HEAD
B.E. 401 - ENGINEERING MATHEMATICS III
Functions of complex variables : Analytic functions, Harmonic Conjugate, Cauchy-Riemann Equations, Line Integral, Cauchy’s Theorem, Cauchy’s Integral Formula, Singular Points, Poles & Residues, Residue Theorem , Application of Residues theorem for evaluation of real integrals
Errors & Approximations, Solution of Algebraic & Trancedental Equations (Regula Falsi , Newton-Raphson, Iterative, Secant Method), Solution of simultaneous linear equatins by Gauss Elimination, Gauss Jordan, Crout’s methods , Jacobi’s and Gauss-Siedel Iterative methods
Difference Operators, Interpolation ( Newton Forward & Backward Formulae, Central Interpolation Formulae, Lagrange’s and divided difference formulae ), Numerical Differentiation and Numerical Integration.
Solution of Ordinary Differential Equations(Taylor’s Series, Picard’s Method, Modified Euler’s Method, Runge-Kutta Method, Milne’s Predictor & Corrector method ), Correlation and Regression, Curve Fitting (Method of Least Square).
Concept of Probability : Probability Mass function, Probability density function. Discrete Distribution: Binomial, Poisson’s, Continuous Distribution: Normal Distribution, Exponential Distribution ,Gamma Distribution ,Beta Distribution ,Testing of Hypothesis |:Students t-test, Fisher’s z-test, Chi-Square Method
Reference:
Numerical Methods using Matlab by J.H.Mathews and K.D.Fink, P.H.I.
Numerical Methods for Scientific and Engg. Computation by MKJain, Iyengar and RK Jain, New Age International Publication
Mathematical Methods by KV Suryanarayan Rao, SCITECH Publuication
Numerical Methods using Matlab by Yang,Wiley India
Pobability and Statistics by Ravichandran ,Wiley India
Mathematical Statistics by George R., Springer
Crystal Atoms of Solid: Structure of atom binding in solids metallic, Vander walls, ionic and covalent, Space lattice and crystal system arrangement of atoms in BCC, FCC and HCP crystal. Manufacture of Refractory and Ferrous Metals: Properties uses and selection of acid, basic and natural refractory, metallurgical coke, Properties, types, uses and brief description of the manufacturing processes for iron and steel making.
Plastic deformation of Metals: Point and line defects in crystals, their relation to mechanical properties, deformation of metal by slip and twinning stress strain curves of poly crystalline materials viz. mild steel cast iron and brass yield point phenomenon. Cold and hot working of metals and their effect on mechanical properties, annealing of cold worked metals, principles of re-crystallization and grain growth phenomenon, fracture in metal and alloys, ductile and brittle fracture, fatigue failure
Alloy Formation and Binary Diagram: Phase in metal system solution and inter-metallic compounds. Hume-Rottery’s rules, solidification of pure metals and alloy equilibrium diagrams of isomorphous, eutectic peritectic and eutectoid system, non-equilibrium cooling and coring iron, iron carbon equilibrium diagram.
Heat Treatment of Alloys Principles of Heat Treatment of Steel: TTT curves heat treating processes, normalizing, annealing spherodizing, hardening, tempering, case hardening, aus- tempering, mar-tempering, precipitation hardening process with reference to Al, Cu alloys
Properties of Material: Creep Fatigue etc., Introduction to cast iron and steel, Non Ferrous metals base alloys, Bronze, Brasses, Duralumin, and Bearing Metals. Plastics, Composites and ceramics: Various types of plastics, their properties and selection. Plastic molding technology, FRP, GRP resins adhesive, elastomers and their application. Powder Metallurgy: Property and Applications of Powder Metallurgy, Various process and methods of making products by powder Metallurgy techniques.
Narula GK, KS and GuptaVK; Material science; TMH
Raghavan V; Material Science and Engineering, PHI Publication.
