Li, Bingbing

(2014) Assistant Professor of Manufacturing Systems Engineering and Management. B.S. 2005, M.S. 2008, Hefei University of Technology; Ph.D. 2012, Texas Tech University.

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Gandhi, Shereazad J.

(2012) Assistant Professor of Manufacturing System Engineering and Management. B.S. 2003, Illinois Institute of Technology; M.S. 2005, California State University, Northridge; Ph.D. 2010, Stevens Institute of Technology.

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MANUFACTURING SYSTEMS ENGINEERING

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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MANUFACTURING SYSTEMS ENGINEERING

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Manufacturing Systems Engineering

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L 2 Math 150A (also meets GE Basic Skills: Mathematic) 5 Chemistry 101/L (also meets GE Natural Science with lab requirement) 5 GE Basic Skills: Written Communication 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B 5 Physics 220A/L(also meets GE Natural Science with …

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Manufacturing Systems Engineering

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Manufacturing Systems Engineering

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Manufacturing Systems Engineering

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Manufacturing Systems Engineering

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 4 3 Total 14 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Engineering Management

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Engineering Management

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Engineering Management

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Engineering Management

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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ENGINEERING MANAGEMENT

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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ENGINEERING MANAGEMENT

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L Math 150A (also meets GE Basic Skills: Mathematic) Chemistry 101/L (also meets GE Natural Science with lab requirement)      GE Basic Skills: Written Communication     2 5 5 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B Physics 220A/L(also meets GE Natural Science with lab …

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Engineering Management

YEAR 1: 1st Semester Course Units Manufacturing Systems Engineering 101/L 2 Math 150A (also meets GE Basic Skills: Mathematics) 5 Chemistry 101/L (also meets GE Natural Science with lab requirement) 5 GE Basic Skills: Written Communication 3 Total 15 YEAR 1: 2nd Semester Course Units Math 150B 5 Physics 220A/L(also meets GE Natural Science with …

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Quality Management

The Quality Management Certificate Program is designed for post-baccalaureate individuals seeking access to or advancement in quality-related professions. Certified individuals will have knowledge of fundamental principles of quality management and control, lean processes, quality applications in project or service environments, and specialized quality management methods. Certified personnel will contribute to meeting industry and government needs …

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Materials Engineering

To meet the technological needs of industry, the Master of Science in Materials Engineering Program creatively combines opportunities for intellectual and experiential growth in engineering materials and processes. Access to exceptional state-of-the-art laboratories enables the development of advanced expertise in materials characterization, with projects addressing nanotechnology, MEMS, sensors, smart materials, microelectronics, optoelectronics, biomaterials and environmentally …

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Manufacturing Systems Engineering

The Master of Science in Manufacturing Systems Engineering facilitates in-depth knowledge of manufacturing systems based on engineering principles. The core foundation in computer-based and automated design, manufacturing and assembly is complimented by expertise in selected areas, such as automation and CAD/CAM, materials and processes, and quality and management. The evolving curriculum, contemporary laboratory facilities and …

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Manufacturing Systems Engineering

Manufacturing Systems Engineers turn ideas into reality. They play key roles in the creation of almost every single product that you see or use, from clothing to computers, from automobiles to space shuttles, from frozen foods to toys. The challenges of creating and using new materials to meet future needs, relieving human drudgery by automating …

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Manufacturing Systems Engineering

Almost half of all engineering positions are in or related to manufacturing. This Minor is designed to augment undergraduate studies in engineering and closely related fields to facilitate student opportunities for achievement in a manufacturing environment. Some students may find it necessary to complete selected prerequisite courses in mathematics, chemistry, physics and/or engineering. Note: The …

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Engineering Management

Taught by faculty with professional engineering management experience, the Engineering Management Program offers engineers and other technical professionals the opportunity to develop technical management and entrepreneurial skills pertinent to the management of existing and emerging technologies. The Program stresses the development of technological decision-making abilities, while also enabling continued intellectual growth in an area that …

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Engineering Management

More than two-thirds of all engineering professionals invest a significant portion of their career in managing and administering a wide range of technical engineering and research projects and budgets. As the engineering profession evolves, an increasing need has emerged for entry-level engineering professionals who have both a broad engineering background and the knowledge and ability to …

