytic (K3)
C201.4 Evaluate the Taylor and Laurent expansions of simple functions, determining the nature of the singularities and calculating residues. Make use of the Cauchy residue theorem to evaluate certain integrals (K3)
C201.5 Explain properties of various types of conformal mappings (K5)
23BM3T01 MANAGERIAL ECONOMICS AND FINANCIAL ANALYSIS C202 C202.1 Define the concepts related to Managerial Economics, financial accounting and management. [K1]
C202.2 Understand the fundamentals of Economics viz., Demand, Production, cost, revenue and markets [K2]
C202.3 Apply the Concept of Production cost and revenues for effective Business decision [K3]
C202.4 Analyze how to invest their capital and maximize returns [K4]
C202.5 Evaluate the capital budgeting techniques and develop the accounting statements and evaluate the financial performance of business entity. [K5]
23EE3T01 ELECTROMAGNETIC FIELD THEORY C203 C203.1 Compute electric fields and potentials using Gauss law/ solve Laplace’s or Poisson’s equations for various electric charge distributions. [K3]
C203.2 Analyze the behavior of conductors in electric fields, electric diploe and the capacitance and energy stored in dielectrics. [K4]
C203.3 Calculate the magnetic field intensity due to current carrying conductor and understanding the application of Ampere’s law, Maxwell’s second and third law. [K3]
C203.4 Estimate self and mutual inductances and the energy stored in the magnetic field.[K6]
C203.5 Understand the concepts of Faraday’s laws, Displacement current, Poynting theorem and Poynting vector. [K2]
23EE3T02 ELECTRICAL CIRCUIT ANALYSIS-II C204 C204.1 Analyze the balanced and unbalanced 3 phase circuits for power calculations. [K4]
C204.2 Analyze the transient behavior of electrical networks in different domains. [K4]
C204.3 Estimate various Network parameters. [K6]
C204.4 Apply the concept of Fourier series to electrical systems. [K3]
C204.5 Analyze the filter circuit for electrical circuits[K4]
23EE3T03 DC MACHINES AND TRANSFORMERS C205 C205.1 Understand the process of voltage build-up in DC generators and characteristics. [K2]
C205.2 Understand the process of torque production, starting, speed control of DC motors, and illustrate their characteristics. [K2]
C205.3 Obtain the equivalent circuit of single-phase transformer and determine its efficiency regulation. [K2]
C205.4 Analyze and calculate the transformer parameters. [K4]
C205.5 Analyze various configurations of three-phase transformers. [K4]
23EE3L01 ELECTRICAL CIRCUIT ANALYSIS-II AND SIMULATION LAB C206 C206.1 Understand the power calculations in three phase circuits. [K2]
C206.2 Evaluate two port network parameters. [K5]
C206.3 Simulate Kirchhoff’s laws using suitable software. [K5]
C206.4 Simulate and analyze electrical circuits using suitable software. [K5]
C206.5 Simulate and analyze transient response of RL, RC and RLC circuits using suitable software. [K5]
23EE3L02 DC MACHINES AND TRANSFORMERS LAB C207 C207.1 Demonstrate starting and speed control methods of DC Machines. [K2]
C207.2 Apply theoretical concepts in analyzing the performance characteristics of DC Machines. [K3]
C207.3 Determine the performance characteristics of DC machines using different testing methods. [K2]
C207.4 Determine the performance parameters of single-phase transformer. [K2]
C207.5 Determine the efficiency and Regulation of Transformer by various tests. [K2]
23CS3S04 DATA STRUCTURES LAB C208 C208.1 Identify the role of data structures in organizing and accessing data. [K1]
C208.2 Design, implement, and apply linked lists for dynamic data storage. [K6]
C208.3 Develop applications using stacks and queues. [K6]
C208.4 Design and implement algorithms for operations on binary trees and binary search trees. [K6]
C208.5 Devise novel solutions to small scale programming challenges involving data structures such as stacks, queues, Trees. [K3]
23BS3M01 ENVIRONMENTAL SCIENCE C209 C209.1 Grasp multi-disciplinary nature of environmental studies and various renewable and non-renewable resources. [K4]
C209.2 Understand flow and bio-geo-chemical cycles and ecological pyramids. [K2]
C209.3 Understand various causes of pollution and solid waste management and related Preventive measures. [K2]
C209.4 About the rainwater harvesting, watershed management, ozone layer depletion and waste land reclamation. [K2]
C209.5 Casus of population explosion, value education and welfare programmers. [K4]
23HS4T01 UNIVERSAL HUMAN VALUES- UNDERSTANDING HARMONY C210 C210.1 Students are expected to become more aware of themselves, and their surroundings (Family, society, nature). [K4]
