Prof. Arjun Kulkarni

Professor, Mechanical Engineering

πŸ“ Pune, Maharashtra


Experience

20+ years of teaching Thermodynamics, Fluid Mechanics, and Manufacturing Processes, with industrial consultancy in automotive and aerospace sectors.

Qualifications

Ph.D. in Thermal Engineering, M.Tech in Mechanical Engineering, B.Tech in Mechanical Engineering

Contact

arjun.kulkarni@email.com

+91-98XXX12345

βš™οΈ B.Tech in Mechanical Engineering

Mechanical Engineering is one of the broadest engineering disciplines, focusing on the design, analysis, manufacturing, and maintenance of mechanical systems that power industries and improve everyday life.

πŸ“Œ Summary

The curriculum covers thermodynamics, machine design, fluid mechanics, heat transfer, manufacturing processes, CAD/CAM, robotics, and renewable energy systems. It prepares graduates for careers in automotive, aerospace, energy, manufacturing, and robotics.

πŸ› οΈ Skills Taught
  • Design and analysis of mechanical components
  • Thermal system modeling and simulation
  • Computer-Aided Design (CAD) and Computer-Aided Manufacturing (CAM)
  • Manufacturing processes and quality control
  • Fluid dynamics and heat transfer
  • Robotics and automation systems
  • Maintenance and reliability engineering
πŸ“š Teaching Methodologies
  • Hands-on workshops with CNC machines and 3D printers
  • Simulation-based learning with CAD/CAE software
  • Industry visits to automotive and manufacturing plants
  • Collaborative design projects and competitions
  • Case studies on real-world engineering problems
  • Guest lectures from industry experts
πŸ“ Assessment Techniques
  • Design and fabrication projects
  • Practical lab-based evaluations
  • Technical reports and presentations
  • Mid-term and final theory exams
  • Viva on mechanical system design
🌐 Real-World Applications

Mechanical engineers work in automotive engineering, aerospace, renewable energy systems, manufacturing plants, robotics, HVAC systems, and defense industries worldwide.

πŸ”— Interdisciplinary Value

Mechanical Engineering intersects with electronics for mechatronics, computer science for automation and simulations, and materials science for advanced manufacturing.

🎯 Learning Outcomes

By the end of the course, students will be able to:

  • Design and optimize mechanical systems
  • Use CAD/CAM tools for manufacturing
  • Analyze thermal and fluid systems effectively
  • Implement automation and robotics in production
  • Develop sustainable and efficient engineering solutions
Verified
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