Raghavan V; Physical Metallurgy Principles and Practice; PHI
Rajendran V and Marikani; Material science; TMH
Sriniwasan R; Engineering materials and Metallurgy; TMH
Navneet Gupta, Material Science & Engineering, Dhanpat Rai.
B. K. Agrawal, Introduction to Engineering Materials, TMH.
Mechanisms and Machines: Mechanism, machine, plane and space mechanisms, kinematic pairs, kinematic chains and their classification, degrees of freedom, Grubler’s criterion, kinematic inversions of four bar mechanism and slider crank mechanism, equivalent linkages, pantograph, straight line motion mechanisms, Davis and Ackermann’s steering mechanisms, Hooke’s joint.
Kinematic analysis of plane mechanisms using graphical and Cartesian vector notations: Planar kinematics of a rigid body, rigid body motion, translation, rotation about a fixed axis, absolute general plane motion. General case of plane motion, relative velocity method, velocity and acceleration analysis, instantaneous center and its application, Kennedy’s theorem, relative motion, Coriolis component of acceleration; velocity and acceleration analysis using complex algebra (Raven’s) method.
Cams: Classification of followers and cams, radial cam nomenclature, analysis of follower motion (uniform, modified uniform, simple harmonic, parabolic, cycloidal), pressure angle, radius of curvature, synthesis of cam profile by graphical approach, cams with specified contours.
Gear Trains: Simple, compound, epicyclic gear trains; determination of gear speeds using vector, analytical and tabular method; torque calculations in simple, compound and epicyclic gear trains.
Gyroscopic Action in Machines: angular velocity and acceleration, gyroscopic torque/ couple; gyroscopic effect on naval ships; stability of two and four wheel vehicles, rigid disc at an angle fixed to a rotating shaft
Rattan SS; Theory of machines; TMH
Ambekar AG; Mechanism and Machine Theory; PHI.
Sharma CS; Purohit K; Theory of Mechanism and Machines; PHI.
Thomas Bevan; Theory of Machines; Pearson/ CBS PUB Delhi.
Rao JS and Dukkipati; Mechanism and Machine Theory; NewAge Delhi.
Dr.Jagdish Lal; Theory of Machines; Metropolitan Book Co; Delhi –
Ghosh,A,.Mallik,AK; Theory of Mechanisms & Machines, 2e,; Affiliated East West Press, Delhi.
To study all inversions of four-bar mechanisms using models
Draw velocity and acceleration polygons of all moving link joints in slider crank mechanism
Determination of velocity and acceleration in above using method of graphical differentiation
To study working of differential gear mechanism.
To study working of sun and planet epicycle gear train mechanism using models
To plot fall and rise of the follower versus angular displacement of cam and vice versa.
Study of universal gyroscope
Analytical determination of velocity and acceleration in simple mechanism using Roven’s M.
(b) Steam nozzles: isentropic flow of vapors, flow of steam through nozzles, condition for maximum discharge, effect of friction, super-saturated flow.
Nag PK; Power plant Engineering; TMH
Thermodynamics by Gordon J. Van Wylen
P.K.Nag; Basic and applied Thermodynamics; TMH
Ganesan; Gas turbines; TMH
Heat Engines by V.P. Vasandani & D. S. Kumar
R. Yadav Steam and Gas Turbines
R.Yadav Thermal Engg.
Kadambi & Manohar; An Introduction to Energy Conversion – Vol II. Energy conversion cycles
Study of working of some of the high pressure boilers like Lamont or Benson
Study of Induced draft/forced and balanced draft by chimney
Determination of Calorific value of a fuel
Study of different types of steam turbines
Determination of efficiencies of condenser
Boiler trail to chalk out heat balance sheet
Determination of thermal efficiency of steam power plant
Determination of Airflow in ducts and pipes.
To find out efficiencies of a reciprocating air compressor and study of multistage Compressors .