C210.2 They would become more responsible in life, and in handling problems with sustainable solutions, while keeping human relationships and human nature in mind. [K4]
C210.3 They would have better critical ability. [K3]
C210.4 They would also become sensitive to their commitment towards what they have understood (human values, human relationship and human society). [K2]
C210.5 It is hoped that they would be able to apply what they have learnt to their own self in different day-to-day settings in real life, at least a beginning would be made in this direction. [K3]
23EC4T04 ANALOG CIRCUITS C211 C211.1 Analyze diode clipping and clamping circuits. Understand different types of biasing circuits of a transistor. [K4]
C211.2 Use small signal modeling for transistor circuit analysis and illustrate the operation of feedback amplifiers. [K3]
C211.3 Understand operation of oscillators, operational amplifier and their applications. [K2]
C211.4 Use 555 timers in multi-vibrators, Schmitt Trigger and PLL applications. [K3]
C211.5 Describe the operation of different ADC’s and DAC’s. [K2]
23EE4T01 POWER SYSTEMS-I C212 C212.1 Understand the different types of power plants, operation of power plants. [K2]
C212.2 Discuss the construction and working principle Nuclear Power Stations. [K2]
C212.3 Describe the different components of air and gas insulated substations. [K2]
C212.4 Discuss the construction of single core and three core cables and describe distribution system configurations. [K2]
C212.5 Analyze different economic factors of power generation and tariffs. [K4]
23EE4T02 INDUCTION AND SYNCHRONOUS MACHINES C213 C213.1 Explain the construction and operation of three-phase induction motor. [K2]
C213.2 Analyze the performance of three-phase induction motor. [K4]
C213.3 Describe the working of single-phase induction motors. [K2]
C213.4 Analyze the performance of Synchronous generators. [K4]
C213.5 Analyze the performance of Synchronous motors. [K4
23EE4T03 CONTROL SYSTEMS C214 C214.1 Derive the transfer function of physical systems and determine overall transfer function using block diagram algebra and signal flow graphs. [K3]
C214.2 Obtain the time response of first and specifications of second order systems and determine error constants. Analyze the absolute and relative stability of LTI systems using Routh’s stability criterion and root locus method. [K2]
C214.3 Analyze the stability of LTI systems using frequency response methods. [K4]
C214.4 Design Lag, Lead, Lag-Lead compensators to improve system performance using Bode Diagrams. [K6]
C214.5 Apply state space analysis concepts to represent physical systems as state models, derive transfer function and determine the response. Understand the concepts of controllability and observability. [K3]
23EE4L01 INDUCTION AND SYNCHRONOUS MACHINES LAB C215 C215.1 Analyze the speed control methods on 3-phase Induction Motor. [K4]
C215.2 Evaluate the performance of 3-phase Induction Motor by obtaining the locus diagram and equivalent circuit of 3-phase Induction Motor[K5]
C215.3 Adapt the power factor improvement methods for single phase Induction Motor. [K6]
C215.4 Pre-determine the regulation of 3-phase alternator. [K3]
C215.5 Determine the synchronous machine reactance of 3-phase alternator. [K2]
23EE4L02 CONTROL SYSTEMS LAB C216 C216.1 Analyze the performance of Magnetic amplifier, D.C and A.C. servo motors and synchros. [K4]
C216.2 Design of PID controllers and compensators. [K6]
C216.3 Evaluate temperature control of an oven using PID controller. [K5]
C216.4 Determine the transfer function of D.C Motor and examine the truth table for Logic gates using PLC. [K2]
C216.5 Judge the stability in time and frequency domain and Kalman’s test for controllability and observability. [K5]
23EE4S01 PYTHON PROGRAMMING LAB C217 C217.1 Apply core programming basics and program design with functions using Python programming language. [K4]
C217.2 Interpret the high-performance programs designed to strengthen the practical expertise. [K3]
C217.3 Develop applications for real time problems by applying python data structure concepts [K3]
C217.4 Test and apply the concepts of packages, handling, multithreading and socket programming. [K4]
C217.5 Divide the importance of object oriented programming over structured programming .[K4]
C217.6 Apply the data from existing packages in various application development.[K3]
23EE4Z01 DESIGN THINKING AND INNOVATION C218 C218.1 Define the concepts related to design thinking [K1].
C218.2 Explain the fundamentals of Design Thinking and innovation [K2].
C218.3 Apply design thinking techniques for solving problems in various sectors [K3].
C218.4 Analyze to work in a multidisciplinary environment [K4].
C218.5 Evaluate the value of creativity [K5].
