ENGINEERING PHYSICS CURRICULUM GUIDE
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1 ENGINEERING PHYSICS CURRICULUM GUIDE The following course schedule represents the suggested curriculum for a typical student in the Engineering Physics Program. Substitutions may be made for some courses on approval of the Chair of the Department of Physics and Astronomy. Students desiring to transfer from another engineering program in their First Year or Second Year may do so without loss of credit or delays in graduation. The considerable flexibility in the Engineering Physics Program allows a student to design an individualized curriculum, with the assistance of her/his advisor. Note: The physics curriculum sequence is being modified. s in bold are modified; course numbers for these are tentative. PHY 00 PHY CHY CHY MAT 6 Introduction to Chemistry Introduction to Chemistry Lab. 6 PHY ENG 0 COS 0 MAT 7 Computer Programming Elective Engineering Sequence I 7 PHY 9 PHY 6 MAT 8 Physical Measurements Lab. I Introductory Quantum Physics I Engineering Sequence II 5 PHY 00 PHY PHY PHY 6 MAT 59 Engineering Sequence III I 6 THIRD YEAR PHY 6 PHY 5 PHY 5 Modern Experimental Physics Lab. Mechanics Electricity & Magnetism I Engineering Sequence IV V PHY 65 PHY 55 Mechanics Laboratory Electricity & Magnetism II MAT Elective Engineering Sequence V HV/SC & E Elective V FOURTH YEAR PHY 00 PHY 69 PHY 7 PHY 8 I Quantum & Atomic Physics Optics Project Lab in Phys. I Engineering Sequence VI HV/SC & E Elective VI 6 PHY 8 Project Lab in Phys. II Technical Elective 6 Engineering Sequence VII Engineering Sequence VIII Phy Elective II 5 Minimum in the Engineering Physics Program: (without PHY 00)
2 Notes:. Students are required to take a course in computer programming. The list of acceptable courses includes: COS 5, COS 5 (Mechanical Engineering concentration), COS 0, CIE 5 (Civil Engineering concentration), and ECE 77 (Electrical or Computer Engineering concentration). Other course substitutions require the permission of your advisor and approval of the Chairperson.. The Engineering Sequence consists of at least eight three-credit engineering courses, of which a minimum of five courses are from your engineering concentration: biological, chemical, civil, computer, electrical, environmental, or mechanical. Included with the eight courses is at least one course from an area other than your engineering concentration. Engineering Technology courses cannot be used for the Engineering Sequence, or the technical electives. Engineering sequence courses cannot be used for either the computer programming elective or the technical elective. All students must take ECE 09 Fundamentals of Electric Circuits or ECE 0 (Electrical Networks I, for electrical or computer engineering concentrations).. Human Values/ Social Context and Ethics (HV/SC & E), part of the University General Education Requirement, can be satisfied by a careful selection of at least six three credit courses.. Choose from MAT 6, MAT, MAT, MAT 5, MAT 5, MAT 59, MAT 7, PHY 57, or approved similar mathematics course. PHY 57 may be counted as either a math elective or a physics elective, but not both. 5. Any physics or astronomy course at the 00 level or higher is appropriate. 6. A Technical Elective can be an Engineering, Physics, Astronomy, Chemistry, Mathematics, Computer Science, or approved science course, generally at the 00 level or higher. 7. PHY can be used as one of the courses needed to obtain a minor in mathematics provided it is the only non-mat course used for the minor. Engineering Physics students receive instruction and evaluation in technical writing as part of the junior laboratory sequence (PHY 6 and PHY 65). Students not evaluated as satisfactory may be required to take an additional course, such as ENG 7, which can be counted as a free elective. All Engineering Physics students must take a thermodynamics course, typically MEE 0 or CHE 85. (See Note 5 above.) PHYSICS ELECTIVES PHY 7 PHY 80 PHY 96 PHY 50 PHY 57 AST 5 Modern Optics Laboratory Physics of Materials Field Experience in Physics Mechanics Methods of Mathematical Physics Astrophysics I (offered in either the fall or the spring semester) PHY 7 PHY 6 PHY 70 PHY 7 PHY 95 PHY 96 Molecular Biophysics Statistical Mechanics Nuclear Physics Nuclear Physics Laboratory Engineering Physics Practice Field Experience in Physics University of Maine Engineering Physics Curriculum Guide /8
