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1/1 GANPAT UNIVERSITY Sem-I (CE/IT/EC/BM/MC/ME/C) 2HS 101: Engineering Mathematics - I Unit No Topics Lectures (Hours) 1 Differential Calculus Review of the prerequisites such as limits of sequences and functions, continuity, uniform continuity and differentiability. Successive differentiation, Leibnitz’s theorem, Taylor's & Maclaurin's expansions, Indeterminate forms. 9 2 Mean value theorems Rolle’s theorem, Lagrange’s Mean value theorem, Cauchy’s Mean value theorem. 5 3 Partial differentiation and its applications Partial and total differential coefficient, Eulers theorem, Transformations, Geometrical interpretation of partial derivatives, Tangent plane and Normal line, Jacobians, Taylors expansion for two variables, Errors and approximations, Maxima and Minima of functions of two variables ,Lagranges method of undetermined multipliers to determine stationary values. 10 4 Matrix Algebra Elementary transformations & rank, inverse by Gauss-Jordan Method, normal form of a matrix, consistency of system of linear equations, Linear dependent and Linear independent vectors. Eigen values and eigen vector. 14 5 Infinite Series Definition, Comparison test, Caucheys integral test, ratio test, root test, Leibnitz rule for alternating series, power series, range of convergence, uniform convergence. 6 6 Analytical Solid Geometry Coordinate system, Cartesian, Cylindrical Polar and Spherical Polar (Transformation from one to another system), Quadric Surfaces and their equations 4 Total 48 Reference Books: (1) Higher Engineering Mathematics by Dr. B. S. Grewal (2) Higher Engineering Mathematics Vol. I & II by Dr. K. R. Kachot. (3) Calculus and analytical geometry by G. B. Thomas and R. L. Finney (4) Higher Engineering Mathematics by G. C. Patel, Dr. T. A. Desai, P.A.Patel Teaching Scheme Credit Examination Scheme ( Marks) Theory Practi cal / TW Total Theory Pra/ TW Total Int. Asse ss Sem. End Lect Hrs Tu Hrs Prac. Hrs Tot al Mark s Hrs 03 01 00 04 03 01 04 30 70 3 - 100

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Page 1: GANPAT UNIVERSITY Sem-I (CE/IT/EC/BM/MC/ME/C) … TECH... · 1/1 GANPAT UNIVERSITY Sem-I (CE/IT/EC/BM/MC/ME/C) 2HS 101: Engineering Mathematics - I Unit No Topics Lectures (Hours)

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GANPAT UNIVERSITY Sem-I (CE/IT/EC/BM/MC/ME/C)

2HS 101: Engineering Mathematics - I

Unit No

Topics Lectures(Hours)

1

Differential Calculus Review of the prerequisites such as limits of sequences and functions, continuity, uniform continuity and differentiability. Successive differentiation, Leibnitz’s theorem, Taylor's & Maclaurin's expansions, Indeterminate forms.

9

2 Mean value theorems Rolle’s theorem, Lagrange’s Mean value theorem, Cauchy’s Mean value theorem.

5

3

Partial differentiation and its applications Partial and total differential coefficient, Eulers theorem, Transformations, Geometrical interpretation of partial derivatives, Tangent plane and Normal line, Jacobians, Taylors expansion for two variables, Errors and approximations, Maxima and Minima of functions of two variables ,Lagranges method of undetermined multipliers to determine stationary values.

10

4

Matrix Algebra Elementary transformations & rank, inverse by Gauss-Jordan Method, normal form of a matrix, consistency of system of linear equations, Linear dependent and Linear independent vectors. Eigen values and eigen vector.

14

5

Infinite Series Definition, Comparison test, Caucheys integral test, ratio test, root test, Leibnitz rule for alternating series, power series, range of convergence, uniform convergence.

6

6

Analytical Solid Geometry Coordinate system, Cartesian, Cylindrical Polar and Spherical Polar (Transformation from one to another system), Quadric Surfaces and their equations

4

Total 48

Reference Books:

(1) Higher Engineering Mathematics by Dr. B. S. Grewal (2) Higher Engineering Mathematics Vol. I & II by Dr. K. R. Kachot. (3) Calculus and analytical geometry by G. B. Thomas and R. L. Finney (4) Higher Engineering Mathematics by G. C. Patel, Dr. T. A. Desai, P.A.Patel

Teaching Scheme Credit Examination Scheme ( Marks)

TheoryPractical / TW

Total Theory

Pra/TW

TotalInt. Asse

ss

Sem. End Lect Hrs

Tu Hrs

Prac. Hrs

Total

Marks Hrs

03 01 00 04 03 01 04 30 70 3 - 100

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GANPAT UNIVERSITY SEMESTER – I/II (IT/CE/EC/BM&I/MC/ME/Civil)

2HS 103: Language & Communication Skills

Teaching Scheme (Hrs.) Credit Examination Scheme ( Marks) Theory

TW/Practical Total Lect Hrs

Tu Hrs

Prec. Hrs

Total Theory Pr/TW Total Int. Assess

Sem. End

Hrs

02 02 00 04 02 01 03 30 70 3 25 125

Unit No.

Topics Lectures(Hour)

1 Basics of Technical Communication: 4

Introduction to English language and communication, Principles, process and forms of communication, Role of Language in communication, Barriers to communication, Difference between general and technical communication

2 Listening & Reading Skills: 4

Listening Skill: Definition and process of listening skill, Types of listening, Modes of listening, Active listening and reflective response.

Reading Skill: Reading as a communicative process, Types and strategies of reading like reading for facts, guessing meanings from context, paraphrasing, scanning, skimming, inferring meaning, critical reading, Reading at various speeds (slow, fast, very fast); reading different kinds of texts for varied purposes; reading between lines, Reading of technical text

3 Oral Communication: 6

Presentation and Public Speaking: Nature of presentation, How to prepare presentation, Presentation tools along with guidelines of effective presentation, Boredom Factors in presentation and how to overcome them, Interactive presentation. Nature of public speaking, Tips for public speaking, Difference between presentation and public speaking

Job Interviews and Group Discussion: The interview process, Objectives of job interview, Types of interview, Characteristics of job interview, Pre-interview preparation techniques, Interview questions and answering techniques, Nature of group discussion, Characteristics of group discussion, Organizational group discussion, Group discussion as a part of selection process, group discussion strategies, Techniques for individual contribution in group discussion

4 Business Writing: 5

Business letter writing: Essentials of effective letter writing, Need, Functions and Types of business letters. Structure and Layout of a business letter, Drafting of business letters like inquiry, reply, purchase order, complaint and adjustment letter, sales promotion

Advertisements: Basics of advertisement, Nature and purpose of advertisement, Types of an advertisement, Media for advertisement, preparing of an advertisement draft

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5 Professional Writing: 5

Report writing: Purpose of a report, types of reports, Structure and style of reports, Committee report, Individual report

Resume and job application: Significance of resume and job application, structure, types, tips for job application, Resume writing, Job application letter

Notice, agenda, minutes of meeting: Requisites of meeting, Types of company meetings, drafting of notice, agenda and minutes of meeting

Official Correspondence: Introduction, Correspondence with different authorities like government departments, civic authorities, office bearers of financial institutions, insurance agencies

Total 24

Practicals:

At least 10 Practicals shall be performed based on above course contents during the semester.

Assignments:

At least 10 Assignments shall be given periodically during the semester.

Reference Books:

(1) Technical Communication – Principles and Practice by Meenaksi Raman & Sangeeta Sharma (Oxford

University Press)

(2) Effective Technical Communication by M Ashraf Rizvi (TMH Publication)

(3) Business Communication by V. K. Jain and Omprakash Biyani (S. Chand & Company)

(4) Business Correspondence and Report Writing by R. C. Sharma & Krishna Mohan (TMH Publication)

(5) A Guide to Business Correspondence and Communication skills by A. N. Kapoor (S. Chand &

Company)

(6) A Communicative Grammar of English by Geoffery Leech and Fan Svartvik (Pearson Longman)

(7) New International Business English by Jones & Alexander (Oxford University Press)

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GANPAT UNIVERSITY B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2EE 101: Elements of Electrical Engineering

Unit No.

Topics

Lectures (Hours)

1

D.C. Circuits : Source Transformation, Star-Delta Transformation, Application of Kirchhoff’s Law, Superposition Theorem, Thevenin’s Theorem, Norton’s & Maximum Power Transfer Theorem.

04

2

Capacitor : Types of Capacitor, Capacitance of Multiple Parallel Plate Capacitor, Energy stored in a Capacitor, Charging & Discharging of Capacitor & Time constant.

03

3

Magnetic circuit : Law of Magnetic Circuit , Series & parallel Magnetic Circuits and Calculation, Comparison of magnetic & Electric Circuit, Magnetization Curves.

05

4

Electromagnetic Induction : Review of Faraday’s Law, Lenz’s Law, Self & Mutual Inductance, Inductance of coupled circuits, Rise and Decay of Current in Inductive circuit & Time Constant, Magnetic Hysterisis, Hysterisis Loss, Eddy Current Loss.

06

5

Work, Power, Energy : Heating Effect of Electric Current and Joule’s law - Thermal Efficiency- Electrical Units of Power and Energy - Mechanical Units of Force- Torque & Power - Calculation of Power & Energy - Energy Bill.

02

6

Illumination : Definition and important terms, Laws of illumination, Requirement of good lightning, Types and Design of lightning scheme, Street lightning , Factory and Flood lightning.

03

7

Batteries and Cells : Primary and Secondary cells, Lead acid, Nickel Cadmium secondary cells, Charging of Lead acid Batteries, Lithium primary and secondary cells, Dry button cells.

02

8

A.C.Circuits : Generation of A.C. Voltage , Equation of A.C. Voltage, Average value, R.M.S. Value, Form Factor, Peak Factor, Phase & Phase Difference, Vector Representation of A.C. Voltage and Current. Addition and Subtraction of Vectors, Mathematical Representation of Vectors, Complex Algebra, Polar & Exponential form, Pure Resistive, Pure Inductive, Pure Capacitive and combination of R-L-C Circuits, Active -Reactive and Apparent power & Power Factor, Resonance in R-L-C Series Circuit, Q-factor, Bandwidth, Solution of Parallel circuit by Admittance, Phasor & Complex Algebra methods, Resonance in Parallel circuit, Q-factor, Bandwidth.

12

9 3-Phase Circuits : Generation of 3-phase voltage, Phase Sequence , Interconnection of three 03

Teaching Scheme Credit

Examination Scheme ( Marks)

(Hrs.) Theory Practical

/ TW Total

Theory Pr/TW Total Int.

Assess Sem. End

L P Total Marks Hrs 04 02 06 04 01 05 30 70 03 25 125

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phase, Star – Delta, Voltage ,Current & Power relationship in balanced 3-Phase Circuits, Measurement of power in 3-phase circuit and Effect of power factor on Wattmeter readings.

10 Economic Aspects : Load curve and related factors, Tariff & its types, Causes and effects of low power factor, Methods of improving power factor.

03

11

Measuring Instrument : Operating system of Indicating instrument, Constructional and working of PMMC, Moving Iron, Dynamometer instruments, shunts and multiplier, multimeter and megger.

03

12

Safety & Protection : Safety, electric shock, first aid for electric shock other hazards of electrical laboratories & safety rules, circuit protection devices, fuses, MCB, ELCB & relays

02

Total 48

Laboratory work At least 10 Practicals to be performed based on above syllabus. Tutorials At least 10 Assignments and Tutorials to be solved. Reference Books: (1) Electrical Technology Volume-I by B.L.Thereja, Pub. By S.Chand (2) Elements of Electrical & Electronics Engineering by U.A.Patel , Pub. By Atul Prakashan (3) Basic Electrical Engineering by V.N.Mittal Pub. By Tata Mc Grawhill, New Delhi (4) Electrical Wiring ,Estimating and Costing by S.L.Uppal, By Khanna Publication (5) Principles of Power Systems by V.K.Mehta Pub. By S.Chand

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GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2ME 101: Elements of Mechanical Engineering

Unit No.

Topics

Lectures (Hours)

1

Introduction: Prime movers, Sources of energy, Types of prime movers, Force and mass, Pressure, Work, Power, Energy, Heat, Temperature, Units of heat, Specific heat capacity, Interchange of heat, Change of state, Mechanical equivalent of heat, Internal energy, Enthalpy, Entropy, Efficiency, Statements of Zeroth Law, First law and Second Law of Thermodynamics.

04

2 Fuels and Combustion: Introduction, Classification, Solid fuels, Liquid Fuels, Gaseous fuels, LPG,CNG and biofuels ,Calorific values. 02

3

Properties of gases : Gas laws, Boyle's law, Charle's law, Combined gas law, Gas constant, Internal energy, Relation between Cp and Cv, Enthalpy, Non flow process, Constant volume process, Constant pressure process, Isothermal process, Poly-tropic process, Adiabatic process.

05

4

Properties of Steam : Introduction, Steam formation, Types of Steam, Enthalpy, Specific volume of steam and dryness fraction of steam , Internal energy, Steam tables, Non-flow process. Measurement of dryness fraction, Throttling calorimeter, Separating calorimeter, Combined calorimeter.