R23-COURSE OUTCOMES III B. Tech-EEE
COURSE CODE COURSE TITLE NBA CODE SUB CODE COURSE OUTCOMES
23EE5T01 POWER ELECTRONICS C301 C301.1 Illustrate the static and dynamic characteristics of SCR, Power-MOSFET and Power-IGBT. [K2]
C301.2 Analyse the operation of phase-controlled rectifiers. [K4]
C301.3 Analyse the operation of three-phase full–wave converters, AC Voltage Controllers and Cyclo converters. [K4]
C301.4 Examine the operation and design of different types of DC-DC converters. [K4]
C301.5 Analyse the operation of square wave inverters and PWM inverters for voltage control. [K4]
23EC5T04 DIGITAL CIRCUITS C302 C302.1 Use the concepts of Boolean algebra, K-map, tabulation method in minimization of switching functions and able to design the arithmetic combinational circuits. [K3]
C302.2 Realize different types of data routing combinational circuits and PLDs. [K3]
C302.3 Apply knowledge of flip-flops in designing of registers and counters. [K3]
C302.4 Analyze synchronous sequential circuits and apply different methods for the design of synchronous sequential circuits. [K4]
C302.5 Understand the logic families in the form of digital integrated circuits. [K2]
23EE5T02 POWER SYSTEMS-II C303 C303.1 Calculate parameters of transmission lines for different circuit configurations. [K3]
C303.2 Analyze the performance of short, medium and long transmission lines. [K4]
C303.3 Analyze the effect of travelling waves on transmission lines. [K4]
C303.4 Estimate the effects of corona in transmission lines. [K5]
C303.5 Calculate sag and tension of transmission lines and design the line insulators. [K3]
23EC5E05 SIGNALS AND SYSTEMS C3P1.1 C3P1.1 Differentiate the various classifications of signals and systems. [K2]
C3P1.2 Analyze the frequency domain representation of signals using Fourier concepts. [K4]
C3P1.3 Classify the systems based on their properties and determine the response of LTI Systems. [K2]
C3P1.4 Know the sampling process and various types of sampling techniques. [K1]
C3P1.5 Apply Laplace and z-transforms to analyze signals and Systems (continuous & discrete). [K3]
23CS5E03 COMPUTER ARCHITECTURE & ORGANIZATION C3P1.2 C3P2.1 Demonstrate the instruction cycle of a computer. [K2]
C3P2.2 Understand various micro-operations and register transfer language. [K2]
C3P2.3 Describe parallel processing and pipelining. [K2]
C3P2.4 Interface different peripherals with processors. [K4]
C3P2.5 Know the advantages of cache and virtual memory. [K1]
23EE5E01 RENEWABLE AND DISTRIBUTED ENERGY TECHNOLOGIES C3P1.3 C3P1.31 Illustrate basic concepts of renewable and distributed sources of wind energy. [K2]
C3P1.32 Demonstrate the components of wind energy conversion systems. [K2]
C3P1.33 Model PV systems and analyze MPPT Techniques. [K3]
C3P1.34 Illustrate the concept of Energy Production from Hydro - Tidal and Geothermal. [K2]
C3P1.35 Explain the aspects of hybrid renewable energy systems. [K2]
23EE5X01 SIGNALS AND SYSTEMS C3N1 C3N1.1 Apply mathematical preliminaries and classify continuous-time and discrete-time signals and systems with appropriate transformations.
C3N1.2 Analyze continuous-time signals using Fourier Transform and evaluate its properties for frequency-domain representation. [K4]
C3N1.3 Analyze Linear Time-Invariant (LTI) systems using convolution, system properties, and Laplace Transform techniques. [K4]
C3N1.4 Evaluate continuous-time periodic signals using Fourier Series and analyze the properties of Fourier Series representations. [K5]
C3N1.5 Analyze discrete-time LTI systems using sampling, Discrete-Time Fourier Transform (DTFT), and Z-Transform techniques. [K4]
23EE5X02 COMPUTER SYSTEM ORGANIZATION C3N2 C3N2.1 Understand the fundamental concepts of computer architecture and organization. [K2]
C3N2.2 Explain the operation of processors, memory, and input/output systems. [K2]
C3N2.3 Analyze the instruction set architecture and design principles of RISC-based systems. [K4]
C3N2.4 Understand memory hierarchy, pipelining, and performance enhancement techniques. [K2]
C3N2.5 Develop the ability to evaluate the design and performance of modern computer systems. [K3]
23EE5X03 RENEWABLE ENERGY ENGINEERING: SOLAR, WIND AND BIOMASS ENERGY SYSTEMS C3N3 C3N3.1 Explain the fundamental concepts of solar energy and analyze the working principles and performance of non-concentrating and concentrating solar collectors. [K2]
C3N3.2 Evaluate different energy storage systems and their role in improving the reliability and efficiency of renewable energy systems. [K2]
C3N3.3 Analyze the characteristics of biomass resources and explain biochemical and thermo-chemical conversion processes for bioenergy production. [K4]
C3N3.4 Evaluate biomass conversion techniques for the production of alcohol and other biofuels from renewable feedstocks. [K5]
C3N3.5 Analyze the principles of wind energy conversion systems, turbine characteristics, and power generation from wind energy. [K4]
23EE5O01 RENEWABLE ENERGY SOURCES C3## C3##.1 Analyze solar radiation data, extra-terrestrial radiation, radiation on earth’s surface and solar Energy Storage. [K4]
