Numerical Methods in Mechanical Engineering detailed syllabus scheme for B.Tech Automobile Engineering (AE), 2019 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.
For all other DBATU Syllabus for Automobile Engineering 4th Sem 2019, do visit AE 4th Sem 2019 Onwards Scheme. The detailed syllabus scheme for numerical methods in mechanical engineering is as follows.
Numerical Methods in Mechanical Engineering Syllabus for Automobile Engineering (AE) 2nd Year 4th Sem 2019 DBATU
Course Outcomes:
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Unit 1
Error Analysis
Significant figures, round-off, precision and accuracy, approximate and true error, truncation error and Taylor series, machine epsilon, data uncertainties, error propagation, importance of errors in computer programming.
Unit 2
Roots of Equations
Motivation, Bracketing methods: Bisection methods, Open methods: Newton Raphson method, Engineering applications.
Unit 3
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Unit 4
Numerical Integration and Differentiation
Motivation, Newtons Cotes Integration Formulas: Trapezoidal Rule, Simpsons rule, engineering applications Numerical differentiation using Finite divide Difference method
Unit 5
Curve Fitting and Interpolation
Motivation, Least Square Regression:
Linear Regression, Polynomial regression.
Interpolation:
Newtons Divide Difference interpolation, engineering applications.
Solution to Ordinary Differentiation Equations: Motivation, Eulers and Modified Eulers
Method, Heuns method, Runge-Kutta Method, engineering applications.
Unit 6
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Text Books:
- Steven C Chapra, Reymond P. Canale, Numerical Methods for Engineers, TataMcGraw Hill Publications, 2010.
- E.Balagurusamy, Numerical Methods, TataMcGraw Hill Publications, 1999.
Reference Books:
- V. Rajaraman, Fundamental of Computers, Prentice Hall of India,NewDelhi,2003.
- S. S. Sastri,IntroductoryMethodsofNumericalMethods,PrenticeHallofIndia,NewDelhi, 3rdedition,2003.
- K. E. Atkinson, An Introduction to Numerical Analysis,Wiley,1978.
- M.J. Maron, Numerical Analysis: A Practical Approach, Macmillan, New York, 1982Product Design Engineering – I BTID405 PCC 8 Product Design Engineering – I 1-0-2 2 Credits
Teaching Scheme:
Examination Scheme: Lecture-cum-demonstration: 1 hr/week Design Studio/Practical: 2 hrs/week Continuous Assessment: 60 Marks End Semester Exam: 40 Marks
Course Outcomes:
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Unit 1
Introduction to Engineering Product Design
Trigger for Product/Process/System, Problem solving approach for Product Design, Disassembling existing product( s ) and understanding relationship of components with each other, Sketching of components, identifying materials and their processing for final product, fitting of components, understanding manufacturing as scale of the components, Reverse engineering concept, case studies of products in markets, (or in each discipline), underlying principles, Case studies of product failures, Revival of failed products, Public/Societys perception of products, and its input into product design.
Unit 2
Ideation
Generation of ideas, Funneling of ideas, Short-listing of ideas for product( s ) as an individual or group of individuals, Sketching of products, Market research for need, competitions, Scale and cost, Initial specifications of products.
Unit 3
Conceptualisation
Designing of components, Drawing of parts and synthesis of a product from its component parts, Rendering the designs for 3-D visualization, Parametric modelling of product, 3-D visualization of mechanical products, Detail engineering drawings of components.
Unit 4
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Hands-on Activity Charts for Use of Digital Tools:
No. of hrs
Activity 1 Learn the basic vector sketching tools 2
Activity 2 General understanding of shading for adding depth to objects. Understanding of editing vectors 2
Activity 3 Begin developing a thought process for using digital sketching 3
Activity 4 Create a basic shape objects sphere, box cylinders 3
Activity 5 Create automotive wheel concepts 3
Activity 6 Understanding navigation and data panel interface 2
Activity 7 Solid and surface modelling, rendering 3-D models 4
Activity 8 Product market and product specification sheet 3
Activity 9
Documentation for the product
Reference Books:
- Model Curriculum for Product Design Engineer – Mechanical, NASSCOM (Ref . ID: SSC / Q4201, Version 1 . 0, NSQF Level: 7)
- Eppinger, S., and Ulrich, K.(2015) Product design and development. McGraw-Hill Higher Education.
- Green, W., and Jordan, P. W. (Eds.)(1999)Human factors in product design: current practice and future trends. CRC Press.
- Sanders, M. S., and McCormick, E. J. (1993) Human factors in engineering and design. McGRAW-HILL book company.
- Roozenburg, N. F., and Eekels, J. (1995) Product design: fundamentals and methods (Vol. 2) John Wiley and Sons Inc.
- Lidwell, W., Holden, K., and Butler, J.(2010) Universal principles of designs, revised and updated: 125 ways to enhance usability, influence perception, increase appeal, make better design decisions, and teach through design. Rockport Pub.
For detail syllabus of all other subjects of Automobile Engineering (AE) 4th Sem 2019 regulation, visit AE 4th Sem Subjects syllabus for 2019 regulation.