05

5 Heat Engines: Thermal prime movers, Elementary heat engines, Sources of heat, Working substances, Converting machines, Classification of heat engines.

03

6

Steam Boilers : Introduction, Classification, Simple vertical boiler, Vertical multitubular boiler, Cochran type, Lancashire boiler, Locomotive boiler, Babcock and Wilcox boiler, Boiler details, Boiler performance. Functioning of different mountings and accessories.

05

7

Internal Combustion Engines : Introduction, Classification, Engine details, otto four-stroke cycle, Diesel-four-stroke cycle, Difference between otto cycle and Diesel cycle, Two-stroke cycle, Difference between two-stroke and four-stroke cycle, indicated power (ip), Brake Power (bp), Efficiencies.

06

8 Speed Control: Introduction, Governors, I.C. Engine governing, Fly wheel. 02

9 Pumps: Introduction, Reciprocating pump, types and operation, Air Chamber, Centrifugal pumps, Priming, Positive displacement pumps. 04

10

Air Compressors: Introduction, Uses of Compressed air, Reciprocating compressors, Operation of a compressor, Work for compression, Power required, Reciprocating compressor efficiency, Multistage reciprocating compressors, Rotary compressors.

03

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

4 2 6 4 1 5 30 70 3 100 25 125

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11 Refrigeration & Air Conditioning: Introduction, Refrigerant, Types of refrigerators, Vapour compression refrigerating system, Window and split air conditioners.

03

12 Couplings, Clutches and Brakes: Introduction, Couplings, Clutches, Brakes, Types of brakes. Difference between a brake and a clutch. 03

13 Transmission of Motion and Power: Introduction, Methods of drive, Power transmission elements, shaft and axle, Belt-drive, Pulleys, Power transmitted by a belt, Chain drive, Friction drive, Gear drive.

03

Total 48

Reference Books: 1. Thermal Science and Engineering by Dr. D.S. Kumar, S.K. Kataria & sons Publication New Delhi

2. Fundamental of Mechanical Engineering by G.S. Sawhney, Prentice Hall of India Publication

New Delhi

3. Thermal Engineering by R.K. Rajput ,S.Chand Publication New Delhi

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GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2CI 102: Mechanics of Solids

Unit No.

Topics

Lectures (Hours)

1 Introduction:- Scalar and vector quantities, absolute and derived units, the science of mechanics, fundamental principles, SI units.

1

2 Forces & Force Systems:- Force and force systems, composition and resolution of forces, moment of a force, law of parallelogram, resultant of different force systems, Varignon’s principle..

6

3 Equilibrium: Equilibrium of a particle, resultant and equilibrant, free body and free body diagram, Lami’s theorem, equilibrium of human body joints.

3

4 Centre of gravity and Moment of Inertia:- Center of gravity of curves, plane areas and bodies, Pappus Guldinus theorem I & II, method of integration, Area moment of inertia, mass moment of inertia, M.I. of flywheel, different methods of M.I., law of parallel axis, law of perpendicular axis.

8

5 Friction:- Theory of friction, Types of friction, inclined plane friction, ladder friction, wedge friction, belt and rope friction.

3

6 Simple Lifting Machines:- Velocity ratio, mechanical advantage, efficiency, reversibility, law of machines, simple wheel & axle, differential wheel & axle, single purchase crab winch, differential wheel & axle, pulley & pulley block.

3

7 Dynamics of Particles:- De-Alembert's principle, motion of connected bodies, motion along inclined planes, impulse and momentum, Single degree free vibration

4

8 Physical and Mechanical properties of materials: Properties related to axial, bending and torsional and shear loading, Toughness, hardness ,proof stress, factor of safety, working stress, load factor.

3

9 Stresses & Strains:- Elastic, homogeneous, isotropic materials, limit of elasticity and proportionality, yield limit, ultimate strength, strain hardening, section of composite materials, prismatic and non prismatic sections. Strains: Linear, shear,lateral,thermal and volumetric, Poisson’s ratio. Stresses: Normal stresses, axial- tensile and compressive, shear and complementry shear, thermal and hoop. Applications to composite material stepped and tapered bars.

7

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW AssessmentLect.

(Hrs.) Tu Hrs

Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

04 00 02 06 04 01 05 30 70 03 100 25 125

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10 Beams:- Types of supports, Types of beams, Types of loads, determinate andindeterminate beams. .Bending moments and Shear force , Bending moment and shear force diagrams for statically determinate beams subjected to couples, connected forces, uniformly distributed loadings, relation between bending moment, shear force and rate of loading, point of contra flexture.

10

Total 48

Reference Books:

(1) Engineering Mechanics by Beer & Johnston (2) Applied Mechanics by S.B.Junarkar & H. J. Shah (3) Mechanics of Structure Vol. I by S.B.Junarkar & H. J. Shah

(4) Engineering Mechanics by M.N.Patel (5) Engineering Mechanics by P.J.Shah (6) Engineering Mechanics by A. K. Tayal (7) Engineering Mechanics by S. Ramamrutham (8) Engineering Mechanics by Kumar (9) Strength of Materials by Timo Shenko

(10) Strength of Materials by S. Ramamrutham

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GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2CI 103: Environment Study & Disaster Management

Unit No.

Topics

Lectures (Hours)

1

Introduction to Environment: Definition, Inter-relationships amongst and between them, Components of Environment, Relationship between different components, Man-Environment relationship Impact of Technology on the environment, Environmental Degradation.

4

2

Ecology & Ecosystems: Introduction: Ecology- Objectives and Classification, Concepts of an ecosystem- structure & function of ecosystem, Components of ecosystem- Producers, Consumers, Decomposers, Bio-Geo- Chemical Cycles- Hydrological Cycle, carbon cycle, Oxygen Cycle, Nitrogen Cycle, Sulfur Cycle, Energy Flow in Ecosystem, Food Chains: Grazing, Detritus, & Food webs, Ecological Pyramids, Major Ecosystems: Forest Ecosystem, Grassland Ecosystem, Desert Ecosystem, Aquatic ecosystem, Estuarine Ecosystem.

8

3

Environmental Pollution: Air Pollution: Composition of air , Structure of atmosphere, Ambient Air Quality Standards, Classification of air pollutants, Sources of common air pollutants like SPM, SO2, NOX – Natural & Anthropogenic Sources, Effects of common air pollutants, Carbon credit. Noise Pollution: Introduction- Sources of Noise Pollution, Ambient noise levels, Effects of noise pollution on human being and wild life, Noise pollution controls, Noise standards. Water Pollution: Introduction – Water Quality Standards, Sources of Water Pollution, Classification of water pollutants, Effects of water pollutants, Eutrophication. Current Environmental Global Issues: Global Warming & Green Houses Effects, Acid Rain, Depletion of Ozone Layer.

8

4

Energy Resources: Renewable & Nonrenewable Resources: Renewable Resources, Nonrenewable Resources, Destruction versus Conservation. Energy Resources: Energy Resources - Indian Scenario , Conventional Energy Sources & its problems, non-conventional energy sources-Advantages & its limitations , Problems due to Overexploitation of Energy Resources.

4

5 Natural Disasters: Introduction, Floods, Earthquakes and Landslides, Cyclones and Thunderstorms, Tsunami, Drought, Heat wave and Sandstorms

8

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Tu Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

04 00 00 04 04 00 04 30 70 03 100 00 100

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6

Man made Disasters: War and Terrorism, Riots and Demonstrations, Residential and Industrial Fires, Transportation Accidents, Nuclear Power Accidents, Hazardous Materials and Toxic Emission, Utility Failure.

7

7

Problems regarding victims and its awareness: Saving Victims – First Twenty-Four Hours, Conducting Medical Relief Operations, Managing Relief Operations, Psychological Issues, Carrying Out Rehabilitation Work

6

8 Planning for disaster management: Local Disaster Management Cell, How to Prepare a Business Recovery Plan?, Government Response in Disaster.

3

Total 48 NOTE: It is necessary to include mock drill, field visit and expert lectures in the portion of Disaster

Management. The format of the question paper in the portion of Disaster Management should be objective with short answer questions, multiple choice questions etc.

REFERENCE BOOKS:

1. Citizen’s guide to disaster management by Satish Modh Publisher:-Macmillan Publishers India,

2. Environment Engineering Vol-I & II, by Dr.S.K.Garg,

3. Introduction to Air Pollution, by R.K.Trivedi & P.K.Goel.-BS Publications,

4. Environmental Pollution Control Engineering, by C.S.Rao,

5. Vol-I- Air Pollution, Vol-II- Water Pollution, Vol-V- Noise Pollution – By S.K.Agarwal –

A.P.H.Publishing Corporation,

6. Environmental Studies: R. Rajagopalan,Oxford University Press

7. Environmental Pollution: Causes, Effects & Control by K.C Agrawal

8. Environmental Science by Richard T Wright & Bernard J Nebel

9. Environmental Science by Daniel B Botkin & Edward A Keller

10. Environmental Engineering & Management by Suresh K Dameja

11. Environmental Management by Dr. Swapan C Deb

12. Environment & Ecology by Dr Gourkrishna Dasmohapatra

13. Introduction to Environmental Engineering and Science by Master Gilbert M.

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GANPAT UNIVERSITY Sem-II (CE/IT/EC/BM/MC/ME/C)

2HS 102: Engineering Mathematics – II

Unit No

Topics Lectures (Hours)

1

Integral Calculus Beta & Gamma, Error functions, Elliptic functions. Application of integration-- Length of a curve, Area of a bounded region, Volume & surface area of a solid of revolution for Cartesian, parametric & polar form.

8

2 Reduction Formulae Reduction formulae of the type ∫ sinnx dx, ∫ cosnx dx, ∫ sinmxcosnxdx, ∫ cotnxdx, and ∫ tannxdx.

4

3

Multiple integrals Double integral, change of order of integration, transformation of variables by Jacobian only for double integration, change to polar co-ordinates in double integrals,Triple integral, Application of multiple integration to find areas, volumes, C.G., M.I. and mean values.

12

4

Complex Numbers DeMoivres theorem & its applications, functions of complex variables Exponential ,hyperbolic & inverse hyperbolic, trigonometric & logarithmic.

10

5

Differential Equations & Modelling Modelling of Engineering systems (leading to ODE of first order, first degree, including orthogonal trajectories), Exact differential equations and integrating factors, unified approach to solve first order equations, linear, reducible to linear and higher degree differential equations (Clairut’s equation only).

10

6 Curves Tracing Tracing of Curves: Cartesian, polar and parametric forms. 4

Total 48

Reference Books:

(1) Higher Engineering Mathematics by Dr. B. S. Grewal (2) Higher Engineering Mathematics Vol. I & II by Dr. K. R. Kachot.

(3) Advanced Engineering Mathematics (Fifth Edition), Erwin Kreyszig. (4) Applied Mathematics for Engineering by Dr. R. C. Shah.

Teaching Scheme Credit Examination Scheme ( Marks)

TheoryPractical / TW

Total Theory

Pra/TW

TotalInt. Asse

ss

Sem. End Lect Hrs

Tu Hrs

Prac. Hrs

Total

Marks Hrs

03 01 00 04 03 01 04 30 70 3 - 100

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GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2EC 101: Engineering Science

Unit No.

Topics

Lectures (Hours)

1

Thermal Physics Introduction, Joule-Thomson Effect, Thermometry, Conduction, Convection, Radiation, Thermal Conductivity of material, Concept of heat and work, Laws related to thermodynamic radiation, Entropy

5

2

Optics Introduction, Different theories based on the properties of light, Reflection, Refraction, Dispersion, Absorption, Lasers and Fiber Optics- Introduction and applications, Photoelectric Effects and its applications

5

3 Acoustics Introduction, Parameters associated with sound wave, Doppler effects, Introduction to Ultrasonic and its applications

4

4

Magnetics Introduction, Magnetic dipole moment, Magnetic field, Classification of magnetic materials, Ferromagnetism, Diamagnetism, Application of magnetic materials

5

5

Modern Physics Introduction, Nucleus, Introduction to cosmic rays, Introduction to X- rays and Its applications, Introduction to Nano-technology and Nano-materials, Its properties and application,Introduction and Applications of Plasma Physics, Superconducting material

5

6

Semiconductors and Diode Theory Conductors, Semiconductors, silicon crystals, intrinsic semiconductors, doping, types of semiconductors, biasing, Breakdown, energy levels and hill, barrier potential, biasing of diode, diode approximations, trouble shooting, up down circuit Analysis, reading a data sheet, resistances of diode

10

7

Diode Circuits Half wave rectifier, transformer, full wave rectifier, bridge rectifier, choke input filter, capacitor input filter, Peak inverse voltage and surge, other power supply topics, trouble shooting, clippers and limiters, Clampers, voltage multipliers

9

8

Bipolar Transistors Transistor construction, transistor operation, unbiased transistor, biased transistor, transistor currents, CE configuration, base curve and collector curves, transistor approximation, reading data sheets, Trouble shooting, transistor testing

5

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Tu Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

04 00 00 04 04 00 04 30 70 03 100 00 100

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2/2

Total 48

Reference Books: (1) Modern Engineering Physics by A.S.Vasudeva Pub: S. Chand (2) Fundamentals of Physics by Halliday, Resnik, Walker Pub: Willey (3) A Text book of Engineering Physics by M.N. Avadhanuly, P.G.Kshirsagar Pub: S.Chand (4) Modern Physics by G. Aruldhas, P.Rajagopal Pub: PHI Pub. (5) University Physics by Harris Benson Pub: Willey Pub. (6) Electronics Principles by A.P. Malvino (TMG) (7)Modern Physics by G. Aruldhas & P. Rajagopal (PHI)

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GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2CI 101: Elements of Civil Engineering

Unit No.

