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C PLUS PLUS AND DATA STRUCTURES 1571 SEM-III

COMMUNICATION ENGINEERING AND ELECTRONIC MEASUREMENT

COMP SCALLIED COURSES NUMERICAL METHODS

COMPUTER SCIENCE DATA STRUCTURES

COMPUTER SYSTEM ARCHITECTURE

DATA COMMUNICATION AND COMPUTER NETWORKS 1567

DC-14 PSYCHOLOGICAL SCIENCE LIFE SPAN DEVELOPMENT SEM-II 3004

DIFFERENTIAL EQUATIONS AND MATHEMATICAL MODELLING-1699

DISCRETE STRUCTURES 1568 SEM-III

ECE-101 MATHEMATICS I

ECE-101 MATHEMATICS-I 223

ECE-101 MATHEMATICS-I

ECE-102 PHYSICS

ECE-103 CHEMISTRY

ECE-103-CHEMISTRY

ECE-104 ENGINEERING ECONOMICS AND ACCOUNTANCY

ECE-105 GEOLOGY (2)

ECE-105 GEOLOGY

ECE-106 ENGINEERING MECHANICS (2)

ECE-106 ENGINEERING MECHANICS (3)

ECE-106 ENGINEERING MECHANICS

ECE-201 NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING (2)

ECE-201 NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING

ECE-202 ELECTRICAL ENGINEERING AND ELECTRONICS

ECE-203 SURVEYING

ECE-204 HYDRAULIC ENGINEERING

ECE-205 THEORY OF STRUCTURES

ECE-301 DESIGN OF STRUCTURES (2)

ECE-301 DESIGN OF STRUCTURES

ECE-302 TRANSPORTATION ENGINEERING

ECE-303 SOLID MECHANICS AND FOUNDATION ENGINEERING

ECE-304 ENVIRONMENTAL ENGINEERING

ECE-305 HYDROLOGY AND IRRIGATION ENGINEERING

ECE-306 ANALYSIS OF STRUCTURES

ECE-306-ANALYSIS OF STRUCTURES

ECE-401 CONSTRUCTION TECHNOLOGY MANAGEMENT AND SPECIFICATION (2)

ECE-401 CONSTRUCTION TECHNOLOGY MANAGEMENT AND SPECIFICATION

ECE-403 ADVANCED STRUCTURAL ANALYSIS

ECE-404 ADVANCED STRUCTURAL DESIGN

ECE-407 ADVANCED WATER AND WASTE ENGINEERING

ECE-408 ENVIRONMENTAL POLLUTION CONTROL (2)

ECE-408 ENVIRONMENTAL POLLUTION CONTROL

EEC-101 MATHEMATICS-I

EEC-101 MATHEMATICS

EEC-102 PHYSICS-I

EEC-103 ELECTRICAL ENGINEERING MATERIALS

EEC-103 ELECTRICAL ENGINEERING MATERIALS

EEC-104 NETWORKS

EEC-105 POWER APPARATUS

EEC-106 NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING

EEC-106 NUMERICAL TECHNIQUES AND COMPUTER

EEC-106 NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING

EEC-201 MATHEMATICS-II (2)

EEC-201 MATHEMATICS-II (3)

EEC-201 MATHEMATICS-II

EEC-202 ENGINEERING ECONOMICS AND ACCOUNTANCY

EEC-203 ELECTRONICS

EEC-205 DIGITAL CIRCUITS

EEC-206 PROGRAMMING-II (2)

EEC-301 COMMUNICATION ENGINEERING AND ELECTRONIC MEASUREMENT

EEC-302 LINEAR INTEGRATED CIRCUITS

EEC-303 ANTENNAS AND TRANSMISSION LINES

EEC-305 NETWORK ANALYSIS AND FILTER DESIGN

EEC-306 DIGITAL SYSTEMS AND MICROPROCESSORS (2)

EEC-306 DIGITAL SYSTEMS AND MICROPROCESSORS

EEC-401 COMMUTATION SYSTEMS

EEC-402 MICROWAVE ENGINEERING

EEC-403 MICROPROCESSOR APPLICATIONS

EEC-404 F FAULT TOLERANT COMPUTING

EEC-404 SWITCHING AND AUTOMATA THEORY

EEC-405 DIGITAL SIGNAL PROCESSING

EEE-102 PHYSICS 334

EEE-104 NETWORKS (2)

EEE-104 NETWORKS

EEE-105 ADVANCED ELECTRONICS

EEE-203-DIGITAL ELECTRONICS

EEE-204 ELECTROMAGNETIC (2)

EEE-204 ELECTROMAGNETIC

EEE-205 DIGITAL ELECTRONICS

EEE-205 ELECTRICAL MEASUREMENT AND INSTRUMENTATION

EEE-205-ELECTRICAL MEASUREMENT AND INSTRUMENTATION

EEE-206 POWER PLANT ENGINEERING

EEE-301 CONTROL SYSTEMS ENGINEERING

EEE-301 POWER APPARATUS

EEE-301 POWER APPARATUS

EEE-302 POWER ELECTRONICS

EEE-302 POWER ELECTRONICS

EEE-303 POWER SYSTEM 333

EEE-303 POWER SYSTEM

EEE-304 CONTROL SYSTEM ENGINEERING

EEE-304 CONTROL SYSTEMS ENGINEERING (2)

EEE-304 CONTROL SYSTEMS ENGINEERING

EEE-305 HIGH VOLTAGE ENGINEERING (2)

EEE-305 HIGH VOLTAGE ENGINEERING

EEE-306 COMPUTER METHODS IN POWER SYSTEMS (2)

EEE-306 COMPUTER METHODS IN POWER SYSTEMS

EEE-306 COMPUTER METHODS POWER SYSTEMS

EEE-401 DESIGN OF POWER APPARATUS (2)

EEE-401 DESIGN OF POWER APPARATUS

EEE-401 DESIGN OF POWER APPARATUS

EEE-402 SWITCHGEAR AND PROTECTION

EEE-403 POWER SYSTEM-II (2)

EEE-403 POWER SYSTEM-II

EEE-404 MICROPROCESSOR APPLICATIONS

EEE-404-MICROPROCESSOR APPLICATIONS

EEE-405 POWER SYSTEM STABILITY

EEEE-105 ADVANCED ELECTRONICS

EEEE-402 SWITCHGEAR AND PROTECTION

ELECTRONICS ANALOG ELECTRONICS 443

ELECTRONICS APPLIED PHYSICS

ELECTRONICS DIGITAL SYSTEM DESIGN B25

ELECTRONICS NETWORK ANALYSIS

EME-101 MATHEMATICS-I

EME-101 MATHEMATICS-I

EME-101 MATHEMATICS

EME-102 PHYSICS I (2)

EME-102 PHYSICS I

EME-103 CHEMISTRY

EME-103-CHEMISTRY

EME-104 ENGINEERING ECONOMICS AND ACCOUNTANCY

EME-105 METALLURGY (2)

EME-105 METALLURGY

EME-106 ELECTRICAL TECHNOLOGY

EME-106 ELECTRICAL TECHNOLOGY (2)

EME-106 ELECTRICAL TECHNOLOGY

EME-201 MATHEMATICS-II

EME-201 MATHEMATICS-II (2)

