FACULTY OF ENGINEERING AND TECHNOLOGY

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1 FACULTY OF ENGINEERING AND TECHNOLOGY CURRICULUM, PRE-REQUISITES/ CO-REQUISITES CHART AND SYLLABUS FOR B.TECH UNDER CHOICE BASED FLEXIBLE CREDIT SYSTEM REGULATIONS 205 (For students admitted from onwards) Specialization : Automotive Electronics Offering Department : Department of Automobile Engineering Placed in the 36 th Academic Council Meeting held on October 207

2 COURSE CODE CONTENTS TOPIC / COURSE TITLE STUDENT OUTCOMES C-D-I-O ABBREVIATIONS CURRICULUM CORE COURSES IN SPREAD SHEET CURRICULUM ELECTIVE COURSES IN SPREAD SHEET CURRICULUM CORE COURSES CURRICULUM ELECTIVE COURSES SUMMARY OF CREDITS PRE/CO REQUISITES FLOW CHART CORE COURSES PRE/CO REQUISITES FLOW CHART ELECTIVE COURSES PRE/CO REQUISITES LIST PRE/CO REQUISITES ELECTIVE COURSES LIST PAGE NUMBER II III IV V VII VIII XI XII XIII XIV XV XVII YEAR, SEMESTER - I 5PD0 SOFT SKILLS - I 5MA0 CALCULUS AND SOLID GEORMETRY 3 5ME05L ENGINEERING GRAPHICS 6 YEAR I, SEMESTER II 5PD02 SOFT SKILLS - II 2 5MA02 ADVANCED CLACULUS AND COMPLED ANALYSIS 4 5ME0 BASIC MECHANICAL ENGINEERING 7 5ME02 ENGINEERING MECHANICS 20 5ME04L WORKSHOP PRACTICE 24 5AE02L AUTOMOTIVE BASIC SCIENCE LABORATORY 26 YEAR II, SEMESTER I 5PD20 QUANITATIVE APTITUDE & LOGICAL REASONING I 5MA202 FOURIER SERIES, PARTIAL DIFFERENTIAL 3 EQUATIONS AND IT S APPLICATIONS 5ME20 THERMODYNAMICS 35 5ME204 MACHINES AND MECHANISMS 38 5ME205 FLUID MECHANICS 4 29

3 COURSE CODE TOPIC / COURSE TITLE PAGE NUMBER 5AE20J MANUFACTURING TECHNOLOGY FOR 45 AUTOMOTIVE ENGINEERING 5AE208 ANALOG AND DIGITAL CIRCUITS FOR 49 AUTOMOTIVE APPLICATION 5ME205L FLUID DYNAMICS LABORATORY 52 5AE203L AUTOMOTIVE COMPONENTS AND ASSEMBLY 53 DRAWING YEAR II SEMESTER II 5PD202 VERBAL APTITUDE 57 5MA206 NUMERICAL METHODS 59 5AE204 APPLIED THERMAL ENGINEERING FOR 63 AUTOMOTIVE ENGINEERS 5AE209 AUTOMOTIVE CONTROL ENGINEERING 66 5ME203 MECHANICS OF SOLIDS 70 5ME303 MATERIALS TECHNOLOGY 74 5ME203L STRENGTH OF MATERIALS LABORATORY 79 5ME303L MATERIALS TECHNOLOGY LABORATORY 80 5AE375L/ 5AE380L/ 5AE385L/ 5AE490L MINOR PROJECT I/ SEMINAR I/ MASSIVE OPEN ONLINE COURSES (MOOCs) I/ INDUSTRIAL MODULE I/ YEAR III, SEMESTER I 5PD30 COMMUNICATION & REASONING SKILLS 9 5MA30 PROBABILITY AND STATISTICS 93 5AE30 AUTOMOTIVE TRANSDUCERS AND SIGNAL 96 CONDITIONERS 5AE3 I.C. ENGINES AND ITS SUBSYSTEMS 99 5AE32 VEHICULAR STRUCTURES AND DRIVELINE 02 SYSTEMS 5AE305L AUTOMOTIVE COMPONENTS LABORATORY 06 5AE30L AUTOMOTIVE TRANDUCERS AND SIGNAL 08 CONDITIONERS LABORATORY 5AE34L ENGINE AND VEHICLE TESTING LABORATORY 0 5AE390L INDUSTRIAL TRANING I (TO BE DONE AFTER IV SEM) YEAR III, SEMESTER II 5PD302 APTITUDE IV 4 5AE30 DESIGN OF AUTOMOTIVE COMPONENTS 6

4 COURSE CODE TOPIC / COURSE TITLE PAGE NUMBER 5ME304 FLUID POWER CONTROL 9 5AE307J AUTOMOTIVE ELECTRICAL AND ELECTRONICS 24 SYSTEM 5AE33 AUTOMOTIVE MICROCONTROLLERS 28 5AE33L AUTOMOTIVE MICROCONTROLLERS 3 LABORATORY 5AE376L/ 5AE38L/ 5AE386L/ 5AE49L MINOR PROJECT II/ SEMINAR II / MASSIVE OPEN ONLINE COURSES (MOOCS) II/ INDUSTRIAL MODULE II YEAR IV, SEMESTER I 5AE40 VEHICLE DYNAMICS 42 5AE402 VEHICLE BODY ENGINEERING AND 44 AERODYNAMICS 5AE406 MODELLING AND CONTROL OF ELECTRIC AND 47 HYBRID VEHICLES 5AE404M MULTI-DISCIPLINARY DESIGN 50 5AE40L VEHICLE DYNAMICS LABORATORY 53 5AE406L ELECTRIC VEHICULAR SYSTEMS LABORATORY 54 5AE39L INDUSTRIAL TRAINING II (TO BE DONE AFTER VI 56 SEM) YEAR IV, SEMESTER - II 5AE496L MAJOR PROJECT 58 ELECTIVE COURSES DEPARTMENT ELECTIVE I ( TO BE OFFERED IN II SEMESTER OF II YEAR) 5AE253E PRINCIPLES OF LINEAR SYSTEMS AND SIGNALS 62 5AE254E POWER ELECTRONICS FOR ELECTRIC VEHICLE 65 APPLICATION DEPARTMENT ELECTIVE II ( TO BE OFFERED IN I AND II SEMESTER OF III YEAR ) 5AE35E AUTOMOTIVE FAULT DIAGNOSTICS 68 5AE352E AUTOMOTIVE COMMUNICATION PROTOCOLS 7 5AE353E ARTIFICIAL NEURAL NETWORKS AND FUZZY 74 LOGIC 5AE355E STATE SPACE ANALYSIS AND DIGITAL CONTROL 76 SYSTEM 5AE356E AUTOMOTIVE DEVELOPMENT PROCESS 80