Topics

Lectures (Hours)

1 Introduction : Impact of Infrastructural Development on the Economy of a Country, Role of Civil Engineers, Importance of Planning, Scheduling and Construction management.

02

2 Water Resources and Hydraulics: Importance of Hydrology, Classification of Water resources & Requirement of water for various uses, Water Management Strategies, Water Resources Development in India. Introduction of Dams, Introduction of water supply and Drainage System

08

3 Surveying: Chain Survey: Linear measurements, Errors in chaining, problems on obstacle Directions and Bearings: Types of Bearings and Meridians, Whole Circle Bearing and Quarter Circle Bearings, Compunctions of Angles from bearings and bearings from angle, Magnetic Declination, Local Attraction, Various Problems Elevation Measurements: Introduction of Level Machine, Methods of leveling, Recording and Reducing of levels, Contour Survey. Area and volume: measurement by Planimeter Modern Tools of Surveying and Mapping: Introduction to Theodolite, Electronic Distance Measurement Instruments, Total Station, Global Positioning System, Remote Sensing and Geographic Information System

16

4 Construction Materials: Introduction, Masonry Materials: Stones, Bricks, Blocks, Tiles; Binding Materials: Lime & Cement; Aggregates, Mortar & Concrete, Timber, Specification of all Building Materials as per IS Standards, Method of Drawing Plan, Elevation and Section of Building

12

5 Transportation Engineering: Role of Transportation in National development, Transportation Ways, Surface Transportation and Aviation, Elements of Highway materials properties and highway Construction, BOT Projects for Highways, Elements of Traffic Engineering and Traffic Control

08

Total 48

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Tu Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

04 00 02 06 04 01 05 30 70 03 100 25 125

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Reference Books:

1. Hydrology and Water Resources Engineering- By Santosh Kumar Garg

2. Building Construction – By B. C. Punmia ,Laxmi Pub.House

3. Surveying – I By B. C. Punmia ,Laxmi Pub.House

4. Materials of Construction By D. N. Ghose

5. Highway Engineering - Khanna S.K and Justo C.E.G.,Khanna Publishers , Delhi

6. Element of civil & mechanical Enginnering, -Prof.P.S.Desai.& G.P.Vadodariya,Atul

Prakash

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1/2

GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2ME 102: Engineering Graphics

Unit No.

Topics

Lectures (Hours)

1 Introduction: Importance of Engineering Drawing, Engineering Drawing Instruments and uses, B.I.S and I.S.O. Conventions for drawings, Use of plane scales and Representative Fraction

01

2 Loci of Point: Path of the points moving on simple arrangements and simple Mechanism, Slider Crank Mechanism, Four bar Chain Mechanism etc.

03

3 Engineering Curves: Classification of Engineering Curves, Construction of Conics curves with different methods, Construction of Cycloidal Curves, Involute and Spiral.

04

4

Projection of Points and Straight Lines: Introduction to principal planes of projections, Notation System- Points in First, Second, Third and Fourth quadrants, Projections of line Parallel to Two and Perpendicular to one of the principal planes, Line parallel to one and inclined to two principal planes, Line inclined to all the three principal planes, True length of the line and its inclination with the reference planes.

06

5 Projection of Planes: Concept of different planes, Projections of planes with its inclination to one principal plane and with two principal planes. Concept of auxiliary plane method for projections of the plane.

04

6

Projection of Solids and Sections of Solids: Classifications of Solids, Projections of right and regular solids with their axis Parallel to Two and Perpendicular to one of the principal planes, axis parallel to one and inclined to two principal planes, axis inclined to all the three principal planes. Section of such a solids and the true shape of the section.

06

7 Development of surfaces: Methods of development of lateral surface of right solids, Parallel line development, Radial line development.

04

8 Interpenetration of Solid: Interpenetration of Right Regular Solids – Intersection of Cylinder Vs Cylinder, Cylinder Vs Prism, Cylinder Vs Cone.

04

9

Orthographic Projections & Sectional Orthographic Projections: Principle of projection, Principal planes of projection, Projections from the pictorial view of the object on the principal planes for View from Front, View from Top and View from Side using first angle projection method and third angle projection method, Full Sectional View.

08

10 Isometric Projections and Isometric View or Drawing: Isometric Scale, Conversion of orthographic views into isometric projection, isometric view or drawing.

06

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Tu Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

04 02 00 06 04 01 05 30 70 03 100 25 125

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11 Fastening and Connecting Methods: Screw threads, Bolts, Nut, Stud, locking devices, Riveted joint, Coupling, Foundation bolts, 02

Total 48

Term Work. Based on above syllabus, each candidate shall submit a set of the following graphics sheets and sketch book certified by the principal of the college that they have been executed in a satisfactory manner in the graphics halls of the college. Text Books: 1. A Text Book of Engineering Graphics By P.J.Shah S.Chand & Company Ltd., New Delhi 2. A Text Book of Machine Drawing By P.J.Shah S.Chand & Company Ltd., New Delhi 3. Elementary Engineering Drawing By N.D.Bhatt Charotar Publishing House, Anand Reference Books: 1. Engineering Graphics – I and II By Arunoday Kumar Tech – Max Publication, Pune 2. Engineering Drawing & Graphics using Auto CAD 2000 By T. Jeyapoovan Vikas Publishing House Pvt. Ltd., New Delhi 3. A text book of Engineering Drawing By R.K.Dhawan S.Chand & Company Ltd., New Delhi 4. A text book of Engineering Drawing By P.S.Gill S.K.Kataria & sons, Delhi 5. Engineering Drawing with an Introduction to AutoCAD By D.A.Jolhe Tata McGraw-Hill Publishing Co. Ltd., New Delhi 6. Computer Aided Engineering Drawing, S. Trymbaka Murthy I.K.International Publishing House Pvt. Ltd., New Delhi 7. Engineering Drawing and Graphics, Venugopal

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1/2

GANPAT UNIVERSITY

B.Tech I/II (CE/IT/EC/BM & I/MC/ME/C)

2CE 101: Computer Programming

Unit No.

Topics

Lectures (Hours)

01

Introduction to Programming & C Introduction to programming and programming language, Problem Solving Methods: Algorithms and Flowcharts, Introduction to C, Basic structure of C programs, Sample C programs, Process of compiling and running a C Program

2

02

Constants, Variables and data Types: Character Set, C tokens, Keywords and Identifiers, Constants, Variables, Data types, Declaration of Variables, Assigning values to variables, typedef, Defining symbolic constants. Printf & scanf function.

3

03

Operators and Expression: Introduction, Arithmetic Operators, Relational Operators, Logical Operators, Assignment Operators, Increment and Decrement Operators, Conditional Operators, Special Operators, Evaluation of expressions, Precedence of arithmetic operators, Type conversions in expressions, Operator precedence and associativity.

4

04 Management Input and Output Operators: Introduction, reading a character, writing a character, formatted input, formatted output.

2

05

Decision Making branching: Introduction, Decision making with IF statement, the IF.. ELSE statement, nesting of IF … ELSE statements, The ELSE IF ladder, The switch statement, and the turnery (?:) Operator, the GOTO statement

4

06 Decision Making Looping: Introduction, the WHILE statement, the DO statement, FOR statement, Break and Continue.

4

07 Array: Introduction, One-dimensional, arrays, Two-dimensional arrays, arrays, Concept of Multidimensional arrays.

4

08

Handling of Character strings: Introduction, Declaring and initializing string variables, Reading string from terminal, Writing string to screen, String, atoi(), Operations: String Copy, String Compare, String Concatenation And String Length(using predefined functions & without using them), Table of strings.

4

09

User-Defined Functions: Introduction, Need for user-defined functions, The form of C function, elements of UDf, Return values and their types, Calling a function, category of functions, Nesting of functions.

5

Teaching Scheme Credit Examination Scheme

Theory Practical Grand Total

Sem. End Pract./ TW Assessment Lect.

(Hrs.) Tu Pract. (Hrs.)

Total (Hrs.) Theory Pr/TW Total Int.

Asses. Marks Hrs. Total

02 00 04 06 02 02 04 30 70 03 100 25 125

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2/2

10

Structures and Unions: Introduction, Structure definition, declaring and initializing Structure variables ,accessing Structure members, Copying & Comparison of structures, Arrays of structures, Arrays within structures, Structures within Structures, Structures and functions, Unions.

5

11 User –Defined Functions –II Recursion , Functions with arrays, The scope and Lifetime of variables in functions, multifile program.

2

12

Pointers: Introduction, Understanding pointers, Accessing the address of variable, Declaring and initializing pointers, Accessing a variable through its pointer, chain of Pointers, Pointer expressions, Pointer increments and scale factor, Pointers and arrays, Pointers & character strings, Pointers & Functions, Function returning multiple values(9.14),Pointers and structures.

6

4 File Management in C: Introduction, Defining files and its Operations, Error handling during I/O operations, Random access files, Command line arguments.

3

Total 48 Reference Books: (1) Programming in ANSI-C By E. Balaguruswami, TMH Publication (2) Let us C By Yashwant Kanetkar, BPB Publication (3) C Programming language By Kernighan, Brian, W, Retchie, Dennis PHI Publication

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1/3

GANPAT UNIVERSITY B.Tech FIRST YEAR (CE/IT/EC/BM & I/MC/ME/C)

2ME 103: WorkShop Practice

Objectives: To make the students familiar with various operations and processes like joining, machining and use of different tools of common use. This will develop various hand skills and impart working knowledge of various Machines, devices, tools, instruments etc. and safe practices, and to make them familiar with different machines of common use and domestic appliances. (A) MECHANICAL UNIT-1 INSTRUCTION AND DEMONSTRATION

Instruction should be given for each of following shops which include importance of the shop in engineering, new materials available, use of each tool / equipment, methods of processing any special machines, power required etc.

UNIT-2 Carpentry Shop: Study of tools & operations and carpentry joints, Simple exercise using jack plane, Simple exercise on woodworking lathe.

UNIT-3 Fitting Shop:

Study of tools & operations, Simple exercises involving fitting work, Make perfect male-female joint, Simple exercises involving drilling/tapping/dieing.

UNIT-4 Smithy Shop:

Study of tools & operations, Simple exercises base on smithy operations such as upsetting, drawing down, punching, bending, fullering & swaging.

UNIT-5 Plumbing Shop:

Study of Tools and Operations, Simple exercises of piping. UNIT-6 Welding Shop:

Study of tools & operations of Gas welding & Arc welding, Simple butt and Lap welded joints, Oxy-acetylene flame cutting.

UNIT-7 Sheet-metal Shop:

Study of tools & operations, making sheet metal component using ‘soldering’. Ex: Funnel, tool-box, tray, electric panel box etc.

UNIT-8 Machine Shop:

Study of machine tools and operations, Demonstrations of basic machine tools like Lathe,

Teaching Scheme (Hrs.) Credit Examination Scheme

Theory Practical Grand Total L

(Hrs) T

(Hrs) P

(Hrs) Total (Hrs) Theory Pr/TW Total Int.

Asses. Sem. End

Total Practical/oral Assessment Marks Hrs

00 00 04 04 00 02 02 0 0 0 0 50 50

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Shaper, drilling machine with basic operations etc. UNIT-9 Foundry Shop:

Study of tools & operations like Pattern making, Mould making with the use of a core. Various Casting processes.

(B) ELECTRICAL/ ELECTRONICS. UNIT- 1. Identification of electrical and electronics components.

Resistors, Capacitors, Inductors, Diodes, Transistors, Thyristors UNIT- 2. Soldering.

Different electrical and electronics components on PCB UNIT- 3. Domestic and Industrial Electrical wiring.

Types of wiring, domestic wiring installation, sub circuits in domestic wiring, simple control circuit in domestic installation, industrial electrification.

UNIT- 4. Fault finding of following domestic devices.

1. Mixer Grinder 2. Washing Machine 3. Domestic Floor Mill 4. Electric Iron 5. Oven Toaster Griller 6. Geyser

UNIT- 5. Earthing.

Measurement of Earth resistance, Earthing methods and insulation resistance measurement by Meager.

UNIT- 6. ICs and Data Sheet.

Identification of ICs and data sheet reading. UNIT- 7. Operation of Passive Devices

a. Relays. b. Optoectronic devices. c. Switches. d. Conductors.

UNIT- 8. Bell Circuits and Indicators

Types of bell, Alarm circuits without relay, Types of diagram, The use of relay in alarming circuits, Bell circuits using supplies, T.D.R. (Time Delay Relay) circuits, Use of indicators in various circuits.

UNIT- 9. Electrical Energy meter

1Φ & 3Φ Energy meter, Energy calculation

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3/3

Term Work Term Work will be based on above syllabus. Students will be given creative mini project under fun module. Reference Books:

1. Elements of Mechanical Engineering by Hajra Chaudhary 2. Elements of Mechanical Engineering by Mathur & Mehta 3. Work shop technology by Hajra Chaudhary 4. Work shop technology by Chapmen 5. Electronics principle by A. Malvino 6. Electrical wiring, estimating and costing by S.L.Uppal, Khanna Publication.