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Engineering Management

The Department of Manufacturing Systems Engineering and Management offers an Undergraduate Minor in Engineering Management. The Engineering Management Minor develops the skills in team building, interpersonal communications, decision making, project management, leadership and quality management that employers are increasingly looking for in both engineers and scientists, as well as in other employees in advanced technology …

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Automation and CAD/CAM

Many professional career positions are in functional areas in which knowledge and skills in automation technology and in computer-aided design and manufacturing are an integral part of the product design and implementation processes. This Minor is structured to augment undergraduate studies in engineering and related areas so as to facilitate student opportunities for access to …

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Manufacturing Systems Engineering and Management

Community Relations and Department Industrial Liaison Council The MSEM Department maintains strong relations with the community. We continuously review our Programs with students, alumni and employers of our graduates. The Department’s Industrial Liaison Council consists of members in the professional community to ensure that we receive a breadth of information on future engineering trends that …

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MSE 303. Innovation, Invention and Technology (3)

Prerequisite: Completion of Lower Division writing requirement. Exploration of the history, processes, methods and creators of technological innovations and inventions. Global contributions, creator diversity and technological failures are addressed. Critical assessments of technological innovation and invention. Not available for credit toward an Engineering Degree. (Available for General Education, Lifelong Learning.) (IC)

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MSE 498AA-AC. Supervised Individual Project (1-3)

Prerequisite: Instructor Consent. Individual student field-study projects supervised by individual faculty.

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MSE 499A-C. Independent Study (1-3)

Prerequisites: Senior or graduate standing in Manufacturing Systems Engineering; Written approvals of the faculty sponsor and the Department Chair. Admission is based on evidence of ability to pursue independent study in depth and on approval of a proposal submitted prior to registration in the course. (Design units: Varies)

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MSE 602. Engineering Innovation Management (3)

Prerequisites: MSE 504 and 608C, or equivalent. Starting, organizing, and managing engineering and technology research, design, and production. Technology and innovation; technological strategy and forecasting; technical entrepreneurship; evolving organizations; capitalization; and intellectual property.

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MSE 603. Computer Integrated Manufacturing (3)

Prerequisite: MSE 508/L or instructor consent. The integration of CAD/CAM, information management and communication technologies in manufacturing environments. Provides advanced instruction in design and implementation of integrated CAD/CAM, robotics and flexible manufacturing systems, with particular attention toward bridging information gaps. Topics include analysis of product definition processes, communication in manufacturing environments, technological and organization requisites …

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MSE 628. Applied Metallurgical Thermodynamics (3)

Prerequisite: Instructor consent. Application of thermodynamic laws to metallic alloys; solid solutions; alloying and solubility in solids; metal/metal, metal/liquid and metal/gas interactions; electrochemical processes in metals; defect structure of metals and metallic alloys; and applications.

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MSE 624. Failure Analysis (3)

Prerequisite: Instructor consent. Modes, mechanisms, models and theories of materials failures. Environmental-assisted cracking and fatigue of materials. Analyses of engineering failures. Emphasis is placed on the development and formulation of approaches to materials selection based on probable failure modes.

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MSE 300. Construction Technology Economy (3)

Prerequisites: ACCT 220; BLAW 280; ECON 160. Applications of engineering economy and capital investment analyses for construction management technology. Evaluation of project cash flows incorporating effective interest rates, inflation, price and wage rate changes, and uncertainty and risk. Considerations of national fiscal and monetary policy impact on project planning and analysis. Not available for credit …

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MSE 302. Women in Mathematics, Science and Engineering (3)

Prerequisite: Completion of Lower Division writing requirement. Exploration of the activities, contributions, and struggles of women in mathematics, science, engineering and related areas and professions, such as computer science. Research on individual women engaged in these fields. Investigation of different international, ethnic and culture-based practices and perspectives. Consideration of policy-related issues and intervention strategies addressing …

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MSE 601B. Engineering Statistics II (3)

Prerequisite: MSE 601A or equivalent. Continuation of statistical methods and their applications in engineering, inclusive of fixed effects, randomized block, factorial, fractional factorial, regression, response surface and random factors models.

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MSE 612. Seminar in Advanced Manufacturing Technologies (3)

Prerequisite: Instructor consent. Advanced studies of topics of current interest in advanced manufacturing technologies. The course consists in part of an intensive study of selected papers from current literature.

