6.3 Tentative Schedule of Classes
(By Area of Concentration) for the 2018-2019 Academic Year
6.3.1 – Advanced Energy Technology
Fall
- Mech Eng 246 – Advanced Energy Conversion Principles
- Mech Eng 250A – Advanced Conductive and Radiative Transport (formerly listed as ME 292E)
- Mech Eng 255 – Advanced Combustion Process
Spring
- Mech Eng 250B (3 units) – Advanced Convective Tranport and Computational Methods (formerly ME 252) Scheduled on Tu/Th 9:30 – 11 am (NEW)
- Mech Eng 254 (3 units) – Thermodynamics I (NEW)
- Mech Eng 256 (3 units) – Combustion
- Mech Eng 259 (3 units) – Microscale Thermophysics and Heat Transfer
6.3.2 – Modeling and Simulation of Physical Processes and Systems
Fall
- Mech Eng C224 – Mechanical Behavior of Engineering Materials
- Mech Eng 280A – Introduction to the Finite Element Method (REQUIRED)
- Mech Eng 290D – Solid Modeling and CAD/CAM Fundamentals
Spring
- Mech Eng C201(3 units) – Modeling and Simulation of Advanced Manufacturing Processes (required)
- Mech Eng 221 (3 units) – Graduate Introduction to Lean Manufacturing Systems (NEW)
- Mech Eng 229 (3 units) – Design of Basic Electro-Mechanical Devices
- Mech Eng 280B (3 units) – Finite Element Methods in Nonlinear Continua
6.3.3 – Experiential Advanced Control Systems Design
Fall
- Mech Eng C231A / El Eng C220B (3 units)- Experiential Advanced Control Design I (required)
- Mech Eng C232 / El Eng C220A (3 units) – Advanced Control Systems I
- Mech Eng 292B – 002 (3 units) – Feedback Control of Legged Robots (new to MEng)
- Mech Eng 292B – 003 (3 units) – Control and Dynamics of Unmanned Aerial Vehicles (new to MEng)
Spring
- Mech Eng C231B / El Eng C220C (3 units) – Experiential Advanced Control Design II (Tentatively scheduled on Tu/Th from 12:30 – 2 pm) (required)
- Mech Eng C237 (3 units) – Control of Nonlinear Dynamic Systems. Scheduled on
- Tu/Th 2 – 3:30 pm (NEW)
- Mech Eng 233 (3 units) – Advanced Control Systems II
- Mech Eng 235 (4 units) – Design of Microprocessor-Based Mechanical Systems
6.3.5 – Product Design
Fall
- Mech Eng 224 ( 3 units) – Mechanical Behavior of Engineering Materials
- Mech Eng C231A / El Eng C220B (3 units) – Experiential Advanced Control Design
- Mech Eng 239 (4 units) – Advanced Design and Automation
- Mech Eng C278 (3 units) – Advanced Designing for the Human Body
- Mech Eng 290D (3 units) – Solid Modeling and CAD/CAM Fundamentals
- Mech Eng 292C-001 (3 units)- Human-Centered Design Methods
- Mech ENg 292C-002 (4 units) – Upper-Limb Prosthesis Design
Spring
- Mec Eng C205 (3 units) – Critical Making on Mondays from 10 – 12 noon – NEW (Enrollment by application only. Application available in end of October)
- Mech Eng 229 (3 units) – Design of Basic Electro-Mechanical Devices
- Mech Eng 235 (4 units) – Design of Microprocessor-Based Mechanical Engineering
- Mech Eng 290H (3 units) – Green Product Development: Design for Sustainability – Day/Time TBD. (NEW)
- Mech Eng 292C-001 (3 units) – “Reimagining Mobility” Room shared with DesInv 181 and taught on Tu/Th 3 – 4:30 pm. (Enrollment by application/instructor permission only. Application link: https://goo.gl/forms/5s12A9L0HAZ2np9c2) (NEW)
- Mech Eng 292C-002 (3 units) – “Global Product Development” Room shared with DesInv 190-002 and the lecture time is Tu/Th 11 – 2pm. (ENROLLMENT: This course is open to master’s students and PhD candidates who have prior experience with the human-centered design process. Admission to the course is by application. The application deadline is October 31st and the form can be found at: http://gpd.jacobshall.org ) (NEW)
6.3.6 – Biomechanics
Fall
- Mech Eng C278( 3 units) – Advanced Designing for the Human Body
- Mech Eng 224 (3 units) – Mechanical Behavior of Engineering Materials
- Mech Eng 239 (3 units) – Advanced Design and Automation
- Mech Eng 290D (3 units) – Solid Modeling and CAD/CAM Fundamentals
Spring
- Mech Eng C210 (3 units) – Advanced Orthopedic Biomechanics
- Mech Eng C213 (3 units) – Fluid Mechanics of Biological Systems
- Mech Eng C215 (3 units) – Advanced Structural Aspects of Biomaterials
- Mech Eng C225 (3 units) – Deformation and Fracture of Engineering Materials