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME301 - ENGINEERING ECONOMICS & INDUSTRIAL ORGANISATION

1. Nature and scope of economics; its relation with other sciences, Micro and

Macro economics, national income, Gross Domestic Product, Per Capita Income

2. Value, Price, Wealth, Wants; origin of Wants, characteristics of Wants, classification of Wants, Capital,

Money, income and sources of income, Margin, Utility, Marginal Utility, total Utility, law of diminishing

Utility.

3. Market Demand, law of Demand, factors affecting Demand, elasticity of Demand, demand forecasting,

theory of supply, the law of substitution, equilibrium and price determination, monopoly, pure

competition and monopolistic competition.

4. International Trade; balance of payment, customs duty, World trade organization, free trade.

5. Rent, Profit, Banks and Banking , types of Banks, Commercial Banks, the State bank of India, Exchange

banks, Central Banks, the Reserved bank of India, Stock Exchange, Income tax, Foreign exchange

6. Organization and Organizational structure; Bureaucratic approach, principle of organization, span of

management and level of authority, line staff relations, line and staff concept and role, types of line and

staff relationships,

7. Delegation , base of Delegation, process of Delegation, nature of Delegation of authority, objective and

advantages of Delegation, principles and obstacles to effective Delegation, Decentralization, principle of

Decentralization, advantages of Decentralization.

8. Motivation, needs, theories of Motivation, the Need Hierachy theory, two factor theory, comparison of

Maslow’s Herzberg's theory, achievement Motivation theory, Path-Goal theory, Models of motivation,

money and Motivation Definition of Morale, Morale and productivity, building morale, measuring

morale.

9. Concept and nature of Coordination need of Coordination, types of Coordination, methods of

Coordination.

10. Meaning of leadership, the principal tasks of leadership, approach to leadership.

11. Plant location: - Introduction, factors governing plant location, merit and demerit of urban, sub urban

and ruler area, quantitative method for evolution of plant location.

Plant layout: - Introduction, objective and principle, types of layout, work

Station, factory building.

12. Cost and depreciation: - Introduction, element of cost, overhead, component of the cost, break even

analysis, depreciation.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 00 03 03 00 03 30 70 03 100 00 100

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Reference Books:

Organization and Management By R.D. Agrwal

Industrial Engineering and Operations Management By S.K. Sharma and Savita sharme

Industrial Engineering and Management By O.P. Khanna

Principles of economics By Prof. B.M. Muley and Prof Anjali Gokhru

Economics By Samuelson Nordhaus

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME302- Strength of Material

1. Bending Stresses in Beams Introduction, simple bending, theory of simple bending, moment of resistance, modulus of section, beam of

uniform section, composite section.

2. Shearing Stresses in Beams

Introduction, shear stress distribution for beam of rectangular, circular, triangle and I- section.

3. Principal Stresses and strains Principal planes, principle stresses, Analytical method for principal stress, Mohr's circle of stress and strain,

Theories of failure.

4. Deflection of beams Strain curvature and moment, curvature relations, differential equations for deflection of elastics beams,

different methods for determining slope and deflections.

5. Columns and struts Short column subjected axial forces and bending moments, engineering problems, long columns, stability and

equilibrium, ranking formula, Indian standard formula, criteria for design of columns.

6. Structured connections Riveted and welded connections, methods of failure of connections, eccentric riveted and welded connections,

design requirements.

7. Torsion:

Basic assumption, Torsion formula, Design of circular sections, Angle of twist, Shearing stress, Deformation,

Closed coiled helical springs, Helical Springs, power transmitted by shaft, keys & coupling

8. Thick and thin cylinder

Introduction, Thin cylinder and thin spherical vessels under pressure, Applications of thin cylinder, Hoop and

radial Stresses in cylinders, longitudinal stresses in thick cylinder, Application of thick cylinder, Max

circumferential and Radial stresses in thick cylinders

9. Direct and bending stresses

Members subjected to eccentric loads, middle third rule, and kernel of section, chimney subjected to wind

pressure, retaining walls and dams subjected to hydraulic pressure.

Practical work: -

The practical work shall be based on experimental and analytical work on the topics mentioned above and will

be defended by the candidates.

REFERENCE BOOKS : 1. Mechanics of structure vol I - By S. B. Junnarkar and H.J. Shah

Charotar publishing house, Anand

2. Strength of materials - By S. Ramamrutham

Dhanpat rai & Sons.

3. Strength of materials - By R. S. Khurmi

S. Chand & Co. New Delhi.

4. Strength of materials - By M. Chakraborti

S. K. Kataria & Sons.

5. Strength of materials - By Timo Shenko

CBS Publisher, New Delhi.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

04 00 02 06 04 01 05 30 70 03 100 50 150

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME303 - Electrical Technology

Unit

No.

Topics

Lectures

(Hours)

1

DC Machines:

Principle of operation, types, construction, winding, EMF equation, characteristics of

dc generators, dc motor operation and types, back EMF, torque, characteristics of

motor, speed control of series and shunt motors, dc shunt motor starter.

07

2

Transformer: Principle of operation, construction, types, EMF equation, voltage and current

transformation ratio, transformer on no load and on load, phasor diagram, equivalent

circuit, losses and efficiency, regulation, testing, auto transformer, CT & PT, Three

phase transformer.

08

3

Induction Motor: Working principle, types, construction, Torque equation, Torque / slip characteristics,

power flow, losses and efficiency, starting of induction motor, Single phase

induction motor principle, types and construction, stepper motor.

09

4

Synchronous Machines: Basic operating principle, construction, EMF equation, winding factor, armature

reaction, synchronous impedance and equivalent circuit, synchronous motor

operation, phasor diagram, starting, synchronous condenser.

10

5

Electrical Power:

Concept of power generation, transmission and distribution of electric power,

Equipment used in power system protection. 05

6

Heating and Welding :

Advantage and methods of electric heating , Resistance heating- resistance

oven , control equipments , radiant and slot bath heating, Induction heating , arc

furnaces, Electric welding , Resistance welding , Arc welding , Welding

transformer.

05

7

Drives: Introduction, merits and demerits of electrical drives, Factors affecting selection of

electrical drives, classification, DC Machine drives, AC Machine drives. 04

Total 48

REFERENCE BOOKS :

(i) Electrical Technology – Vol – II - BY B. L. Theraja

(ii) Theory & Performance of Electrical Machines – BY J. B. Gupta

(iii) Electrical Drives- concept and application by Vedam Subramanyam

(iv) Utilization of Electric Power & Electric Traction – J. B. Gupta

(v) Electrical Power by S. L. Uppal.

(vi) Electrical power system by V .K .Mehta

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

04 00 02 06 04 01 05 30 70 03 100 50 150

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME304 - Kinematics of Machines

1. Links & Mechanisms: -

Introduction to mechanisms, definition, kinematics links, type of links, kinematics pairs, machine & structure,

type of constrained motions, kinematics chain, type of joints in a chains, mechanisms, degree of freedoms,

kutzbach & grumbler’s criteria, single slider crank mechanisms, double slider crank mechanisms, four bar chin

mechanisms, inversions.

Introduction to lower pair mechanisms, pantograph, straight line mechanisms, exact straight line motion

mechanisms made up of turning pairs (peaucellier, hart’s), Oldham’s coupling, Scott Russell’s mechanisms,

approximate straight line motion mechanisms (watts, grasshopper, Roberts), steering gear mechanisms, Davis

steering gear mechanisms, Ackerman steering gear mechanisms, Geneva Mechanism.

2. Kinematic analysis of mechanisms: -

Introduction, motion of link, rectilinear and rotational motion in a plane, compound pendulum, equivalent

dynamic system, velocity & acceleration in machine parts, instantaneous center, Number of I centers, Arnold

Kennedy theorem, centroid velocity and acceleration diagrams for mechanisms (vector and graphical approach).

3. Friction: -

Type of friction, inclined plane, condition for maximum efficiency, uniform pressure of uniform wear, friction

circle, friction axis, friction of pivot & collar bearings, belt & rope drive effect of centrifugal stress on power

transmitted, slip & creep effect, jockey pulleys.

4. Brakes & Dynamometer: -

Type of brakes, shoe brakes, band brake, band & block brakes, internal expanding shoe brake, effect of braking,

braking of vehicle, type of dynamometers, prony brake, rope brake, belt transmission, bevies Gibson torsion

dynamometer, hydraulic dynamometer.

5. Cams: -

Introduction, type of cams, type of followers, motion of the followers, displacement, velocity & acceleration of

cam, construction of cam profile with knife edge, roller and flat faced reciprocating & oscillating followers.

6. Gear Train: -

Simple, compound, reverted and epicycles gear train analysis of epicycles, sun & planet gear, torques in

epicycles trains, bevel epicycles gear, differential gear box.

Practical work: -

The practical work shall be based on experimental and analytical work on the topics mentioned above and will

be defended by the candidates.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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REFERENCE BOOKS:

1. Theory of machines - by S.S. Ratan

2. Mechanisms & Machine Theory - by S.S. Rao, R,K. Dukkipatti

3. Theory of Machine - by V.P. Singh

4. Theory of Machine - by Sadhu Singh.

5. Theory of Machine - by Belani

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME305- Engineering Thermodynamics

1. Introduction

Macroscopic & Microscopic viewpoint, Thermodynamic system & control volume, Thermodynamic properties,

Processes & cycle, Homogenous& Heterogenous Systems, Thermodynamic Equilibrium, Quasistatic Processes,

Zeroth Law of Thermodynamics

2. First Law of Thermodynamics

Closed System (Non Flow Process), Open System (Flow System), Control volume., application of first law of

thermodynamics.

3. Second law of thermodynamics

Kelvin plank and Clausius statement, corollary of second law, application of second law, reversibility and

irreversibility.

4. Entropy.

Entropy, T-S plot, Clausius in equality, entropy transfer with heat transfer, entropy generation in close and open

system, entropy and direction, entropy and disorder.

5. Availability

Available energy, quality of energy, dead state, second law, irreversibility, exergy balance

6.Properties of pure substances

P-V, T-S and P-T Diagram, h-s diagram

7. Gas mixture

Equation of state, properties of mixture of gas, entropy of gas mixture, law of corresponding states

8. Thermodynamic relations, equilibrium and stability

Maxwell equation, difference and ratio of heat capacity, energy equation, Joule Kelvin effect, Clausius

Clapeyron equation.

9. Vapour power cycles

Rankine cycle, modified rankine cycle, comparison of Rankine and Carnot, binary vapor cycle.

10. Gas power cycles

Carnot cycle, Stirling cycle, Ericson cycle, Otto cycle, Diesel cycle, Dual cycle, Lenoir cycle, Atkinson cycle,

Brayton cycle, Brayton-Rankine combined cycle

REFERENCES BOOK :

1) Thermal Engineering P.L.Ballany

2) Thermodynamics P.K.Nag

3) Thermodynamics & R.Yadav

Heat Engine Vol.I, II

4) Thermodynamics Cengel.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 00 03 03 00 03 30 70 03 100 00 100

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. III (Mechanical Engineering)

2ME306- Fluid Mechanics

1. Properties of fluid:

Introduction: Fluid, liquids and gases, physical properties such as density, specific weight, viscosity,

compressibility, capillarity, surface tension, vapor pressure, cavitations & its all effects and remedies, Thoma’s

cavitations factor.

2. Fluid Statics :

Pressure at a point, center of pressure, pressure measurement, with manometers, buoyant force, meta center &

meta centric height – analytical and experimental determination.

3. Kinematics of fluid flow :

Steam line path line, streak line, stream tube, classification of flow steady and unsteady uniform and non-

uniform.

One type and three dimensional flow definition, Laminar & Turbulent flow, Reynold’s number and critical

velocity.

Continuity equation for three dimensional flow in Cartesian co-ordinates, Euler’s equation and its application,

Bernoulli’s equation and its application, venturimeter, pilot tube, generalized energy equation.

4. Viscous flow :

Flow between two parallel fixed plates, Counter flow, viscous flow through pipes, Hagen – Poisuli’s equation,

friction factor, moody diagram, Darcy weight back equation stockes law, measurement of viscosity, viscosity

index, petrof’s equation for journal bearings, power lost in over – coming friction, water hammer & its effects

and remedies, surge tanks.

5. Turbulent Flow:

Introduction, Reynolds Experiment, Frictional loss in pipe flow, expression for loss of head due to friction in

pipes, co-efficient of friction, shear stress in turbulent flow, Reynold expression for turbulent shear stress,

velocity distribution in turbulent flow in pipes,

6. Compressible Fluid Flow :

Thermodynamic concept, speed of a sound wave, Mach number, Mach cone, Mach cone and Mach angle, flow

with friction through pipes, adiabatic and isothermal flow, jet propulsion flow through variable area, flow

through nozzle, Back pressure variation.

7. Dimensional analysis :

Fundamental dimension, dimensional homogeneity, Rayleigh’s method and Buckingham’s theorem for

dimensional analysis, dimensionless force ratios, Hydraulic similitude model testing.