5 COURSE CODE TOPIC / COURSE TITLE PAGE NUMBER DEPARTMENT ELECTIVE V AND VI ( TO BE OFFERED IN I SEMESTER OF IV YEAR ) 5AE45E INTELLIGENT VEHICLE TECHNOLOGY 83 5AE452E MODEL BASED SYSTEM DESIGN 86 5AE453E VEHICLE STABILITY AND CONTROL SYSTEMS 89 5AE454E NONLINEAR SYSTEMS 93 5AE455E ENGINEERING OPTIMIZATION 95

6 STUDENT OUTCOMES The curriculum and syllabus for B.Tech programs (203) conform to outcome based teaching learning process. In general, ELEVEN STUDENT OUTCOMES (a-k) have been identified and the curriculum and syllabus have been structured in such a way that each of the courses meets one or more of these outcomes. Student outcomes describe what students are expected to know and be able to do by the time of graduation. These relate to the skills, knowledge, and behaviors that students acquire as they progress through the program. Further each course in the program spells out clear instructional objectives which are mapped to the student outcomes. The student outcomes are: (a) an ability to apply knowledge of mathematics, science, and engineering (b) an ability to design and conduct experiments, as well as to analyze and interpret data (c) an ability to design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability (d) an ability to function on multidisciplinary teams (e) an ability to identify, formulate, and solve engineering problems (f) an understanding of professional and ethical responsibility (g) an ability to communicate effectively (h) the broad education necessary to understand the impact of engineering solutions in global, economic, environmental, and societal context (i) a recognition of the need for, and an ability to engage in life-long learning (j) (k) a knowledge of contemporary issues an ability to use the techniques, skills, and modern engineering tools necessary for engineering practice. ii B.Tech Automobile Engg.

7 C-D-I-O INITIATIVE The CDIO Initiative (CDIO is a trademarked initialism for Conceive Design Implement Operate) is an innovative educational framework for producing the next generation of engineers. The framework provides students with an education stressing engineering fundamentals set in the context of Conceiving Designing Implementing Operating real-world systems and products. Throughout the world, CDIO Initiative collaborators have adopted CDIO as the framework of their curricular planning and outcome-based assessment. In the syllabus, every topic has been classified under one or more of C-D-I-O so that students and faculty alike are clear about the scope of learning to take place under each one of the topics. iii B.Tech Automobile Engg.

8 SYMBOLS AND ABBREVIATIONS AR -- Architecture Courses B -- Courses under Basic Science and Mathematics BT -- Biotechnology Courses C-D-I-O -- Conceive-Design-Implement-Operate CE -- Civil Engineering Courses CS -- Computer Science and Engineering Courses CY -- Chemistry Courses Dept. -- Department of Civil Engineering E with course -- Elective Courses code E -- Courses under Engineering Sciences EC -- Electronics and Communication Engineering Courses EE -- Electrical and Electronics Engineering Courses G -- Courses under Arts and Humanities IOs -- Instructional Objectives L -- Laboratory / Project / Industrial Training Courses LE -- Language Courses L-T-P-C -- L- Lecture Hours Per Week T- Tutorial Hours Per Week P- Practical Hours Per Week C- Credits for a Course M -- Courses with Multi Disciplinary Content MA -- Mathematics Courses ME -- Mechanical Engineering Courses NC -- NCC- National Cadet Corps NS -- NSS National Service Scheme P -- Professional Core Courses PD -- Personality Development Courses PY -- Physics Courses SO/SOs -- Student Outcomes (a-k) SP -- NSO- National Sports Organization YG -- Yoga Course iv B.Tech Automobile Engg.

9 FACULTY OF ENGINEERING AND TECHNOLOGY, SRM UNIVERSITY DEPARTMENT OF AUTOMOBILE ENGINEERING B.TECH AUTOMOBILE ENGINEERING (With specialization in Automotive electronics)choice BASED FLEXIBLE CREDIT SYSTEM (CBFCS) Curriculum Under Regulations 205 (For students admitted from onwards) L T Tutorial P Practical E Elective Lecture Hours / Week C Credits L Laboratory Course J Theory jointly with Lab M Course with Multidisciplinary content Hours / Week Hours / Week Courses Category Arts & Humanities-G Category - wise % of Credits 8.33% Course Code Year Year 2 st Semester 2nd Semester st Semester 2nd Semester Course Title L T P C Course Code Course Title L T P C Course Code Course Title L T P C Course Code Course Title L T P C 5LE0 English LE02 Value Education LE20E 5PD0 Soft Skills-I 0 5PD02 Soft Skills-II 0 5LE202E 5NC0 5NS0 5SP0 NCC- National Cadet Corps NSS- National Service Scheme NSO- National Sports Organization 0 0 5LE203E 5LE204E 5LE205E 5YG0 Yoga 5PD20 German Language-I French Language-I Japanese Language-I Korean Language-I Chinese Language-I Quantitative Aptitude & Logical Reasoning I LE207E 5LE208E German Language-II French Language-II 5LE209E Japanese 2 Language-II LE20E Korean Language-II 5LE2E Chinese Language-II 0 5PD202 Verbal Aptitude 0 5 Total Total 3 4 Total Total MA0 Calculus And Solid Geometry MA02 Advanced Calculus And Complex Analysis MA202 Fourier Series, Partial Differential Equations And MA206 Numerical Methods PY0 Physics PY02L Material Science Basic Sciences - B 9.44% 5PY0L Physics Laboratory CY02 5CY0 Chemistry CY0L Chemistry Laboratory 5BT0 Biology For Engineers Principles Of Environmental Science Total 4 4 Total Total Total Engineering Sciences -E 0.00% 5CE0 5EE0 5ME05 L Basic Civil Engineering Basic Electrical Engineering Engineering Graphics 5CS0L Programming Laboratory ME EC0 Basic Mechanical Engineering Basic Electronics Engineering ME ME04L Workshop Practice Thermodynamic s Total Total Total Total

10 5ME02 Engineering Mechanics ME205 Fluid Mechanics AE204 Applied Thermal Engineering for Automotive AE02L Automotive Basic Science Laboratory AE20J Manufacturing Technology for Automotive Engineers ME203 Mechanics of Solids Professional - Core -P 40.56% 5AE208 5AE203L Analog, Digital Circuits for Automotive Applications Automotive Components and Assembly Drawing AE209 Automotive Cont ME303 Materials Technology ME205L Fluid Dynamics Laboratory ME303L Materials Technology Laboratory ME204 Machines and Mechanisms ME203L Strength of Materials Laboratory Total Total Total Total Prof - Electives -P 8.33% Department Elective-I Total Total Total Total Project / Seminar / Internship-P 8.33% 5AE375L / 5AE380L / 5AE385L / 5AE490L Minor Project I / Seminar I / Massive Open Online Courses (MOOCs) I / Industrial Module I Total Total Total Total Open Electives 6 Total Total Total Total Total Contact hours 32 Contact hours 28 Total contact hours 34 Total Contact hours 33