3 Students, together with their advisor, should use the Undergraduate Catalog to determine the engineering sequence courses in their area of concentration. In the second year particular attention should be made to the prerequisites for the courses likely to be taken in the junior or senior year. Listed below are the core and elective courses and typical engineering course sequence options for different concentrations chosen by students during their first and second year. The sequence may be tailored to fit the needs and interests of the individual student, but must contain at least eight threecredit engineering courses. A minimum of five and a maximum of seven of these must be in a single engineering area of concentration and one of these courses must be from an area other than the engineering area of concentration. The sequence must be approved by the student's advisor. Plan of Study for Biomedical Engineering Concentration (This program has very limited flexibility in course selection because of the additional chemistry and biology courses.) Core s: Offered Prerequisites CHY The Molecular Basis of Chemical Change S/Su C- or better in CHY / CHY Introduction to Chemistry Laboratory S/Su Coreq. CHY BLE 0 Fundamentals of Bioengineering F CHY /, MAT 6/7 BLE 0 Fundamentals of Bioengineering BLE 0 In addition to the core courses, the student must take the following credits of courses plus take at least credits from another engineering discipline area (or substitute up to credits from another engineering discipline area for one of the courses below): BLE 0 - Applications of Bioengineering F BLE 0/0 BLE 0 - Instrumentation in Bioengineering Not regular BLE 0/0 CHB 50 - Statistical Process Control and Analysis F/S MAT 7 or permission CHB 6 - Chemical Engin. & Bioengin. Lab I S/Su BLE 0/0 or permission (or CHE5/60 or perm.) Typical Biomedical Engineering Curriculum PHY 00 PHY CHY CHY MAT 6 Lab. 6 PHY ENG 0 CHY CHY MAT 7 COS 0 Molecular Basis of Chem. Change Molecular Basis of Chem. Change Lab Intro. to Computer Sci. 8 PHY 9 Physical Meas. Lab. I PHY 6 Intro. to Quantum Phys. MAT 8 I CHB 00 Fundamentals of Process Eng. 6 PHY 00 PHY PHY PHY 6 BIO 00 MAT 59 Biology 7 University of Maine Engineering Physics Curriculum Guide /8
4 Plan of Study for Chemical Engineering Concentration Core s: Offered Prerequisites CHY The Molecular Basis of Chemical Change S/Su C- or better in CHY / CHY Introduction to Chemistry Laboratory S/Su Coreq. CHY CHE 00 Fundamentals of Process Engineering F CHY, MAT 6, PHY or perm. CHE 85 Chemical Engineering Thermodynamics I S CHB 00, MAT 8 or perm. In addition to the core courses, the student must take the following 9 credits of courses (or substitute up to 6 credits from another engineering discipline area): CHE 5 Process Control F/Su MAT 58 or 59 or permission CHE 60 Elements of Chemical Engineering I F/Su CHE 00 or permission CHE 6 Elements of Chemical Engineering II S/Su CHE 60 or permission CHE 68 Kinetics & Reactor Design S/Su CHE 00 or permission CHE 86 Chemical Engineering Thermodynamics II F/Su CHE 85 or permission CHE 0 Advanced Materials F CHY, MAT 6, PHY, perm. Note: A Minor in Process Engineering can be obtained by selecting the following four courses plus the core courses: CHE 60 Elements of Chemical Engineering I F/Su CHE 00 or permission CHE 6 Elements of Chemical Engineering II S/Su CHE 60 or permission CHE 5 Process Control F/Su MAT 58 or 59 or permission CHE 68 Kinetics & Reactor Design S/Su CHE 00 or permission Typical Chemical Engineering Option PHY 00 PHY CHY CHY MAT 6 Lab. 6 PHY COS 0 CHY CHY MAT 7 ENG 0 Intro. to Computer Sci. Molecular Basis of Chem. Change Molecular Basis of Chem. Change Lab 8 PHY 6 PHY 9 MAT 8 CHB 00 Intro. Quantum Physics Physical Meas. Lab. I I Fund. of Process Eng. 6 PHY 00 PHY PHY PHY 6 MAT 59 CHE 85 Chem. Eng. Thermo. I 6 University of Maine Engineering Physics Curriculum Guide /8