8. Flow Measurement :

Measurement of flow with venturimeter, orifice plate, notch, nozzles, bendmeter, flowmeter and rotameter.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

04 00 02 06 04 01 05 30 70 03 100 50 150

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Practical work: -

The practical work shall be based on experimental and analytical work on the topics mentioned above

and will be defended by the candidates.

REFERENCE BOOKS :

1. Fluid Mechanics – (R.K. BANSAL)

2. Fluid Mechanics – (K. R. ARORA)

3. Fluid Mech. & Fluid Power Engg. (D.S. Kumar)

4. Fluid Mechanics – by K.L. Kumar

5. Mech. Measurements – by R.K. Jain

6. Fluid Mechanics – by A.K. Jain

7. Fluid Mechanics – by R.S. Khurmi

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2HS401- Engineering Mathematics – III

1. Theory of complex variables:

Analytic functions, Cauchy – Rieman equation, harmonic functions, line integral, Cauchy’s theorem and

Cauchy’s integral, Simple form of conform transformation with application of the solution of two

dimensional problems.

2. Ordinary differential equation (higher order) :

Ordinary differential equation with constant coefficient, variation of parameter methods, Cauchy – Euler

differential equations, simultaneous differential equations with constant coefficient, applications of ordinary

differential equation.

3. PARTIAL DIFFERENTIAL EQUATIONS:

Formation of partial differential equations, Lagranges first order partial differential equations, directly

integrable equations, method of separable of variables, application to wave equations, diffusion equation

and Laplace equation.

4. LAPLACE TRANSFORMS:

Definition, Laplace transform of elementary functions, properties of Laplace transform, inverse Laplace

transform, transform of derivatives, transform of intergration, multiplication by tn , division by t,

convolution theorem, unit step and heaviside’s unit function, direct-delta function, periodic functions,

solution of ordinary linear differential equations, simultaneous equation with constant co-efficient applied to

electrical circuits.

5. FOURIER SERIES:

Definition of periodic function, Euler’s formula, functions having points of discontinuity, change of

intervals, odd and even functions, expansion of odd or even periodic functions, half range sine and cosine

series, elements of harmonic analysis.

6. FOURIER TRANSFORMS:

Definition, Fourier integral, Fourier sine and cosine intergration, complex form of Fourier integral, Fourier

transform, Fourier transforms, Fourier sine and cosine transform, inverse Fourier transforms.

7. STATISTICS:

Probability, Total probability, Independent events, theorem of compound probability, Bay’s theorem, random

variable, discrete probability distribution, continuous probability distribution, expectation, moment

generating function, repeated trials, Binominal, Poisson’s and normal distribution applications, calculation

of error, probable error, standard error.

REFERENCE BOOKS:

1. APPLIED MATHEMATICS VOL. I & II BY P.N. WARTIKAR & J.N. WARTIKAR

2. HIGH ENGINEERING MATHEMATICS BY B.S. GREWAL

3. ENGINEERING MATHEMATICS BY SHRIVASTVA

4. TEXT BOOK OF ENGINEERING MATHEMATICS BY A.B. MATHUR & V.P. JAGGI

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

04 00 00 04 04 00 04 30 70 03 100 00 100

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2ME402- FUNDAMENTALS OF MACHINE DESIGN & DRAFTING

PART A. MACHINE DESIGN:

1. Introduction to machine design:

Meaning of Design, Mechanical Engineering design, Introduction to machine design,Phases in design,

Requisites of design engineer, Preferred Numbers & Standards, Codes for materials Properties & application of

engineering materials and their selection.

2. Design considerations:

Direct stresses (Tensile and Compressive), stress-strain diagram, Bending stresses, Bearing stresses, Torsional

stresses, Eccentric loading, Principal stresses, Contact stresses, Castigliano’s theory for determining deflections.

Factor of safety and factor influencing it, Theories of failures.

3. Design of cotter and Knuckle joint:

Design of simple cotter joint, Sleeve and Cotter joint, Cotter foundation bolt, Gib and cotter joint, Design of

knuckle joint, turn Buckle.

4. Design of Shaft, Keys & Couplings:

Design of shaft & axles on basis of bending, torsion & combined loading, Shaft design on the basis of rigidity,

Effect of keyways, Design of Square key, Rectangular key, Kennedy key, Splines, Flexible Shaft, Design of

Muff or Sleeve coupling, Clamp coupling, Flange coupling, Pin-bushed coupling, Universal Joint.

5. Design of bolt and riveted joints:

Riveted joints: Types of riveted joints, Design of double and triple riveted butt joint with equal and unequal

cover plates, Design of riveted joint as per IBR, Design of lap joint, Lozenge joint

Bolted joints: Definitions, Types of threads, screw fastenings, locking devices for nuts, washers, eye bolts,

Efficiency of threads, Static stresses in screw fastenings

Eccentric loading in riveted and bolted joints: a) Loading parallel to axis of bolts b) Loading perpendicular to

axis of bolts c) Eccentric loading on circular base

6. Design of springs:

Types of springs, Terminology related to springs, Types of end in helical springs, Design of helical spring,

Wahl’s factor, Spring in combination: parallel and series, Concentric spring, Design of leaf spring, Torsion

Spring.

7. Design of levers: Types of levers, Design of hand lever, Design of foot lever, Design of cranked lever, Design of lever of a safety

valve, Design of bell-crank lever, Design of rocker-arm lever.

8. Struts and columns:

Design of connecting rod, Design of push rod, Design of piston rod

9. Power Screw:

Types of threads, design of screw with different types of threads used in practice, design of nuts, design of C

clamp, screw jack, design of toggle jack, design of coupler.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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PART B and PART C are to be dealt in laboratory.

1. INDUSTRIAL DRAFTING :

Assembly Drawing, Standard drawing, Machine shop drawing, Pattern shop, Sheet metal drawing.

2. Production Drawing :

Element of production drawing, Information on Drawing, Tolerances, Manufacturing methods.

3. Limits, Tolerances and Fits :

Indicating geometrical tolerances on the drawing, Standard followed in industry.

Surface Roughness :

Roughness and machining symbols, Indication on drawings.

PART C. DRAFTING AND MODELING PACKAGE

1.Introduction to Computer Aided Drawing :

Objectives, introduction to drawing using CAD, Advantages of using CAD. 2 & 3 dimensional modelling,

application of CAD.

2.Overview of solid modeling :

Introduction, development, systems requirements, drawing by drafting package.

3. Basics of solid modeling:

Introduction of Main Menu, Starting new drawing, drawing editor, entering commands using mouse, pull down

menus, screen menu, getting help from drafting package, data entry, error correcting.

4.Working with solid modeling package:

Settings Limits, drawing lines, using zoom, erasing lines, drawing lines, saving the work.

5. Drawing, Editing, Viewing, dimension and text commands Plotting the Drawing

Basics of Feature based, solid modeling, parametric modeling package. Extruding, Revolving, Sweeping using

modeling package.

PRACTICAL WORK :

Part A MACHINE DESIGN :

1. Design of machine elements and preparation of report:

a) Design of screw, nut and other parts

b) Design of leavers

c) Design of couplings

d) Design of spring

e) Design of riveted joint

f) Design of shaft

g) Design of column

h) design consideration

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Part B INDUSTRIAL DRAFTING

2. Design & Assembly & detailed drawing of :

a) Cotter / Knuckle joint/Connecting Rod (one sheet)

b) Coupling (one sheet)

The design calculations be included in Part A above. At least one drawing should be production drawing out

of above. Drawing should be on A2 size ( both details and assembly.)

Preparation of assembly and detail drawings of Machine components (production drawing)

PART C Drafting and modeling package :

Preparation of assembly & detail drawings of machine components, assembly using drafting package.

NOTE : Part B/Part C be taught in laboratory & be tested only in oral examination

as under.

REFERENCE BOOKS :

(1) Machine Design, vol-1 - by Haideri

(2) Machine Design - by V.B.Bhandr

(3) Machine Design - by Pandya & Shah (1994 Edition)

(4) Machine Design - by Sharma & Agrawal (6th Edit ion, 1997)

(5) Mechanical engineering design - by J.E. Shigley

(6) Machine Design - by R.B. Gupta

(7) Machine Design Vol.-I - by R.C. Patel

(8) Machine Design - by Sharma and purohit

(9) Machine Design - by R.K. Jain

(10) Machine Design – by R.B. Patil

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2ME403 - Industrial Electronics

1. Thyristor and their application :

Introduction, thyristor characteristic, two transistor model of thyristro, thyristor turn on/off, di/dt protection,

dv/dt protection, thyristor types, series and paralle operation of thyristor, thyristor firing circuits, unijunction

transistor, pulse transformer and power MOSFET, introduction of temperature control, illumination control,

light activated turn-off circuit using DIAC-TRIAC and LDR, automatic water level indicator using SCR, flip-

flop circuit using SCR.

2. Inverter and Choppers

Principle, types, basic circuits, chopper, types, basic circuit, advantage and application.

3. Solid state controls of a.c and d.c motors

Introduction, speed controller of d.c and a.c. single and three phase motor, speed control of synchrony and

universe motor, overload protection, over voltage protection of d.c. motor

4. Basic of Converter

Diode with RC and RL loads, Diodes with LC and RLC loads, freewheeling diodes, single phase half wave and

full wave rectifier, single phase full wave rectifier with RL load, three phase bridge rectifier, three phase bridge

rectifier with RL load, overview of cycloconverter

5. Variable Frequency Drive

Principle, components characteristic, limits of control, advantages, application

6. A.C. & D.C. drive

Performance characteristic, stator voltage control, rotor voltage control, frequency control, voltage and

frequency control

7. Overview of microprocessor and micro controller

Fundamental concept, block diagram, overview of working and interfacing, programming

8. PLC

Architecture, programming, benefits, application, Introduction to skada.

Practical work: -

The practical work shall be based on experimental and analytical work on the topics mentioned above and will

be defended by the candidates.

REFERENCE BOOKS :

(1) Power Electronics – by Muhammad H.Rashid(PHI)

(2)Industrial Electronics and Control – by S.K.Bhattacharya, S.Chatterjee

(3) Industrial Electronics – by G.K.Mittal(Khanna)

(4) Microprocessor architecture programming and application with 8085

by Ramesh S.Gonkar

(5) Microcontroller 8051 – by Keneth J.Ayla

(6) Introduction to programable logic controller – by Gary Dunning

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2ME404- DYNAMICS OF MACHINES

1. Linkages: -

Hook joint, double Hook joint, Oldham’s coupling, intermittent motion mechanism, fluid coupling.

2. Static force analysis in Machine: -

Basic concept of equilibrium, free body diagram, equilibrium of two force & three force member, Member with

two forces & a torque, superposition, principle of virtual work.

3. Dynamics of Rigid body: -

D.A’ Lamberts principle, equivalent offset inertia force, dynamic analysis of four links mechanisms, dynamic

analysis of slider crank mechanisms velocity & acceleration of piston, inertia force in reciprocating engines

(Klein’s construction), gyroscopic action, gyroscopic stabilization of ship and vehicle including aeroplane.

4. Control force analysis: -

Type of governor, watt governor, porter, Proell, Hartnell governor, spring controlled gravity governor, inertia

governor, characteristics of governor - sensitiveness, hunting, isochronisms, stability, insensitiveness effort of a

governor, power of governor, controlling force of a governor.

5. Theory of Gear: -

Introduction, Law of gearing, Sliding velocity, Types of tooth profiles, length of path of contact, length of arc of

contact, contact ratio, interference, min. number of teeth required to avoid interference in gear and pinion,

geometry of helical, bevel worm gears.

6. Introduction to Synthesis of Mechanisms: -

Introduction of Synthesis and analysis, Types of synthesis, synthesis of a four bar chain, Freudenstein equation

for four bar mechanism, precision point for function generator (chebychev spacing method), Bloch method.

Practical work: -

The practical work shall be based on experimental and analytical work on the topics mentioned above and will

be defended by the candidates.

