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Course Outcomes and Co-Po & Psos Mapping Name of Subject: - Computer Aided Design Semester and Year: - Vii Semester Fourth Year

The document outlines the course outcomes for a Computer Aided Design course taken in the seventh semester of a four-year degree program. It lists 5 course outcomes related to gaining knowledge of computer graphics, geometric modeling, and finite element analysis; explaining algorithms and modeling techniques; formulating and solving problems involving lines, transformations, curves, and finite elements; examining finite element analyses of bars and shafts; and designing machine elements through optimization.

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0% found this document useful (0 votes)
58 views1 page

Course Outcomes and Co-Po & Psos Mapping Name of Subject: - Computer Aided Design Semester and Year: - Vii Semester Fourth Year

The document outlines the course outcomes for a Computer Aided Design course taken in the seventh semester of a four-year degree program. It lists 5 course outcomes related to gaining knowledge of computer graphics, geometric modeling, and finite element analysis; explaining algorithms and modeling techniques; formulating and solving problems involving lines, transformations, curves, and finite elements; examining finite element analyses of bars and shafts; and designing machine elements through optimization.

Uploaded by

HEMANT BANSOD
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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Course Outcomes and CO-PO & PSOs Mapping

Name of Subject :- Computer Aided Design


Semester and year :- VII semester Fourth Year

S. N. CO Course Outcomes
Gain the knowledge of-
Computer Graphics
2D and 3D Transformation
1 CO1
Geometric Modeling of Engineering Objects
Finite Element Analysis
Optimization
Explain -
Algorithm for basic geometric entities like line, circle, ellipse
Translation, scaling, rotation, reflection and shear
Bezier curve, Cubic spline curve, B-spline curve, CSG, B-rep technique
2 CO2 using set theory, Wire frame modeling and solid modeling, Assembly
modeling.
Finite Element Method, Principle of Minimum potential energy, shape
function Constant strain triangle, truss element.
Objective of optimum design, normal and redundant specification.
Formulate and Solve-
Problems related to algorithm of line.
3 CO3 Transformation of geometric objects.
Bezier curve and generation of assembly sequence.
One dimensional and two dimensional problems on Finite Element method
Examine-
Temperature effects on simple bar element, torsion of a circular shaft and
4 CO4
simple bar element using Finite Element Method.
Plane truss and CST element using FEM
Design-
Simple machine element like tension bar, transmission shaft, helical spring
5 CO5
using optimum design techniques by considering different optimizing
parameters.

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