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MSE 494A, B, C. Academic Internship (1, 2, 3)

Prerequisite: Senior or graduate standing in a major in the Department of Manufacturing Systems Engineering and Management; Prior approval of the Department Internship Coordinator; Good standing as a matriculated student. Supervised practical professional experience relevant to the field of study in approved public or private organizations. Learning contracts and written reports required. Students may earn …

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MSE 611. Robotics and Programmable Automation (3)

Prerequisite: Instructor consent. Recommended Preparatory: MSE 511/L. Introduction to the design of programmable automation with robotic applications. Concepts, principles and applications of programmable automation in manufacturing environments. Methods, tools, practices and projects for design and implementation of programmable automation systems.

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MSE 699A-C. Independent Study (1-3)

Prerequisites: Classified status in M.S. Degree Program; Witten approvals from faculty sponsor and Department Graduate Coordinator or Department Chair. Admission is based in part on evidence of the ability to pursue independent study or research in-depth and approval of a proposal submitted prior to the time of registration.

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MSE 292CS. MSEM Robotics Project (2-2-2)

Prerequisite: Restricted to students selected to participate in an MSEM Robotics Project. This course entails the application of engineering theory and practice to a robotics engineering project. Service and mentoring concepts, instruction and practice are integral to the learning experience. This course offers a community service opportunity with activities relating to concepts and theories presented. …

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MSE 492. Advanced Undergraduate Research Program (3-3-3-3)

Prerequisites: MSE 392; Enrollment restricted to students selected to participate in the Undergraduate Research Program. This course provides faculty mentoring and guidance to selected undergraduate students in the development of their research skills. The course includes a combination of lecture-discussion, lab experimental research, literature research, field work, research presentations and other learning experiences. May be …

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MSE 527/L. Mechanical Behavior of Materials and Lab (2/1)

Prerequisite: Instructor consent. Corequisite: 527L. Relationships between mechanical behavior and materials structure. Elements of creep and fracture of metals, ceramics and composites. Introduction to linear-elastic fracture mechanics and its application to design and environmentally-assisted cracking lab methods for evaluating structural property relationships; fracture toughness measurements; and engineering applications to the design of structures and pressure …

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MSE 609. Advanced Topics in CAD/CAM (3)

Recommended Preparatory: MSE 508/L or equivalent. Areas of current interest in computer-aided design and manufacturing. Topics include computer graphics software and hardware, mathematical bases of geometric modeling, simultaneous engineering, manufacturability analysis, feature-based processing and database management for manufacturing environments.

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MSE 698A-C. Thesis or Graduate Project (1-6)

Prerequisites: Advancement to candidacy for the M.S. Degree; Written approvals of the faculty advisor and the Department Graduate Coordinator or Department Chair.

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MSE 410/L. Production Systems Modeling and Lab (2/1)

Prerequisite: Instructor consent. Corequisite: MSE 410L. Design and analysis of production systems. Fixed, flexible, and programmable automation. Modeling and simulation of alternative production systems in conjunction with the systems-design process. 2 hours lecture-discussion, 3 hours lab per week. Available for graduate credit. (Design units: 2.5)

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MSE 517. CAD/CAM Advanced Applications and Lab (2/1)

Prerequisite: MSE 516/L or instructor consent. Corequisite: MSE 517L. Examination and employment of advanced CAD/CAM tools throughout the product manufacturing life cycle. Applications to product and fabrication sequences modeling, and to the evaluation of product behavior during automated processes and assembly operations in the production system. 2 hours lecture-discussion, 3 hours lab per week.

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MSE 608C. Engineering Financial and Cost Analysis (3)

Recommended Preparatory: MSE 604 or equivalent. Fundamental concepts and methods of engineering financial cost analysis. Understanding the relevance of financial and managerial accounting to the effective management of engineering and technology projects.

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MSE 697MTL. Materials Engineering Comprehensive Directed Studies (3)

Preparatory: MSE 690; Classified status in M.S. Materials Engineering Program; Permission from supervising faculty advisor and Department Graduate Coordinator. Preparation for and completion of written comprehensive examination culminating experience requirement for the Master of Science in Materials Engineering Degree. (Credit/No Credit only)

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MSE 248/L. Engineering Cad and Graphics and Lab (2/1)

Prerequisite: MATH 250. Corequisite: MSE 248L. Development of concepts and skills in engineering graphics and computer-aided design (CAD). Reading, interpretation and preparation of working drawings; dimensioning and tolerances; and interpretation of blueprints. Orthographic and isometric representations; auxiliary and sectional views. 3-dimensional solid modeling. Application of CAD graphics in the design and development of an assembly. …

