INDUSTRIAL ENGINEERING (Bachelor of Science)

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1 Industrial Engineering / 126 INDUSTRIAL ENGINEERING (Bachelor of Science) Home Department: Industrial and Manufacturing Engineering Department Head: Srinivas R. Chakravarthy, Ph.D. Room 1-700A, AB, schakrav@kettering.edu Program Overview The Department of Industrial & Manufacturing Engineering offers a degree in Industrial Engineering. The department emphasizes development of the student s ability to analyze operational requirements and to design processes that systematically integrate customer needs, technology, and economic and social factors for industrial, service, and governmental organizations. Industrial Engineering (IE) is a discipline known for its breadth of scope and application. The preparation received in industrial engineering is valuable to virtually all industrial, commercial and governmental entities which are engaged in the manufacture of a product or the provision of a service. Graduates typically are responsible for the design of integrated systems at one of two levels. The first level may be described as the human activity systems level and is concerned with the design of the physical workplace at which human activity occurs. The second level, the management control system level, is concerned with planning, measuring and controlling the activities of the organization for the optimal utilization of its resources. The utilization of computers and the development of the associated software are integral parts of both levels of systems design. Industrial Engineers are concerned with systematic design and integration of people, raw materials, facilities, information, and energy to produce safe and quality products and/or services at an affordable cost to the consumer. The Industrial Engineering curriculum develops the engineering theory and the practical background and people skills necessary to design optimal productive work and management control systems for an organization. The Industrial Engineering curriculum is designed to provide the student with a sound theoretical background while being oriented toward applied problem-solving. Classroom instruction is backed by hands-on application in well-equipped laboratory facilities in with "Applied Control Systems, Lego Lab, Human Factors (ergonomics), Manufacturing Materials and Processes, Methods Analysis, and Simulation modeling." The program in Industrial Engineering is accredited by the Engineering Accreditation Commission of ABET, Program Educational Objectives Upon completion of the Bachelor of Science in Industrial Engineering degree, our graduates will have accomplished and demonstrated the following: Apply current principles of Industrial Engineering to solve complex, real-world problems and overcome challenges facing themselves, their organizations, and the community. Demonstrate exemplary teamwork and leadership skills, growing professionally and increasing their level of responsibility and authority. Possess the ability and motivation to expand their knowledge and technological skillset throughout their lives and careers. Industrial Engineering Program Curriculum Requirements First Year Experience FYE-101 First Year Foundations 1 Total 1 General Education COMM-101 Written & Oral Communication I 4 COMM-301 Written & Oral Communication II 4 ECON-1 Economic Principles 4 HUMN-1 Introduction to the Humanities 4 LS-489 Senior Seminar: Leadership, Ethics and Contemporary Issues 4 SSCI-1 Introduction to the Social Sciences 4 Advanced Humanities Elective 4 Advanced Social Science Elective 4 Total 32

2 Industrial Engineering / 127 Basic Sciences CHEM-135/136 Principles of Chemistry/Lab 4 PHYS-114/115 Newtonian Mechanics/Lab 4 PHYS-224/225 Electricity & Magnetism/Lab 4 Science or Math Electives 1 8 Total Engineering Core IME-100 Interdisciplinary Design and Manufacturing 4 MECH-100 Engineering Graphical Communication 4 MECH-210 Statics 4 Total 12 Industrial Engineering Core IME-211 Algorithms and Computer Programming 4 IME-251 Engineering Economics 4 IME-301 Engineering Materials 4 IME-321 Operations Research I: Deterministic Models 4 IME-332 Engineering Statistics I: Statistical Inference and Regression 2 2 IME-333 Engineering Statistics II: Design of Experiments 2 2 IME-361 Lean Work Design 4 IME-412 Applied Control Systems Design 4 IME-422 Simulation 4 IME-452 Designing Value in the Supply Chain 4 IME-453 Tools for Managing the Supply Chain 4 IME-454 Senior Design Project 4 IME-462 Ergonomics 4 IME-471 Quality Assurance 4 Total 52 Mathematics IME-332 Engineering Statistics I: Statistical Inference and Regression 2 IME-333 Engineering Statistics II: Design of Experiments 2 One from: MATH-101 Calculus I MATH-101X Calculus I 4 And one from: MATH-102 Calculus II MATH-102X Calculus II MATH-102H Calculus II Honors 4 And one from: MATH-3 Multivariate Calculus MATH-3H Multivariate Calculus Honors 4 And: MATH-310 Biostatistics I 3 4 Total Concentration Industrial Engineering Cognate (three IME electives) 12 Total 12 Electives Free Electives 3 (IME and Free electives may be used to complete a non-ie minor) 8 Total 8 Culminating Undergraduate Experience CUE-495 CUE Introductory Course (No Credit, Pass/Fail) 0 One from: CUE-495C Co-op Thesis CUE-495E Intra/Entre/Social E-ship Thesis CUE-495P Professional Practice Thesis