EME-201 MATHEMATICS-II

EME-201 PRODUCTION TECHNOLOGY

EME-202 ELECTRONICS

EME-202 II-ELECTRONICS

EME-203 FLUID MECHANICS

EME-203 FLUID MECHANICS

EME-204 THERMAL ENGINEERING

EME-204-THERMAL ENGINEERING

EME-205 PRODUCTION MANAGEMENT

EME-205 PRODUCTION MANAGEMENT

EME-206 STRENGTH OF MATERIALS

EME-206-STRNGTH OF MATERIALS

EME-301 PRODUCTION TECHNOLOGY-I

EME-301 PRODUCTION TECHNOLOGY

EME-302 NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING

EME-302-NUMERICAL TECHNIQUES AND COMPUTER PROGRAMMING

EME-303 HYDRAULIC MACHINES (2)

EME-303 HYDRAULIC MACHINES

EME-304 THERMAL ENGINEERING-II

EME-304 THERMAL ENGINEERING

EME-305 DYNAMICS OF MACHINES (2)

EME-305 DYNAMICS OF MACHINES

EME-306 INDUSTRIAL ENGINEERING

EME-306 INDUSTRIAL ENGINEERING

EME-401 MACHINE DESIGN

EME-402 HEAT TRANSFER (2)

EME-402 HEAT TRANSFER

EME-403 PRODUCTION TECHNOLOGY-II

EME-403 PRODUCTION TECHNOLOGY-II

EME-404 ELECTIVE I-CAD-CAM

EME-404 ELECTIVE-I-CAD-CAM

EME-405 ELECTIVE-II TOOL ENGINEERING (2)

EME-405 ELECTIVE-II TOOL ENGINEERING

ENE-306 INDUSTRIAL ENGINEERING

ENGINEERING MATERIALS CONSTRUCTION AND COSTING

ENGINEERING MATHEMATICS

FOOD PROCESSING TECHNOLOGY-II 7820

FOOD TECHNOLOGY FOOD AND NUTRITION

FOOD TECHNOLOGY PRINCIPLES OF FOOD SCIENCE

FOOD TECHNOLOGY BAKERY AND CONFECTIONERY TECHNOLOGY 1577 SEM-III

FOOD TECHNOLOGY OF CEREALS PULSES AND PILSEEDS 1576 SEM-III

FOOD TECHNOLOGY TECHNOLOGY OF MEAT MILK FISH AND EGG 1575 SEM-III

FUNDAMENTALS-1755-SEM-I

H MATH ANALYSIS REAL FUNCTIONS 1596 SEM-III

H MATHEMATICS ALGEBRA GROUP THEORY I 1595 SEM-III

H MATHEMATICS NUMERICAL METHODS 1597 SEM-III

HEALTH PSYCHOLOGY-8699-SEM-I

HONS SEDIMENT LOGY AND PRINCIPLES OF STRATIGRAPHY 1580 SEM-III

IN COMPUTER SCIENCE COMPUTER SYSTEM ARCHITECTURE CSDC1-102-1756-SEM

INSTRUMENTATION ANALOG DEVICES 33

INSTRUMENTATION CIRCUIT ANALYSIS 1760

INSTRUMENTATION CIRCUIT ANALYSIS 45

INSTRUMENTATION DIGITAL ELECTRONICS 1590 SEM-III

INSTRUMENTATION ENGINEERING MATHEMATICS 22

INSTRUMENTATION ENGINEERING MATHEMATICS

INSTRUMENTATION INDUSTRIAL INSTRUMENTATION 4

INSTRUMENTATION QUALITY CONTROL TECHNIQUES 1592

INTRODUCTION TO OPERATIONAL RESEARCH AND LINEAR PROGRAMMING

INTRODUCTION TO POLYMER SCIENCE POLYMER SCIENCE-1785-SEM

LINEAR ALGEBRA FOR COM SC-II

MATHEMATICS 23

OPERATING SYSTEM 1566 SEM-III

ECE-402 ENVIRONMENTAL ENGINEERING-II

EME 401-MACHINE DESIGN

PAPER-V POWER APPARATUS (EEC-105)

PAPER-VI PROGRAMMING-II EEC-206

PSYCHOLOGICAL SCIENCE DC 1 3 PSYCHOLOGY OF INDIVIDUAL DIFFERENCES

PHYSICS CIVIL ENGG

POLYMER SCIENCE POLYMER ADDITIVES

POLYMER SCIENCE POLYMER CHARACTERIZATION

POLYMER SCIENCE POLYMER CHEMISTRY 223

POLYMER SCIENCE POLYMER THEOLOGY

POLYMER SCIENCE RAW MATERIALS OF POLYMERS 34

POLYMER SCIENCE UNIT OPERATIONS DC-1 4-II 7972

PRINCIPAL OF FOOD SCIENCE FOOD TECHNOLOGY

PROGRAMMING FUNDAMENTALS

SEMICONDUCTOR DEVICES-II

TECHNOLOGY OF FRUITS VEGETABLES AND PLANTATION CROPS-II 7821

 

