| M.Sc. (Compulsory Courses) |
| Advancsd Mathematics |
3 |
| Design of Agricultural Machinary |
3 |
| Measurement and Instrumentation Techniques |
3 |
| Finite Element Method |
3 |
| Thesis |
6 |
| M.Sc. (Elective Courses) |
| Analysis of Agricultural Mechanization Systems |
3 |
| Soil Dynamics in Tillage and Traction |
3 |
| Workshop on Technology and Production Methods |
3 |
| Ergonomics |
3 |
| Design and Analysis of Engineering Experiments |
3 |
| Research Methodology |
3 |
| Special Problems |
3 |
| Physical & Mechanical Properties of Agricultural Products |
3 |
| Introduction to Electronics |
3 |
| Testing and Evaluation of Agricultural Machinary |
3 |
| Mechanism Design |
3 |
| Design by Computer |
3 |
| Strength of Material (III) |
3 |
| Principles and Technology of Recycling in Ag |
3 |
| Advanced Topics in Agricultural Machinery (I) |
3 |
| Ph.D. (Compulsory Courses) |
| Advanced Applied Mathemtics (II) |
3 |
| Finite Element Method (II) |
3 |
| Thesis |
18 |
| Ph.D. (Elective Courses) |
| Design of Agricultural Machinary (III) |
3 |
| Advanced Topics in Agricultural Machinary (II) |
3 |
| Automatic Control Systems |
3 |
| Post-Harvest Technology |
3 |
| Energy in Agriculture |
3 |
| Cotinuum Mechanics |
3 |
| Mechanical Behavior of Agricultural Materials |
3 |
| Automation of Agricultural Machinary |
3 |
| Simulation and Modeling in Ag. |
3 |
| Theory of Elasticity |
3 |
| Introduction to Mechatronics |
3 |
| Precision Ag. |
3 |
| Agricultural Soil Dynamics |
3 |
| Creep, Fatigue, and Failure |
3 |