5 5 Plan of Study for Civil/Environmental Engineering Concentration Core s: [All are credits] Offered Prerequisites MEE 50 Applied Mechanics: Statics F/S MAT 6 CIE 5 Transportation Engineering S CIE Major or permission CIE Fundamentals of Environ. Eng. F C or better in CHY & MAT 7 CIE 50 Hydraulics F C or better in MEE 50, MAT 58* (*corequisite acceptable) The required advanced CIE courses cover the technical areas of transportation, environmental engineering, and hydraulics/fluids. Following the initial four core courses, students must choose at least credits of more advanced classes, focused in a technical area that they find interesting (and augment or substitute up to 6 credits from another engineering discipline area). Examples of these technical areas and courses that can be taken to satisfy the advanced course requirements in each area include: Transportation: CIE Urban Transportation Planning CIE 5 Transportation Safety CIE 6 Advanced Roadway Design Structures: CIE 0 Introduction to Structural Analysis (requires MEE 5) CIE 0 Structural Analysis I CIE Reinforced Concrete Design CIE Structural Steel Design Environmental Engineering: CIE 0 Water Treatment CIE Pollutant Fate and Transport CIE Wastewater Process Design CIE 9 Solid Waste and Air Pollution Water resources: CIE 50 Open Channel Hydraulics CIE 55 Hydrology CIE 56 Groundwater Hydrology and Hydraulics Optional s: Offered Prerequisites CIE 0 Introduction to Structural Analysis F C or better in MEE 50 & MEE 5 CIE 65 Soil Mechanics S MEE 5 or concurrently CIE Urban Transportation Planning S C or better in CIE 5 CIE 5 Transportation Safety F C or better in CIE 5 CIE 6 Advanced Roadway Design F C or better in CIE 5 CIE 0 Water Treatment F C or better in CIE & CIE 50 CIE Pollutant Fate and Transport Variable C or better in CIE 50 & MAT 58 CIE Wastewater Process Design S C or better in CIE & CIE 50 CIE 9 Solid Waste and Air Pollution S C or better in CIE CIE 0 Structural Analysis I S C or better in CIE 0 CIE Structural Design I F C or better in CIE 0 CIE Structural Steel Design S CIE CIE 50 Open Channel Hydraulics Variable C or better in CIE 50 CIE 55 Hydrology F C or better in CIE 50 CIE 56 Groundwater Hydrology/Hydraulics S C or better in CIE 50 & MAT 58 CIE 60 Geotechnical Engineering F C or better in CIE 65 CIE 80 Wind Energy Engineering Variable MAT 58, MEE 5 Corequisite: CIE 50 or MEE 60 University of Maine Engineering Physics Curriculum Guide /8
6 6 Typical Civil And Environmental Engineering Option PHY 00 PHY CHY CHY MAT 6 Lab. 6 PHY ENG 0 COS 0 MAT 7 MEE 50 Intro. to Comp. Sci Statics 7 PHY 9 PHY 6 MAT 8 MEE 0 Physical Meas. Lab. I Intro. Quantum Physics I Thermodynamics I 5 PHY 00 PHY PHY PHY 6 MAT 59 Engineering Sequence III 6 Plan of Study for Computer Engineering Concentration Core s: Offered Prerequisites ECE 77 Intro to Programming for Eng. S ECE 0, MAT 6 or permission ECE 0 Electrical Networks I F/S MAT 7; Coreq. PHY ECE 7 Microcomp. Architecture and App. S ECE 75 or permission ECE 75 Sequential Logic Systems F ECE 77 Following the initial courses, students can choose or more advanced classes, focused in a technical area that they find interesting. Examples of these technical areas and courses that can be taken to satisfy the advanced course requirements in each area include: Embedded Control ECE Feedback Control Systems ECE 7 Embedded Systems ECE 77 Hardware Applications Using C ECE 78 Industrial Computer Control Robotics ECE 7 Introduction to Robotics ECE 7 Embedded Systems ECE 77 Hardware Applications Using C ECE 87 Digital Image Processing High-Performance Computing Networking ECE Intro to Unix Systems Admin ECE 5 Network Engineering ECE 77 Hardware Applications Using C University of Maine Engineering Physics Curriculum Guide /8