11 FACULTY OF ENGINEERING AND TECHNOLOGY, SRM UNIVERSITY DEPARTMENT OF AUTOMOBILE ENGINEERING B.TECH AUTOMOBILE ENGINEERING(with specialization in Automotive electronics) CHOICE BASED FLEXIBLE CREDIT SYSTEM (CBFCS) Curriculum Under Regulations 205 (For students admitted from onwards) L Lecture Hours / Week T C Credits Tutorial Hours / Week P Practical Hours L Laboratory Course E Elective Courses J Theory jointly with Lab M Course with Multidisciplinary content / Week Year 3 Year 4 st Semester 2nd Semester st Semester 2nd Semester Course Code Course Title L T P C Course Code Course Title L T P C Course Code Course Title L T P C Course Code Course Title L T P C 5PD30 Communication & Reasoning Skills 0 5PD302 Quantitative Aptitude & Logical Reasoning II 0 Total 0 Total 0 Total Total MA30 Probability and Statistics Total Total Total Total Total Total Total Total

12 5AE30 Automotive Transducers and signal conditioners AE30 Design of Automotive Components AE40 Vehicle Dynamics AE3 I.C Engines and its subsystems ME304 Fluid Power Control AE402 Vehicle Body Engineering and Aerodynamics AE32 Vehicular Structures and Driveline Systems AE307J Automotive Electrical & Electronic System AE406 Modelling and Control of Electric and Hybrid Vehicles AE305L Automotive Components Laboratory AE33 Automotive Microcontrollers AE404M Multi-Disciplinary Design AE30L Automotive Transducers and Signal conditioners Laboratory AE33L Automotive Microcontrollers Laboratory AE40L Vehicle Dynamics Laboratory AE34L Engine and Vehicle Testing Laboratory AE406L Electric Vehicular systems Laboratory Total Total Total Total Department Elective-II Department Elective-III Department Elective-IV Department Elective-V Total Total Total Total Open Elective I Open Elective Ii AE390L Industrial Training-I (To be done after IV semester) 5AE376L Minor Project II / / Seminar II / 5AE38L 5AE39L Massive Open / Online Courses 5AE386L (MOOCs) II / / Industrial Module II 5AE49L Industrial Training-II (To be done after VI semester) AE496L Major Project Total Total Total Total Open Elective I Open Elective II As per list / as taken by the student As per list / as taken by the student Total Total Total Total OPEN ELECTIVE I OPEN ELECTIVE II Total Contact hours 29 Total contact hours 24 Total contact hours 26 Total contact hours 24

13 B.Tech Automobile Engineering (With Specialization in Automotive Electronics) (Applicable for Students Admitted from the Academic Year Onwards) CURRICULUM 205 Semester - I Course Code Category Course Name L T P C 5LE0 G English PD0 G Soft Skills-I 0 5MA0 B Calculus and Solid Geometry PY0 B Physics CY0 B Chemistry BT0 B Biology for Engineers CE0 E Basic Civil Engineering EE0 E Basic Electrical Engineering PY0L B Physics Laboratory CY0L B Chemistry Laboratory ME05L E Engineering Graphics CS0L E Programming Laboratory Total Total Contact Hours 32 Semester - II Course Code Category Course Name L T P C 5LE02 G Value Education PD02 G Soft Skills-II 0 5MA02 B Advanced Calculus and Complex Analysis PY02L B Material Science CY02 B Principles of Environmental Science ME0 E Basic Mechanical Engineering EC0 E Basic Electronics Engineering ME02 P Engineering Mechanics ME04L E Workshop Practice AE02L P Automotive Basic Science Laboratory NC0/ 5NS0/ 5SP0/ 5YG0 G *NCC /NSS/NSO/YOGA 0 0 Total Total Contact Hours 28 vi B.Tech Automobile Engg.

14 *NCC National Cadet Corps NSS National Service Scheme NSO National Sport Organization Legend: L - Number of lecture hours per week T - Number of tutorial hours per week P - Number of practical hours per week C - Number of credits for the course Category of courses: G General B - Basic Sciences E - Engineering Sciences and Technical Arts P - Professional Subjects Semester - III Course Code Category Course Name L T P C 5LE20E/ 5LE202E/ 5LE203E/ G German Language - I/ French Language - I/ Japanese Language - I/ LE204E/ 5LE205E Korean Language -I/ Chinese Language - I 5PD20 G Quantitative Aptitude & Logical Reasoning I 0 5MA202 B Fourier Series, Partial Differential Equations and its Applications 5ME20 E Thermodynamics ME204 P Machines and Mechanisms ME205 P Fluid Mechanics AE20J P Manufacturing Technology for Automotive Engineers 5AE208 P Analog, Digital Circuits for Automotive Applications 5AE203L P Automotive Components and Assembly Drawing ME205L P Fluid Dynamics Laboratory Total Total Contact Hours 29 vii B.Tech Automobile Engg.

15 Semester - IV Course Code Category Course Name L T P C 5LE207E/ 5LE208E/ 5LE209E/ G German Language -II/ French Language -II/ Japanese Language -II/ LE20E/ 5LE2E Korean Language -II/ Chinese Language- II 5PD202 G Verbal Aptitude 0 5MA206 B Numerical Methods AE204 P Applied Thermal Engineering for Automotive Engineers ME203 P Mechanics of Solids ME303 P Materials Technology AE209 P Automotive Control Engineering ME203L P Strength of Materials Laboratory ME303L P Materials Technology Laboratory AE375L/ Minor Project- I/ 5AE380L/ Seminar- I/ P 5AE385L/ Massive Open Online Courses (MOOCs)-I/ AE490L Industrial Module- I P Departmental Elective I Total Total Contact Hours 33 Semester - V Course Code Category Course Name L T P C 5PD30 G Communication & Reasoning Skills 0 5MA30 B Probability and Statistics AE30 P Automotive Transducers and Signal Conditioners AE3 P I.C Engines and its Subsystems AE32 P Vehicular Structures and Driveline Systems AE34L P Engine and Vehicle Testing Laboratory AE305L P Automotive Components Laboratory AE390L P Industrial Training -I (To be done after IV Semester) P Department Elective-II P Open Elective -I Total Total Contact Hours 29 viii B.Tech Automobile Engg.

16 Semester - VI Course Code Category Course Name L T P C 5PD302 G Quantitative Aptitude & Logical Reasoning II 0 5ME304 P Fluid Power Control AE30 P Design of Automotive Components AE307J P Automotive Electrical & Electronics System AE33 P Automotive Microcontrollers AE33L P Automotive Microcontrollers Laboratory AE376L/ Minor Project- II/ 5AE38L/ P Seminar -II/ 5AE386L/ Massive Open Online Courses (MOOCs) -II/ AE49L Industrial Module-II P Departmental Elective III P Open Elective II Total Total Contact Hours 24 Semester - VII Course Code Category Course Name L T P C 5AE40 P Vehicle Dynamics AE402 P Vehicle Body Engineering and Aerodynamics AE404M P Multi-Disciplinary Design AE406 P Modelling and Control of Electric and Hybrid Vehicles AE40L P Vehicle Dynamics Laboratory AE406L P Electric Vehicular Systems Laboratory AE39L P Industrial Training II (To be done after VI Semester) P Departmental Elective IV P Departmental Elective V Total Total Contact Hours 26 Semester - VIII Course Category Code Course Name L T P C 5AE496L P Major Project Total Total Hours 24 ix B.Tech Automobile Engg.