DELHI TECHNOLOGICAL UNIVERSITY SCHEME OF EXAMINATION AND COURSE OF READING FOR B.TECH (FIRST YEAR) Syllabus applicable to the students seeking admission to B.TECH. (Common for all for branches) CourseCOURSE SCHEME OF EXAMINATION FOR B.TECH FIRST SEMESTER A Group: Electrical & Electronics Engg. (EEE), Engg. Physics (EP), Automobile Engg. (AE), Software Engg. (SWE), Electrical Engg. (EE), Mechanical Engg.(ME), Production & Industrial Engg.(PIE) B Group: Civil Engg. (CE), Environmental Engg. (ENE), Electronics & Communication Engg. (ECE), Polymer Science & Chemical Technology (PCT), Biotechnology (BT), Information Technology (IT), Computer Engg. (COE) GROUP A S.No Course No. Subject LTP Evaluation Total Marks Credit Sess End Type TH1 AM 101 Mathematics-I 3 1 0 30 70 100 4H TH2 HU 102 Communication Skills 2 1 0 30 70 100 3H TH3 AP 103 Applied Physics-I 3 1 0 30 70 100 4H TH4 AC 104 Applied Chemistry 3 1 0 30 70 100 4H TH5 EE 105 Electrical Sciences 3 1 0 30 70 100 4A TH6 IT 106 Fundamentals of Information Technology 2 1 0 30 70 100 3A PR1 AP 107 Applied Physics Lab 0 0 2 30 70 100 2H PR2 AC 108 Applied Chemistry Lab 0 0 2 30 70 100 2H PR3 EE 109 Electrical Sciences Lab 0 0 2 30 70 100 2A PR4 IT 110 Information Technology Lab 0 0 2 30 70 100 2A TOTAL 1000 30 GROUP B S.No. Course No. Subject LTP Evaluation Total Marks Credit Sess End Type TH1 AM 101 Mathematics-I 3 1 0 30 70 100 4H TH2 EN 112 Environmental Science 2 0 0 30 70 100 2A TH3 AP 103 Applied Physics-I 3 1 0 30 70 100 4H TH4 AP-AC 114 Engineering Materials 4 0 0 30 70 100 4H TH5 ME 115 Basic Mechanical Engineering 4 0 0 30 70 100 4A TH6 COE 116 Programming Fundamentals 2 0 0 30 70 100 2A PR1 AP 107 Applied Physics Lab 0 0 2 30 70 100 2H PR2 ME 117 Engineering Graphics 0 0 3 30 70 100 3A PR3 COE 118 Programming Lab 0 0 2 30 70 100 2H PR4 PIE 120 Mechanical Workshop 0 0 3 30 70 100 3A TOTAL 1000 30 NOTE: AP 114 (Part I): Applied Physics (2 hrs/ week) AC 114 (Part II): Applied Chemistry (2 hrs/ week)COURSE SCHEME OF EXAMINATION FOR B.TECH SECOND SEMESTER A Group: Electrical & Electronics Engg. (EEE), Engg. Physics (EP), Automobile Engg. (AE), Software Engg. (SWE), Electrical Engg. (EE), Mechanical Engg.(ME), Production & Industrial Engg.(PIE) B Group: Civil Engg. (CE), Environmental Engg. (ENE), Electronics & Communication Engg. (ECE), Polymer Science & Chemical Technology (PCT), Biotechnology (BT), Information Technology (IT), Computer Engg. (COE) GROUP A S.No. Course No. Subject LTP Evaluation Total Marks Credit Sess End Type TH1 AM 111 Mathematics-II 3 1 0 30 70 100 4H TH2 EN 112 Environmental Science 2 0 0 30 70 100 2A TH3 AP 113 Applied Physics-II 3 1 0 30 70 100 4H TH4 AP-AC 114 Engineering Materials 4 0 0 30 70 100 4H TH5 ME 115 Basic Mechanical Engineering 4 0 0 30 70 100 4A TH6 COE 116 Programming Fundamentals 2 0 0 30 70 100 2A PR1 ME 117 Engineering Graphics 0 0 3 30 70 100 3A PR2 COE 118 Programming Lab 0 0 2 30 70 100 2H PR3 AP 119 Applied Physics Lab-II 0 0 2 30 70 100 2H PR4 PIE 120 Mechanical Workshop 0 0 3 30 70 100 3A TOTAL 1000 30 GROUP B S.No. Course No. Subject LTP Evaluation Total Marks Credit Sess End Type TH1 AM 111 Mathematics-II 3 1 0 30 70 100 4H TH2 HU 102 Communication Skills 2 1 0 30 70 100 3H TH3 AP 113 Applied Physics-II 3 1 0 30 70 100 4H TH4 AC 104 Applied Chemistry 3 1 0 30 70 100 4H TH5 EE 105 Electrical Sciences 3 1 0 30 70 100 4A TH6 IT 106 Fundamentals of Information Technology 2 1 0 30 70 100 3A PR1 AC 108 Applied Chemistry Lab 0 0 2 30 70 100 2H PR2 EE 109 Electrical Sciences Lab 0 0 2 30 70 100 2A PR3 AP 119 Applied Physics Lab-II 0 0 2 30 70 100 2H PR4 IT 110 Information Technology Lab 0 0 2 30 70 100 2A TOTAL 1000 30 NOTE: AP 114 (Part I): Applied Physics (2 hrs/ week) AC 114 (Part II): Applied Chemistry (2 hrs/ week)DETAILED COURSE SCHEME FOR I SEMESTER (COMMON FOR ALL BRANCHES) AM-101 MATHEMATICS-I L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Infinite series: Tests for convergence of series (comparison, ratio, root, integral, Raabe’s, logarithmic), Alternating series, Absolute convergence, Conditional convergence. UNIT II: Calculus of single variable: Taylor’s & Maclaurin’s expansion, Radius of curvature, applications of definite integral to area, arc length, surface area and volume (in Cartesian, parametric and polar co-ordinates). UNIT III: Calculus of several variables: Partial differentiation, Euler’s theorem, total differential, Taylor’s theorem, Maxima-Minima, Lagrange’s method of multipliers, Application in estimation of error and approximation. UNIT IV: Multiple Integrals: Double integral (Cartesian and polar co-ordinates), change of order of integration, triple integrals (Cartesian, cylindrical and spherical co-ordinates), Gamma and Beta functions. Applications of multiple integration in area, volume, centre of mass, and moment of inertia. UNIT V: Vector Calculus: Continuity and differentiability of vector functions, Scalar and vector point function, Gradient, Directional Derivative, divergence, curl and their applications. Line integral, surface integral and volume integral, applications to work done by the force. Applications of Green’s, Stoke’s and Gauss divergence theorems. TEXT BOOKS: 1. Kreyszig, ―Advanced engineering mathematics‖, Wiley. 2. Taneja, ―Advanced engineering mathematics‖, I K international. REFERENCE BOOKS: 1. Alan Jeffery, ―Advanced engineering mathematics‖, Academic Press. 2. Thomas, Finney, ―Calculus and analytic geometry‖, Narosa. 3. Jain, Iyenger, ―Advanced engineering mathematics‖, Narosa.HU-102 COMMUNICATION SKILLS L T P Credits Total Hours: 30 2 1 0 3 UNIT I: Functional Grammar & Usage-articles, prepositions, voice, narration, punctuation. Vocabulary building-word formation (by adding suffixes & prefixes) synonyms, antonyms, words often confused, foreign words & phrases, idioms. UNIT II: Technical writing- definitions, descriptions and explanations of objects, instruments, processes & scientific principles. Summarizing & abstracting, paragraph writing, speech & dialogue writing, comprehension (unseen) Business correspondence-Letters, memos, notices, circulars, CVs & SOPs. UNIT III: Phonetics- speech sounds, the phoneme, the syllable, IPA transcriptions. Presentation/seminar. Language Lab practice for oral & listening comprehension. TEXT BOOKS: 1. S. J. McGrath, ―Basic managerial skills for all‖, Prentice Hall of India New Delhi 2007. 2. Huthcinson, Tom and Alan Waters, ―English for Specific Purposes. Cambridge university Press‖, Cambridge, 1987. REFERENCE BOOKS: 1. Raman Meenakshi and Sharma Sangeeta, ―Technical communication: Principles & practice‖, OUP New Delhi 2005. 2. Weiss, Edmond H. Writing Remedies, ―Practical Exercises for Technical Writing‖, UP, 2000. 3. Hamp-Lyons, Liz and Ben Heasley, Study Writing, ―A Course written in English for Academic and Professional Purposes‖, Cambridge University Press, Cambridge 1987. 4. Goatly, Andrew, ―Critical Reading and Writing‖, London: Routledge, 2000. 5. Balasubramanian, T., ―A Textbook of English Phonetics‖, MacMillan, 2007.AP-103 APPLIED PHYSICS L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Relativity: Review of concepts of frames of reference and Galilean transformation equation, Michelson – Morley experiment and its implications, Einstein’s special theory of relativity, Lorentz transformation equations, Law of addition of velocities, Mass variation with velocity, Concept of energy and momentum, Mass energy relation. UNIT II: Oscillations, waves: Damped and forced oscillations, Resonance (amplitude and power), Q – factor, Sharpness of resonance, Equations of longitudinal and transverse waves and their solutions, Impudence, Reflection and transmission of waves at a boundary, Impudence matching between two medium. UNIT III: Physical optics: Interference by division of wave front and amplitude, Multiple beam interference and Fabry-Perot interferometer, Fresnel diffraction through a straight edge, Frannhoffer diffraction, Zone plate, single slit and N-slit / grating, Resolving power of telescope, prism and grating Polarization by reflection and by transmission, Brewster’s law, Double refraction, elliptically and circularly polarized light, Nichol prism, Quarter and half wave plates. UNIT IV: Optical Instruments: Cardinal points of co-axial lens systems, spherical and chromatic aberrations and their removal, Huygens and Ramsden’s eyepiece. UNIT V: Laser optics: Coherence and coherent properties of laser beams, Brief working principal of lasers, Spontaneous and stimulated emission, Einstein’s co-efficient, Ruby laser, He-Ne laser. Optical Fiber: Classification of optical fibers, Refractive index profile, Core cladding refractive index difference, Numerical aperture of optical fiber, Pulse dispersion in optical fiber (ray theory). TEXT BOOKS: 1. H.J. Pain, ―The Physics of vibrations and waves‖, Wiley. 