7 7 Optional s: Offered Prerequisites ECE Signals and Systems S MAT 58, at least a C- in ECE 0 ECE Intro to Unix Syst Admin S COS 0 or ECE 77 ECE Feedback Control Systems S at least a C- in ECE 0 ECE 7 Introduction to Robotics F ECE 77 or COS 0, MAT 8 ECE 5 Network Engineering F COS /equivalent ECE 7 Embedded Systems F ECE 7 ECE 7 Computer Architecture & Org. F ECE 75 ECE 77 Hardware App. Using C S ECE 7 ECE 78 Industrial Comp. Control Variable ECE 7 ECE 86 Digital Signal Processing S ECE 77, C- or better in ECE ECE 87 Digital Image Processing F ECE, matrix algebra knowledge Typical Computer Engineering Sequence PHY 00 PHY CHY CHY MAT 6 Lab. PHY 9 PHY 6 MAT 8 ECE 0 Physical Meas. Lab. I Intro. Quantum Physics I Electrical Networks I 6 5 PHY ENG 0 COS 0 MAT 7 ECE 77 PHY 00 PHY PHY PHY 6 MAT 59 ECE 7 Intro. to Computer Sci. Intro. To Programming for Eng. Microcomputer Architecture & Applic. 8 6 Plan of Study for Electrical Engineering Concentration Core s: Offered Prerequisites ECE 77 Intro to Programming for Eng. S ECE 0, MAT 6 or permis. ECE 0 Electrical Networks I F/S MAT 7; coreq. PHY ECE Required/Overlap with PHY S at least a C- in ECE 0 ECE Signals and Systems S MAT 58, at least a C- in ECE 0 Following the initial courses, students can choose or more advanced classes, focused in a technical area that they find interesting. Examples of these technical areas and courses that can be taken to satisfy the advanced course requirements in each area include: University of Maine Engineering Physics Curriculum Guide /8
8 8 Communications & Wireless ECE 8 Communication Engineering I ECE 8 Communication Engineering II ECE 5 Microwave Engineering Power & Alternative Energy ECE Electric Power Conversion ECE Renewable Energy ECE 7 Electric Power Systems Microelectronics & Circuits ECE Analog Integrated Circuit Design ECE 5 Analysis & Design of Digital Integrated Circuits ECE 6 Introduction to Basic Semiconductor Devices ECE 6 Microelectronics Science and Engineering PHY 6 Introduction to Quantum Mechanics ( credits) State & Sensor ECE 5 Microwave Engineering ECE 6 Introduction to Basic Semiconductor Devices ECE 6 Microelectronics Science and Engineering ECE 65 Introduction to Sensors ECE 66 Sensor Technology and Instrumentation PHY 6 Introduction to Quantum Mechanics ( credits) Optional s: Offered Prerequisites ECE 09 Fundamentals Of Elec. Circuits S/Su MAT 7, PHY ECE Electrical Networks Laboratory S at least a C- in ECE 0 ECE 6 Random Signal Analysis F MAT 8 ECE Electric Power Conversion F ECE, at least a C- in ECE 0 ECE Renewable Energy Variable ECE 09 or ECE 0 ECE 7 Electric Power Systems S ECE ECE I F ECE, at least a C- in ECE 0 ECE II S ECE ECE 5 Fields and Waves F ECE, MAT 8, MAT 58 ECE 8 Communication Engineering I F ECE, CHB 50 ECE 7 Electric Power Systems S at least a C- in ECE 0 ECE Analog Integrated Circuits S ECE, ECE ECE 5 Analysis & Design of F ECE Digital Integrated Circuits ECE 5 Microwave Engineering S ECE 5 ECE 6 Introduction to Basic Variable ECE, MAT 8 ECE 6 Microelectronics Science & Engineering Not regular CHY, PHY, MAT 58 ECE 65 Introduction to Sensors S/Su Jr. standing Semiconductor Devices ECE 66 Sensor Technology & Instrumentation Not regular ECE 65 or permission ECE 67 Solar Cells & Their Applications Variable ECE 09 or ECE 0 or permission ECE 8 Communication Engineering F ECE, ECE 6 University of Maine Engineering Physics Curriculum Guide /8
