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Advanced Engineering

Design the future with robotics, sustainable energy, smart structures, and micro‑electronics. Our hands‑on program combines rigorous theory with cutting‑edge lab work to prepare you for the world's toughest engineering challenges.

🔬 25+ Research Labs 🏆 ABET Accredited ⚙️ Industry 4.0 Focus
Engineering lab

Build Tomorrow's World

Our Advanced Engineering program merges mechanical, electrical, civil, and software disciplines into a unified, project‑based curriculum. You'll work directly with industry partners on real‑world challenges — from designing autonomous vehicles to developing smart grid solutions.

With access to 25+ specialized labs, including the Robotics & Automation Center and the Nanomaterials Cleanroom, you'll graduate with a portfolio that sets you apart in the job market.

4 YearsB.Eng / M.Eng Track
1:8Faculty Ratio
95%Graduate Employment
200+Industry Partners
Engineering students

Program Curriculum

Core modules and elective pathways designed for hands‑on engineering mastery.

ENGR 101

Introduction to Engineering

Design process, CAD, and multidisciplinary project management.

MATH 120

Calculus & Linear Algebra

Advanced mathematics for engineering applications.

PHYS 110

Physics for Engineers

Mechanics, thermodynamics, and electromagnetic fundamentals.

CS 105

Programming for Engineers

Python & MATLAB for data analysis and simulation.

ENGR 210

Mechanics of Materials

Stress, strain, and structural analysis.

ENGR 220

Circuit Analysis & Electronics

Analog/digital circuits, microcontrollers, and PCB design.

ENGR 230

Thermodynamics & Fluid Dynamics

Energy systems, heat transfer, and fluid mechanics.

ENGR 240

Engineering Mathematics

Differential equations and numerical methods.

ROB 310

Robotics & Control Systems

Kinematics, sensors, and autonomous navigation.

ENGR 320

Sustainable Energy Systems

Solar, wind, and smart grid integration.

ENGR 330

Structural Design & Analysis

Steel, concrete, and composite materials.

ENGR 340

Microelectronics & VLSI

Semiconductor physics and chip design.

ENGR 450

Capstone Design Project

Industry-sponsored engineering project from concept to prototype.

ENGR 460

Advanced Manufacturing

3D printing, CNC, and Industry 4.0 technologies.

ENGR 470

Engineering Ethics & Management

Project leadership, IP law, and sustainability.

ELECTIVE

Biomedical / Aerospace / Nanotech

Specialized advanced topics with lab immersion.

Engineering Tracks

Choose a concentration that aligns with your passion.

Robotics & Automation

Autonomous systems, industrial robots, and AI-driven control.

Sustainable Energy

Renewable power, energy storage, and smart grid technologies.

Structural & Civil

Earthquake‑resistant design, infrastructure, and urban planning.

Microelectronics & VLSI

Chip design, semiconductor fabrication, and embedded systems.

State‑of‑the‑Art Labs

Work with the latest tools in our dedicated engineering facilities.

Robotics lab

Robotics & AI Lab

10+ industrial robot arms, autonomous drones, and reinforcement learning testbeds.

Cleanroom

Nanomaterials Cleanroom

Class 1000 facility for semiconductor fabrication and MEMS research.

Energy lab

Renewable Energy Testbed

Solar arrays, wind tunnels, and battery prototyping stations.

Career Outcomes

Join alumni pioneering innovation at top engineering firms worldwide.

$95KAvg. Starting Salary
95%Placement Within 6 Months
200+Hiring Partners
Tesla SpaceX Siemens Boeing Intel ABB Schneider Electric Boston Dynamics

Meet Your Professors

Dr. Elena Rostova

Dr. Elena Rostova

Head of Robotics Engineering

Pioneer in adaptive automation. Leads the Robotics & AI Lab with 15+ patents.

Prof. David Kim

Prof. David Kim

Chair of Sustainable Energy

Former lead engineer at Tesla Energy. Expert in grid‑scale storage solutions.

Dr. Anika Patel

Dr. Anika Patel

Professor of Structural Engineering

Specialist in earthquake‑resilient design. Consultant for international bridge projects.