Find Out heat transfer area of a parallel flow/counter flow heat exchanger
Modi & Seth; Fluid Mechanics; Standard Book House, Delhi
Streeter VL, Wylie EB, Bedford KW; Fluid Mechanics; TMH
Som and Biswas; Fluid Mechnics and machinery; TMH
Cengal; Fluid Mechanics; TMH
White ; Fluid Mechanics ; TMH
Gupta; Fluid Mechanics; Pearson
JNIK DAKE; Essential of Engg Hyd; Afrikan Network & Sc Instt. (ANSTI)
R Mohanty; Fluid Mechanics; PHI
To determine the local point pressure with the help of pitot tube.
To find out the terminal velocity of a spherical body in water.
Calibration of Orifice meter and Venturi meter
Determination of Cc, Cv, Cd of Orifices
Calibration of Nozzle meter and Mouth Piece
Reynolds experiment for demonstration of stream lines & turbulent flow
Determination of meta-centric height
Determination of Friction Factor of a pipe
To study the characteristics of a centrifugal pump.
Verification of Impulse momentum principle.
C# for Programmers by Harvey Deitel, Paul Deitel, Pearson Education
Balagurusamy; Programming in C#; TMH
Web Programming by Chris Bates, Wiley
XML Bible by Elliotte Rusty Harold ,
ASP .Net Complete Reference by McDonald, TMH.
ADO .Net Complete Reference by Odey, TMH
Working with call backs and delegates in C#
Code access security with C#.
Creating a COM+ component with C#.
Creating a Windows Service with C#
Interacting with a Windows Service with C#
Using Reflection in C#
Sending Mail and SMTP Mail and C#
Perform String Manipulation with the String Builder and String Classes and C#:
Using the System .Net Web Client to Retrieve or Upload Data with C#
Reading and Writing XML Documents with the XML Text-Reader/-Writer Class and C#
Working with Page and forms using ASP .Net.
Data Sources access through ADO.Net,
Working with Data readers , Transactions
Creating Web Application.
B.E. 401 - ENGINEERING MATHEMATICS III
Functions of complex variables : Analytic functions, Harmonic Conjugate, Cauchy-Riemann Equations, Line Integral, Cauchy’s Theorem, Cauchy’s Integral Formula, Singular Points, Poles & Residues, Residue Theorem , Application of Residues theorem for evaluation of real integrals
Errors & Approximations, Solution of Algebraic & Trancedental Equations (Regula Falsi , Newton-Raphson, Iterative, Secant Method), Solution of simultaneous linear equatins by Gauss Elimination, Gauss Jordan, Crout’s methods , Jacobi’s and Gauss-Siedel Iterative methods
Difference Operators, Interpolation ( Newton Forward & Backward Formulae, Central Interpolation Formulae, Lagrange’s and divided difference formulae ), Numerical Differentiation and Numerical Integration.
Solution of Ordinary Differential Equations(Taylor’s Series, Picard’s Method, Modified Euler’s Method, Runge-Kutta Method, Milne’s Predictor & Corrector method ), Correlation and Regression, Curve Fitting (Method of Least Square).
Concept of Probability : Probability Mass function, Probability density function. Discrete Distribution: Binomial, Poisson’s, Continuous Distribution: Normal Distribution, Exponential Distribution ,Gamma Distribution ,Beta Distribution ,Testing of Hypothesis |:Students t-test, Fisher’s z-test, Chi-Square Method
Reference:
Numerical Methods using Matlab by J.H.Mathews and K.D.Fink, P.H.I.
Numerical Methods for Scientific and Engg. Computation by MKJain, Iyengar and RK Jain, New Age International Publication
Mathematical Methods by KV Suryanarayan Rao, SCITECH Publuication
Numerical Methods using Matlab by Yang,Wiley India
Pobability and Statistics by Ravichandran ,Wiley India
Mathematical Statistics by George R., Springer
Crystal Atoms of Solid: Structure of atom binding in solids metallic, Vander walls, ionic and covalent, Space lattice and crystal system arrangement of atoms in BCC, FCC and HCP crystal. Manufacture of Refractory and Ferrous Metals: Properties uses and selection of acid, basic and natural refractory, metallurgical coke, Properties, types, uses and brief description of the manufacturing processes for iron and steel making.