17 Departmental Electives Course Categor Code y Course Name L T P C 5AE253E P Principles of linear systems and signals AE254E P Power electronics for EV application AE35E P Automotive Fault Diagnostics AE352E P Automotive Communication Protocols AE353E P Artificial Neural Networks and Fuzzy Logic AE355E P State Space analysis and Digital Control system AE356E P Automotive Development process AE45E P Intelligent Vehicle Technology AE452E P Model Based System Design AE453E P Vehicle Stability and Control Systems AE454E P Nonlinear systems AE455E P Engineering Optimization Note: All Core/Elective courses can be listed / delisted every semester under open electives, based on the availability of resources and demand. x B.Tech Automobile Engg.

18 Summary of Credits Category I&II III&IV V&VI VII&VIII Total % G B E P Open Elective Departmental Elective Total xi B.Tech Automobile Engg.

19 SRM UNIVERSITY DEPARTMENT OF AUTOMOBILE ENGINEERING PRE AND CO REQUISITE CHART YEAR SEM 2 SEM 5MA0 4 Cr 5PD0 Cr 5PY0 3 Cr 5PY0L Cr 5CY0L 3 Cr 5CY0L Cr 5ME05L 3 Cr Calculus and Solid Geometry Soft Skills I Physics 5MA02 4 Cr 5PD02 Cr 5ME02 4 Cr Advanced Engineering Soft Skills - II Calculus Mechanics Physics Laboratory Chemistry Chemistry Laboratory Engineering Graphics YEAR 2 SEM SEM 2 5MA202 4 Cr 5PD20 Cr 5LE20-5E2 Cr 5ME20 3 Cr 5ME204 3 Cr 5ME205 3 Cr 5ME205L Cr 5AE203L 2 Cr 5AE208 2 Cr Quantitative Automotive Analog, Digital Fourier Series, Partial Aptitude & Thermo Machines and Fluid Fluid Dyanmics Components Circuits for Difference Equations Language I and its Applications Logical dynamics Mechanisms Mechanics Laboratory and Assembly Automotive Reasoning I Drawing Applications 5MA206 4 Cr 5PD202 Cr 5LE207-E2 Cr 5AE204 3 Cr 5ME203 3 Cr 5ME203L Cr 5ME303 3 Cr 5ME303L Cr 5AE209 3 Cr Numerical Methods Verbal Aptitude Language II Applied Thermo dynamics Mechanics of Solids Strength of Materials Laboratory Materials Technology Materials Technology Laboratory Automotive Control Engineering YEAR 3 YEAR 4 SEM SEM 2 SEM 5MA30 4 Cr 5PD30 Cr 5AE34L Cr 5AE3 3 Cr 5AE32 3 Cr 5AE305L Cr 5AE30L Cr 5AE30 2 Cr Probability & Statistics 5AE40 3 Cr 5AE402 3 Cr 5AE406 3 Cr Vehicle Dynamics Communication & Reasoning Skills Engine and Vechile Testing Lab I.C Engines and its Subsystems Vehicular Structrues and Driveline Systems Automotive Components Laboratory 5PD302 Cr 5AE30 3 Cr 5AE33L Cr 5AE33 3 Cr 5AE307J 4 Cr Quantitative Automotive Design of Automotive Automotive Aptitude & Electrical and Automotive Microcontroller Microcontroller Logical Electronics components s Laboratory s Reasoning II System Vehicle Body Engineering and Aerodynamics Automotive Transducers & Signal Conditioners Laboratory Automotive Transducers & Signal Conditioners Modelling and control of Electric and Hybrid vehicles Xii B.Tech Automobile Engg.

20 SRM UNIVERSITY DEPARTMENT OF AUTOMOBILE ENGINEERING PRE AND CO REQUISITE CHART 5AE208 2 Cr 5AE209 3 Cr 5AE307J 4 Cr 5AE33 3 Cr Analog, Digital Automotive Automotive Automotive Circuits for Electrical & Control Microcontroller Automotive Electronics Engineering s Applications System 5AE352E 3 Cr 5AE253E 3 Cr 5AE356E 3 Cr 5AE353E 3 Cr 5AE35E 3 Cr 5AE45E 3 Cr Automotive Communication Protocols Principles of linear systems and signals Automotive Development process 5AE453 3 Cr 5AE40 3 Cr Vehicle Stability and Control Systems 5AE454E 3 Cr 5AE406 3 Cr Nonlinear systems 5AE455E 3 Cr Engineering Optimization Artificial Neural Networks and Fuzzy Logic 5AE254E 3 Cr 5AE452E 3 Cr 5AE355E 3 Cr State Space Power Model Based analysis and electronics for System Design Digital Control EV application system Vehicle Dynamics Modelling and Control of Electric and Hybrid Vehicles Automotive Fault Diagonostics Intelligent Vehicle Technology Xiii B.Tech Automobile Engg.

21 Course Code xiv DEPARTMENT OF AUTOMOBILE ENGINEERING B.Tech Automobile Engineering (with Specialization in Automotive Electronics) Prerequisites Course title SEMESTER - I Soft Skills Calculus And Solid Geometry Physics Corequisites 5PD0 5MA0 5PY0 5PY0L Physics Lab 5PY0 5CS0L Programming Lab 5CY0 Chemistry 5CY0L Chemistry Lab 5CY0 5BT0 Biology For Engineers 5EE0 Basic Electrical Engineering 5CE0 Basic Civil Engineering SEMESTER - II 5LE0 English 5LE02 Value Education 5PD02 Soft Skills II 5NC/NS/ SP/YG0 NSS/NCC/Yoga/Sports 5MA02 5PY02 5CY02 5EC0 5ME0 5ME04L 5ME05L 5ME02 5AE02L 5LE20E/ 5LE202E/ 5LE203E/ 5LE204E/ Advanced Calculus And Complex Analysis Material Science Principles Of Environmental Science Basic Electronics Engineering Basic Mechanical Engineering Workshop Practice Engineering Graphics Engineering Mechanics Automotive Basic Science Laboratory SEMESTER - III German Language - I/ French Language - I/ Japanese Language - I/ Korean Language -I/ 5MA0 B.Tech Automobile Engg.