2. A.P. French, ―Vibrations and waves‖, the M.I.T. Introductory Physics Series. REFRENCE BOOKS: 1. Authors Beiser, ―Perspective of Modern Physics‖, TMH. 2. A. Ghatak, ―Optics‖.AC-104 APPLIED CHEMISTRY L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Conventional Analysis: Volumetric Analysis, Types of titrations, Theory of indicators. Spectral Analysis: Electromagnetic radiation, Lambert-Beer’s Law, UV-VIS, IR, instrumentation & applications. UNIT II: Thermal Methods of Analysis: principle, working and applications of Thermogravimetry, Differential thermal analysis and Differential scanning calorimetry. UNIT III: Polymers: Monomer & polymer, functionality and Degree of Polymerization. Mechanism of polymerization. Molecular weights of polymers. Methods of polymerization. Industrial production of PE and PF resins. Industrial applications of polymers. Bio-molecules: Classification, Structure, physical and chemical properties of Amino-acids, Peptides and Proteins, Carbohydrates, Cellulose and its derivatives, RNA, DNA. Introduction to Bio-degradable Polymers UNIT IV: Electrochemistry: Electrochemical cells: components, characteristics of batteries. Primary and Secondary battery systems: Zinc-Carbon cells, Lead storage and lithium batteries. Fuel Cells, Electro-deposition: Electrical and chemical requirements. Electroplating bath and linings. Agitation, Circulation and filteration equipment. Plating of copper, gold and rhodium. UNIT V: Phase Equilibrium: Definitions of Phase, component and degree of freedom, Gibb’s phase rule. One component systems: Water and sulphur. Two component systems: Pb-Ag and Cu-Ni system. UNIT VI: Green Chemistry: Introduction, Goals & Significance of Green Chemistry. Reagents, solvents and catalysts for green synthesis. Principles of Green Chemistry, Evaluation of feedstocks, reaction types and methods. Future trends in Green Chemistry. TEXT BOOKS: 1. T. Hatakeyama, F.X. Quinn, ―Thermal Analysis‖, Wiley. 2. A.I. Vogel, ―Inorganic Quantitative analysis‖, Longmans Green, Lon- don, 1961. REFRENCE BOOKS: 1. Skoog D.A., ―Instrumental method of analysis‖, HRW International. 2. P.T. Anastas & JC Warner, ―Green Chemistry:Theory & Practice‖, Oxford University Press. 3. Billmeyer, Polymer Science and Technology, John Wiley. 4. Fried, ―Polymer Science and Technology‖, Prentice Hall.EE-105 ELECTRICAL SCIENCES L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Introduction: Role and importance of circuits in Engineering, concept of fields, charge, current, voltage, energy and there interrelationship. V-I characteristics of ideal voltage and ideal current sources, various types of controlled sources. Passive circuit components: V-I characteristics and ratings of different types of R, L, C elements. UNIT II: DC Network: Series circuits and parallel circuits, power and energy, Kirchoff’s Laws. Delta-star conversion, Superposition Theorem, Thevenin’s Theorem, Norton’s theorem, Maximum Power Transfer Theorem, Tellgen Theorem. UNIT III: Single Phase AC Circuits: Single phase EMF generation, average and effective values of sinusoids, complex representation of impedance, series and parallel circuits, concept of phasor, phasor diagram, power factor, power in complex notation, real power, reactive power and apparent power. Resonance in series and parallel circuits, Q-factor, bandwidth and their relationship, half power points. UNIT IV: Three-Phase AC Circuits: Three phase EMF generation, delta and Y connection, line and phase quantities. Solution of three phase circuits: balanced supply voltage and balanced load, phasor diagram, measurement of power in three phase circuits. UNIT V: Magnetic Circuits & Transformers: Amperes circuital law, B-H curve, concept of reluctance, flux, MMF, analogies between electrical and magnetic quantities solution of magnetic circuits. Hysteresis and eddy current losses, application of magnetic force, mutual inductance and dot convention. Single phase Transformer construction, principle of working, auto transformer and their applications. UNIT VI: Three Phase and Single Phase Induction Motor: Construction, Principle of operation, types of motors applications. UNIT VII: Measuring Instruments: Analog indicating instruments, devices, Damping devices, PMMC ammeters and voltmeters, shunt and multipliers, Moving iron ammeter and voltmeters, dynamometer type wattmeters, multimeters, AC watt-hour meters. Digital electronic voltmeters, digital electronic ammeters and wattmeters.TEXT BOOKS: 1. C.L. Wadhwa, ―Basic electrical Engineering‖, 4th Edition, New Age International. 2. Fitzereld, Higgenbotham & Grabel, ―Basic Electrical Engineering‖, McGraw hill International. REFRENCE BOOKS: 1. Vincent Deltoro, ―Electrical Engineering Fundamentals‖, Prentice Hall International (EEI). 2. Relevant Indian Electricity Supply rules & BIS codes.IT-106 FUNDAMENTALS TO INFORMATION TECHNOLOGY L T P Credits Total Hours: 30 3 0 0 3 UNIT I: Fundamental Concept of Information: Definition of information, Data Vs Information, Introduction to Information representation in Digital Media, Text, image, graphics, Animation, Audio, Video etc., Need, Value and Quality of information. Compression: Definition, Compression ratio, Compression Techniques. UNIT II: Concepts in Computer: Definition of Electronic Computer, Generations, Classification, Characteristics and Applications. Computer Software: System Software and Application Software. Computer Hardware: CPU, Memory, different types of memories, Various I/O devices. Firmware and Humanware. UNIT III: Programming Language Classification & Methodology: Introduction to Computer Languages, Generation of Languages, Flow Charts, Dataflow Diagram, Introduction to 4GL and 5GL. Translators: Assemblers, Interpreters, Compilers. UNIT-IV: Digital Fundamentals: Number System, Decimal, Binary, Octal, Hexa-Decimal and their conversion, Introduction to various codes, Fixed and Floating number representations, Boolean Algebra, K-maps, Basic and Universal gates. Combinational Circuits: adder, subtractor, encoder, decoder, MUX and DeMUX. Sequential circuits: Definition, Flip Flops –SR, JK, Master-slave JK, T and D. UNIT V: Communication & Computer Networks: Introduction to Information Transmission Systems, Modulation, Need for Modulation, Analog Modulation- AM-Equation Of AM, modulation index, power calculations, AM generation(block diagram) and demodulation, Introduction to FM and PM , Comparison of AM techniques , PCM, LAN, MAN and WAN, Network Topologies, Client-server Architecture. UNIT VI: Internet and Web Technologies: Internet, Intranet and Extranet, Hypertext Markup Language, Static, active and dynamic web pages, WWW, HTTP, HTTPs, Gopher, FTP, Telnet, Web Browsers, Search Engines, Email, Digital Signatures, Firewall, Elementary Concepts of ECommerce, Electronic Payment Systems.TEXT BOOKS: 1. Peter Norton, ―Introduction to Computers‖, Tata McGraw-Hill VI Edition. 2. Rajaraman, ―Introduction to Computers ―, PHI. REFERENCE BOOKS: 1. Morris Mano, ―Digital Design‖, PHI, 2 nd Ed, 2002. 2. Floyd, ―Digital Fundamentals, Pearson, 10 th Edition. th 3. Kennedy, ―Communication Systems‖, 4 4. Nelson, ―Data Compression‖, BPB Edition. 