C3##.2 Illustrate the components of wind energy systems. [K2]
C3##.3 Illustrate the working of biomass, hydel plants and Geothermal plants. [K2]
C3##.4 Demonstrate the principle of Energy production from OTEC, Tidal and Waves. [K2]
C3##.5 Evaluate the concept and working of Fuel cells & MHD power generation. [K5]
23EE5O02 CONCEPTS OF ENERGY AUDITING & MANAGEMENT C3## C3##.1 Understand the principles of energy audit along with various Energy related terminologies. [K3]
C3##.2 Asses the role of Energy Manager and Energy Management program. [K5]
C3##.3 Design a energy efficient motors and good lighting system. [K3]
C3##.4 Analyse the methods to improve the power factor and identify the energy instruments for various real time applications. [K4]
C3##.5 Evaluate the computational techniques with regard to economic aspects. [K5]
23EE5L01 POWER ELECTRONICS LAB C306 C306.1 Analyse characteristics of various power electronic devices and design firing circuits for SCR. [K4]
C306.2 Analyse the performance of single–phase dual, three–phase full–wave bridge converters and dual converter with both resistive and inductive loads. [K4]
C306.3 Examine the operation of Single-phase AC voltage regulator and Cyclo converter with resistive and inductive loads. [K4]
C306.4 Differentiate the working and control of Buck converter and Boost converter. [K2]
C306.5 Differentiate the working & control of square wave inverter and PWM inverter. [K2]
23EC5L03 ANALOG AND DIGITAL CIRCUITS LAB C307 C307.1 Analyse diode clipper/clamper circuits and transistor biasing. [K4]
C307.2 Illustrate the operation of feedback amplifiers and oscillator circuits. [K2]
C307.3 Analyze the applications of linear IC’s. [K4]
C307.4 Demonstrate the operation of digital circuits such as arithmetic, data routing, registers and counters. [K2]
23HS5S01 SOFT SKILLS C308 C308.1 Demonstrate effective verbal and non-verbal communication skills through self-introduction, listening activities, and positive attitude development. [K2]
C308.2 Apply self-management techniques such as time, stress, and anger management while exhibiting teamwork and leadership qualities. [K3]
C308.3 Use standard communication practices including basic grammar, pronunciation, and professional writing skills such as emails, letters, notes, and minutes. [K3]
C308.4 Exhibit job-oriented skills by actively participating in group discussions, preparing resumes, and performing effectively in interviews. [K2]
C308.5 Develop and maintain effective interpersonal relationships by understanding their importance, types, and influencing factors in personal and professional contexts. [K3]
23EE5Z01 TINKERING LAB C309 C309.1 Apply basic electrical and electronic concepts to design and implement simple circuits using breadboards and embedded platforms. [K3]
C309.2 Use Arduino and ESP32 platforms to simulate, program, and demonstrate sensor- and actuator-based applications. [K3]
C309.3 Design, build, and test real-time projects integrating sensors, microcontrollers, and IoT concepts to solve practical problems. [K3]
C309.4 Employ design thinking, creativity, and prototyping tools such as 3D modeling and printing to develop innovative engineering solutions. [K3]
C309.5 Demonstrate teamwork, problem-solving ability, and hands-on skills while addressing real-world engineering challenges through tinkering activities. [K2]
23EE5I01 COMMUNITY SERVICE INTERNSHIP C310 C310.1 Increasing the knowledge of community issues and resources. [K2]
C310.2 To make students aware of their inner strength and help them to find new/out of box solutions to the social problems. [K2]
C310.3 To make students socially responsible. [K2]
C310.4 To develop holistic life among the students by making study culture, habits, lifestyle and wastage management. [K3]
23EE6T01 ELECTRICAL MEASUREMENTS AND INSTRUMENTATION C311 C311.1 Know the construction and working of various types of analog instruments. [K1]
C311.2 Describe the construction and working of wattmeter and power factor meters. [K2]
C311.3 Know the construction and working various bridges for the measurement resistance inductance and capacitance. [K1]
C311.4 Know the operational concepts of various transducers. [K1]
C311.5 Know the construction and operation digital meters. [K1]
23EC6T04 MICROPROCESSORS AND MICROCONTROLLERS C312 C312.1 Know the concepts of the Microprocessor capability in general and explore the evaluation of microprocessors. [K1]
C312.2 Analyse the instruction sets - addressing modes - minimum and maximum modes operations of 8086 Microprocessors. [K4]
C312.3 Analyse the Microcontroller and interfacing capability. [K4]
C312.4 Describe the architecture and interfacing of 8051 controller. [K2]
C312.5 Know the concepts of PIC micro controller and its programming. [K1]
23EE6T02 POWER SYSTEM ANALYSIS C313 C313.1 Draw impedance diagram for a power system network and calculate per unit quantities. [K2]
C313.2 Apply the load flow solution to a power system using different methods. [K4]
C313.3 Form Zbus for a power system network and analyse the effect of symmetrical faults. [K4]