22 5LE205E Chinese Language - I 5PD20 Quantitative Aptitude & Logical Reasoning I 5MA202 Fourier Series, Partial 5MA02/ Differential Equations and its 5MA205B Applications 5ME20 Thermodynamics 5MA02 5ME204 Machines and Mechanisms 5ME02 5ME205 Fluid Mechanics 5MA02 5AE20J Manufacturing Technology for Automotive Engineers 5AE208 Analog, Digital Circuits for Automotive Applications 5AE203L Automotive Components and Assembly Drawing 5ME05L SEMESTER IV 5LE207E/ 5LE208E/ 5LE209E/ 5LE20E/ 5LE2E German Language -II/ French Language -II/ Japanese Language -II/ Korean Language -II/ Chinese Language- II 5PD202 Verbal Aptitude 5PD20 5MA206 Numerical Methods 5MA02/ 5MA205B 5AE204 Applied Thermal Engineering for Automotive Engineers 5ME20 5ME203 Mechanics of Solids 5MA02 5ME303 Materials Technology 5AE209 Automotive Control Engineering 5AE208 5ME203L Strength of Materials Laboratory 5ME203 5ME303L Materials Technology 5ME303 5AE375L/ 5AE380L/ 5AE385L/ 5AE490L Laboratory Minor Project- I/ Seminar- I/ Massive Open Online Courses (MOOCs)-I/ Industrial Module- I Departmental Elective I xv B.Tech Automobile Engg.

23 5PD30 5MA30 SEMESTER V Communication & Reasoning Skills Probability and Statistics 5PD202 5MA02/ 5MA205B 5AE30 Automotive Transducers and Signal Conditioners 5AE208 5AE3 I.C Engines and its Subsystems 5ME20 5AE32 Vehicular Structures and Driveline Systems 5AE34L Engine and Vehicle Testing Laboratory 5AE305L Automotive Components Laboratory 5AE30L Automotive Transducers and Signal Conditioners 5AE390L Industrial Training -I (To be done after IV Semester) Departmental Elective II Open Elective I SEMESTER VI 5PD302 Quantitative Aptitude & Logical Reasoning II 5ME304 Fluid Power Control 5AE30 Design of Automotive Components 5ME203 5AE307J Automotive Electrical & Electronics System 5AE208 5AE33 Automotive Microcontrollers 5AE208 5AE33L Automotive Microcontrollers Laboratory Minor Project- II/ 5AE376L/ Seminar -II/ 5AE38L/ Massive Open Online Courses 5AE386L/ (MOOCs) -II/ 5AE49L Industrial Module-II Departmental Elective III Open Elective - II 5AE30 5AE305L 5AE30 5AE33 xvi B.Tech Automobile Engg.

24 SEMESTER - VII 5AE40 Vehicle Dynamics 5AE402 Vehicle Body Engineering And 5AE302/ Aerodynamics 5AE32 5AE404M Multi-Disciplinary Design 5AE406 Modelling and Control of Electric and Hybrid Vehicles 5AE209 5AE40L Vehicle Dynamics Laboratory 5AE40 5AE406L Electric Vehicular Systems Laboratory 5AE406 5AE39L Industrial Training II (To be done after VI Semester) Departmental Elective IV Departmental Elective V SEMESTER - VIII 5AE496L Major Project/Practice School xvii B.Tech Automobile Engg.

25 Course Code DEPARTMENT OF AUTOMOBILE ENGINEERING DEPARTMENTAL ELECTIVES Course Title Pre- requisites Co-requisites DESIGN 5AE253E Principles of linear systems and signals NIL 5AE208 5AE254E Power electronics for EV application NIL 5AE208 5AE35E Automotive Fault Diagnostics 5AE307J NIL 5AE352E Automotive Communication 5AE208/ Protocols 5AE202 NIL 5AE353E Artificial Neural Networks and 5AE209 / NIL Fuzzy Logic 5AE25E 5AE355E State Space analysis and Digital Control system NIL 5AE209 5AE356E Automotive Development process 5AE209 NIL 5AE45E Intelligent Vehicle Technology 5AE452E Model Based System Design 5AE33/ 5AE25E 5AE209 / 5AE25E 5AE453E Vehicle Stability and Control Systems 5AE209 5AE40 5AE454E Nonlinear systems 5AE209 5AE406 5AE455E Engineering Optimization 5AE209 5AE406 NIL NIL xviii B.Tech Automobile Engg.

26 SEMESTER I 5PD0 Soft Skills - Co-requisite: NIL Prerequisite: NIL Course Category G General Course designed by Career Development Centre Approval 32 nd Academic Council Meeting, 23 rd July 206 L T P C 0 PURPOSE To enhance holistic development of students and improve their employability skills. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student will be able to. Acquire inter personal skills and be an effective goal oriented team player d 2. Develop professionalism with idealistic, practical and moral values. f 3. Acquire communication and problem solving skills. g 4. Re-engineer their attitude and understand its influence on behavior. i Session Description of Topic Contact C-Dhours I-O IOs Reference Unit - I Self Analysis 4 Introduction, Who am I? C, I 2, 4, 2, 6, 7 2 SWOT analysis, Detailed self introspection C, I 2, 4, 2, 7 3 Johari window, Knowing the unknown can bring self confidence and self esteem 2 C, I 2, 4, 2, 7 Unit - II Creativity 8 4 Out of the box thinking, Possibility of C, I, 2 2, 3 innovation O 5 Creative thinking and Lateral thinking, C, I, 3 2, 3 Torrance test of creative thinking O 6 Creativity challenge 3 O 2, 3, 7 7 Unit - III Attitude 6 Factors influencing attitude, Influence of attitude on behavior, Thumb impression activity 2 C,2, 4, 2, 3, 4 B.Tech Automobile Engg.

27 Session 8 Description of Topic Challenges and lessons from attitude, Synergy between knowledge, skill and attitude Contact hours 9. Personal, social and professional etiquette. 2 0 C-D- I-O 2 C, D,2, 4 C, D, I IOs Reference, 2, 4, 2, 3, 4 2, 4, 7 Unit - IV Motivation 4 Motivational factors, I am good at, Self image C 2, 4, 2 Self talk, Tapping and tuning inner voice, Self motivation C, I 2, 4, 2 2 Intrinsic and extrinsic motivators 2 C, D, I 2, 4, 2 Unit - V Goal setting 8 3 Wish list, SMART goals, Short, long, life C, 2, 2 time goals, Goal tree D, I, 2 4 Goal poster, Blueprint for success, 5WH 2 C,, 2 D, I, 2 5 Time management, Value of time, Test C, 2, 2 your Time management skill D, I, 2 6 Weekly planner, TODO list, Prioritizing C, 2, 2 work, Time management matrix D, I, 2, 7 Total contact hours 30 LEARNING RESOURCES Sl. No. TEXT BOOKS. SOFT SKILLS, 205, Career Development Centre, Green Pearl Publications. REFERENCE BOOKS/OTHER READING MATERIAL 2. Covey Sean, Seven Habits of Highly Effective Teens, New York, Fireside Publishers, Carnegie Dale, How to win Friends and Influence People, New York: Simon & Schuster, Thomas A Harris, I am ok, You are ok, New York-Harper and Row, Daniel Coleman, Emotional Intelligence, Bantam Book, Carnegie Dale, How to stop worrying and start living, New York: Simon & Schuster, (online LMS) 2 B.Tech Automobile Engg.