Reference Book: -

1. Theory of machine – By S.S. Ratan

2. Theory of machine – By V.P. Singh

3. Theory of machine – By J.S. Rao & R.V. Dukkipati

4. Theory of machine – By Sadhu Singh

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2ME405 - NUMERICAL METHODS & COMPUTER PROGRAMMING

NUMERICAL ANALISYS

1. Solving nonlinear equations

Interval Halving Revisited, Linear Interpolation Method, Newton’s Method, Muller’s Method, Newton’s

Method for polynomials, Bairstow’s method for quadratic factors

2. Solving Sets of equations

Matrix notation, the elimination method, gauss & gauss-jordan methods, Iterative method, system of nonlinear

equation

3. Interpolation and curve fitting

Lagrangian polynomials, Divided difference, Least-Squares approximation

4. Numerical differentiation and numerical integration

Getting derivatives and integrals numerically, Derivatives from difference table, higher order derivatives,

extrapolation techniques, Newton-Cotes integration formulas, the trapezoidal rule, simpson’s rules

5.Numerical solution of ordinary differential equations

The Taylor-Series method, Euler and modified euler method, runge-kutta method, multistep method, milne’s

method, convergence criteria, error and error propagation, systems of equation and higher order equation,

comparison of method/stiff equation

6. Boundary-Value problems and characteristic-value problem

The Shooting method, solution through a set of equation, derivative boundary condition, rayleigh-ritz,

collocation and galerkin method, the finite-element method, eigenvalues by iteration, eigenvalues by QR

method, application of eigenvalues

7. Numerical Solution of Partial Differential equations

Representation’s as a difference equation, Laplace’s equation on a rectangular region, interative methods for

laplace’s equation, the poisson equation, derivative boundary conditions

Parabolic Partial-Differential Equations ,Hyperbolic Partial-Differential Equations,Approximation of

functions(Chebyshev Polynomials, Economized power series, approximation with rational function, fourier

series)

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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OBJECT ORIENTED PROGRAMMING

1. Principles of Object Oriented Programming

Paradigm, Basic Concept, Benefits of OOP, Application of OOP, Structure of C++ program, scope resolution

operator

2. Function in C++

The main function, call by reference, return by reference, inline function, default argument, const arguments,

function overloading

3. Class and Object

Introduction, specifying a class, defining member function, C++ program with class, making an outside

function inline, private member function, arrays within a class, static data member, static member function,

array of objects, object as function arguments, friendly function, returning objects

4.Constructors and Destructors

Introduction, constructor, parameterized constructor, multiple constructor in a class, constructor with default

arguments, dynamic initialization of objects, copy constructor, destructor

5. Operator Overloading and Type Conversion

Introduction, defining operator overloading, overloading unary operator, overloading binary operator, type

conversion

6. Inheritance

Introduction, defining derived class, single inheritance, multiple inheritance, multilevel inheritance, hierarchical

inheritance, hybrid inheritance, virtual base class, abstract class, constructor in derived class

7. Pointers, Virtual Function and Polymorphism

Introduction, pointer to object, this pointer, pointers to derived class, virtual function, and pure virtual function

Practical work: -

The practical work shall be based on and analytical work on the topics mentioned above and will be

defended by the candidates.

Reference Books: 1. Object Oriented Programming with C++ - E.Balagurusamy

2. Teach Your Self C++ - Schmidt

3. Object Oriented Programming in Turbo C++ - Lafore Robert

4. Applied Numerical Analysis - Curtis F. Gerald, Patrick O.Wheatley

5. C language and Numerical Method - C Xavier

6. Numerical Method - E. Balagurusamy

7. Computer Oriented Numerical Methods - V.Rajaraman

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GANPAT UNIVERSITY

U. V. Patel College of Engineering

B. Tech. Sem. IV (Mechanical Engineering)

2ME406 - Manufacturing Technology

1 Foundry Processes

Classification of manufacturing processes, advantages of casting processes over the other manufacturing

processes.

2 Sand Casting

Patterns, types of patterns, advantages and limitations, pattern rational, pattern allowances, pattern colours,

moulding sand, ingredients of moulding sand, sand making, additives of sand, moulding techniques, core and

coreprint, core making, defects arises due to sand casting.

3 Principle of Gating and Risering

Different types of gates, gating design, advantages and limitations of gating system, riser, types of riser, riser

design, locating of riser.

4 Solidification of Casting

Nucleation, growth, and different types of solidification, progressive solidification, and directional

solidification.

5 Special Casting Techniques

Metallic moulding, shell moulding, Co2 process, noback resin moulding, centrifugal casting, die casting,

investment casting.

6 Melting Practice

Crucible furnace, cupola furnace, induction furnace, and iron-fired furnace.

7 Defects in Casting and their remedies.

8 Basic Machine tool

Introduction to machining processes, machine tool classification, primary cutting motion and auxiliary motion

in machine tool.

9 Lathe machine

Working principle, classification, construction and arrangement of engine lathe, lathe specification, mechanism,

accessories and attachment for extending processing capacity of engine lathe, turning and allied operations,

capstan and turret lathe, estimation of machining time.

10 Drilling machine

Working principle, classification, construction and arrangement of radial drilling machine, work holding

devices, operations, estimation of machining time.

Teaching Scheme Credit

Examination Scheme

Theory Practical

Grand

Total

Sem. End

Pract. Lect.

(Hrs.) Tu

Pract.

(Hrs.)

Total

(Hrs.) Theory Pract. Total

Int.

Asses. Marks Hrs. Total

03 00 02 05 03 01 04 30 70 03 100 50 150

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11 Milling machine

Working principle, classification, construction and arrangement of column and knee type milling machine,

attachments, automatic feed mechanism, different cutter holding devices, types of milling cutters, elements of

plain milling cutter, peripheral milling, up milling, down milling, work holding devices, operations, gear

indexing, estimation of machining time.

12 Planer, Shaper and Slotter

Working principle, mechanism, work and tool holding devices, tools, operations and applications, estimation of

machining time.

13 Sawing and Broaching machine

Working principle, classification of sawing machine, types of broaching machines, attachment of broaching

machine, advantages and limitations of broaching machine.

14 Grinding machine

Working principle, classification, types of abrasives, manufacturing of grinding wheel, grit, grade and structure

of grinding wheel, I.S specification of wheel, Surface Grinding & Centre Less Grinding.

15 Microfinishing Processes

Introduction, honing, lapping, polishing, buffing and superfinishing.

Laboratory Works: -

Each candidate shall submit the following work.

Pattern making including wood turning.

Casting of the above pattern.

Plain, step and taper turning.

Thread cutting.

Machining plane surface on a shaper.

Simple job on milling machine.

REFERENCE BOOKS : (1) Work shop technology - by Hajara Choudhary Vol-I and Vol-II.

(2) Manufacturing technology: metal cutting and machine - by P.N.Rao.

(3) Manufacturing technology: foundry, forming and welding - by P.N.Rao.

(4) Manufacturing technology - by John P. Lindback.

(5) Principles of manufacturing materials and processes - by J.S.Campbell.

(6) Processes and material of manufacturing - by Roy A. Lindberg.

(7) Foundry technology - by O.P. Khana.

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GANPAT UNIVERSITY

B. TECH. SEM. V – MECHANICAL ENGINEERING

2ME501- MATERIAL TECHNOLOGY (CBCS) Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs 4 2 6 4 1 5 30 70 3 100 25 25 50 150

1. Theory of Alloys: Systems, phases and phase rule, structural constituents, equilibrium diagram, cooling curves, lever – arm principle, eutectic reaction, eutectoid reaction, peritectic reaction, Iron carbon diagram, constitution, microstructures & properties of plain carbon steels. 2. Heat treatment of steel: Study of heat treatment processes such as annealing, normalizing, spherodizing, hardening, tempering, carburizing, nitriding, cyaniding, induction hardening, flame hardening and hardenability of steel. Application of above processes to machine components & mechanical equipments such as gears, shaft bearings, turbine blades, crank shafts, pistons etc. 3. Steels : Effect of alloying elements such as manganese, nickel, chromium, molybdenum, vanadium, tungsten, cobalt and boron, law alloy steels, stainless steels, tool and die steels, high temperature alloys, selection of steels for various machines components and mechanical equipments, coding of steels as per ASME and ISI. 4. Cast Iron: Constitution, properties of gray, white, malleable and nodular cast irons, seasoning of cast iron, effect of silicon, manganese, sulphur, phosphorous and other elements on the properties of cast iron, use of specific grades of cast iron in mechanical field. 5. Non – ferrous Alloys: Constitution and properties of the alloys of copper, aluminum, lead, tin, zinc, magnesium etc., Application of mechanical field. 6. Powder Metallurgy: Application of powder metallurgy, advantages of powder metallurgy, manufacturing processes, production of powder ,compacting, sintering, products of powder metallurgy like filters, babbitted bearings for automobiles, cemented carbides, diamond impregnated tools. 7 Corrosion of metal and alloys: Mechanism of corrosion, types of corrosion, corrosion prevention techniques. 8. Development of Special Materials: Ceramic materials, Materials for nuclear reactors, High temperature alloys, cryogenic materials, Teflon, Araldite etc., 9. Refractory materials: Properties and classifications, selection of refractories for furnaces, boilers, cupola etc. 10. Composite Materials: Classification, Characterization & application of composite materials. 11. Nano Technology: Introduction to nano technology & nano science, field of application of nano materials.

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12. Polymer Materials: Introduction to polymer, classification and processing of polymer materials. TERM WORK: The term work to be prepared by the candidates shall consists of technical report of about ten experiments performed by the candidates out of which at least two experiments will be based on each of the following topics listed under the headings of a. Physical metallurgy b. Ferrous metallurgy c. Non-ferrous metallurgy TEXT BOOKS: 1. O.P. Khanna, “Text Book of Materials Science & Metallurgy”, Dhanpat Rai and Sons 2. Sidney H. Avner, “Introduction to Physical Metallurgy”, T.M.H. Publisher REFERENCE BOOKS: 1. V. Raghavan, “Physical Metallurgy – Principles & Practice”, PHI Publisher 2. Y.Lakhtin, “Engineering Physical Metallurgy & Heat-Treatment”, C.B.S. Publisher 3. T.V.Rajan & C.P. Sharma, “Heat treatment”, PHI Publisher 4. Fontanna M.G. & Green N.D, “Corrosion Engineering”, TaTa McGraw Hill 5. Chawla Krishan K, “Composite Materials”, Spriger 6. George E. Dieter, “Mechanical Metallurgy”, TaTa McGraw Hill 7. Poole Charles P; Owens Frank J, “Introduction to Nano Technology”, Johan Wiley and Sons. Ltd ****************

 

 

 

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GANPAT UNIVERSITY

B. TECH. SEM. V – MECHANICAL ENGINEERING

2ME502- ENERGY CONVERSION & UTILIZATION SYSTEM (CBCS)  

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs 4 2 6 4 1 5 30 70 3 100 25 25 50 150

 

1. Fuel-air cycles: Variation of specific heats, Characteristics of fuel air mixtures, Dissociation or chemical equilibrium loss, Actual valve timing diagram for petrol and diesel engine.

2. Fuels for I.C. Engines: Desirable properties of I.C. Engine fuels, Liquid and gaseous fuels, C.V. of fuels and their determination, Required qualities of fuels, Concept about alternate fuels, CNG, LPG, LNG, Biodiesel, H2 fuels.

3. Fuel supply systems: Petrol Engines: Properties of air-petrol mixture, Working of simple carburetor, Types of carburetors, Analysis of single jet carburetor with air fuel ratio, Diesel engines: Requirement of diesel injection system, Types of injection systems, Fuel pumps, Fuel injectors, Types of nozzles.

4. Systems and Testing: Engine cooling system: Necessity of cooling, Air Cooling, Water Cooling, Lubrication systems: Objectives of lubrication, Types of lubricant, Requirement of an ideal lubricant, Various engines losses and energy Balance, Measurement of friction power, Measurement of brake power. and Morse Tests.

5. Air Cycle Refrigeration: Air refrigeration system working on Bell-Coleman air cycle, Types of aircraft refrigeration systems, comparison of various air cooling systems used for aircraft.

6. Vapor Compression and Absorption Refrigeration: Analysis of vapor compression cycle, Heat balance, Compound compression with intercooler, Cascading, Vapour absorption system, Thermodynamic analysis of absorption system, Non-conventional refrigeration systems, Losses and efficiencies of components, Desirable properties of refrigerants and solvents. .

7. Psychrometry and Psychometric Processes: Preparation of psychometric charts, Psychrometric process, Temperatures, Enthalpy deviation, Psychometric measurements, Mixing process, Bypass factor, Apparatus dew point, Sensible heat factor, Adiabatic humidification, Hot water and Cold water humidification.

8. Air Conditioning & Ventilation Systems: Classification of air conditioning system, Humidifiers, Air coolers, Dehumidifiers, Air cleaning, Impurities in air and air cleaners, Air washers, Ducts, Pressure drop in ducts, Load calculation.

   

 

 

 

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    Term work:

The term work shall be based on experimental and analytical work on topics mentioned above.

Practical & Oral:

The candidate shall be examined orally / practically on the base of above term work.