5. CIS Tems, ―Internet, An introduction‖ Tata McGraw Hill. 6. Leon & Leon ―Fundamentals of Information Technology‖, Vikas.EN-112 ENVIRONMENTAL SCIENCE L T P Credits Total Hours: 20 2 0 0 2 UNIT I: Introduction to Environment: Origin & evolution of earth, segments of environmentlithosphere, hydrosphere, atmosphere & biosphere, Biogeochemical cycles-geologic, hydrological, oxygen, nitrogen, carbon & phosphate cycles. UNIT II: Ecosystems: Concept of ecosystem biotic & abiotic components, types of ecosystems, functional components of ecosystem- biodiversity, productivity, food chains & food webs, material cycling and energy flow, different ecosystems- forest, grassland, desert, aquatic. UNIT III: Water Pollution: Water quality, physical, chemical & biological characteristics of water & waste water, ground water pollution, water borne diseases. UNIT IV: Air & Noise Pollution: Primary & secondary air pollutants, sources, effects & control ofcarbon monoxide, nitrogen oxides, hydrocarbons, sulphur dioxide & particulates, Air quality standards, global warming, acid rain, El Nino, ozone hole. Classification and measurement of noise, effects of noise pollution on human, control of noise pollution. UNIT V: Energy & Solid Waste Management: Conventional energy resources- coal, thermal, petroleum, hydroelectricity, nuclear power, wood, non conventional sources- solar, biogas, wind, ocean & tidal energy, geothermal energy. Hazardous and non hazardous solid waste management. Environmental laws and acts. TEXT BOOKS: 1. Rana. S.V.S., ―Essentials of Ecology & Environment Science‖, PHI Publications. 2. Basak Anindita, ―Environmental Studies‖, Pearson Education South Asia. REFERENCE BOOKS: 1. Subramanian. V, ―A Text Book of Environmental Science‖, Narosa Publishing House. 2. De Anil Kumar & De Arnab Kumar, ―Environmental Studies‖, New Age International (P) Ltd.AP-AC 114 ENGINEERING MATERIALS L T P Credits Total Hours: 40 4 0 0 4 PART – A (PHYSICS) UNIT I: Crystal Structure: Bravis lattices; Miller indices, simple crystal structures, Different kind of bending. Metallic Conduction: Energy distribution of electrons in a metal, Fermi level, Conduction process. Semi Conductors: Band theory of solids , P and N type of semiconductors , Statistics of holes and electrons , Hall effect , Effect of temperature on conductivity , Life time and recombination ,draft and diffusion in PN junction . UNIT II: Dielectric and Optical properties of Materials: Dielectric polarization and dielectric constant, optical absorption process. Magnetism and Superconducting Materials: Dia-para , Ferro-magnetism , Antiferro , Ferromagnetism ferrites, Superconducting materials , Properties , Type of superconducting materials , Meissner effect , High- Tc superconductor , application. PART – B (CHEMISTRY) UNIT III: Water treatment: Impurities in water, hardness of water, determination and removal of hardness, boiler feed water, boiler troubles and prevention, numerical based on hardness removal. Composite materials: Introduction, limitations of conventional engineering materials, role of matrix in composites, classification, matrix materials, reinforcements, metal-matrix composites, polymer-matrix composites, fiber-reinforced composites, environmental effects on composites, applications of composites. UNIT IV: Speciality Polymers: Conducting polymers-Introduction, conduction mechanism, polyacetylene, polyparaphenylene and polypyrole, applications of conducting polymers, Ion-exchange resins and their applications. Ceramic & Refractory: Introduction, classification, properties, raw materials, manufacturing and applications.TEXT BOOKS: 1. Kittel, ―Solid State Physics‖, 7 th edition J. W .& Sons Publication. 2. Donald R. Askeland, Pradeep P. Phule, ―Essentials of Material Science and Engineering‖, Thomson. REFERENCE BOOKS: 1. Wahab M.A., ―Solid State Physics‖, Narosa Publishing House. 2. Ali OmerM, ―Solid State Physics‖, Pearson Education (Singapore) pvt. Ltd. India branch, New delhi. 3. Kenneth G. Budinski, Budinshi, ―Engineering Materials: Properties and Selection‖, 7 th edition, Pearson Singapor (Prentice Hall). 4. Pillai S.O., ―Solid State Physics‖, New Age International Publication. 5. R.W.Dyson, ―Speciality Polymers‖, Chapman and Hall, New York. 6. A.P.Gupta, M.C.Gupta, ―Polymer Composites‖, New Age publication. 7. R.N.Goyal, H.Goel, ―Engineering Chemistry‖, Ane Books India. 8. by S.S.Dara, ―Engineering Chemistry‖, S.Chand. 9. Raghupati Mukhopadhyay, Sriparna Datta, ―Engineering Chemistry‖, New Age International. 10. P.C.Jain, Monica Jain, ―Engineering Chemistry‖ Dhanpat Rai.ME-115 BASIC MECHANICAL ENGINEERING L T P Credits Total Hours: 40 4 0 0 4 UNIT I: PART A Introduction to Thermodynamics, Concepts of systems, control volume, state, properties, equilibrium, quasi-static process, reversible & irreversible process, cyclic process. Zeroeth Law and Temperature, Ideal Gas. Heat and Work. UNIT II: First Law of Thermodynamics for closed & open systems. Non Flow Energy Equation. Steady State, Steady Flow Energy Equation. Second Law of Thermodynamics-Kelvin and Plank’s Statements, Clausius inequality, Definition of Head Engines, Heat pumps, Refrigerators. Concept of Energy and availability. Carnot Cycle; Carnot efficiency, Otto, Diedel, Dual cycle and their efficiencies. UNIT III: Properties & Classification of Fluids, Ideal & real fluids, Newton’s law of viscosity, Pressure at a point, Pascal’s law, Pressurevariation in a static fluid, Introduction to Bio-fluid Mechanics General description of fluid motion, stream lines, continuity equation, Bernoulli’s equation, Steady and unsteady flow.Turbines and pumps. PART B UNIT IV: Introduction to engineering materials for mechanical construction. Composition, mechanical and fabricating characteristics and applications of various types of cast irons, plain carbon and alloy steels, copper, aluminum and their alloys like duralumin, brasses and bronzes cutting tool materials, super alloys thermoplastics, thermosets and composite materials. UNIT V: Introduction to Manufacturing processes for various machine elements. Introduction to Casting & Welding processes. Fabrication of large & small components and assemblies- example Nuts and Bolts, Water turbine rotors, Large Electric Generators, introduction to turning milling, shaping, drilling & boring processes. UNIT VI: Introduction to quality measurement for manufacturing processes; standards of measurements, line standards and, end standards, precision measuring instruments and gauges: vernier calipers, height gauges, micrometers, comparators, dial indicators, and limit gauges. TEXT BOOKS: 1. P. K. Nag, ―Engineering Thermodynamics‖ 2. G. J. Van Wyle and R. E. Santag, ―Fundamentals of Classical Thermodynamics‖. REFERENCE BOOKS: 1. S. K. Som and G. Biswas, ―Introduction to Fluid Mechanics and Fluid Machines‖ 2. R. K. Bansal, ―Fluid Mechanics and Hydraulic Machines‖. 3. Kalpakjian ―Manufacturing Processes‖. 4. K. Hazara Chowdhary, ―Workshop Practices‖. 5. W. A. J. Chapman ―Workshop Technology‖. 6. R. K. Jain, ―Production Engineering‖.COE-116 PROGRAMMING FUNDAMENTALS L T P Credits Total Hours: 20 2 0 0 2 UNIT I: Introduction: Concepts of algorithm, flow chart, Introduction to different Programming Languages like C, C++, Java etc. Elementary Programming: Data types, assignment statements, conditional statements and input/output statements. Iterative programs using loops.Concept of subprograms. Coding style: choice of names, indentation, documentation, etc. UNIT II: Arrays: Array representation, Operations on array elements, using arrays, multidimensional arrays. Structures& Unions: Declaration and usage of structures and Unions. Pointers: Pointer and address arithmetic, pointer operations and declarations, using pointers as function argument, File: Declaration of files, different types of files. File input/output and usage. UNIT III: Object Oriented Programming: Functional and data decomposition, Characteristics of ObjectOriented Languages: Abstraction, Encapsulation, Information hiding, abstract data types, Classes and Objects: Concept of Object & classes, attributes, methods, C++ class declaration, private and public memberships, Constructors and destructors, instantiation of objects. Introduction to Class inheritance and operator overloading. UNIT IV: Files: Streams and files, error handling, over view of Standard Template Library. TEXT BOOKS: 1. Jeri R. Hanly, Elliot B. Koffman, ―Problem Solving and Program Design in C‖, Pearson Addison-Wesley, 2006. 2. Schildt Herbert, ―C++: The Complete Reference‖ Wiley DreamTech, 2005. REFERENCE BOOKS: 1. Behrouz A.Forouzan, Richard F. Gilberg, ―A Structured Programming Approach Using C‖, Thomson Computer Science-Third Edition, 2007. 2. E. Balagurusamy, ―Object Oriented Programming using C++‖, TMH. R. Lafore; BPB Publications, 2004. 3. D. Parasons, ―Object Oriented Programming with C++‖, BPB Publication, 1999. 