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MSE 409/L. Fundamentals of Computer-Aided Manufacturing and Lab (2/1)

Prerequisite: MSE 248/L or equivalent, or graduate status. Corequisite: MSE 409L. Topics in computer-aided manufacturing (CAM). Fixed, programmable and flexible automation; numerical control technology; manual NC programming; post-processing; graphical NC programming; and NC programming with CAD/CAM systems. Selection and design of tooling. 2 hours lecture-discussion, 3 hours of lab per week. (Design units: 1.5)

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MSE 516/L. CAD/CAM Advanced Tools and Lab (2/1)

Prerequisite: Instructor consent. Corequisite: MSE 516L. Advanced approaches to 2- and 3-dimensional computer-aided design and manufacturing. Part and assembly design, stress and mock-up using such advanced tools as CATIA. Design projects and applications. 2 hours lecture-discussion, 3 hours lab per week.

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MSE 608B. Management of Engineering Professionals (3)

Prerequisite: MSE 504 or equivalent. Study of special considerations in the management of engineering professionals, including selection, performance, termination and conflict situations. The course consists in part of the study of selected current publications.

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MSE 697MGT. Engineering Management Directed Comprehensive Studies (3)

Preparatory: Classified status in M.S. Engineering Management; Satisfactory completion of at least 27 semester units in formal program of study; Supervising faculty advisor and Graduate Coordinator permission. Preparation for and completion of written comprehensive case studies culminating experience requirement for the Master of Science in Engineering Management Degree. (Credit/No Credit only)

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MSE 105. Introduction to Computer-Aided Graphics Tools (3)

Introduction to the use of computer-aided (CA) graphics tools. Development of skills and techniques in graphical, pictorial and rotational representation. Students will be able to work on an individual project tailored to meet the needs of their field of study, and post their project on the Web. Not available for credit toward an Engineering Degree. …

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MSE 407. Manufacturing Systems (3)

Prerequisite: Instructor consent. Principles, practices and methodologies of manufacturing systems. Effective design and implementation of manufacturing operations, production, control, quality and automated systems. (Design units: 1.0)

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MSE 514. Reliability and Maintainability (3)

Recommended Preparatory: MSE 362 or equivalent. Reliability and maintainability as design parameters. Assessing and verifying design reliability, maintainability and failure modes. Applications of reliability design methodology. (Design units: 1.0)

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MSE 690. Materials Engineering Research Practicum (3)

Prerequisite: Instructor consent. Applications of advanced materials and processes, engineering laboratory research techniques and methodologies to studies of current interest, such as nanotechnology, MEMS, sensors, smart materials, microelectronics, optoelectronics, bio-materials and environmentally-assisted cracking of advanced materials.

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MSE 101/L. Introduction to Engineering and Lab (1/1)

Corequisite: MSE 101L. Introduction to the engineering profession and academic programs. Orientation to the University, the College and its Departments. Development of study, communication, problem-solving, design, analytical and computing skills. Introduction to internet, word processing, spread sheet, computer-aided design and presentation software. Design project development and team experience. 1 hour lecture-discussion, 3 hours lab per …

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MSE 406. Engineering Cost Analysis (3)

Recommended Preparatory: MSE 304, 362. Principles of cost analysis and estimating for the evaluation of engineering design and production, with emphasis on evaluating innovations and inventions. Case studies and practical application experiences. Available for graduate credit.

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MSE 513. NDE Methods and Analyses (3)

Prerequisite: Instructor Consent. Study of the methods of measuring quality in manufacturing products, including metrology and non-destructive evaluation (NDE) methods; radiographic, ultrasonic, surface examination; and acoustic emission. The capability limitations and economics of the methods of gathering and interpreting data for measurement of quality. Reliability engineering topics introduced. (Design units: 1.5)

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MSE 608A. Seminar in International Engineering Management (3)

Prerequisite: Instructor consent. Advanced studies of topics relevant to international problems in the field of engineering management. The course consists in part of an intensive study of selected papers from current literature.

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MSE 649. Seminar in Engineering Materials (3)

Advanced studies of topics of current interest in the field of engineering materials. Consists in part of an intensive study of selected papers from current literature.

