Engineering
Catalog pages 339-342
Subject abbreviation: ENGR The Marlan and Rosemary Bourns College of Engineering
Advising Office, 310 Skye Hall
- (951) 827-ENGR (3647);
student.engr.ucr.edu
Courses in Engineering are a multidisciplinary approach to providing students with training in concepts common to multiple engineering fields. The courses support the undergraduate programs in all disciplines in the Marlan and Rosemary Bourns College of Engineering. Refer to these programs in this section of the cata- log for information on course application.
Graduate Program
The Bourns College of Engineering (BCOE) offers an online Master of Science (M.S.) degree in Engineering.
Online M.S. Graduate Program Assistant
- (951) 827-5196, MSE 313
Kambiz Vafai, Ph.D., Program Director
Online M.S. Committee Evangelos Christidis, Ph.D. (Computer Science) Thomas Fryer Ph.D. (Online Engineering) Heejung Jung, Ph.D. (Mechanical Engineering) Bahram Mobasher, Ph.D. (Physics and Astronomy) Hamed Mohsenian-Rad, Ph.D. (Electrical and Computer Engineering) Cengiz Ozkan, Ph.D. (Mechanical Engineering) Victor Rodgers, Ph.D. (Bioengineering) Bryan Wong, Ph.D. (Chemical and Enviromental Engineering)
Online Master’s Degree
The online (M.S.) degree program is designed for working professional engineers who wish to advance their knowledge in a field and enhance their value in the workplace. Stu- dents in the program receive course materials including lectures, notes, assignments, and announcements over the internet. Exams are given by proctors at regional locations.
The BCOE online master’s program combines engineering and professional development classes. Another key component is a significant design experience, incorporating additional readings and knowledge of the courses taken. Admission The following criteria are considered during the admission process for the MSOL program:
- 1. A bachelor’s degree in engineering or
related field from an accredited institution
- 2. Official transcripts
- 3. Grade Point Average (GPA)
- 4. Graduate Record Examination (GRE)/
Fundamentals of Engineering (FE) scores*
- 5. TOEFL or IELTS scores (for international
applicants)
- 6. Evidence of significant professional
engineering experience
7.Professional certifications
- 8. Reference letters
*The GRE may be waived with an appeal made by a student with verified and substantial work experience (two years or more) in an Engi- neering company with a BS in Engineering or Natural Sciences (such as Physics, Mathemat- ics or Chemistry) or if the student has passed the Fundamentals of Engineering (FE) exam.
*The GRE may be waived for incoming students with a GPA of 3.2 or higher.
Course Requirements Students must complete 36 units (9 courses), six of which must be at the 200 level, including:
- 1. Most specializations require four
college- wide core courses from the professional engineering series for the core requirements. ENGR 200: Engineering in the Global Environment, ENGR 201: Technology Innovation and Strategy for Engineers, ENGR 202: Introduction to Systems Engineering, ENGR 203: Principles of Engineering Management.
- 2. Four specialization courses in an
engineering concentration area are listed for each specialization below. If necessary, students may substitute a total of one course from another specialization with approval of the MSOL director. Additionally, students may substitute a total of one core course with an additional specialization course, making it a total of five specialization courses with the approval of the MSOL Director.
- 3. Four units of ENGR 296V
MSOL Specializations
Bioengineering This specialization emphasizes principles and application of bioengineering based on a solid fundamental foundation in biological science and engineering to equip students with diverse communications skills and training in the most quantitative bioengineering research so that they can become leaders in their respective fields. Students can substitute a total of one course from the Environmental En- gineering Systems or Mechanical Engineering specializations.
BIEN 201: Mathematical Methods for Bioengineering
BIEN 223: Engineering Analysis of Physiological Systems
BIEN 224: Cellular and Molecular Engineering BIEN 249: Integration of Computational and Experimental Biology
BIEN 264: Biotransport Phenomena
BIEN 270: Transport with Reactions in Biological Systems
Chemical Chemical engineering applies its unique skills to improve healthcare, energy availability, chemicals and materials, and public safety.
CEE 200: Advanced Engineering Computation Develops problem-solving techniques for basic engineering systems including heat and mass transfer, coupled reactions, fluid flow potential, and control.
CEE 202: Transport Phenomena Topics include transport phenomena, potential flow, and boundary layer theories with applications to simultaneous heat, momentum, and mass transfer. Introduces numerical techniques used to solve advanced transport phenomena problems.