28 5MA0 Calculus And Solid Geometry L T P C Co-requisite: NA Prerequisite: NA Data Book / Codes/Standards Course Category B CORE MATHEMATICS Course designed by Department of Mathematics Approval 32 nd Academic Council Meeting, 23 rd July 206 PURPOSE To acquire analytical ability on solving Calculus and Solid Geometry problems as applied to the respective all branches of Engineering. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student will be able to. Apply advanced matrix knowledge to Engineering problems. a e 2. Equip themselves familiar with functions of several variables. a e 3. Familiarize with the applications of ordinary differential equations a e 4. Improve their ability in solving geometrical applications of a e differential calculus problems. 5. Expose to the concept of three dimensional analytical geometry. a e Course nature Fully internal Assessment Method (Weightage 00%) Assessment Insemester Activities Extempore LMS Participation Total tool Weightage 30% 25% 35% 0% 00% Session Description of Topic Contact C-Dhours I-O IOs Reference Unit - I Matrices 2. Characteristic equation C,I Eigen values and Eigen vectors of a real matrix 2 C,I Properties of Eigen values 2 C,I,3,4,6 4. Cayley Hamilton theorem orthogonal reduction of a symmetric matrix to 2 C,I,3,4,6 diagonal form 5. Orthogonal matrices C,I,3,4 3 B.Tech Automobile Engg.

29 Session Description of Topic Contact hours C-D- I-O IOs Reference 6. Reduction of quadratic form to canonical form 2 C,I,3,4,6 7. Quadratic form to canonical form by orthogonal transformations. 2 C,I,3 Unit - II Functions of Several Variables 2 8. Function of two variables Partial derivatives 2 C,I 2,3,4,6 9. Total differential 2 C,I 2,3,4,6 0. Taylor s expansion 2 C,I 2,3. Maxima and Minima 2 C,I 2,3,4,6 2. Constrained Maxima and Minima by Lagrangian Multiplier method 2 C,I 2,3, 3. Jacobians 2 C,I 2-7 Unit - III Ordinary Differential Equations 2 4. Linear equations of second order with constant and variable coefficients 2 C,I 3 2,5,7 5. Homogeneous equation of Euler type 2 C,I 3 2,5,7, 6. Homogeneous equation of Legendre s Type 2 7. Equations reducible to homogeneous form 2 C,I 3 2,5,7 8. Variation of parameters 2 C,I 3,2 9. Simultaneous first order with constant co-efficient. 2 C,I 3,2 Unit - IV Geometrical Applications of Differential Calculus Curvature Cartesian coordinates 2 C,I Curvature polar coordinates 2 C,I Circle of curvature 2 C,I Centre of curvature 2 C,I Evolutes 2 C,I 4 4,5 25. Envelopes 2 C,I 4 7 Unit - V Three Dimensional 26. Analytical Geometry Equation of a sphere Plane section of a sphere 2 2 C,I 5 3,4 4 B.Tech Automobile Engg.

30 LEARNING RESOURCES Sl. No. TEXT BOOKS. Kreyszig.E, Advanced Engineering Mathematics, John Wiley & Sons. Singapore,0 th edition, K.Ganesan, Sundarammal Kesavan, K.S.Ganapathy Subramanian &V.Srinivasan, Engineering Mathematics,Gamma publications, Revised Edition, 203. REFERENCE BOOKS/OTHER READING MATERIAL 3. Grewal B.S, Higher Engineering Mathematics, Khanna Publications, 42 nd Edition, Veerajan. T, Engineering Mathematics I, Tata McGraw Hill Publishing Co, New Delhi, 5th edition, Kandasamy P etal. Engineering Mathematics, Vol.I (4th revised edition), S.Chand &Co., New Delhi, Narayanan S., Manicavachagom Pillay T.K., Ramanaiah G., Advanced Mathematics for Engineering students, Volume I (2nd edition), S.Viswanathan Printers and Publishers, Venkataraman M.K., Engineering Mathematics First Year (2nd edition), National Publishing Co., Chennai, Session Description of Topic Contact C-Dhours I-O IOs Reference 27. Tangent Plane Orthogonal spheres 2 C,I 5 3,4 28. Equation of a cone 2 C,I Right circular cone 2 C,I 5 3,4 30. Equation of a cylinder 2 C,I 5 2,3 3. Right circular cylinder. 2 C,I 5 3,4 Total contact hours 60 Course nature Theory Assessment Method (Weightage 00%) Assessment Cycle Cycle Cycle Surprise Insemester Quiz Total tool test I test II Test III Test Weightage 0% 5% 5% 5% 5% 50% End semester examination Weightage : 50% 5 B.Tech Automobile Engg.

31 5ME05L Engineering Graphics Co-requisite: NIL Prerequisite: NIL Data Book / Codes/Standards Course Category E ENGINEERING SCIENCES Course designed by Department of Mechanical Engineering Approval 32 nd Academic Council Meeting, 23 rd July 206 L T P C First Angle Projection is to be followed - Practice with Computer Aided Drafting toolsis STANDARD PURPOSE. To draw and interpret various projections of D, 2D and 3D objects. 2. To prepare and interpret the drawings of buildings. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student will be able. To familiarize with the construction of geometrical figures g 2. To familiarize with the projection of D, 2D and 3D g objects k 3. To familiarize with the sectioning of solids and development of surfaces g k 4. To familiarize with the Preparation and interpretation of building drawing g k Sl. Contact C-D-I- Description of experiments No. hours O IOs Reference. Introduction to Engineering Graphics and Drafting tool Introduction to Engineering drawing 2 C,D,2,2,3 - Drawing instruments (including Mini drafter) - Lettering - Line type - Drawing standards and codes - Drawing sheet layout (Margins and Title block) Introduction to Drafting package - Graphical User Interface (GUI) - Setting work area and Title block - Draw: Line, Arc, Circle - Modify: Erase, Offset, Move, Copy 6 B.Tech Automobile Engg.

32 Sl. No. Description of experiments Manual Drafting - Drawing sheet layout - Alphabets of height 5 and 7 mm - Numerals 0 to 9 of height 5 and 7 mm - Drawing basic entities Computer Aided Drafting - Draw the given figures using drafting package 2. Review of Geometric construction & Introduction to modifying commands Geometric constructions: - Dividing a line into n parts - Bisecting an arc - Drawing an arc tangent to two straight lines - Construction of polygon Introduction to Modify commands - Demonstration of Modify commands in drafting package Manual Drafting - Geometric constructions Computer Aided Drafting - Draw the given figures using drafting package 3. Layers, Dimensioning, Hatching and Text Demonstration of commands - Layers - Dimensions - Hatching - Text Computer Aided Drafting - Draw the given figures using drafting package 4. Conic sections and Special curves Construction of Conic sections: - Parabola : Tangent and Rectangle method Contact C-D-Ihours O C,D 2 IOs Reference 2 C,2,3 D 2 2 C 2,2,3 3 D 2 C,2,2,3 7 B.Tech Automobile Engg.

