The program emphasizes the application of theoretical knowledge to real-world engineering problems, preparing students for careers in structural engineering, aerospace engineering, and materials science.
The syllabus for a Master of Technology (M.Tech.) program in Engineering Mechanics typically includes advanced courses in mechanics, materials science, and structural analysis. Students delve into topics such as solid mechanics, fluid mechanics, finite element analysis, computational methods, and fracture mechanics. They also study advanced materials like composites and polymers. Additionally, the curriculum covers experimental techniques, numerical simulations, and research methodologies. The program emphasizes the application of theoretical knowledge to real-world engineering problems, preparing students for careers in structural engineering, aerospace engineering, and materials science. The exact syllabus may vary between institutions, but these core areas are commonly included.
Year 1
S.No | Subjects |
1 | Applied Elasticity |
2 | Applied Computational Methods |
3 | Experimental Methods & Design |
4 | Dynamics of Structure |
5 | Advanced Fluid Mechanics |
6 | Design of Industrial Structures |
7 | Mechanics of FRP Composite Materials |
8 | Finite Element Methods |
9 | Seminar/Project |
10 | Special Study/Industrial Training |
11 | Thesis |
Year 2
S.No | Subjects |
1 | Mechanical Behaviour of Materials |
2 | Carbon Nanotube and Carbon Nanostructures |
3 | Computational Material Science |
4 | Damage Modelling of Composite Material |
5 | Degradation of Material in Service |
6 | Electroacoustics |
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