CEE 204: Advanced Kinetics and Reaction Engineering Emphasizes kinetics and mechanisms of heterogeneous reactions in different types of reactors. Specific topics include gas-solid noncatalytic reactions; catalytic surfaces and catalyst characterization; and adsorption, diffusion, reaction, and heat transfer in porous catalysts.
CEE 206: Advanced Chemical Engineering Thermodynamics Application of the laws of thermodynamics to phase and chemical reaction equilibrium. Introduction to statistical thermodynamics, molecular simulations, and the evaluation of thermodynamic properties from molecular simulations.
Data Science Any four of the following courses will be sufficient for the specialization course requirements for this specialization. If necessary, students can substitute a total of one course: BIEN 249, ME 230, or MSE 248.
STAT 206: Statistical Computing
STAT 208: Statistical Data Mining Methods
CS 167: Introduction to Big-Data Management
CS 224: Fundamentals of Machine Learning
CS 229: Machine Learning
CS 230: Computer Graphics
CS 235: Data Mining Techniques
CS 236: Database Management Systems
CS 242: Information Retrieval and Web Search
EE 240: Pattern Recognition
EE 241: Advanced Digital Image Processing
EE 243: Advanced Computer Vision
PHYS 243: Foundation of Applied Machine Learning
PHYS 244: Application of Visualization in Data Science
PHYS 247: Introduction to Applied Data Science Electrical Engineering – Power Systems: This specialization emphasizes the principles and common research trends in electric power systems analysis and operation and smart grid applications.
EE 123: Power Electronics; (or EE 153: Electric Drives)
EE 155: Power Systems Analysis
EE 218: Power System Steady State and Market Analysis
EE 232: Introduction to Smart Grid
* A prerequisite for EE 218 is required. EE 155 and ENGR 160 must be taken first.
The students for the EE specialization will also need to take ENGR 160 (Introduction to Engi- neering Optimization Techniques) in addition to three other core professional courses. That is the core professional courses for EE special- ization will be ENGR 160 plus three of the four core professional courses which are ENGR 200: Engineering in the Global Environment; ENGR 201: Technology Innovation and Strategy for Engineers; ENGR 202: Introduction to Systems Engineering and ENGR 203: Principles of Engi- neering Management.
Engineering Management: The Engineering Management specialization prepares engi- neers to lead and manage teams, projects, and organizations with technical workforces to meet strategic objectives. This specialization emphasizes applying the management function in the technological setting while recognizing engineering systems' basic and applied scienc- es. Students will increase their engineering and management knowledge to develop and deliver new products and services while creating value for their organization and customers.
- 1. Four of the following college-wide core
courses from the professional engineering series will be sufficient for the core requirements: ENGR 200: Engineering in the Global Environment, ENGR 201: Technology Innovation and Strategy for Engineers, ENGR 202: Introduction to Systems Engineering, ENGR 203: Principles of Engineering Management.
- 2. Four specialization courses in the
Engineering Management concentration: ENGR 204: Projects Portfolio Management, ENGR 205: Quality Management, ENGR 206: Engineering Economics, ENGR 207: Engineering Leadership and Organizational Behavior.
- 3. Four units of ENGR 296V
ENGR 200: Engineering in the Global Environment
ENGR 201: Technology Innovation and Strategy for Engineers
ENGR 202: Introduction to Systems Engineering
ENGR 203: Principles of Engineering Management
ENGR 204: Projects Portfolio Management
ENGR 205: Quality Management
ENGR 206: Engineering Economics
ENGR 207: Engineering Leadership and Organizational Behavior Environmental Engineering Systems (Water): Through a series of professional development and technical courses, this specialization will equip students with knowledge and insights that are needed for leadership in a water-re- lated environmental engineering career at a consulting firm, water/wastewater agency, fed- eral/state regulatory agency, or a large com- pany. Students can substitute a total of one course from the Bioengineering or Mechanical Engineering specialization.
CEE 225: Physical and Chemical Separation Processes
CEE 226: Biological Treatment Processes
CEE 241: Water Chemistry in Natural and Engineered Systems
CEE 243: Advanced Water Treatment Technologies
CEE 249: Integration of Computational and Environmental Engineering
Materials at the Nanoscale In addition to course work on engineering man- agement, systems, innovation and strategy, and working in a global environment, this program will focus on a broad range of nanoscale processes and applications through courses from UCR’s interdisci- plinary Materials Science and Engineering program. Students can substitute a total of one course from the Mechanical Engineering specialization.