33 Sl. Description of experiments No. - Ellipse: Oblong method and concentric circle method - Hyperbola Eccentricity method - Construction of special curves: - Cycloid - Spiral Manual Drafting - Construction of conic sections and cycloid Computer Aided Drafting - Draw the given figures using drafting package 5. Introduction to orthographic projections: - I, II, III and IV angle projections - Projection of Points in different quadrants - Projection of Lines: Inclined to one plane - Projection of planes - Conceptual free hand sketching Manual Drafting - Conceptual sketching - Projection of points, lines and planes 6. Solids I Introduction to solids : - Polyhedron - Prisms Introduction to 3D Tools: - Modeling Manual Drafting - Projection of solid Computer Aided Drafting - Modeling of polyhedron and prisms - Generating orthographic views of solids 7. Solids II Introduction to solids: - Pyramids Contact hours C-D-I- O 2 D D IOs Reference 2 C 2,3,2,3 3 D 2 C 2,2,3 D 2 D 2 C 2,2,3 8 B.Tech Automobile Engg.

34 Sl. Description of experiments No. - Solids of revolution Introduction to 3D Tools: - Modeling Manual Drafting - Projection of solids Computer Aided Drafting - Modeling of pyramids & solids of revolution and generating the orthographic views 8. Solids III Orthographic views - Orthographic views of the given pictorial view / model - Demonstration of modeling of components using Extrude and Revolve - Boolean operations Manual Drafting - Drawing orthographic views of machine components in grid sheet Computer Aided Drafting - Modeling of simple machine components and generating its orthographic views 9. Solids IV - Demonstration of modeling of components using Loft, Sweep, Helical sweep and Shell. Computer Aided Drafting - Modeling of components using Boolean operations and generating its orthographic views 0. Section of Solids Introduction to Section of regular solids - Section plane - Sectional view Manual Drafting - Section of solids Contact hours C-D-I- O 2 D D IOs Reference 2 C 2,2,3 D 2 D 2 C 2,2,3 3 D 2 C 2,3,2,3 2 D 9 B.Tech Automobile Engg.

35 Sl. No. Description of experiments Computer Aided Drafting - Modeling the regular solids and section it to obtain the sectional views. Development of surfaces - Introduction - Methods - Application Manual Drafting - Development of surfaces 2. Building Drawing - Components of a building - Conventional representation of building materials - Scale Computer Aided Drafting - Drawing the plan, elevation and sectional views of a building Contact C-D-Ihours O D IOs Reference 2 C 2,3,2,3 3 D 2 C 4,2,3 3 D Total contact hours 60 LEARNING RESOURCES Sl. REFERENCES No.. Venugopal, K. and Prabhu Raja, V., Engineering Graphics, Eighth Edition (Revised), New Age International Publishers, Chennai, Natarajan, K.V., A Text Book of Engineering Graphics, 2st Edition, Dhanalakshmi Publishers, Chennai, Jeyapoovan, T., Engineering Drawing and Graphics using AutoCAD, Vikas Publishing House Pvt. Ltd., New Delhi, Bethune, J.D., Engineering Graphics with AutoCAD 203, PHI Learning Private Limited, Delhi, Bhatt, N.D., Elementary Engineering Drawing (First Angle Projection), Charotar Publishing Co., Anand, Narayanan, K. L. and Kannaiah, P., Engineering Graphics, Scitech Publications, Chennai, Shah, M. B. and Rana, B. C., Engineering Drawing, Pearson Education (Singapore) Pvt. Ltd., New Delhi, B.Tech Automobile Engg.

36 Course nature Practical Assessment Method (Weightage 00%) Assessment MCQ/Quiz/Viva Model Insemester Experiments Record tool Voce examination Total Weightage 50% - - 0% 60% End semester examination Weightage : 40% B.Tech Automobile Engg.

37 SEMESTER - II 5PD02 Soft Skills - 2 Co-requisite: NIL Prerequisite: NIL Course Category G General Course designed by Career Development Centre Approval 32 nd Academic Council Meeting, 23 rd July 206 L T P C 0 PURPOSE To enhance holistic development of students and improve their employability skills. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student will be able to. Acquire inter personal skills and be an effective goal d oriented team player 2. Develop professionalism with idealistic, practical and moral values. f 3. Acquire communication and problem solving skills. g 4. Re-engineer their attitude and understand its influence on behavior. i Session Description of Topic Unit I Interpersonal skills Gratitude, Being thankful, Secret of happiness, Satin ribbon activity Stages of dependence, Understanding the integration of leadership, networking and teamwork Assessing interpersonal skills, situation analysis Importance of teamwork, Teamwork activity Unit II - Leadership Skills needed for a good leader, Types of leadership style Assessment of leadership skills, Wheel of leadership Contact hours C-D- I-O IOs Reference 2 C, I 2, 2, 3, 4 2 C, 3, 4, 2, 3, 4 2 C, I, 3, 4, 2, 3, 4 4 C, O, 3, 4 3, 4 2 C -4, 3, 7 2 C, I -4, 3, 7 2 B.Tech Automobile Engg.

38 Session Description of Topic Contact hours C-D- I-O IOs Reference Unit III Stress management 7 Causes of stress and its impact, Let it down, How to manage and 2 C 4, 6 de-stress, 8 Circle of control, Daily life can be a stress buster, Stress activity 2 C 4, 6 9. Emotional intelligence, Emotional quotient and intelligence quotient 2 C, I, 2, 4, 4, 5 0 Emotion scale, Managing emotions 2 C, I, 2, 4, 4, 5 Unit IV Conflict resolution Conflicts in human relations, Self assessment test for conflict management C -4, 3, 4 2 Approaches to conflict resolution C -4, 3, 4 3 Case study 2 C, I -4, 7 Unit V Decision making 4 Importance of decision making, Impact of decision in life C, 2, 3, 2, 6 5 Weighing positives and negatives C, I, 2, 3, 2, 6 6 Process and practical way of C, D, 2 decision making I, 2, 3, 2 Total contact hours 30 LEARNING RESOURCES Sl. No. TEXT BOOKS. SOFT SKILLS, 205, Career Development Centre, Green Pearl Publications. REFERENCE BOOKS/OTHER READING MATERIAL 2. Covey Sean, Seven Habits of Highly Effective Teens, New York, Fireside Publishers, Carnegie Dale, How to win Friends and Influence People, New York: Simon & Schuster, Thomas A Harris, I am ok, You are ok, New York-Harper and Row, Daniel Coleman, Emotional Intelligence, Bantam Book, Carnegie Dale, How to stop worrying and start living, New York: Simon & Schuster, (Online LMS) 3 B.Tech Automobile Engg.