Plastic deformation of Metals: Point and line defects in crystals, their relation to mechanical properties, deformation of metal by slip and twinning stress strain curves of poly crystalline materials viz. mild steel cast iron and brass yield point phenomenon. Cold and hot working of metals and their effect on mechanical properties, annealing of cold worked metals, principles of re-crystallization and grain growth phenomenon, fracture in metal and alloys, ductile and brittle fracture, fatigue failure
Alloy Formation and Binary Diagram: Phase in metal system solution and inter-metallic compounds. Hume-Rottery’s rules, solidification of pure metals and alloy equilibrium diagrams of isomorphous, eutectic peritectic and eutectoid system, non-equilibrium cooling and coring iron, iron carbon equilibrium diagram.
Heat Treatment of Alloys Principles of Heat Treatment of Steel: TTT curves heat treating processes, normalizing, annealing spherodizing, hardening, tempering, case hardening, aus- tempering, mar-tempering, precipitation hardening process with reference to Al, Cu alloys
Properties of Material: Creep Fatigue etc., Introduction to cast iron and steel, Non Ferrous metals base alloys, Bronze, Brasses, Duralumin, and Bearing Metals. Plastics, Composites and ceramics: Various types of plastics, their properties and selection. Plastic molding technology, FRP, GRP resins adhesive, elastomers and their application. Powder Metallurgy: Property and Applications of Powder Metallurgy, Various process and methods of making products by powder Metallurgy techniques.
Narula GK, KS and GuptaVK; Material science; TMH
Raghavan V; Material Science and Engineering, PHI Publication.
Raghavan V; Physical Metallurgy Principles and Practice; PHI
Rajendran V and Marikani; Material science; TMH
Sriniwasan R; Engineering materials and Metallurgy; TMH
Navneet Gupta, Material Science & Engineering, Dhanpat Rai.
B. K. Agrawal, Introduction to Engineering Materials, TMH.
Mechanisms and Machines: Mechanism, machine, plane and space mechanisms, kinematic pairs, kinematic chains and their classification, degrees of freedom, Grubler’s criterion, kinematic inversions of four bar mechanism and slider crank mechanism, equivalent linkages, pantograph, straight line motion mechanisms, Davis and Ackermann’s steering mechanisms, Hooke’s joint.
Kinematic analysis of plane mechanisms using graphical and Cartesian vector notations: Planar kinematics of a rigid body, rigid body motion, translation, rotation about a fixed axis, absolute general plane motion. General case of plane motion, relative velocity method, velocity and acceleration analysis, instantaneous center and its application, Kennedy’s theorem, relative motion, Coriolis component of acceleration; velocity and acceleration analysis using complex algebra (Raven’s) method.
Cams: Classification of followers and cams, radial cam nomenclature, analysis of follower motion (uniform, modified uniform, simple harmonic, parabolic, cycloidal), pressure angle, radius of curvature, synthesis of cam profile by graphical approach, cams with specified contours.
Gear Trains: Simple, compound, epicyclic gear trains; determination of gear speeds using vector, analytical and tabular method; torque calculations in simple, compound and epicyclic gear trains.
Gyroscopic Action in Machines: angular velocity and acceleration, gyroscopic torque/ couple; gyroscopic effect on naval ships; stability of two and four wheel vehicles, rigid disc at an angle fixed to a rotating shaft
Rattan SS; Theory of machines; TMH
Ambekar AG; Mechanism and Machine Theory; PHI.
Sharma CS; Purohit K; Theory of Mechanism and Machines; PHI.