MSE 201: Thermodynamic Foundations of Materials
MSE 210: Crystal Structure and Bonding
MSE 238: Introduction to Microelectromechanical Systems
MSE 248: Nanoscale Science and Engineering
Mechanical Engineering In addition to course work on engineering man- agement, systems, innovation and strategy, and working in a global environment, this program will focus on a broad range of courses in Sus- tainable Product Design, Fluid Systems, Secure and Reliable Control Systems and Manufacturing and Materials Processing. Students can substi- tute a total of one course from the Bioengineer- ing or Materials at the Nanoscale specialization.
ME 203: Design and Analysis of Engineering Experiments
ME 210: Sustainable Product Design
ME 223: Secure and Reliable Control Systems
ME 226: Vehicle Dynamics
ME 230: Computer-Aided Engineering Design
ME 240A: Fundamentals of Fluid Mechanics
ME 270: Introduction to Microelectromechanical Systems
ME 272: Nanoscale Science and Engineering
ME 274: Plasma-aided Manufacturing and Materials Processing
Specialization courses are offered by the participating derpartments, whereas core courses are offered at the college level to all students. Specialization courses are taught by BCOE faculty as traditional classes to on-cam- pus M.S. and Ph.D. students while also being delivered to online students. Online students are expected to satisfy the same requirements as on-campus students. Mobility Engineering: The program combines conventional and emerging areas of automo- tive and transportation engineering which are interconnected with advent of electrification of vehicles. The program emphasizes internal combustion engines, fuels, emissions, con- nected transportation system, shared mobility, autonomous vehicles, zero emission vehicles, and intelligent transportation system.
- 1. Two technical core courses: EE 246:
Intelligent Transportation Systems, ME 248: Internal Combustion Engines.
- 2. Any two of the following Engineering
Management core courses: ENGR 200: Engineering in the Global Environment, ENGR 201: Technology Innovation and Strategy for Engineers, ENGR 202: Introduction to Systems Engineering, ENGR 203: Principles of Engineering Management.
- 3. Any four of the specialization courses:
CEE 204: Advanced Kinetics and Reaction Engineering, CEE 233: Advanced Air Pollution Control and Engineering, CEE 235: Electrochemical Engineering, CEE 236: Energy: Production, Uses, Economics, and Sustainability, ME 117: Combustion and Energy Systems, ME 136: Environmental Impacts of Energy Production and Conversion, ME 226: Vehicle Dynamics.
For areas of specialization and further information, see msol.ucr.edu.
Courses
- ENGR 001 (E-Z): Professional Development and Mentoring (1 units)
- ENGR 002 (E-Z): Professional Development and Mentoring (1 units)
- ENGR 010: Introduction to Engineering (2 units)
- ENGR 060: Engineering Economics (4 units)
- ENGR 092: First-Year Seminar in Engineering (1 units)
- ENGR 096: Environment and Society (4 units)
- ENGR 101 (E-Z): Professional Development and Mentoring (1 units)
- ENGR 108: Technology in the Premodern World (4 units)
- ENGR 109: Technology in Modern Europe and America, 1700-Present (4 units)
- ENGR 118: Engineering Modeling and Analysis (4 units)
- ENGR 160: Introduction to Engineering Optimization Techniques (4 units)
- ENGR 170: Technology, Policy, and Ethics (4 units)
- ENGR 171: Globalization (4 units)
- ENGR 180W: Technical Communications (4 units)
- ENGR 181W: Technical Communications and Documentation (4 units)
- ENGR 190: Special Studies (1 to 5 units)
- ENGR 191S: Seminar in Sacramento (4 units)
- ENGR 198I: Individual Internship (1 to 12 units)
- ENGR 200: Engineering in the Global Environment (4 units)
- ENGR 201: Technology Innovation and Strategy For Engineers (4 units)
- ENGR 202: Introduction to Systems Engineering (4 units)
- ENGR 203: Principles of Engineering Management (4 units)
- ENGR 204: Projects Portfolio Management (4 units)
- ENGR 205: Quality Management (4 units)
- ENGR 206: Engineering Economics (4 units)
- ENGR 207: Engineering Leadership and Organizational Behavior (4 units)
- ENGR 296: Professional Project Design (1 to 4 units)