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MSE 402. Engineering Project Management (3)

Prerequisite: MSE 362 or equivalent. The engineering project management process, from the feasibility stage through project close out. Topics include project initiation, project screening and selection, organizational and project structure, time and cost estimation, budgeting, developing work plans, scheduling resources, managing risk, tracking work, managing teams, partnership projects and close out. Students learn to use …

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MSE 512. Fundamentals of MEMS Fabrication (3)

Prerequisite: Instructor consent. Introduction to MEMS technology. Working principles of microsystems, engineering science for microsystem design and fabrication, materials for MEMS and microsystems, fabrication processes, micromanufacturing, packaging, CAD for MEMS design and assembly, and CIM integration for fabrication.

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MSE 604. Engineering Economy and Financial Analysis (3)

Prerequisite: Consent of instructor. Evaluation of economic feasibility from an engineering perspective. Application of various methods of comparing alternatives on an economic basis. Implications of depreciation, inflation, currency exchange rates and taxation on the profitability of engineering projects. Reviewing the basics of cost estimation and accounting. Development of income statement, cash flow statement and balance …

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MSE 606A. Engineering Operations Management (3)

Systems methodology and mathematical bases in industry and service organizations. Selected approaches in optimization methods, such as linear programming and multi-criteria decision making tools; inventory modeling; logistics; decision analysis as well as PERT/CPM methods. Emphasis will be placed on applying the tools and the economic interpretation of results.

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MSE 630. Electronic Materials (3)

Prerequisite: Instructor consent. Electrical behaviors of materials; conductors, semiconductors and insulators; electronic structure of materials; preparation of semiconductor materials; crystal growth and doping; intrinsic and extrinsic semiconductors; semiconductor devices; superconductivity and superconducting materials; photoelectron effects with semiconductors; photovoltaic materials and solar cells; imperfections in semiconductors; and characterization of electronic materials.

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MSE 401. Introduction to Engineering and Technology Management (3)

Recommended Preparatory: MSE 304, 362. An introduction to the roles of the engineer in managing engineering and technology activities. Responsibilities of engineering and technology managers, and transitioning into these roles. Challenges and risks in engineering and technology management. Available for graduate credit.

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MSE 504. Engineering Management (3)

Prerequisite: Instructor consent. Principles and applications for effective management of technology projects, people, budgets and schedules. Organizing and motivating people, and controlling activities. Managing research, development, design, marketing and production functions in engineering and technology. Ethical considerations in engineering and technology management. (Design units: 0.5)

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MSE 629. Phase Transformations (3)

Prerequisite: Instructor consent. Thermodynamics of phase transformations, kinetics of reactions, diffusion, crystal growth, solidification, recovery, recrystallization and grain growth, solid state phase transformation, and diffusional and martensitic transformations.

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MSE 227L. Engineering Materials Lab (1)

Prerequisite: MATH 150A. Preparatory: CHEM 101/L; MSE 227; PHYS 220A/L. Introductory lab course in engineering materials and their properties. Includes experiments in mechanical properties, heat treatment, metallography, corrosion properties and X-ray diffraction. Course culminates in a special project in which students identify, design and perform an experiment of their choosing. One 3-hour lab per week. …

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MSE 511/L. Robotics with Applications and Lab (2/1)

Prerequisite: Instructor consent. Corequisite: MSE 511L. Fundamentals of robotics and robot applications. Topics include control system components, end effectors, sensors, programming, robotic cell design and programmable automation. 2 hours lecture-discussion, 3 hours of lab per week. (Design units: 2.0)

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MSE 556. Nanomaterials and Nanotechnology (3)

Prerequisite: Instructor consent. Introduction to nanotechnology and types nanomaterials that have been synthesized for applications in nanotechnology (mechanics, electronics, optoelectronics, energy and biomedical sciences). Illustration of the novel synthesis methods of various nanomaterials.

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MSE 623. Composite Materials (3)

Prerequisite: Instructor consent. Introduction to the structural and materials properties of composites. Static and dynamic characteristics. Stress analysis. Environmental and manufacturing effects on composites. Methods of testing composites.

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MSE 488BCS. MSEM Senior Design II (2)

Prerequisite: MSE 488A. Continuation of MSE 488A. Includes a community service opportunity with activities relating to concepts and theories presented. MSE 488A and 488BCS must be completed during the same academic year. 6 hours of lab per week. Not available for Graduate Degree Program credit. Offered Spring semester. (Design units: 2.0)

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MSE 607C. Seminar in Manufacturing Systems (3)

Prerequisite: Instructor consent. Advanced studies of topics of current interest in manufacturing systems. The course consists in part of the study of selected papers from current literature.