9 9 Typical Electrical Engineering Curriculum PHY 00 PHY CHY CHY MAT 6 Lab. 6 PHY ENG 0 COS 0 MAT 7 ECE 77 Intro. to Computer Sci. Intro. To Programming for Eng. 8 PHY 9 PHY 6 MAT 8 ECE 0 Physical Meas. Lab. I Intro. Quantum Physics I Electrical Networks I 5 PHY 00 PHY PHY PHY 6 MAT 59 ECE ECE Electrical Networks Laboratory Signals & Systems 6 Plan of Study for Mechanical Engineering Concentration Core s: Offered Prerequisites MEE 50 Applied Mechanics: Statics S MAT 6 MEE 0 Thermodynamics I F/S MAT 7 MEE 5 Strength of Materials F/S MAT 7 & MEE 50 MEE 70 Applied Mechanics: Dynamics F/S MEE 50/5, Coreq. MAT 8 Following the initial courses, students can choose or more advanced classes, focused in a technical area that they find interesting. Examples of these technical areas and courses that can be taken to satisfy the advanced course requirements in each area include: Energy Systems Mechanical Design Dynamics & Control Aerodynamics MEE 60 Fluid Mechanics MEE Heat Transfer MEE Solar Thermal Engineering MEE 6 Fluid Mechanics II MEE 8 Design of Turbomachinery MEE 8 Power Plant Design MEE 0 Materials Engineering and Science MEE 50 Intro Mechanics of Comp Materials MEE 55 Advanced Strength of Materials MEE 7 Mechanical Vibrations MEE 70 Modeling, Analysis and Control of Mechanical Systems MEE 5 Aeronautics MEE 60 Fluid Mechanics MEE 6 Fluid Mechanics II MEE 5 Aeronautics MEE 6 Astronautics University of Maine Engineering Physics Curriculum Guide /8
10 0 Mechanical Robotics MEE 80 Design I MEE 8 Design II MEE 70 Modeling, Analysis and Control of Mechanical Systems MEE Robot Dynamics and Control Optional s Offered Prerequisites MEE 0 - Materials Engineering and Science S MEE 0 & 5 MEE 60 - Fluid Mechanics F MEE 0 & 70; Coreq: MAT 58 MEE 70 - Modeling, Anal.&Ctrl. of Mech Sys F ECE 09, MAT 58, MEE 70 MEE 80 Design I F MEE 70 MEE 8 - Design II S MEE 5 MEE - Heat Transfer F MAT 58, MEE 60 MEE - Solar-Thermal Engineering Not regular MEE 0 MEE Robot Dynamics and Control F/S MEE 70 & 80 MEE 5 - Aeronautics F (even yrs) MEE 70, MAT 58, COS 5/0 MEE 6 - Astronautics S MEE 70, MAT 58, COS 5/0 MEE 50 - Intro to Mech. of Comp Materials S (even yrs) MEE 5 MEE 55 - Advanced Strength of Materials F MEE 5 MEE 56 - Intro to Finite Element Method S MAT 58, MEE 5 MEE 6 - Fluid Mechanics II S (odd yrs) MEE 60 MEE 7 - Mechanical Vibrations S MAT 58, MEE 70 MEE 8 - Turbomachine Design Not regular MEE 0 & 60 MEE 8 - Power Plant Design & Engineering Not regular MEE 0 & TYPICAL MECHANICAL ENGINEERING CURRICULUM PHY 00 PHY CHY CHY MAT 6 Lab. 6 PHY ENG 0 COS 5 MAT 7 MEE 50 Intro. to Comp. Using FORTRAN Statics 7 PHY 9 PHY 6 MAT 8 MEE 5 Physical Meas. Lab. I Intro. Quantum Physics I Strength of Materials 5 PHY 00 PHY PHY PHY 6 MAT 59 MEE 0 Thermodynamics I 6 University of Maine Engineering Physics Curriculum Guide /8
11 ENGINEERING PHYSICS STUDENT SUMMARY RECORD PHYSICS COURSES MATH COURSES CR DATE GRADE CR DATE GRADE PHY 00 MAT 6 PHY MAT 7 PHY MAT 8 PHY 00 MAT 59 PHY MAT PHY 9 MAT PHY 6 (or PHY 57 ) PHY PHY 6 SUBTOTAL (8 required) PHY 6 PHY 65 GEN ED REQUIREMENTS (AREA) PHY 00 CR DATE GRADE PHY 5 PHY 5 PHY 55 PHY 69 PHY 7 5 PHY 8 6 PHY 8 7 PHY (9 required SUBTOTAL (8 required) SUBTOTAL without PHY 00) GEN ED AREAS ENGINEERING SEQUENCE COURSES a. Western Cultural Tradition (at least 5 courses from the same eng. b. Social Contexts & Institutions concentration and at least one course from c. Cultural Diversity & International Perspectives outside the engineering concentration) d. Population & the Environment CR DATE GRADE e. Artistic and Creative Expression ECE 09 (or 0) f. Ethics ELECTIVES 5 CR DATE GRADE 6 Tech Elective 7 8 Free Elective SUBTOTAL ( required) OTHER COURSES CR DATE GRADE ENG 0 CHY SUBTOTAL (8 required) CHY Programming DEGREE REQUIREMENTS SUBTOTAL (0 required) Total credits must be 7 or greater without PHY 00. taken to satisfy thermodynamics requirement TOTAL OF ALL = (CR) FINAL GPA IN MAJOR (all physics plus eight FINAL GPA engineering sequence (.00 MINIMUM) = courses require a =.00 minimum) University of Maine Engineering Physics Curriculum Guide /8
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