C313.4 Find the sequence components for power system Components and analyse its effects of unsymmetrical faults. [K1]
C313.5 Analyse the stability concepts of a power system. [K4]
23EE6E01 SWITCHGEAR AND PROTECTION C3P2.1 C3P2.11 Understand and describe the operation of circuit breakers, including their ratings, principles of arc interruption, and types. [K2]
C3P2.12 Analyze relay-based protection systems, identifying and explaining their roles in overcurrent, under voltage, and fault detection. [K4]
C3P2.13 Design protection schemes for generators and transformers, addressing faults like restricted earth faults and inter-turn faults. [K3]
C3P2.14 Implement feeder and bus bar protection using advanced relays such as distance, impedance, and static relays. [K3]
C3P2.15 Evaluate over-voltage protection strategies, including the use of lightning arresters, and understand various neutral grounding techniques. [K5]
23EE6E02 ADVANCED CONTROL SYSTEMS C3P2.2 C3P2.21 Explain controllability, observability, and the principle of duality in state-space systems. [K2]
C3P2.22 Apply state-space methods to analyze controllability, observability, and design state feedback controllers. [K3]
C3P2.23 Analyze the stability of nonlinear systems using phase-plane analysis and Lyapunov's stability theorems. [K4]
C3P2.24 Examine the minimization of functional and control variable inequality constraints. [K4]
C3P2.25 Formulate and solve the optimal regulator problems. [K4]
23EC6E04 COMMUNICATION SYSTEMS C3P2.3 C3P2.31 Explain the basic blocks of a communication system and analyze AM techniques (AM, DSB-SC, SSB-SC, VSB-SC) with their transmitters and receivers. [K2]
C3P2.32 Describe and analyze angle modulation techniques (FM and PM) and evaluate FM bandwidth, generation, and detection methods. [K2]
C3P2.33 Apply the sampling theorem to analyze pulse modulation techniques, PCM systems, and digital data transmission using analog carriers. [K3]
C3P2.34 Explain and implement error control coding techniques including linear block, cyclic, and convolutional codes with encoder–decoder operations. [K2]
C3P2.35 Explain and compare microwave, optical fiber, satellite, and mobile communication systems. [K2]
23EE6X01 PRINCIPLES OF COMMUNICATION SYSTEMS – I C3N4 C3N4.1 Apply Fourier analysis and signal processing concepts to analyze communication signals in time and frequency domains. [K3]
C3N4.2 Analyze amplitude modulation techniques, including AM, DSB-SC, SSB, and VSB, along with their generation and demodulation methods. [K4]
C3N4.3 Analyze angle modulation techniques, including FM and PM, and evaluate their generation, bandwidth, and demodulation methods. [K4]
C3N4.4 Apply sampling, quantization, and pulse modulation techniques to represent and reconstruct analog signals in digital communication systems. [K3]
C3N4.5 Analyze probability, random variables, random processes, noise, and wireless fading channels to evaluate the performance of communication systems. [K4]
23EE6X02 SWITCHGEAR AND PROTECTION C3N5 C3N5.1 Explain the fundamentals of power system protection, types of faults, protection zones, backup protection, and perform basic short-circuit fault calculations. [K2]
C3N5.2 Describe the construction, operation, selection, and applications of fuses, isolators, circuit breakers, and gas-insulated switchgear used in power systems. [K2]
C3N5.3 Analyze the operating principles and characteristics of protective relays, including electromagnetic, static, and microprocessor-based relays, and apply suitable relay schemes for fault detection. [K4]
C3N5.4 Evaluate and design protection schemes for alternators and transformers using differential, overcurrent, earth fault, reverse power, and Buchholz relay protection. [K5]
C3N5.5 Select and analyze appropriate protection methods for motors, bus-bars, and transmission lines using overcurrent, distance, differential, and pilot wire protection schemes to ensure reliable power system operation. [K2]
23EE6X03 POWER SYSTEM PROTECTION C3N6 C3N6.1 Explain the philosophy, principles, and modern digital technologies used in power system protection, including phasor measurement techniques. [K2]
C3N6.2 Analyze the operating principles and characteristics of overcurrent, directional, and distance relays for protecting transmission systems. [K4]
C3N6.3 Evaluate the performance of instrument transformers (CTs and CVTs) and design protection schemes for power transformers and transmission lines using differential protection. [K6]
C3N6.4 Apply advanced protection techniques for modern power systems, including renewable energy-integrated networks, travelling wave-based protection, and synchro phasor technology. [K3]
C3N6.5 Select and coordinate appropriate protection schemes for various power system components to ensure reliable, secure, and efficient system operation under different fault conditions. [K2]
23EE6E03 ELECTRIC DRIVES C3P3.1 C3P3.11 Explain the fundamentals of electric drive and different electric braking methods. [K2]
C3P3.12 Analyze the operation of three-phase converter fed dc motors and four quadrant operations of dc motors using dual converters. [K4]
