ApL203: Difference between revisions
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| credits = 4 | | credits = 4 | ||
| credit_structure = 3-1-0 | | credit_structure = 3-1-0 | ||
| pre_requisites = APL100 | | pre_requisites = [[APL100]] | ||
| overlaps = MCL111, MCL731 | | overlaps = [[MCL111]], [[MCL731]] | ||
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== ApL203 : Dynamics of Mechanical Systems == | == ApL203 : Dynamics of Mechanical Systems == | ||
Principles of Dynamics: Newton's laws and d'Alembert's principle; Energy methods; Generalized Dynamics: Kinematics and Kinetics, Kane's Equations and Lagrange's Equations. Introduction to Vibration with examples; Stability; Balancing; Cams and Gears; Introduction to Multibody Dynamics; Robot Dynamics; Application with Biosystems; Human Body Dynamics. | Principles of Dynamics: Newton's laws and d'Alembert's principle; Energy methods; Generalized Dynamics: Kinematics and Kinetics, Kane's Equations and Lagrange's Equations. Introduction to Vibration with examples; Stability; Balancing; Cams and Gears; Introduction to Multibody Dynamics; Robot Dynamics; Application with Biosystems; Human Body Dynamics. | ||
Latest revision as of 16:22, 14 April 2026
| ApL203 | |
|---|---|
| Dynamics of Mechanical Systems | |
| Credits | 4 |
| Structure | 3-1-0 |
| Pre-requisites | APL100 |
| Overlaps | MCL111, MCL731 |
ApL203 : Dynamics of Mechanical Systems
Principles of Dynamics: Newton's laws and d'Alembert's principle; Energy methods; Generalized Dynamics: Kinematics and Kinetics, Kane's Equations and Lagrange's Equations. Introduction to Vibration with examples; Stability; Balancing; Cams and Gears; Introduction to Multibody Dynamics; Robot Dynamics; Application with Biosystems; Human Body Dynamics.