4. ―The Art of Programming Computer Science with C++‖ Steven C. Lawlor; Vikas Publication, 2002.AM-111 MATHEMATICS-II L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Matrices: Rank of a matrix, inverse of a matrix using elementary transformations, consistency of linear system of equations; Eigen-values and eigenvectors of a matrix, Cayley Hamilton theorem, diagonalization of matrix. Applications of matrices to electrical network. UNIT II: Ordinary differential equations: Second & higher order linear differential equations with constant coefficients, General solution of homogenous and non- homogenous equations, method of variation of parameters, Euler-Cauchy equation, simultaneous linear equations,Applications to simple harmonic motion, and mass-spring system. UNIT III: Special Functions: Power series method, Frobenious method, Legendre equation, Legendre polynomials, Bessel equation, Bessel function of first kind. Orthogonal property. UNIT IV: Laplace Transforms: Basic properties, Laplace transform of derivatives and integrals, Inverse Laplace transform, Differentiation and Integration of Laplace transform, Convolution theorem, Unit step function, Periodic function. Applications of Laplace transform to initial and boundary value problems. UNIT V: Fourier series and Transforms: Fourier series, Even and odd functions, half range series, Applications of Fourier series in frequency spectrum of a periodic pulse. Harmonic analysis, Fourier Transforms, Transforms of derivatives and integrals, Applications to boundary value problem in ordinary differential equations (simple cases only). TEXT BOOKS: 1. Kreyszig, ―Advanced engineering mathematics‖, Wiley. 2. Taneja, ―Advanced engineering mathematics‖, I K international. REFERENCE BOOKS: 1. Alan Jeffery, ―Advanced engineering mathematics‖, Academic Press 2. Thomas, Finney, ―Calculus and analytic geometry‖, Narosa. 3. Jain, Iyenger, ―Advanced engineering mathematics‖, Narosa.AP-113 APPLIED PHYSICS-II L T P Credits Total Hours: 40 3 1 0 4 UNIT I: Quantum Physics: Failure of classical physics ,Compton effect , Pair production de-broglie relation, wave function, Probability density, Schrodinger wave equation operators, expection values and eigen value equation, particle in a box, simple harmonic oscillator problem, concept of degeneracy. UNIT II: Clasical Statistic: Statistical physics-Microscopic macroscopic systems, concept of phase space basic postulates of statistical mechanics, Maxwell—Boltzmann distribution law. UNIT III: Quantum statistic: Fermi—Dirac and Bose –Einstein Distribution, Fermi- Dirac probability function, Fermi energy level. UNIT IV: Nuclear Physics: Nuclear properties, constituent of the nucleus, binding energy, stable nuclei, radioactive decay law (alpha and beta spectrum), Q-value of nuclear reaction , nuclear modelsliquid drop and shell model, nuclear fission and fusion, elementary ideas of nuclear reactors. UNIT V: Electrodynamics: Maxwell’s equations, concept of displacement current, Derivation of wave equation for plane electromagnetic wave, Pointing vector. Pointing theorem, Energy density, wave equation in dielectric & conducting media. TEXT BOOKS: 1. Erwin Kaplan, ―Nuclear Physics‖. 2. Arthur Beiser, ―Perspective of Modern Physics‖. REFERENCE BOOKS: 1. Griffith, ―Electrodynamics‖. 2. Rangawala & Mahajan, ―Electricity & magnetism‖.GROUP A B.Tech.I year, I Semester Examination Practical Paper I AP-107 APPLIED PHYSICS LAB Based on course work corresponding AP-103 L T P Credits 0 0 2 2 Practical Paper II AC-108 APPLIED CHEMISTRY LAB Based on course work corresponding AC-104 L T P Credits 0 0 2 2 Practical Paper III EE-109 ELECTRICAL SCIENCES LAB L T P Credits 0 0 2 2 Based on course work corresponding EE-105 Practical Paper IV IT-110 INFORMATION TECHNOLOGY LAB L T P Credits 0 0 2 2 Based on course work corresponding IT-106GROUP B Practical Paper II L T P Credits 0 0 3 3 B.Tech.I year, I Semester Examination ME-117 ENGINEERING GRAPHICS UNIT I: General: Importance, Significance and scope of engineering drawing Lettering, Dimensioning, Scales, Sense of Proportioning, Different types of Projections, B.I.S. Specification, line symbols, rules of printing. UNIT II: Projections of Points and Lines: Introduction of planes of projection, Reference and auxiliary planes, projections of points and lines in different quadrants, traces, inclinations, and true lengths of the lines, projections on auxiliary planes, shortest distance, intersecting and nonintersecting lines. UNIT III: Planes Other than the Reference Planes: Introduction of other planes (perpendicular and oblique), their traces, inclinations etc., projections of points lines in the planes, conversion of oblique plane into auxiliary plane and solution of related problems. UNIT IV: Projections of Plane Figures: Different cases of plane figure (of different shapes) making different angles with one or both reference planes and lines lying in the plane figures making different given angles (with one or both reference planes). Obtaining true shape of the plane figure by projection. UNIT V: Projection of Solids: Simple cases when solid is placed in different positions, Axis, faces and lines lying in the faces of the solid making given angles. UNIT VI: Isometric and Orthographic: First and Third angle of system of projection sketching of Orthographic views from pictorial views and vice –versa principles and type of sectioning. Development of Surface TEXT BOOKS: 1. Narayana, K.L. and Kannaiah, P.,―Engineering Graphics‖, Tata McGraw Hill. REFERENCE BOOKS: 1. Lakshminarayaan, V. and Vaish Wanar, R.S.,―Engineering Graphics‖Jain Brothers. 2. Chandra, A.M. and Chandra Satish, ―Engineering Graphics‖, Narosa.GROUP B B.Tech.I year, I Semester Examination Practical Paper I COE-118 PROGRAMMING LAB L T P Credits 0 0 2 2 Laboratory Practical Based on course work corresponding COE-116 Practical Paper III AP-107 APPLIED PHYSICS LAB L T P Credits 0 0 2 2 Laboratory Practical Based on course work corresponding AP-103 Practical Paper IV PIE-120 MECHANICAL WORKSHOP L T P Credits 0 0 3 3 Fitting shops: Introduction to various fitting tools- fabrication methods & job work assigned by workshop superintendent. Welding shops: Introduction to welding shop-welding principles & classifications, arc welding processes & related tools/equipments. Foundry Shops: Introduction to molding sands, molding tools-pattern making, miscellaneous work.GROUP A B.Tech.I year, II Semester Examination Practical Paper I ME-117 ENGINEERING GRAPHICS L T P Credits 0 0 3 3 See Group B: I semester practical paper II Practical Paper II COE-118 PROGRAMMING LAB L T P Credits 0 0 2 2 Laboratory Practical Based on course work corresponding COE-116 Practical Paper III AP-119 APPLIED PHYSICS LAB-II L T P Credits 0 0 2 2 Laboratory Practical Based on course work corresponding AP-113 Practical Paper IV PIE-120 MECHANICAL WORKSHOP L T P Credits 0 0 3 3 Fitting shops: Introduction to various fitting tools- fabrication methods & job work assigned by workshop superintendent. Welding shops: Introduction to welding shop-welding principles & classifications, arc welding processes & related tools/equipments. Foundry Shops: Introduction to molding sands, molding tools-pattern making, miscellaneous work.GROUP B Practical Paper I B.Tech.I year, II Semester Examination AC-108 APPLIED CHEMISTRY LAB Based on course work corresponding AC-104 L T P Credits 0 0 2 2 Practical Paper II EE-109 ELECTRICAL SCIENCES LAB L T P Credits 0 0 2 2 Based on course work corresponding EE-105 Practical Paper III AP-119 APPLIED PHYSICS LAB-II Based on course work corresponding AP-113 L T P Credits 0 0 2 2 Practical Paper IV IT-110 INFORMATION TECHNOLOGY LAB L T P Credits 0 0 2 2 Based on course work corresponding IT-106UPTU mechanical 3rd year semester exam previous year question paper download UPTU mechanical 2nd year semester exam previous year question paper download UPTU mechanical 6th semester exam previous year question paper download UPTU mechanical 5th semester exam previous year question paper download UPTU mechanical 4th semester exam previous year question paper download UPTU mechanical 3rd semester exam previous year question paper download UPTU Ee 4th year semester exam previous year question paper download UPTU Ee 8th semester exam previous year question paper download UPTU Ee 3rd year semester exam previous year question paper download UPTU Ee 2nd year semester exam previous year question paper download