C3P3.13 Describe the DC-DC converter fed control of dc motors in various quadrants of operation. [K2]
C3P3.14 Know the concept of speed control of induction motor by using AC voltage controllers and voltage source inverters and differentiate the stator side control and rotor side control. [K1]
C3P3.15 Learn the concepts of speed control of synchronous motor with different methods. [K1]
23EE6E04 CORE CONCEPTS IN DIGITAL SIGNAL PROCESSING C3P3.2 C3P3.21 Know the concepts of Digital signal processing - frequency domain representation &z- transform. [K1]
C3P3.22 Compute discrete Fourier transform and fast Fourier transforms for different sequences. [K2]
C3P3.23 Design IIR filters through analog filter approximation and basic structure of IIR filters. [K3]
C3P3.24 Design FIR filters with window techniques and basic structure of FIR filters. [K3]
C3P3.25 Learn the concepts of Multirate Signal Processing. [K1]
23EE6E05 HIGH VOLTAGE ENGINEERING C3P3.3 C3P3.31 Recognise the dielectric properties of gaseous materials used in HV equipment. [K3]
C3P3.32 Differentiate the break down phenomenon in liquid and solid dielectric materials. [K2]
C3P3.33 Familiarize with the techniques of generation of high AC and DC voltages. [K4]
C3P3.34 Familiarize with the techniques of generation of high Impulse voltages and currents. [K4]
C3P3.35 Getting the knowledge of measurement of high AC - DC - Impulse voltages. [K2]
23EE6X04 INDUSTRIAL DRIVES C3N7 C3N7.1 Explain the principles of operation, construction, characteristics, and maintenance procedures of DC motors, special DC motors, and single-phase/three-phase AC motors. [K2]
C3N7.2 Analyze the starting, braking, speed control methods, and selection of motor ratings for DC and AC motors in various industrial applications. [K4]
C3N7.3 Understand the operation and performance of phase-controlled DC drives, chopper-controlled drives, and AC drives using SCRs, inverters, and V/f control techniques. [K2]
C3N7.4 Evaluate modern electric drive systems, including slip power recovery schemes, solar-powered drives, industrial drive applications, synchronous motor drives, and stepper motor drives. [K6]
C3N7.5 Apply microprocessor/microcontroller-based control techniques for AC and DC drives, including PLL-based DC motor control and digital control strategies for advanced motor drive systems. [K3]
23EE6X05 SIGNAL PROCESSING TECHNIQUES AND ITS APPLICATIONS C3N8 C3N8.1 Explain the concepts of frequency in continuous-time and discrete-time signals and analyze the characteristics of discrete-time systems. [K2]
C3N8.2 Analyze Linear Time-Invariant (LTI) systems and implement recursive and non-recursive discrete-time systems using appropriate realization structures. [K4]
C3N8.3 Apply Discrete-Time Fourier Transform (DTFT), Discrete Fourier Transform (DFT), and Fast Fourier Transform (FFT) techniques for frequency-domain analysis of discrete-time signals. [K3]
C3N8.4 Analyze Short-Time Fourier Transform (STFT), Discrete Cosine Transform (DCT), and FFT-based techniques for filtering, correlation, and signal processing applications. [K4]
C3N8.5 Design and analyze FIR and IIR digital filters and explain the principles of homomorphic signal processing and multirate digital signal processing. [K3]
23EE6001 FUNDAMENTALS OF ELECTRIC VEHICLES C3## C3##.1 Illustrate the use and advantages of different types of electric vehicles. [K2]
C3##.2 Use suitable power converters for EV application. [K1]
C3##.3 Select suitable electric motor for EV power train. [K1]
C3##.4 Design HEV configuration for a specific application. [K3]
C3##.5 Analyse various storage systems and battery management system for EVs. [K4]
23EE6O02 ELECTRICAL WIRING ESTIMATION AND COSTING C3## C3##.1 Demonstrate the various electrical apparatus and their interconnections. [K2]
C3##.2 Examine various components of electrical installations. [K4]
C3##.3 Estimate the cost for installation of wiring for different types of building and small industries. [K4]
C3##.4 Illustrate the components of electrical substations. [K2]
C3##.5 Design suitable control circuit for starting of three phase induction motor and synchronous motor. [K3]
23EE6L01 ELECTRICAL MEASUREMENTS AND INSTRUMENTATION LAB C314 C314.1 Know about the phantom loading and calibration process. [K1]
C314.2 Measure the electrical parameters voltage - current - power- energy and electrical characteristics of resistance - inductance and capacitance. [K2]
C314.3 Gain the skill knowledge of various bridges and their applications. [K2]
C314.4 Learn the usage of CT’s - PT’s for measurement purpose. [K2]
C314.5 Know the characteristics of transducers and measure the strains - frequency and phase difference. [K1]
23EC6L03 MICROPROCESSORS AND MICROCONTROLLERS LAB C315 C315.1 Write assembly language program using 8086 microprocessors based on arithmetic - logical number systems and shift operations. [K1]
C315.2 Write assembly language programs for numeric operations and array handling problems. [K1]
C315.3 Write a assembly program on string operations. [K1]
C315.4 Interface 8086 with I/O and other devices. [K4]
C315.5 Do parallel and serial communication using 8051 & PIC 18 micro controllers. [K2]