39 5MA02 Advanced Calculus And Complex Analysis L T P C Co-requisite: NA Prerequisite: 5MA0 Data Book / Codes/Standards NA Course Category B CORE MATHEMATICS Course designed by Department of Mathematics Approval 32 nd Academic Council Meeting, 23 rd July 206 To acquire analytical ability on solving Advanced Calculus and Complex PURPOSE Analysis problems as applied to the respective branches of Engineering. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student will be able to. Apply multiple integrals knowledge to Engineering problems. a e 2. Improve their ability in solving vector calculus problems. a e 3. Equip themselves familiar with Laplace Transforms. a e 4. Familiarize with the applications of analytic functions. a e 5. Expose to the concept of complex integration. a e Course nature Fully internal Assessment Method (Weightage 00%) Assessment Tech Insemester Activities LMS Participation Total tool talk Weightage 40% 25% 25% 0% 00% Session Description of Topic Contact C-Dhours I-O IOs Reference Unit - I Multiple Integrals 2. Evaluation of double integration in Cartesian and plane polar coordinates 2 C,I Evaluation of double integral by changing of order of integration 2 C, I,3,4,6 3. Area as a double integral (Cartesian and polar) 2 C, I,3,4,6 4. Triple integration in Cartesian coordinates 2 C, I,3,4,6 5. Conversion from Cartesian to polar in double integrals 2 C, I,3,4,6 4 B.Tech Automobile Engg.

40 Session Description of Topic Contact C-Dhours I-O IOs Reference 6. Volume as a Triple Integral. 2 C, I,3,4,6 Unit - II Vector Calculus 2 7. Review of vectors in 2,3 dimensions,gradient, divergence, curl 2 C,I 2,3,4,6 Solenoidal and irrotational fields 8. Vector identities (without proof) Directional derivatives 2 C, I 2,3 9. Line, surface and volume integrals 2 C, I 2,3 0. Green s theorem (without proof), 2 C, I 2,3. Gauss divergence theorem (without proof), verification and applications 2 C, I 2,3 to cubes and parallelopipeds only 2. Stoke s theorems (without proof) Verification and applications to cubes 2 C, I 2,3 and parallelopipeds only. Unit - III Laplace Transforms 2 3. Transforms of standard functions properties Transforms of derivatives 2 C,I 3 2,5,7 and integrals 4. Initial and final value theorems (without proof) 2 C, I 3 2,5,7, 5. Inverse Laplace transforms 2 C, I 3 2,5,7 6. ILT using Convolution theorem - problems only 2 C, I 3,2 7. LT of periodic functions -problems only 2 C, I 3,2 8. Applications of Laplace transforms for solving linear ordinary differential equations up to second order with 2 C, I 3,2 constant coefficient only Unit - IV Analytic Functions Definition of Analytic Function Cauchy Riemann equations 2 C,I Properties of analytic function functions 2 C,I 4,2 2. Determination of analytic function using Milne-Thomson s method 2 C, I 4 5 B.Tech Automobile Engg.

41 Session Description of Topic Contact hours C-D- I-O IOs Reference 22. Conformal mappings: magnification and rotation 2 C,I 4,2 23. Conformal mappings: inversion and reflection 2 C, I 4 4,5 24. bilinear transformation 2 C, I 4,2 Unit - V Complex Integration Cauchy s integral theorem (without proof) and its applications 2 C,I 5 3,4 26. Cauchy s integral formulae 2 C,I 5 3,4 27. Taylor s and Laurent s expansions with simple problems 2 C, I Singularities Types of Poles and Residues 2 C,I 5 3,4 29. Cauchy s residue theorem (without proof)- 2 C, I 5 2,3 30. Contour integration: Unit circle, semicircular contour. 2 C, I 5 3,4 Total contact hours 60 LEARNING RESOURCES Sl. No. TEXT BOOKS. Kreyszig.E, Advanced Engineering Mathematics, John Wiley & Sons. Singapore, 0 th edition, K.Ganesan, Sundarammal Kesavan, K.S.Ganapathy Subramanian &V.Srinivasan, Engineering Mathematics,Gamma publications, Revised Edition, 203. REFERENCE BOOKS/OTHER READING MATERIAL 3. Grewal B.S, Higher Engineering Mathematics, Khanna Publications, 42 nd Edition, Veerajan. T, Engineering Mathematics I, Tata McGraw Hill Publishing Co, New Delhi, 5th edition, Kandasamy P etal. Engineering Mathematics, Vol.I (4th revised edition), S.Chand &Co., New Delhi, Narayanan S., Manicavachagom Pillay T.K., Ramanaiah G., Advanced Mathematics for Engineering students, Volume I (2nd edition), S.Viswanathan Printers and Publishers, Venkataraman M.K., Engineering Mathematics First Year (2nd edition), National Publishing Co., Chennai, B.Tech Automobile Engg.

42 5ME0 Basic Mechanical Engineering Co-requisite: NIL Prerequisite: Nil Data Book / Codes/Standards Nil Course Category E ENGINEERING SCINCES Course designed by Department of Mechanical Engineering Approval 32 nd Academic Council Meeting, 23 rd July 206 L T P C PURPOSE To familiarize the students with the basics of Mechanical Engineering. INSTRUCTIONAL OBJECTIVES STUDENT OUTCOMES At the end of the course, student should be able to understand. Basic machine elements a e 2. Sources of Energy and Power Generation a e 3. Various manufacturing processes a e Course nature Theory Assessment Method (Weightage 00%) Assessment Cycle Cycle Cycle Test Surprise Insemester Quiz Total tool test I test II III Test Weightage 0% 5% 5% 5% 5% 50% End semester examination Weightage : 50% Session Description of Topic Contact C-Dhours I-O IOs Reference Unit - I Machine Elements 6. Springs : Helical and leaf springs, Classification, Terms, Materials C,3 2. Springs in series and parallel, Importance of the combination of springs, Applications of springs, C, D,3 numerical in springs 3. Cams: Types of cams and followers, Classification, Based on Input/Output Motion, Follower configuration, Follower arrangement and Cam shape C,3 7 B.Tech Automobile Engg.

43 Session Description of Topic Contact hours C-D- I-O IOs Reference Cam profile, Cam nomenclature, Application, Motion of the follower C,3 Power Transmission, Gears terminology, Spur, Helical,Bevel C,3 gears and gear trains applications Belt drives, Types of belt drives, Belt materials and Applications, numerical in open and cross belt drives, Chain C, D,3 drives, Comparison of gear, belt drives and chain drives Unit - II Energy Sources 6 Renewable and Nonrenewable Sources, Characteristics, types, C 2,3 Advantages and disadvantages Solar thermal systems and tower power generation, Solar photovoltaic system Wind energy, Horizontal axis wind turbines, Vertical axis wind turbines, advantages and disadvantages Geothermal energy, Indian geothermal sources, advantages and disadvantages C 2,3 C 2,3 C 2,3 Ocean energy, ocean thermal energy conversion C 2,3 Tidal energy, Single pool tidal energy conversion system C 2,3 Unit - III Power Generation 6 Power Generation : external and internal combustion engines C 2,3 Classification of engines, Engine operations : 2 stroke & 4stroke, C 2,3 Comparison of SI & CI engines, overview of fuels, Applications, Numerical internal combustion engines C,D 2,3 8 B.Tech Automobile Engg.

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