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AU-701
AU-702
AU-703 Mechanical Vibration & Noise Engineering
AU-704 Combustion and Heat Transfer
AU-705 Computer Aided Engineering & FEM
AU- 1(A) Alternative Fuels & Pollution Control
AU-702 (A) Renewable Energy
AU-701(B) Industrial Robotics
AU-702 (B) Project Management
AU-702 (C) CIM Automation and CAD-CAM
AU-701(D) Work Study & Ergonomics
AU-702 (D) MIS, ERP & E-Business

IT-701 Object Oriented Analysis and Design
IT-702 Wireless & Mobile Computing
IT -703 Cloud Computing
IT -704 Elective -I
IT -705 Elective -II
IT -706 Minor Project
IT -7 Industrial Training (2 Week)
IT7- Advance Concepts in Database Systems
IT7-Embedded System
IT711-SiUPTUlation & Modeling
IT721-E-Commerce & Governance
IT712 Human Computer Information
IT722- High Performance Computing
IT 713 Automata & Compiler Design
IT723-BioInformatics
IT 713 Data Analytics
IT724-Unix & Shell Programming

BT-701 Animal Tissue Culture
BT-702 Bioinformatics
BT-703 Commercialization,Marketing & Management Biotechnology
BT-704 Elective - I
BT-705 Elective -II
BT-706 Self Study (Internal Assessment)
BT-7 Seminar/Group discussion(Internal Assessment)