23EE6S02 IOT APPLICATIONS OF ELECTRICAL ENGINEERING LAB C316 C316.1 Operate the Arduino Integrated Development Environment with embedded c [K3]
C316.2 Program the embedded Python in Raspberry Pi OS. [K3]
C316.3 Interface various sensors with Arduino/Raspberry Pi in the IoT environment. [K4]
C316.4 Connect different displays with Arduino/Raspberry Pi. [K4]
C316.5 Interconnect with wireless communication technologies. [K4]
23BS6M01 RESEARCH METHODOLOGY C317 C317.1 Understand research problem formulation. [K2]
C317.2 Analyze research related information, Follow research ethics. [K4]
C317.3 Understand that today’s world is controlled by Computer, Information Technology, but tomorrow world will be ruled by ideas, concept, and creativity. [K2]
C317.4 Understanding that when IPR would take such important place in growth of individuals & nation, it is needless to emphasis the need of information about Intellectual Property Right to be promoted among students in general & engineering in particular. [K2]
C317.5 Understand that IPR protection provides an incentive to inventors for further research work and investment in R & D, which leads to creation of new and better products, and in turn brings about, economic growth and social benefits. [K2]
R23-COURSE OUTCOMES IV B. Tech-EEE
COURSE CODE COURSE TITLE NBA CODE SUB CODE COURSE OUTCOMES
23EE7T01 POWER SYSTEM OPERATION AND CONTROL C401 C401.1 Compute optimal load scheduling of Generators. [K4]
C401.2 Formulate hydrothermal scheduling and unit commitment problem. [K3]
C401.3 Analyse effect of Load Frequency Control for single area systems. [K4]
C401.4 Analyse effect of Load Frequency Control for two area systems. [K4]
C401.5 Describe the effect of reactive power control for transmission lines. [K2]
23EE7T02 ENERGY MANAGEMENT & AUDITING C402 C402.1 Understand the principles of energy audit along with various Energy related terminologies. [K2]
C402.2 Asses the role of Energy Manager and Energy Management program. [K5]
C402.3 Design an energy efficient motors and good lighting system. [K5]
C402.4 To understand the significance of Demand side management and identify the energy instruments for various real time applications. [K2]
C402.5 Evaluate the computational techniques about economic aspects. [K5]
23EE7E01 EHVAC & HVDC TRANSMISSION SYSTEMS C4P4.1 C4P4.11 Acquaint with HV transmission system with regard to power handling capacity, losses, conductor resistance and electrostatic field associate with HV. Further knowledge is gained in area of bundle conductor system to improve electrical and mechanical performance. [K3]
C4P4.12 Develop ability for determining corona, radio interference, audible noise generation and frequency spectrum for single and three phase transmission lines. [K3]
C4P4.13 Understand the basic concepts, economic considerations, and terminal equipment of HVDC transmission systems, including different types of HVDC and MTDC links. [K2]
C4P4.14 Analyze and compare the configurations and characteristics of HVDC converters such as 6-pulse and 12-pulse Graetz circuits, and explain the principles and methods of DC link control. [K4]
C4P4.15 Evaluate the origin and effects of harmonics in HVDC systems, calculate harmonic components, and design appropriate AC filters including single-tuned and high-pass filters. [K5]
23EE7E02 PROGRAMMABLE LOGIC CONTROLLERS C4P4.2 C4P4.21 Illustrate I/O modules of PLC systems and Input/output devices. [K2]
C4P4.22 Demonstrate various the programming instructions and ladder diagram construction in the PLC. [K2]
C4P4.23 Examine various types of PLC functions and counters and their applications. [K4]
C4P4.24 Assess different data handling functions and its applications. [K5]
C4P4.25 Describe the analog operations and PID modules. [K2]
23EE7E03 ELECTRICAL DISTRIBUTION SYSTEM C4P4.3 C4P4.31 Discriminate various factors of distribution system - load modelling and characteristic of loads. [K2]
C4P4.32 Know the concept of design considerations of substation and feeders. [K1]
C4P4.33 Determine the voltage drop and power loss for different types of distribution loads. [K2]
C4P4.34 Analyse the protection and its coordination for distribution systems. [K4]
C4P4.35 Analyse the effect of compensation for p.f improvement and voltage improvement. [K4]
23EE7E04 ELECTRIC VEHICLES C4P5.1 C4P5.11 Know the concept of electric vehicles and hybrid electric vehicles. [K1]
C4P5.12 Familiar with different configuration of hybrid electric vehicles. [K2]
C4P5.13 Choose an effective motor for EV and HEV application. [K1]
C4P5.14 Understand the power converters used in hybrid electric vehicles. [K2]
C4P5.15 Know different batteries and other energy storage systems. [K1]
23EE7E05 SWITCHED MODE POWER CONVERSION C4P5.2 C4P5.21 Design and analyse the operation of non-isolated switch mode converters. [K3]
C4P5.22 Analyze the operation of isolated switch mode converters. [K3]
C4P5.23 Illustrate the operation of resonant converters. [K2]
C4P5.24 Analyse the control schemes of converters and design transformer and inductor. [K4]