3 Industrial Engineering / 128 CUE-495R Research Thesis 4 Total 4 (Minimum) Total Credits Required for Program 1 Representative Program Semester Course # Course Name Credits FR-I FYE-101 First Year Foundations 1 CHEM-135 Principles of Chemistry 3 CHEM-136 Principles of Chemistry Lab 1 COMM-101 Written & Oral Communication I 4 IME-100 Interdisciplinary Design and Manufacturing 4 MATH-101 Calculus I 4 17 FR-II ECON-1 Economic Principles 4 MATH-102 Calculus II 4 MECH-100 Engineering Graphical Communication 4 PHYS-114 Newtonian Mechanics 3 PHYS-115 Newtonian Mechanics Lab 1 SO-I IME-211 Algorithms & Computer Programming 4 MATH-3 Multivariate Calculus 4 MECH-210 Statics 4 PHYS-224 Electricity and Magnetism 3 PHYS-225 Electricity and Magnetism Lab 1 SO-II IME-251 Engineering Economics 4 MATH-310 Biostatistics I 4 (HUMN 1 Introduction to the Humanities or SSCI 1 Introduction to Social Sciences) 4 Science or Math Elective 1 4 JR-I IME-301 Engineering Materials 4 IME-321 Operations Research I: Deterministic Models 4 IME-332 Eng. Statistics I: Statistical Inference and Regression 4 (HUMN 1 Introduction to the Humanities or SSCI 1 Introduction to Social Sciences) 4 CUE-495 CUE Introductory Course (No Credit, Pass/Fail) 0 JR-II COMM-301 Written & Oral Communication II 4 IME-333 Engineering Statistics II: Design of Experiments 4 IME-361 Lean Work Design 4 IME-452 Designing Value in the Supply Chain 4 Science or Math Elective 1 4 SR-I IME-422 Simulation 4 IME-453 Tools for Managing the Supply Chain 4 Free Elective 4 IE Concentration Elective I 4 SR-II IME-412 Applied Control Systems Design 4 IME-462 Ergonomics 4 IME-471 Quality Assurance 4 IE Concentration Elective II 4

4 Industrial Engineering / 129 SR-III IME-454 Senior Design Project 4 LS-489 Senior Seminar: Leadership, Ethics and Contemp. Issues 4 Free Elective 4 IE Concentration Elective III 4 Culminating Undergraduate Experience 4 4 (Minimum) Total Credits Required for Program 1 1 The Science or Math Elective may be any course with a MATH, CHEM, PHYS or BIOL prefix except MATH-100, MATH-408 (if student has taken MATH-310), CHEM-171 and PHYS-235. PHYS-235. Students taking CHEM-135 may not take CHEM-137 as a Science Elective. 2 The credits for Engineering Statistics I and II are split between Industrial Engineering Core and Mathematics 3 Students taking MATH-310 (Biostatistics I) may not take MATH-408 (Probability and Statistics) as an elective, including as a free elective. MATH-408 may only be substituted for MATH-310 with Department Head approval. Dual Degrees in Industrial Engineering and Mechanical Engineering A coordinated program is available to earn both a Bachelor of Science in Industrial Engineering and a Bachelor of Science in Mechanical Engineering in 193 credits (189 credits of course work and 4 thesis credits). A student can complete the program in 10 or 11 academic terms at Kettering University. During the first three terms, a student can follow the representative program for either degree. The following representative program is intended as a guide to assist the student in planning for the remaining terms. An eligible student may be able to avoid a SR-V term by one of the following three methods: 1) take 5 courses per term for one term prior to JR-1, 2) take 6 courses per term for one term after SO-II, or 3) take Kettering or guest courses during a work term. It is the student's responsibility to determine that all requirements are satisfied for both programs. The student must be advised by both programs each term. Dual Degrees in Industrial Engineering and Mechanical Engineering Representative Program FR I through SOI Representative Program Credit Total: 49 Semester Course # Course Name Credits SO-II ECON-1 Economic Principles 4 EE-212 Applied Electrical Circuits 3 and MECH-231L Signals for Mechanical Systems Lab 1 MATH-4 Differential Equations and Laplace Transforms 4 MECH-212 Mechanics of Materials 4 JR-I IME-211 Algorithms and Computer Programming 4 MECH-300 Computer Aided Engineering 4 MECH-310 Dynamics 4 MECH-311 Introduction to Mechanical System Design 4 MECH-312 Mechanical Component Design I 4 JR-II COMM-301 Written & Oral Communications II 4 IME-251 Engineering Economics 4 IME-301 Engineering Materials 4 MATH-408 Probability and Statistics 4 MECH-3 Thermodynamics 4 SR-I IME-321 Operations Research I: Deterministic Models 4 IME-332 Engineering Statistics I: Statistical Inference and Regression 4