BOOKS:

1. M.L. Mathur and R.P. Sharma, “A Course in Internal Combustion Engines”, Dhanpat Rai and Sons Publications.

2. C. P. Arora, “Refrigeration and Air conditioning”,Tata McGraw-Hill Education

REFERENCE BOOKS:

1. V. Ganeshan, “Internal Combustion Engines”, McGraw Hill Company 2. J.B. Heywood, “Internal Combustion Engines Fundamantal”, McGraw Hill 3. P.S. Desai, “Advance in Refrigeration and Air conditioning”, Khanna publishers 4. P.L.Ballaney, “Refrigeration and Air conditioning”, Khanna publishers 5. R.K.Rajput, “Refrigeration and Air conditioning”. S.K. Kataria & Sons

 

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GANPAT UNIVERSITY

B. TECH. SEM. V – MECHANICAL ENGINEERING

2ME503 - VIBRATION & BALANCING OF MACHINES (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs 3 2 5 3 1 4 30 70 3 100 25 25 50 150

1. Balancing: Introduction, Balancing of single revolving mass, Balancing of several masses revolving in the same plane, Several masses revolving in different planes, Static & Dynamic balancing, Balancing of reciprocating mass, Balancing of multi cylinder inline engine, Balancing of V-engine, Balancing of radial engine, Direct and reverse crank method of balancing, Balancing machine. 2. Cam Dynamics: Graphical and analytical synthesis of cam profile for determination of velocity and accelerations, Jump phenomenon, Pressure angle, Polydyne cams, Cross-over shocks, Under cutting phenomenon of cam with roller follower, Polynomial curves, Dynamics of high speed cam systems, Derivations of polynomial cams for displacement, velocity, acceleration and jurk (for 1 degree, 3 degree, 5 degree and 7 degree Polynomial cams). 3. Vibration: Introduction, Types of vibrations, Harmonic motion, Beats phenomenon. Undamped free vibrations – Derivation of differential equation, Undamped torsional vibration, Equivalent stiffness of spring combinations. Damped free vibration, Types of damping, viscous damping, Logarithmic decrement, Forced vibrations, Graphical representation of forces, Transmissibility, Support excitation, Transverse vibration Vibration isolation, Critical speed of shafts, Vibration Measuring Instruments like FFT analyzer, stroboscope, accelerometer. Term work: - The term work shall be based on experimental and analytical work on topics mentioned above. Practical & Oral: - The candidate shall be examined orally / practically on the base of above term work. TEXT BOOKS 1. S. S. Ratan, “Theory of machines”, Tata- Mcgraw-Hill publication 2. G. K groover, “Mechanical vibrations”, Seventh Edition, Nem Chand & Bros., Roorkee. REFERENCE BOOKS:

1. S. S. Rao, “ Mechanical Vibration”, 3rd Edition, Pearson-Hall Edition, 2010. 2. C. S. Sharma and Kamlesh Purohit, “Theory of Mechanisms and Machines”, Fourth

Edition, PHI Publication, 2011. 3. Timo and Sinko, “Mechanical Vibrations”. 4. V. P. Singh, “Theory of Machines”, Reprint, Dhanpat Rai & Co., 2010.

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GANPAT UNIVERSITY

B. TECH. SEM. V – MECHANICAL ENGINEERING

2ME504 - FLUID POWER ENGINEERING (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs 3 2 5 3 1 4 30 70 3 100 25 25 50 150

1. Flow through pipes: Fluid friction, hydraulic gradient of pipe, losses of head due to

friction in pipe – siphon pipe- Equivalent size of a pipe - parallel flow through pipes, time of emptying tank through a pipe, time of flow from one reservoir to another through long pipe, branched mains, Hydraulic Power Transmission through pipes

2. Hydropower Station: Utilization of energy of water – development of hydraulic power stations – selection of basic parameters for hydro station – types of hydraulic power stations – layout of power station.

3. Principle of working of Turbo – Machinery: Impact of jet on different types of flat and curved plates, fixed and moving, single and series of plates, derivation of condition for maximum efficiency, hinged plate and pipe bends.

4. Hydraulic Turbines: Classification of turbines, Impulse and reaction, Radial, Axial, and mixed flow turbines, Major components of different turbines, Expressions for work done and efficiency of Pelton wheel, Bucket of Pelton wheel, Size and number of buckets, Single jet and multi jet Pelton wheel, Francis turbine, Kaplan turbine and Propeller turbines.

5. Performance of Turbines: Specific speed, Range of Specific speed for different turbines, performance curves of turbine, Selection of turbines according to available head, discharge and load, Governing of turbines.

6. Pumps, Compressors & Blowers: Rotodynamic pumps, Centrifugal turbine pumps, Submersible pumps, onstructional features and working theory, pressure rise through impeller, characteristic curves of C.F. pump, Priming, maximum suction limit – Minimum starting speed to deliver the discharge, specific speed of pumps, suction specific speed. Centrifugal compressors and blowers, Drag and lift on aerofoil blade, pressure rise, Power input, Drag and lift co-efficient. Calculation of pressure ratio, static and total Pressure static and total temperatures, work done, power input factor, and work Done Factor, pressure coefficient, slip factor, compressibility effect, pre-whirl, Compressor Performance curve, efficiency and losses, surging and stalling.

 

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7. Miscellaneous Hydraulic Machines : Construction & application of Hydraulic Press, Hydraulic Accumulator, Hydraulic Intensifier, Hydraulic Crane, Hydraulic Jack, Hydraulic lift, Hydraulic Ram

 

• Term work: - The term work shall be based on experimental and analytical work on topics mentioned above

• Practical & Oral: - The candidate shall be examined orally / practically on the base of above term work.

• BOOKS 1. R. K. Bansal, “Fluid mechanics and hydraulic machines” 2. D.S. Kumar, “Fluid Power Engineering”

• REFERENCE BOOKS:

1. Jagdishlal, “Hydraulic and hydraulic machines” 2. Vasandani, “Hydraulic Machines” 3. Khajuria & Dubey, “Gas turbines & Jet propullision” 4. R. K. Rajput, “Fluid mechanics and hydraulic machines”

 

 

 

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GANPAT UNIVERSITY

B. TECH. SEM. V – MECHANICAL ENGINEERING

2ME 505 MECHANICAL MEASUREMENT AND METROLOGY (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs 3 2 5 3 1 4 30 70 3 100 25 25 50 150

METROLOGY

1. Introduction to Metrology: Meaning, Necessity and Objectives of Metrology; Standards of Measurement; Elements of Measuring System; Methods of Measurement; Precision and Accuracy; Sources of Errors; Selection and Care of instruments; Standardizing organizations.

2. Linear Measurements: Introduction & classification of Linear Measuring Instruments; Least count; working principle, Sources of errors and precautions to be taken, Vernier Height Gauge; Vernier Depth Gauge, Micrometers ;slip gauges, Dial indicators: construction & working; comparators; calibration of various linear measuring instruments; Applications, Advantages & Limitations of commonly used linear measuring instruments.

3. Angular and Taper Measurements: Introduction; Working principle & construction of Angular Measuring instruments like Protractors, Sine bars, Applications, Advantages & limitations of commonly used angular measuring instruments; Taper Measuring instruments: Measurement of taper shafts & holes.

4. Limits, Fits and Tolerances: Limits, fits, and dimensional and geometrical or form tolerances, Gauges including their design IS for plug & ring gauges, Interchangeable manufacturing.

5. Screw Thread Measurements: Introduction & classification of Threads; Elements, Specification & forms of Screw Threads; Various Methods for measuring elements of External & Internal Screw Thread; Screw Thread Gauges; errors in Threads.

6. Gear Measurements: Introduction & Classification of gears; Forms of gear teeth; Gear tooth terminology; Measurement and testing of spur gear: Various methods of measuring tooth thickness, tooth profile & pitch; Gear Errors.

7. Measurement of Surface Finish: Introduction; Surface Texture; Methods of Measuring Surface finish- Comparison Methods & Direct Instrument Measurement; Sample Length; Numerical Evaluation of Surface Texture; Indication of Surface roughness Symbols used; Adverse effects of poor surface finish.

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MECHANICAL MEASUREMENT

1. Motion Measurement: Measurement of displacement, velocity, acceleration and vibrations by potentiometer, strain gauges, seismic pickups, velocity pickups and acceleration pickups, calibration of pickups.

2. Force : Torque and shaft power measurement, Basic method of force measurements, elastic force transducers, torque measurement on rotating shaft, shaft power measurement.

3. Pressure measurement : Basic method of pressure measurement, dead weight gauges and manometers, elastic transducers and force balance transducer.

4. Flow measurement : Gross flow rate measuring meters, constants area, variable pressure drop meters (obstruction meters) constant pressure drop variable arc meters (Rotameter), local flow velocity magnitude and direction meters, pitot static tube and vawtube, Hotwire anemometer velometer.

5. Temperature measurement : Measurement of temperature by liquid – in – glass thermometers, pressure thermometers, thermocouples, their calibration, resistance thermometer, bimetallic thermometer, thermistors, radiation and optical pyrometers.

TERM WORK : The term work shall be based on the experimental work on the topic mentioned above. PRACTICAL/ORAL : The candidate shall be examined on the basis of continuous assessment of above teamwork. TEXT BOOKS : 1. R.K. Jain, Khanna Publishers - A Text Book of Engineering Metrology 2. M.Mahajan, Dhanpat Rai, New Delhi - A Text Book of Metrology 3. D.S. Kumar, Metropolitan book Co. - Mechanical Measurement & Control 4. R.K.Rajput, S.K.Kataria & Sons. - Mechanical measurement and instrumentation REFERENCE BOOKS : 1. Dotson & Connie, Cengage Learning India Pvt. Ltd. - Dimensional Metrology 2. By C.Elanchezhian, Eswar Press, Chennai - Engineering Metrology 3. I.S. 919 Recommendation for limits and fits for engg. 4. Galyer & Shotbolt (Elbs) - Metrology for Engineers 5. K.J. Hume, Kalyani Publisher - Engineering Metrology 6. Thomas G. Beckwith, Pearson Edu. - Mechanical Measurement 7. S.P.Venkateshan, Ane Books India - Mechanical Measurement 8. Nakra & Chaudary,Tata McGraw Hill - Instrumentation, Measurements and Control 9. I.C. Gupta, Dhanpat Rai and Sons. - A Text Book of Engineering Metrology  

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GANPAT UNIVERSITY B. TECH. SEM. V – MECHANICAL ENGINEERING 

2ME506 - CAD SOFTWARE PACKAGES (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract Total

Theory Practical Grand Total

Int. Asses

Sem End Total Int.

Asses Sem End Total

Marks Hrs - 3 3 - 2 2 - - - - 25 25 50 50

1. Introduction to CAD Software Packages Solid works 2011, Nature of Solid works 2011, System requirements, important terms and definitions, file menu options, managing file, Function of mouse, various toolbars. 2. Sketcher Configuring for sketcher, Setting sketching environment, Creating sketcher geometry, Modifying sketcher geometry, Dimensioning sketcher geometry, Constraining geometry, To study of Different entities : line, circle, rectangle, arc, ellipse, text, plane, point, fillet, polygon, straight slot, trim entity, convert entity, offset entity, mirror entity, linear sketch pattern, move entity, rapid sketch, quick sketch, repair sketch, Display delete relation. 3. Part Modeling Basic (Parent child relationship), Base feature, Create datum’s features, Edit features, Engineering features, Advanced features, Creating drawing, Working model views, Dimensioning and detailing your models, Controlling drawing details with layers, Importing and exporting data, Features: extrude boss/base, revolved boss/base, swept boss, lofted boss, boundary boss, extrude cut, hole wizard, revolve cut, swept cut, lofted cut, boundary cut, fillet, pattern, rib, draft, dome, mirror, reference geometry, curves, instant 3D 4. Assembly Reading top-down assemblies, creating bottom-up assemblies, Placement constraints, Assembly datum planes, assembling the components, redefining the components of the assembly, reordering the components, modifying the components of the assembly, the bill of material, Mechanism & animations: Motor, Spring , Contact, Gravity, Animation wizard, Motion study properties, Save animation, Play back mode. Edit component, insert component, mate, smart fasteners, move component, show hidden component, assembly features, reference geometry, Linear component pattern, bill of materials, exploded view, Interference detection, clearance verification, hole alignment, mass property, Section property, sensor, assembly visualization, symmetry check. 5. Drawing View lay out, model view, projected view, auxiliary view, section view, detail view, broken out section, break, crop view. Annotation : smart dimension, model items, spell checker, format painter, note, balloon, surface finish, weld symbol, hole callout, geometric tolerances, datum features, datum target, area hatch/fill, blocks, centre mark, centre line, revision symbol, tables.

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• Term work: - The term work shall be based on experimental and analytical work on topics mentioned above

• Practical & Oral: The candidate shall be examined orally / practically on the base of above term work.

REFERENCE BOOKS: 1. Sham Tikoo, “Solid works for engineers & designers”, Release – 2011 TEXT BOOK: 1. Bible, Matt Lombard, “Solid works 2010”, Wiley Publishing, Inc. Manual from the solid works web site   

 

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GANPAT UNIVERSITY

B. TECH. SEM. VI – MECHANICAL ENGINEERING

2ME601 - CONTROL SYSTEM ENGINEERING (CBCS) Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs 3 2 5 3 1 4 30 70 3 100 25 25 50 150

1 Fundamentals of Modern Control System

Basic Block Diagram of Closed Loop Control System, Control System Components , Discrete and Automated Control of Industrial Process,

2 Representation of Mechanical System in Control Engineering Block Diagram representation, Mathematical Modeling, transfer function of Hydraulic, Pneumatic and Thermal Systems and Components. Characteristic of hydraulic components control valves, sources of hydraulic power hydraulic meters, pitons and transmission, elements of circuit design, Accumulation control circuit such as position control and speed control circuit. Pneumatic systems pneumatic power supply, Amplifiers with different controlling actions, Pneumatic valves and cylinders, theory of four way and pilot valves.

3 Analysis of Control System Transient response of first order and second order systems to step, ramp and sinusoidal input, steady state errors, Applications of Laplace transform methods, Reuth’s stability criteria and root locus methods improving system performance. Sinusoidal response of liner control system, Magnitude and phase curve, Bode plots, determination of absolute and relative stability from Bode plot.

4 Fuzzy Logic Concept of fuzzy logic, basic notions, Block diagram for typical fuzzy system , Fuzzy Controllers, Application of Fuzzy System

5 Industrial Controllers PD, PI and PID Controllers and functions , Programmable logic Controllers (PLC)- functions , ladder Diagram , Control Logic and Industrial Process Control

6 Case studies Detail study and analysis of Control Systems for mechanical engineering systems, thermal power plants, Rolling Mills, Boiler, refrigeration plants , central air-conditioning plants and automobiles.