C4P5.25 Model the converters and design controller for closed loop operation. [K3]
23EE7E06 DESIGN OF PV SYSTEMS C4P5.3 C4P5.31 Analyze solar radiation data and evaluate site conditions for PV applications. [K4]
C4P5.32 Explain the operation and characteristics of various types of PV cells and modules. [K4]
C4P5.33 Identify and select appropriate components for different PV system configurations. [K1]
C4P5.34 Design and size standalone, hybrid, and grid-tied PV systems using analytical and simulation tools. [K3]
C4P5.35 Apply standards and practices for the installation, testing, maintenance, and economic evaluation of PV systems. [K3]
23EE7O01 BATTERY MANAGEMENT SYSTEMS AND CHARGING STATIONS C4## C4##.1 Describe the construction and operation of different batteries for EV applications. [K2]
C4##.2 Describe charging algorithms of different batteries and balancing methods of battery packs. [K2]
C4##.3 Describe the different kinds of infrastructure needed in the charging stations. [K2]
C4##.4 Describe the requirements of battery management and their maintenance. obtain the modelling of batteries and develop their simulation models. [K2]
C4##.5 Develop various charging types and their usage for different applications. [K3]
23EE7O02 CONCEPTS OF SMART GRID TECHNOLOGIES C4## C4##.1 Know the concepts of smart grids and analyse the smart grid policies and developments in smart grids. [K1]
C4##.2 Develop concepts of smart grid technologies in hybrid electrical vehicles etc. [K3]
C4##.3 Know the concepts of smart substations - feeder automation - Battery Energy storage systems etc. [K1]
C4##.4 Analyse micro grids and distributed generation systems.
C4##.5 Analyse the effect of power quality in smart grid and to understand latest developments in ICT for smart grid. [K4]
23EE7O03 CONCEPTS OF POWER QUALITY C4## C4##.1 Differentiate between different types of power quality problems. [K2]
C4##.2 Explain the sources of voltage sag - voltage swell - interruptions - transients - long duration over voltages and harmonics in a power system. [K2]
C4##.3 Explain the principle of voltage regulation and improvement methods. [K2]
C4##.4 Analyse voltage distortion and current distortion and their indices. [K4]
C4##.5 Know the concepts of distributed generation technologies and power quality monitoring. [K1]
23EE7O04 QUANTUM SCIENCE AND TECHNOLOGY C4## C4##.1 Explain core principles of quantum mechanics and their technological implications. [K2]
C4##.2 Analyze quantum phenomena like superposition and entanglement. [K4]
C4##.3 Apply mathematical tools to model and solve quantum systems. [K3]
C4##.4 Demonstrate understanding of quantum algorithms and quantum circuits. [K2]
C4##.5 Evaluate potential applications and challenges in quantum communication and sensing. [K4]
23EE7L01 POWER SYSTEMS SIMULATION LAB C403 C403.1 Distinguish between different load flow methods. [K4]
C403.2 Building and analyzing Y-bus & Z-bus algorithms. [K3]
C403.3 Practice and analyze the symmetrical & unsymmetrical faults. [K4]
C403.4 Recognize the importance of Load flow control and Economic load dispatch. [K1]
C403.5 Recognize the importance of Economic load dispatch and transient stability analysis. [K1]
23BS7M01 CONSTITUTION OF INDIA C404 C404.1 Explain the basic principles of the Indian Constitution, including constitutional law, constitutionalism, salient features, the Preamble, citizenship, and the federal system. [K2]
C404.2 Analyze the Fundamental Rights, Directive Principles of State Policy (DPSPs), and Fundamental Duties, and evaluate their role in ensuring justice, equality, and good governance. [K4]
C404.3 Describe the structure, powers, and functions of the Union and State Governments, the Judiciary, and the constitutional mechanisms for judicial review and Public Interest Litigation (PIL). [K2]
C404.4 Interpret the constitutional provisions related to local self-government, elections, emergency provisions, and the constitutional amendment process. [K2]
C404.5 Apply the principles of engineering ethics, professional responsibility, Intellectual Property Rights (IPRs), the Information Technology (IT) Act, and the Right to Information (RTI) Act in professional and societal contexts. [K3]
23EE7I01 EVALUATION OF INDUSTRY INTERNSHIP C405 C405.1 To learn the application of knowledge in real world problems. [K3]
C405.2 To get exposure to team-work and leadership quality. [K4]
C405.3 To deal with industry-professionals and ethical issues in the work environment. [K3]
23EE8P01 INTERNSHIP AND PROJECT C406 C406.1 Undertake problem identification, formulation and solution. [K2]
C406.2 Demonstrate a sound technical knowledge of their selected project topic. [K3]
C406.3 Analyze and assemble the basic information to find solution of a complex engineering problem by using suitable methodology/procedure. [K3]
C406.4 Demonstrate the knowledge, skills and attitudes of a professional engineer. [K3]
C406.5 Document and report the project work carried out in an appropriate format. [K2]
R20 - Course Outcomes

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R19 - Course Outcomes

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