5 Industrial Engineering / 130 MATH-305 Numerical Methods and Matrices 4 MECH-322 Fluid Mechanics 4 MECH-330 Dynamic Systems with Vibrations 4 SR-II IME-333 Engineering Statistics II: Design of Experiments 4 IME-361 Lean Work Design 4 IME-452 Designing Value in the Supply Chain 4 MECH-4 Heat Transfer 4 MECH-430 Dynamic Systems with Controls 4 SR-III IME-422 Simulation 4 IME-453 Tools for Managing the Supply Chain 4 MECH-422 Energy Systems Laboratory 4 ME Senior Design Project 4 SR-IV IME-412 Applied Control Systems Design 4 IME-454 [IE] Senior Design Project 4 IME-462 Ergonomics 4 IME-471 Quality Assurance 4 SR-V LS-489 Senior Seminar: Leadership, Ethics and Contemp. Issues 4 4 Culminating Undergraduate Experience 4 4 (Minimum) Total Credits Required for Program 1 Concentrations Students in Industrial Engineering (IE) have the opportunity to complete a concentration within the degree program. A concentration is for a student to gain specialized knowledge within a particular area of IE. Concentrations may be defined by choices made for the IE concentration electives. Available concentrations in IE are: Cognate: Any 3 IME electives International Study: IE students participating in the international study program may use some courses taken abroad as IE and free electives. Quality Assurance: IME-572 Introduction to Reliability & Maintainability IME-573 Advanced Quality Assurance IME-474 Design for Manufacture & Assembly or IME-575 Failure Analysis NOTE: A certificate in Six-Sigma fundamentals can be earned by completing IME-572 and IME-573 Students may also use their electives for the Manufacturing Minor from the Department of Industrial and Manufacturing Engineering (IME), or a minor from another department. Current information on courses can be obtained from the IME Department since not all courses listed in the catalog may be offered due to lack of students/faculty.

6 Industrial Engineering / 131 Minors Many academic departments offer minors. Refer to the department offering the minor for details. Popular minors among IE students include the Business Minor and the Applied Statistics Minor. IME offers the Manufacturing Minor, which is available to all students. Courses required for the Manufacturing Minor are: IME-301 Engineering Materials IME-403 CNC Machining IME-409 Computer Integrated Manufacturing IME Process Elective IME Integration Elective Additional process or integration course or IME-499 Independent Study Students may also use electives for the Manufacturing Minor from the Department of Industrial and Manufacturing Engineering (IME), or a minor from another department. Current information on courses can be obtained from IME. Bachelor-Master Programs A Bachelor-Master Program in Manufacturing Engineering is available to students in all undergraduate engineering programs, provided that they meet University criteria for such programs. The program consists of ten courses, or forty credits. This program provides the opportunity to take two 500-level IME courses during the Senior year that can count toward both undergraduate and graduate program credit. The remaining 600-level coursework is generally completed over two additional school terms. Two thesis plans are available: (1) normal undergraduate thesis plan, with Bachelor s degree earned upon completion of all undergraduate program requirements; and (2) graduate thesis plan counting for both undergraduate and graduate credit, with Bachelor s and Master s degrees completed concurrently. Contact the Department Head for more information. All majors must take IME-301 (or equivalent course approved by the IME Department Head), as a prerequisite to entry into the program. Additional information about this graduate program can be found in the Graduate Catalog.

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