TEXT BOOKS: 1. Katsuhiko Ogata, “Modern Control Engineering”, Prentice – Hall of India. 2. M. Gopal, “Control Systems - Principles and Design”, Prentice Hall of India 3. S.R.Majumdar, “Oil Hydraulics”, Tata McGraw Hill 4. S.R.Majumdar, “Pneumatics systems”, Tata McGraw Hill

REFERENCE BOOKS: 1. Benjamin C Kao, “Automatic Control Systems - Seventh Edition”, Tata McGraw Hill 2. Verma, “Automatic Control Systems” 3. W. Bolton, “Industrial Control & Instrumentation” University Press (I) Ltd, Hyderabad.

*****************

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GANPAT UNIVERSITY

B. TECH. SEM. VI – MECHANICAL ENGINEERING

2ME602 - METAL FORMING & FABRICATION TECHNOLOGY (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs 4 2 6 4 1 5 30 70 3 100 25 25 50 150

1. Fundamentals of metal forming: Classification of forming processes, mechanics of metal working, temperature in metal working, hot working, cold working, strain rate effects, metallurgical structure, workability, residual stresses. 2. Primary metal working and processes: A. Forging: Classification of forging processes, forging equipment, forging defects. B. Rolling of metals: Classification of rolling processes, principle of metal rolling mills, simplified analysis of rolling load, rolling variables, defects in rolled products. C. Extrusion: Classification of extrusion process, extrusion equipments, hot extrusion, deformation, lubrication and defects in extrusion, cold extrusion, hydrostatic extrusion, extrusion of tubing, production of seamless pipe and tubing. D. Drawing of rods, wires and tubes: Sizing, coining and embossing. 3. Cold forming (Sheet metal working): A. Deep drawing, squeezing, bending, blanking, piercing, notching etc. metal spinning operations and applications. B. Press work: Types of press, drive mechanism for presses, terminology, press elements and die classification. 4. Plastic Processing: Introduction, Plastic part manufacturing processes such as Compression moulding, Transfer moulding, Injection moulding, Extrusion moulding, Blow moulding etc.. 5. Fabrication process: A. Introduction to fabrication: mechanical, adhesive, welding Welding: principle of welding, classification of welding and allied processes, welding terminology, electrode coatings, flux, electrodes B. Oxy-Fuel welding: oxy-acetylene gas welding & cutting: Principle, equipment, application C. Arc Welding: Principle of arc, power source and characteristics, edge preparation, types of joints, equipment for AC & DC power source, coding and classification of electrodes, shielded metal arc welding, gas metal arc welding, gas tungsten arc welding, submerged arc welding, carbon arc welding, electro slag welding, electro gas welding, flux cored arc welding D. Resistance welding: Principle of resistance welding, heat balance, spot welding, seam welding, projection welding, upset butt welding, flash butt welding

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E. Other welding process: electron beam welding, laser beam welding, Thermit welding, plasma arc welding, and atomic hydrogen welding F. Solid state welding process: friction welding, explosion welding, cold welding, diffusion welding, forge welding, ultrasonic welding G. Welding defects, causes and their remedies H. Soldering, Brazing and Braze welding: process, description and application. TEXT BOOKS: 1. S. Kalpakajain, “Manufacturing Engg. And Technology” PHI/Pearson. 2. P.N. Rao, “Manufacturing Technology (Foundry, Forming and Welding)” 3. O.P. Khanna, “Text Book of Welding Technology” REFERENCE BOOKS: 1. R.S Parmar, “Text Book of Welding Technology” 2. Jain & Gupta, “ Production Technology” 3. P.C. Sharma, “A Textbook of Production Engg.” 4. Dieter, “Mechanical Metallurgy” 5. Higgins, “Material Science Vol. I & II” 6. Lindberg, “Manufacturing Process” 7. B.E. Rosset, “Welding Engg.” 8. Little, “Welding Engineering”

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GANPAT UNIVERSITY

B.TECH. SEM. VI - MECHANICAL ENGINEERING

2ME603 - HEAT & MASS TRANSFER (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs 4 2 6 4 1 5 30 70 3 100 25 25 50 150

1. Introduction: Modes of heat transfer, Conduction, Convection and Radiation.

2. Conduction: Fourier’s law. General three-dimensional heat conduction equation in Cartesian, cylindrical and spherical co-ordinates. One dimensional steady conduction through plane wall, cylinder and sphere, dependence of thermal conductivity of gases, liquids, metals, refractory material, Critical thickness of insulation, Temperature distribution and Heat flow in steady state through plane, cylindrical and spherical walls with constant and variable thermal conductivity, Composite walls, Electrical analogy. Heat transfer from fins of uniform cross section.

3. Convection: Principles of convection, Energy equation of the boundary layer on flat

plate, The relation between fluid friction and heat transfer, Dimensional analysis, Empirical and practical relations for forced convection heat transfer, Free convection heat transfer on a vertical flat plate, Empirical relations for free convection, Free convection form horizontal plates and inclined surfaces.

4. Radiation: Physical mechanism, Radiation properties, Radiation shape factors, Basic

laws of radiation. black and grey surfaces, Heat transfer in presence of re-radiating surfaces. Effect of radiation shields.

5. Heat Exchangers: Classifications of heat exchangers, Fouling factors, long mean

temperature difference, Effectiveness-NTU, comparison and selection.

6. Mass Transfer: Fick’s law of diffusion, Diffusion In gases, The mass transfer coefficient, Similarity between heat and mass transfer, heat and mass transfer in humidification and dehumidification, Application to Engineering problems.

• Term work: - The term work shall be based on experimental and analytical work on topics mentioned

above • Practical & Oral: - The candidate shall be examined orally / practically on the base of above term work.

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BOOKS: 1. J.P. Holman, “Heat Transfer” McGraw Hill Book Co., (2011). 2. R.K.Rajput S. Chand & Company Limited, “Heat & Mass Transfer” 3. S.P. Sukhatme, “Heat Transfer” Universities Press Private Ltd.

REFERENCE BOOKS:

1. D.S. Kumar, “Heat and Mass Transfer”, Dhanpat Rai Publication. 2. Mahesh M Rathore, “Engineering Heat and Mass Transfer” Laxmi Publications. 3. Eckert and Drake, “Heat and Mass Transfer” McGraw Hill

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GANPAT UNIVERSITY

B.TECH. SEM. VI – MECHANICAL ENGINEERING

2ME604 - POWER PLANT ENGINEERING (CBCS) Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs 3 2 5 3 1 4 30 70 3 100 25 25 50 150

1. Modern Thermal Power Station: General layout of modern thermal power plant, Site selection, Presents status of power generation in India. 2. High Pressure Boilers & Accessories: Unique features and advantages of high pressure boilers, LaMont, Benson, Loeffler, Schmidt-Hartmann, Velox, Supercritical, Supercharged and fluidized bed combustion boiler. Different types of super-heaters, Re-heaters, Economizers, Air pre-heaters, Methods of superheat control, Corrosion in boilers and its prevention. 3. Coal & Ash Handling: Fuels for thermal power plant, Out plant and In plant handling of coal, Preparation and transfer of coal, Types of conveyors, Pulverized mills, Necessity of ash disposal, Mechanical, Hydraulic, Pneumatic and Steam jet ash handling system, Dust collection and its disposal, Mechanical dust collector, Electrostatic precipitator. 4. Fuel Feeding and Burning: Different types of liquid fuel burners such as Evaporation type, Rotating type, Re-circulating type, and Atomizing type, Pulverized fuel burners such as long flame, U – flame, Stream lined, Short flame, Turbulent tangential, Cyclone burners. 5. Draught System: Natural draught- estimation of height of chimney, Maximum discharge, Forced, Induced and balanced draught, Power requirement by fans. 6. Condensers & Cooling Towers: Jet and Surface Condensers, Air leakages in condensers, Vacuum efficiency, Condenser water cooling systems, Various water cooling methods, Performance of condensers and cooling towers, Condensate pump. 7. Feed Water treatment: Different types of impurities in water, Effects of impurities, Different methods of water treatment, Internal boiler water treatment, External water treatment system, Sedimentation, Filtration, Removal of dissolved gases, Removal of solids.

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8. Pollution and its control: Different pollutant and their effects, Control of particulates cyclone & precipitators, Control of So2, Nox, Control of atmospheric pollution, Noise pollution and its control. 9. Combined Cycle Co-generation Power Plant: Brayton cycle, Layout and Working principle of combined cycle and cogeneration power plants, Advantages over conventional gas turbine and steam turbine power plants, calculation of efficiency. 10. Nuclear Power Plant: Principles of Nuclear Energy, Types of reactors, Selection of materials for reactor components, Economics of nuclear power plants, Safety measures for nuclear power plants. Term work: -

The term work shall be based on experimental and analytical work on topics mentioned above

Practical & Oral: -

The candidate shall be examined orally / practically on the base of above term work. BOOKS:

1. Domkundwar and Arora, “Power Plant Engineering” Dhanpat rai & Co. 2. R.K.Rajput, “Power Plant Engineering” Laxmi publications ltd.

REFERENCE BOOKS:

1. Dr. P.C. Sharma, “Power Plant Engineering” S.K. Kataria & Sons, Delhi 2. P.K. Nag, “Power Plant Engineering” Tata Mc-Grahill Co., Delhi 3. Nagpal, “Power Plant Engineering”, Khanna Publishers, Delhi.

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GANPAT UNIVERSITY

B. TECH. SEM. VI – MECHANICAL ENGINEERING

2ME605 - DESIGN OF MACHINE ELEMENTS(CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs 4 2 6 4 1 5 30 70 3 100 25 25 50 150

1. Manufacturing consideration in design: Design considerations for various manufacturing processes, Assembly, thermal, wear, ergonomic and aesthetic, Selection of materials for various components, Standardization. 2. Design of welded joints: Weld design for fillet joints, lap joints and butt joints and eccentrically loaded welded joints. 3. Fatigue loading: Completely reversed or cyclic stresses; stress v/s cycle (S-N) curves; fatigue and endurance limit; effect of surface finish, size and loading on endurance strength; Finite and infinite life; design for finite and infinite life; stress concentration, notch sensitivity and fatigue stress concentration factor; factor of safety for fatigue loading; Gerber, Goodman and Soderberg criteria for design of parts subjected to variable loading; Combined variable normal and shear stresses; applications of fatigue loading for design of shafts, axles etc. 4. Design of pressure vessels: Classification of pressure vessels; design of thin cylindrical and spherical shells subjected to internal pressure, design of thick cylindrical shell subjected to internal and external pressure. Design of interference joints, press / shrink fitted assemblies, Design of cylinder covers, cover plates, pipes, pipe flanges for pipe joints, introduction to creep for pressure vessel design. 5. Design of Belt Drive: Types of belt drives and its selection, materials for belt and their properties, velocity ratio, center distance and length of belt for various types of belt drives, power transmitted by flat and V belts drives, design of belt drives, selection of flat and V belts using manufacturers catalogues. 6. Design of clutches and brakes: Positive clutches, friction clutches, single plate, multiple plate and centrifugal clutches, Design of band brake, external and internal shoe breaks internal expanding shoe brakes, design of disc brakes. Application of friction clutches and brakes in automotive and industrial machinery.

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TERM WORK: 1. Exercise on material selection of various machine elements 2. Preparation of design report consisting of one of the following problems along with drawing (parts and assembly). Such as,

• Brakes – external shoe brake, internal expanding shoe brakes. • Clutches–cone, disc, single and multiple plate and centrifugal clutches. • Hydraulic press. • Power screw applications like fly press, screw press etc.

3. Preparation of design report for at least ten minor problems and may be solved by computer programme. Practical / Oral: The candidate shall be examined on the basis of term-work. TEXT BOOKS : 1. V. B. Bhandari, “Design of Machine Elements”, Second Edition, Tata McGraw Hill Publication 2007. 2. Farazdak Haideri, ”Design of Machine Elements”, Vol. II& III, Nirali Prakashan, Pune REFERENCE BOOK:

1. Joseph Shiglay, ”Mechanical Engineering Design”, Second Edition, Mc-Graw Hill Publication. 2. Sharma & Agrawal, “Machine Design”, Eleventh Edition (Reprint 2008-09), S. K.

Kataria & sons Publication. 3. “P S G Design Data Book”, PSG College, Coimbatore. 4. R. C. Patel, S. S. Sikh and A. D. Pandya, “Machine Design”, Twelth Edition, G.

Jamnadas & Co., 1998.

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GANPAT UNIVERSITY

B. TECH. SEM. VI – MECHANICAL ENGINEERING

2ME606 - SEMINAR (CBCS)

Teaching Scheme Credit Exam. Scheme

Lect Pract Total Lect. Pract. Total

Theory Practical Grand Total

Int. Asses

Semester End Total Int.

Asses Sem End Total

Marks Hrs - 2 2 - 1 1 - - - - 25 25 50 50

Students have to prepare brief report on Advance topics on any subject of Mechanical Engineering. They have to present highlights of seminar topic in the presents of students, students guide and examiners.