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MSE 227. Engineering Materials (3)

Prerequisite: MATH 150A. Preparatory: CHEM 101/L; PHYS 220A/L. Introductory course in engineering materials, including metals, ceramics, polymers and composites. Study of atomic and crystalline structures of materials. Application of basic principles to study of mechanical, physical and chemical behavior of materials. Selection of materials in engineering applications based on above criteria. Design project on materials …

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MSE 392. Undergraduate Research Program (3-3)

Prerequisite: Enrollment restricted to students selected to participate in the Undergraduate Research Program. The course provides faculty mentoring and guidance to selected undergraduate students in the development of their research skills. The course includes a combination of lecture-discussion, lab experimental research, literature research, field work, research presentations and other learning experiences. May be repeated for …

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MSE 509. Computer-Aided Manufacturing Systems (3)

Prerequisite: MSE 409/L or equivalent. Introduction to the design of computer-aided manufacturing systems. Concepts and principles of computer-aided manufacturing programming language development. Methods, tools, practices and projects for design and implementation of computer-aided manufacturing systems.

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MSE 550. Thin Film Technology (3)

Prerequisite: Instructor consent. The basic processes for the deposition of films and coatings. Physical vapor deposition (PVD); evaporation, sputtering and ion plating, chemical vapor deposition (CVD) and plasma-assisted chemical vapor deposition (PACVD); electrodeposition and electroless plating. Thermal spraying, plasma spraying and detonation gun technologies. The scientific background, basic processes, as well as relationships and applications …

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MSE 622. Fracture Mechanics (3)

Prerequisite: Instructor consent. Introduction to linear-elastic fracture mechanics and its application to design. Analytical and numerical methods for the calculation of crack tip stress intensity. Engineering applications to the design of structures and pressure vessels. Fatigue analysis methods.

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MSE 696A-C. Directed Graduate Research (1-3)

Prerequisites: MSE 698; Written approval of the faculty advisor and either the Department Graduate Coordinator or the Department Chair. (Credit/No Credit only)

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MSE 488A. MSEM Senior Design I (2)

Prerequisites: Satisfactory completion of all major courses in years 1-3 of the 4-year program plan; Permission of the instructor; Passing score on the Upper Division Writing Proficiency Exam. Student teams engage in complex engineering design projects subject to multiple realistic constraints. Economic, environmental, social, political, ethical, health and safety, manufacturability, sustainability and other relevant factors …

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MSE 607B. Systems Engineering and Management (3)

Prerequisite: Instructor consent. Overview of concepts and methods of systems engineering and management. Considerations of life cycles, requirements, and configuration and cost management. Standards, metrics, architectures, integration and evaluation. Survey of relevant tools and techniques and their relationships to effective systems engineering management.

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MSE 220/L. Construction Materials and Lab (2/1)

Prerequisite: PHYS 100A/L. Corequisite: MSE 220L. Introduction to basic construction materials and their properties, including concrete, masonry, metals, woods and thermal materials. Introduction to finishes, equipment, and specialty items. Not available for credit toward an Engineering Degree. 2 hours lecture-discussion, 3 hours technical activity-lab per week.

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MSE 362. Engineering Statistical Applications (3)

Prerequisites: CE 240; MATH 250. Development and application of probabilistic and statistical methods for selected classes of engineering design and analysis problems. Applications to product and structural design, engineering experiments and processes, and the reliability of engineering systems.

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MSE 508/L. CAD/CAM Systems and Lab (2/1)

Prerequisite: Instructor Consent. Corequisite: MSE 508L. Concepts and applications of computer-aided design and manufacturing systems. 3-dimensional geometric modeling, surface and solid modeling, and finite element modeling and analysis. Data exchange standards. Survey and evaluation of commercial CAD/CAM systems. Computer integrated manufacturing and management systems, and e-factory implementation. Emphasis on advanced modeling tools and applications. 2 …

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MSE 536. Introduction to Advanced Biomaterials (3)

Prerequisite: Instructor consent. The interaction between the human body environment and synthetic materials, including materials for medical implants and for dental restoration and appliances is explored. Tissue engineering, biosensing, imaging and drug delivery interact directly with biomaterials. Consideration of new technologies that depend on overcoming present material limits, and improving material/biological environment interactions.