Thomas Bevan; Theory of Machines; Pearson/ CBS PUB Delhi.
Rao JS and Dukkipati; Mechanism and Machine Theory; NewAge Delhi.
Dr.Jagdish Lal; Theory of Machines; Metropolitan Book Co; Delhi –
Ghosh,A,.Mallik,AK; Theory of Mechanisms & Machines, 2e,; Affiliated East West Press, Delhi.
To study all inversions of four-bar mechanisms using models
Draw velocity and acceleration polygons of all moving link joints in slider crank mechanism
Determination of velocity and acceleration in above using method of graphical differentiation
To study working of differential gear mechanism.
To study working of sun and planet epicycle gear train mechanism using models
To plot fall and rise of the follower versus angular displacement of cam and vice versa.
Study of universal gyroscope
Analytical determination of velocity and acceleration in simple mechanism using Roven’s M.
(b) Steam nozzles: isentropic flow of vapors, flow of steam through nozzles, condition for maximum discharge, effect of friction, super-saturated flow.
Nag PK; Power plant Engineering; TMH
Thermodynamics by Gordon J. Van Wylen
P.K.Nag; Basic and applied Thermodynamics; TMH
Ganesan; Gas turbines; TMH
Heat Engines by V.P. Vasandani & D. S. Kumar
R. Yadav Steam and Gas Turbines
R.Yadav Thermal Engg.
Kadambi & Manohar; An Introduction to Energy Conversion – Vol II. Energy conversion cycles
Study of working of some of the high pressure boilers like Lamont or Benson
Study of Induced draft/forced and balanced draft by chimney
Determination of Calorific value of a fuel
Study of different types of steam turbines
Determination of efficiencies of condenser
Boiler trail to chalk out heat balance sheet
Determination of thermal efficiency of steam power plant
Determination of Airflow in ducts and pipes.
To find out efficiencies of a reciprocating air compressor and study of multistage Compressors .
Find Out heat transfer area of a parallel flow/counter flow heat exchanger
Modi & Seth; Fluid Mechanics; Standard Book House, Delhi
Streeter VL, Wylie EB, Bedford KW; Fluid Mechanics; TMH
Som and Biswas; Fluid Mechnics and machinery; TMH
Cengal; Fluid Mechanics; TMH
White ; Fluid Mechanics ; TMH
Gupta; Fluid Mechanics; Pearson
JNIK DAKE; Essential of Engg Hyd; Afrikan Network & Sc Instt. (ANSTI)
R Mohanty; Fluid Mechanics; PHI
To determine the local point pressure with the help of pitot tube.
To find out the terminal velocity of a spherical body in water.
Calibration of Orifice meter and Venturi meter
Determination of Cc, Cv, Cd of Orifices
Calibration of Nozzle meter and Mouth Piece
Reynolds experiment for demonstration of stream lines & turbulent flow
Determination of meta-centric height
Determination of Friction Factor of a pipe
To study the characteristics of a centrifugal pump.
Verification of Impulse momentum principle.
C# for Programmers by Harvey Deitel, Paul Deitel, Pearson Education
Balagurusamy; Programming in C#; TMH
Web Programming by Chris Bates, Wiley
XML Bible by Elliotte Rusty Harold ,
ASP .Net Complete Reference by McDonald, TMH.
ADO .Net Complete Reference by Odey, TMH
Working with call backs and delegates in C#
Code access security with C#.
Creating a COM+ component with C#.
Creating a Windows Service with C#
Interacting with a Windows Service with C#
Using Reflection in C#
Sending Mail and SMTP Mail and C#
Perform String Manipulation with the String Builder and String Classes and C#:
Using the System .Net Web Client to Retrieve or Upload Data with C#
Reading and Writing XML Documents with the XML Text-Reader/-Writer Class and C#
Working with Page and forms using ASP .Net.
Data Sources access through ADO.Net,
Working with Data readers , Transactions
Creating Web Application.