Elective – I Elective –II
BT- 4 (A) Protein Biotechnology
BT- 5 (A) Concepts in Biomedical Engineering
BT- 4 (B) Human Genomics
BT- 5 (B) Total quality management
BT- 4 (C) Proteomics
BT- 5 (C) Bio – Reactor Design & Analysis

B.E. VII Semester (Bio Medical Engineering)
1 BM-701 Biomedical Signal Processing
2 BM-702 Medical Imaging System
3 BM-703 Data Communication
4 BM-704 Bio Medical System Modeling & SiUPTUlation
5 BM-705 Elective - I
6 BM-706 Major Project – I (Planning & Literature Survey)
7 BM-7 Industrial Training (2 Weeks)

Elective –I
BM- 51 Laser & Fiber Optics in medicine
BM- 52 VLSI Design
BM- 53 Bio Mechanics
BM- 54 Bio Informatics

B.E. VII Semester ( Civil Engg.)
CE-701 Design of Hydraulic Structure
CE-702 Advanced Structural Design –II (R.C.C.)
CE-703 Environmental Engg. - II
CE-704 Quantity Surveying & Costing
CE-705 Elective -I
CE-706 Minor Project - - -
CE-7 Tour /Training (2Week)(Internal Assessment)
Elective –I
CE -71 COMPUTATIONAL METHODS IN STRUCTURAL ENGINEERING
CE -72 TRAFFIC ENGINEERING
CE- 73 INDUSTRIAL WASTE TREATMENT
CE-74 COST EFFECTIVE & ECO-FRIENDLYCONSTRUCTION
CE-75 ENVIRONMENTAL IMPACT ASSESSMENT

B.E. VII Semester (Chemical Engineering)

1 CM-701 Elective - I
2 CM -702 Elective - II
3 CM -703 Process Equipment Design -II
4 CM -704 Chemical Reaction
Engineering-II

5 CM -705 Environmental Engineering
6 CM -706 Minor Project - - - - 0 4 04
7 CM -7 Industrial Training (2Week)& Seminar

Elective – I Elective – II
CM 1 (A) Petroleum Processing Tech. CM 2 (A) Transport Phenomena
CM 2 (B) Safety Engg and Hazard Managementv CM 2 (B) Polymer Technology
CM 3( C) Pharmaceutical Technology CM 3 (C) Novel Separation Methods

B.E. VII Semester ( Computer Science and Engineering)

CS-701 Compiler Design
CS-702 Distributed System
CS-703 Cloud Computing
CS-704 Information Storage & Management

5 CS-705 Elective -I
6 CS-706 Industrial Training (2Week) - - - 2 02
7 CS-7 Major Project - - - 2 02
8 CS-8 Self study - - - - - 2 02 Grand
Total
9. CS-9 Seminar /Group Discussion - - - - - 2 02
Total 0 1 40 140 15 5 12 32

Elective –I
CS 71 - N/W & Web Security CS 72 - SiUPTUlation & Modelling
CS 73 – Embedded Computer System CS 74 - Real Time Fault Tolerant Systems

B.E. VII Semester (Electronics & Communication Engineering)
EC-701 Elective -I
EC -702 Satellite Communication
EC-703 Optical Communication
EC-704 Microwave Engg.
EC-705 VLSI Design
EC-706 Minor Project
EC-7 Industrial Training
EC-7011 Wireless Communication
EC-7012 Digital Image Processing
EC-7013 Neural Networks
B.E. VII Semester (Electrical Engineering)
EE -701 Power System Analysis & Control
EE-702 Utilization of Electrical Energy
EE -703 Electrical Drives
EE -704 Major Project -I (Planning &Literature Survey)
EE -705 Industrial Training (2 Week)
EE -706 Self Study / Seminar
EE- 71 Computer Aided Design of Electrical Machines EE-71 High Voltage Engg.
EE- 72 Soft Computing Techniques & Applications EE-72 Calibration and Testing of Electrical Equipments
EE- 73 SCADA Systems & Application EE- 73 Generalised Theory of Electrical Machines

B.E.VII Semester (Electronics & Instrumentation Engineering)
1 EI-701 VLSI Design
2 EI -702 Process Control
3 EI-703 Advanced Microprocessor &
Microcontroller

4 EI-704 Elective -I
5 EI-705 Elective -II
6 EI-706 Major Project (Planning &
Literature Survey)
- - - 2 02
7 EI-7 Industrial Training(2Weeks)
8. EI-8 Seminar / Group Discussion/
Electronic Work Shop

Elective –I Elective –II
EI71 Safety & Reliability Engg. EI 71 AI
EI72 Data Acquisition System EI 72 Environmental Instrumentation
EI73 MIS EI 73 Bio Medical DSP
EI74 Ad. DSP EI 74 TQM

B.E. VII Semester ( Fire Technology & Safety Engineering)

1 FT-701 Elective -I
2 FT-702 Elective -II
3 FT -703 Heat Transfer,
Combustion &
Explosives

4 FT -704 Safety Engineering & Its
Industrial Application

5 FT -705 Chemical Safety
6 FT -706 Minor Project
7 FT -7 Industrial Training (2Week)
& Seminar
- - - 2 02 Grand
Total
8. FT -8 Fire Fighting & Field Training
Elective –I Elective -II
FT- 1(A) Structure behavior under fire FT- 2(A) Disaster Management
FT- 1(B) Operation Research & Supply Chain FT- 2(B) SiUPTUlation & Process Modeling
FT-703(C) Process Safety & Risk Assessment

B.E. VII Semester (Industrial Engineering & Management)

IP/IE-701 Elective -I
2 IP/IE-702 Elective -II
3 IE-703 HRM
4 IP/IE -704 Industrial Robotics
5 IP/IE -705 Logistics & Supply Chain
Management

6 IP/IE -706 Minor Project - - - 0 4 04
7 IP/IE -7 Industrial Training
(2Week & Seminar
- - - 2 02 Grand
Total
Total 0 15 5 12 32

Elective –I Elective –II
1 (A) Materials Management 2(A) Technology Management & BPR
1 (B) Knowledge Management 2(B) MIS, ERP and e-Business

B.E. VII Semester (Industrial Production Engineering)

1 IP/IE-701 Elective -I
2 IP/IE-702 Elective -II
3 IP -703 Welding & Non
Destructive Testing

4 IP/IE -704 Industrial Robotics
5 IP/IE -705 Logistics & Supply Chain
Management

6 IP/IE -706 Minor Project
7 IP/IE -7 Industrial Training
(2Week) & Seminar
Elective –I Elective –II
1 (A) Materials Management 2(A) Financial Managment
1 (B) Computer Aided Engineering & FEM 2(B) MIS, ERP and e-Business

B.E. VII Semester (Mechanical Engineering)
1 ME-701 Elective -I
2 ME-702 Elective -II
3 ME-703 Mechanical Vibration
& Noise Engineering

4 ME-704 Automobile Engg
5 ME -705 O R & Supply Chain
6 ME-706 Minor Project and seminar
7 ME-7 Industrial Training (2 Week)
ME 1 Elective –I ME 2 Elective II
1(A) Design of Heat Exchanger 2 (A) Renewable Energy System
1(B) Computer Aided Engineering and FEM 2 (B) Project management
1(C) Industrial Robotics 2 (C) Total Quality Management and SQC
1(D) Work Study & Ergonomics 2 (D) MIS, ERP and e- Business

B.E. VII Semester (Textile Engineering)

TX-701 Elective -I
TX-702 Elective -II
TX -703 Textile Chemistry - II
TX -704 Advance Yarn Manufacturing
TX -705 Advance Fabric Manufacturing
TX -706 Advance CAD in Textiles
TX -7 Industrial Training (2Week)
and Seminar (Internal Assessment)
Elective –I Elective –II
TX- 1(A) Color physics and computer color matching TX- 2(A) Knitting technology
TX- 1(B) Chemistry of intermediates and dyestuff TX- 2(B) Technical textiles
TX- 1(C) Dyeing of synthetic and blends TX- 2(C) Finishing of synthetic and blends
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