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MSE 618. Six Sigma Quality Engineering (3)

Prerequisite: MSE 601 or instructor consent. Overview and evolution of continuous improvement methodologies. Comparison of product-related and process-related Six Sigma methodologies. Integration of operating philosophies, applied statistics and project management in continuous improvement deployment. Phases of Six Sigma methodology and application of computing technologies to quality engineering projects. Advanced topics in Six Sigma continuous improvement …

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MSE 415. Product Design (3)

Prerequisite: MSE 412/L or graduate status. Engineering principles and practices of product design. Applications of process design for manufacturing engineering. Approaches to design for manufacture (DFM) and design for assembly (DFA). (Design units: 2.0)

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MSE 607A. Seminar in Automation Engineering (3)

Prerequisite: Instructor consent. Advanced studies of topics of current interest in automation engineering. The course consists in part of an intensive study of selected papers from current literature.

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MSE 315. Green Product Development: Design for Sustainability (3)

Management of innovation processes for sustainable products, from product definition to sustainable manufacturing and financial models. Students design and develop a product or service focused on sustainability. Processes for collecting customer and user needs data, prioritizing that data, developing a product specification, sketching and building product prototypes, and interacting with the customer/community during product development …

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MSE 507. Lean Manufacturing Systems (3)

Prerequisite: MSE 407 or instructor consent. Concepts and principles of lean manufacturing systems. Methods and tools for application to manufacturing systems improvement. Practices and projects for effective design and implementation of lean manufacturing operation, production, control and quality systems.

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MSE 531. Corrosion (3)

Prerequisite: Instructor consent. Corrosion and oxidation, thermodynamics of corrosion, electrochemical fundamentals, aqueous corrosion, oxidation, kinetics of corrosion, corrosion rates, corrosion mechanisms, Wagner Theory of Oxidation and corrosion prevention are examined. (Design units: 0.5)

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MSE 617. Seminar in Quality Management (3)

Recommended Preparatory: MSE 362 or equivalent. Discussion and analysis of current theory, practices and state-of-the-art developments applicable to quality management in engineering and technology.

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MSE 692. Engineering Management Research Practicum (3)

Prerequisites: Completion of at least 18 units in formal program of study with GPA of at least 3.75; Classified status; Instructor consent. Application of advanced concepts of current interest in engineering management to research and implementation in technology-based environments, such as analytical methods, production systems, technical personnel, innovation and cost analyses.

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MSE 412/L. Manufacturing Process and Lab (2/1)

Prerequisites: MSE 227/L, 248/L; CE 240. Corequisite: MSE 412L. Manufacturing processes for cost-effective, high-quality production. Consideration of technical capabilities and limitations of alternative methods. Includes forming, removal, casting, joining, heat treating, molding, finishing and coating. Course project required. Laboratory experiments include heat treating, deep drawing, powder metallurgy, casting, injection molding, fabricating composites, friction coefficients analysis …

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MSE 606B. Engineering Operations Research II (3)

Recommended Preparatory: MSE 606A or equivalent. Continuation of selected approaches in systems optimization methods, such as stochastic, probabilistic and waiting line models, with emphasis on applications to real-world problems.

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MSE 106. Introduction to CAD Animation (3)

Introduction to the use of tools to animate CAD and other objects. Development of skills and techniques to construct or import and animate, 2- and 3-dimensional objects. Animation in an interactive environment. Students will be able to work on an individual project related to their field of study, and post the project on their own …

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MSE 304. Engineering Economic Analysis (3)

Prerequisites: MATH 150B; Completion of the Lower Division writing requirement. Systematic evaluation of the economic benefits and costs of projects involving engineering design and analysis. Economic decision making in an environment of limited resources and uncertainty. Present economy, the economy of multi-year projects, selection among competing independent alternatives, sensitivity of outcomes to input parameters, before …

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MSE 505. Engineering Decision Analysis (3)

Preparatory: MSE 362 or equivalent. Introduction to decision- and risk-analysis methods in the context of engineering. Organizing frameworks for the synthesis, analysis and evaluation of complex unstructured engineering problems and situations. (Design units: 1.0)

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MSE 528/L. Principles of Materials Engineering and Lab (2/1)

Prerequisite: Instructor consent. Corequisite: MSE 528L. Study of the principles governing the selection, treatment and use of metals and alloys. Introduction to crystal structures, their imperfections and the effect on diffusion, and phase transformations. The application of thermodynamic laws to metallic alloys; solid solutions; alloying and solubility in solids; and metal/metal, metal/liquid and metal/gas interactions. …

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MSE 614. Intelligent Manufacturing (3)

Prerequisite: Instructor consent. Software and methodologies for integrating intelligence into manufacturing, such as artificial intelligence and expert systems, fuzzy logic, agent software, case-based reasoning, feature-recognition, intelligent maintenance and monitoring. Methods of capturing expertise and knowledge for developing intelligent systems. Development of knowledge-based systems. Understanding examples of intelligent manufacturing available in industry.

