Mechanical Engineering background

Mechanical Engineering

From the fundamentals of mechanics and thermodynamics to intelligent systems, robotics, and energy innovation — Mechanical Engineering at ITECCS bridges classical theory with modern technology and real-world design.

Foundation

Core Mechanics & Analytical Foundations

Analytical and mathematical principles underlying the modeling and analysis of all mechanical systems.

  • Engineering Analysis Using Numerical Methods
  • Mathematical Methods for Engineers
  • Computational Methods in Engineering
  • Analytical Mechanics
  • Continuum Mechanics
Energy & Transport

Thermal, Fluid & Energy Systems

Energy conversion, fluid mechanics, and sustainable systems shaping modern industry and climate technologies.

  • Thermodynamics
  • Fluid Mechanics
  • Heat Transfer
  • Heat and Mass Transfer
  • Compressible Flow
  • Internal Combustion Engines
  • Gas Turbines for Power and Propulsion
  • Energy Systems for Buildings
  • Sustainable Energy Solutions
  • Thermal Systems Design & Simulation
Motion & Control

Dynamics, Vibrations & Control Systems

Dynamic modeling, vibration analysis, and feedback control for stable, high-performance mechanical systems.

  • Mechanical Vibrations
  • Dynamic Systems & Controls
  • Kinematics & Dynamics of Machinery
  • Advanced Structural Dynamics
  • Adaptive & Nonlinear Control
  • Robust & Optimal Control
  • Vehicle Control Systems
  • Active Vibration Control
  • Smart Structures & Adaptive Systems
Automation & Intelligence

Mechatronics, Robotics & Intelligent Systems

Integration of mechanical, electrical, and computing systems for robotics, automation, and smart machines.

  • Introduction to Mechatronics
  • Electronics & Instrumentation
  • Robotics and Automation
  • Robotics Laboratory
  • Human–Robot Interaction
  • Industrial Internet of Things (IIoT)
  • Soft Robotics & Bioinspired Actuation
  • Autonomous Vehicle Systems
  • Assistive & Wearable Robotics
Design & Innovation

Design, Manufacturing & Product Innovation

Hands-on engineering design from concept to prototype, blending CAD, optimization, and creativity.

  • Engineering Design and Economics
  • Mechanical Design I & II
  • Engineering Design & Project (Capstone)
  • Computer-Aided Design & Manufacturing (CAD/CAM)
  • Additive Manufacturing & Rapid Prototyping
  • Design for Manufacturing & Assembly
  • Materials Selection in Design
  • Global Collaborative Design
  • Optimization Techniques in Engineering
Materials & Mechanics

Materials, Solids & Nanomechanics

Explore material behavior from atomic structure to large-scale applications and advanced composites.

  • Materials Science & Engineering
  • Composite Materials
  • Deformation & Fracture
  • Fatigue & Failure Analysis
  • Nano & Micromechanics of Materials
  • Materials in Extreme Environments
  • Computational Materials Engineering
  • Advanced Materials Characterization
  • Biomaterials & Smart Materials
Flight & Mobility

Aerospace, Automotive & Vehicle Systems

Design and control of systems operating in air, space, and land — from drones to advanced propulsion.

  • Aerospace Propulsion Systems
  • Spacecraft Propulsion
  • Drone Technology & Flight Operations
  • Automotive Engineering
  • Vehicle Control & Dynamics
  • Gas Turbines for Power & Propulsion
  • Hypersonic Flow & Compressible Aerodynamics
  • Aerospace Structures
  • Engineering Acoustics & Noise Control
Bioengineering

Biomechanics & Bioinspired Systems

Applying mechanical principles to living systems and bioinspired technologies.

  • Introduction to Mechanobiology
  • Cell Mechanobiology
  • Musculoskeletal Biomechanics
  • Biological Transport Phenomena
  • Bio-Inspired Technology
  • Biomedical Systems Design
  • BioMEMS & Microscale Systems
  • Soft Robotics for Medicine
  • Biomechanical Modeling & Simulation
Simulation & AI

Computational & Data-Driven Engineering

Advanced modeling, multiphysics simulation, and AI for solving complex mechanical problems.

  • Computational Fluid Dynamics (CFD)
  • Finite Element Analysis & Simulation
  • Computational Solid Mechanics
  • Multiphysics Modeling
  • Optimization & Inverse Problems
  • Machine Learning for Mechanics
  • Physics-Informed Neural Networks (PINNs)
  • High-Performance Computing
  • Data Visualization & Analytics
Professional Growth

Leadership, Research & Professional Practice

Building leadership, innovation, and research skills through hands-on projects and professional development.

  • Technology, Innovation & Humanistic Engineering
  • Engineering Leadership & Project Management
  • Global Collegiate Design Projects
  • Professional Communication & Ethics
  • Independent & Directed Studies
  • Undergraduate & Graduate Research
  • Mechanical Engineering Laboratory
  • Special Topics in Energy & Design
  • Capstone Design & Senior Projects