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FIRST YEAR

ELECTRICAL & COMPUTER ENGINEERING. MTH 112. MTH 256. MTH 254. MTH 254. MTH 252. MTH 111. MTH 112. MTH 252. MTH 251. MTH 231. WR 121. MTH 255 Vector Calculus II. CS 162 Intro to Computer Sci. II ‘Java’. MTH 231 Discrete Math. WR 327 Technical Report Writing. CH 201/221

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FIRST YEAR

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  1. ELECTRICAL & COMPUTER ENGINEERING MTH 112 MTH 256 MTH 254 MTH 254 MTH 252 MTH 111 MTH 112 MTH 252 MTH 251 MTH 231 WR 121 MTH 255 Vector Calculus II CS 162 Intro to Computer Sci. II ‘Java’ MTH 231 Discrete Math WR 327 Technical Report Writing CH 201/221 Chemistry MTH 306 Matrix & Power Series Methods MTH 251 Differential Calculus PH 213 Physics w/Calculus PH 212 Physics w/Calculus ENGR 203 Electrical Fundamentals PH 211 Physics w/Calculus ECE 112, ENGR 201 or electronics experience ECE 272* Digital Logic Design Lab Shaded courses are required by the college prior to admission to the Professional Engineering Program Shaded courses are additional prerequisites for third-year courses. * Need working TekBot from ECE 112, or ECE 199 Tekbot concurrent okay FIRST YEAR SECOND YEAR Academic Year: 2007-2008 Fall Winter Spring Fall Winter Spring MTH 111 or MTH 251 MTH 231 Co-Req CS 261 Data Structures in ‘C’ ECE 111 or ENGR 111 ECE 112 or ENGR 112 CS 161 Intro to Computer Sci. I ‘Java’ MTH 251 & MTH 252 MTH 231 or MTH 251 Co-Req ECE 271 Digital Logic Design ENGR 201 Electrical Fundamentals ENGR 202 Electrical Fundamentals MTH 252 Integral Calculus MTH 254 Vector Calculus MTH 256 Differential Equations WR 121 English Composition Perspectives Western Culture COMM 111/114 Speech Lifetime Fitness e.g. HHS 231 + Lab Rev. 8/2007

  2. NOTES: 1. MECOP admission – all and shaded courses plus CS 261. 2. With advisor approval, CH 121 + 122 + 123 may be substituted for the chemistry series CH 201 + 202 or CH 221 + 222. 3. CS 261 must be taught with the C programming language. If not, the C language will have to be learned separately prior to ECE 375, e.g. OSU’s CS 151, Introduction to C Programming. 4. Credits to graduate = 180. ELECTRICAL & COMPUTER ENGINEERING Additional courses not requiring admission to the Professional Engineering Program ENGR 390 Engineering Economics Perspectives Cultural Diversity Perspectives Literature & Arts Perspectives Social Processes & Institutions Difference, Power & Discrimination Bioscience Elective Synthesis Contemporary Global Issues Synthesis Science, Technology, & Society Rev. 8/2007

  3. FallWinterSpring ENGR 203 ECE 322 Electronics ECE 271/2 ECE 375 Comp Structures & Assembly Lang Programming MTH 255 & ENGR 203 CS 261 in ‘C’ & ECE 271 ENGR 203, MTH 256 MTH 256, ENGR 203 MTH 306, ECE 351 MTH 254, ECE 351 ECE 391X Electromagnetic Fields & Trans Lines ECE 390 Electric & Magnetic Fields (fall term) ECE 351 Signals & Systems I ECE 353 Intro to Prob. & Random Signals ECE 352 Signals & Systems II ELECTRICAL & COMPUTER ENGINEERING Junior Year Technical Curriculum Dependenton Track ENGR 202, ENGR 211, ECE 390 ECE 331 Electromech Energy Conversion (winter term) ECE 323 Digital Electronics ENGR 201 CS 261 & ECE 375 ECE 317 Electronic Materials & Devices (fall term) CS 311 Operating Systems I (fall, winter, or summer term) ECE 372 Into to Computer Networks MTH 254 Co-Req PH 211 ENGR 211 Statics ENGR 212 Dynamics NOTES: 1. MECOP students take fall and winter courses in their junior year. 2. ECE 271/272 is offered fall/spring terms. 3. ECE 323 is offered fall/spring terms. 4. ECE 351 is offered fall/winter terms; 5. ECE 352 and ECE 353 are offered winter/spring terms. 6. ECE 375 is offered fall/winter terms. 7. ECE 391X and ECE 331 are offered winter terms. 8. ECE 271/2 is a hard prerequisite to ECE 375. NOTES: 1. ENGR 211, ENGR 212 and ECE 331 are useful for Energy Systems, Robotics & Control, and Fundamentals of Engineering (FE) Exam preparation. 2. ECE 317 is for Materials & Devices, Integrated Circuits, High Frequency Systems and Applied Electromagnetics, Optoelectronics, and FE Exam preparation. 3. ECE 390 is useful for all except Computer & Network. 4. CS 311 is useful for Computer & Network. Rev. 8/2007

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