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MSE 691. Automated Systems Practicum (3)

Prerequisite: Instructor consent. Application of advanced engineering principles to automated systems. Research and methodologies of current interest, such as intelligent manufacturing, modern manufacturing automation, automated systems management, automated assembly and disassembly, and the factory of the future.

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MSE 403CS. Facilities Planning and Design (3)

Prerequisite: MSE 248/L or equivalent, or graduate status. Basic concepts in the planning and design of manufacturing facilities, product analysis, manufacturing processes and equipment selection, and schedule design; flow, space, activity relationships and space planning; location and layout; material handling systems; and facilities planning models. Offers a community service opportunity with activities relating to concepts …

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MSE 601A. Engineering Statistics I (3)

Prerequisite: Instructor consent. Comprehensive statistical estimation, design and hypothesis testing methods, and their application to selected problems in engineering.

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MSE 697MFS. Manufacturing Systems Directed Comprehensive Studies (3)

Preparatory: Classified status in M.S. Manufacturing Systems Engineering Program; Satisfactory completion of at least 24 semester units in formal program of study; Supervising faculty advisor and Graduate Coordinator permission. Preparation for and completion of written and oral comprehensive culminating experience requirement for the Master of Science in Manufacturing Systems Engineering degree. (Credit/No Credit only)

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Davis, Gerald D.

(1981) Professor emeritus of Engineering. B.S. 1953, M.S. 1957, University of Illinois; Professional Engineer, State of Illinois.

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Bavarian, Behzad

(1985) Professor of Engineering. B.S. 1976, Tehran University; M.S. 1977, Ph.D. 1980, The Ohio State University.

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Conner, Robert

(2006) Associate Professor of Manufacturing Systems Engineering and Management. B.S. 1989, California State Polytechnic University; M.S. 1994, Ph.D. 1997, California Institute of Technology.

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Costea, Ileana

(1983) Professor of Engineering. M.A. 1972, School of Architecture and Urban Planning, Romania; M.A. 1974, Ph.D. 1982, University of California, Los Angeles.

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Roe, Arnold

(1964) Professor emeritus of Engineering. B.S. 1947, New York University; M.S. 1959, Ph.D. 1964, University of California, Los Angeles; Professional Engineer, State of California.

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Rajai, Mark

(2009) Associate Professor of Manufacturing Systems Engineering and Management. B.S. 1984, M.S. 1987, University of Tennessee; M.S.E.M. 1996, Ph.D. 1996, University of Louisville.

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Kabirian, Alireza

(2011) Assistant Professor of Manufacturing Systems Engineering Management. B.S. 2003 Azad University of Najafabad; M.S. 2006, Sharif University of Technology; Ph.D. 2009, Iowa State University.

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Campbell, Bonita J.

(1975) Professor emerita of Engineering. B.S. 1967, Colorado State University; M.S. 1973, University of Redlands; M.B.A. 1973, Pepperdine University; Ph.D. 1979, University of California, Los Angeles.

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Lifson, Melvin D.

(1983) Professor emeritus of Civil Engineering and Applied Mechanics. B.E. 1943, University of Minnesota; M.E. 1962, Ph.D. 1965, University of California, Los Angeles.

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Shively, Jon

(1977) Professor emeritus of Engineering. B.S. 1958, Lehigh University; M.S. 1963, John Carroll University; Ph.D. 1967, Case Institute.

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Chang, Kang J.

(1989) Professor of Engineering. B.S. 1975, Tatung Institute of Technology, Taiwan; M.S. 1980, Waseda University; Ph.D. 1989, University of California, Los Angeles.

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Sarfaraz, Ahmad

(2001) Professor of Manufacturing Systems Engineering and Management. B.S. 1977, Allameh University; M.A. 1980, M.S. 1981, Middle Tennessee State University; Ph.D. 1989, West Virginia University.

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