Program outcomes represent broad areas of knowledge and skills developed over the
duration of the program through a wide range of courses and experiences. These learning
outcomes represent what a student should be able to know, think, or do upon successful
completion of their program at Oakland Community College.
Students will demonstrate proficiency in the ability to translate a physical electrical
circuit problem into software algorithm generating correct solution.
Students will demonstrate proficiency in the ability to translate a physical digital
circuit problem into circuit simulation solution.
Students will demonstrate proficiency in the ability to translate a physical mechanical
statics problem into software algorithm generating correct solution.
Students will demonstrate proficiency in the ability to translate a physical mechanical
dynamics problem into software algorithm generating correct solution.
Students will demonstrate proficiency in the ability to translate a physical robotics
problem into software algorithm generating correct solution.
Students will demonstrate proficiency in the ability to translate a physical assembly
problem into software algorithm generating correct solution.
Program Plan 2025-2026
Part Time - Fall Start (2.5 Years Night)
**Students should meet with an OCC counselor before attempting this plan of study**
Year 1 - Fall
Courses
Credits
MAT 1730
Calculus I
4
EGR 1100
Introduction to Engineering
3
TOTAL CREDITS
7
Year 1 - Winter
Courses
Courses
Credits
MAT 1740
Calculus II
4
CHE 1510
General Chemistry I
4
TOTAL CREDITS
8
Year 1 - Summer
Courses
Credits
ENG 1510
Composition I
3
or ENG 1510E
Composition I Enhanced
4
or ENG 1510S
Composition I with Support
6
GenEd
Fine Arts/Humanities
3
TOTAL CREDITS
6
Year 2 - Fall
Courses
Credits
MAT 2740
Calculus III
4
EGR 2010
Engineering Programming
4
TOTAL CREDITS
8
Year 2 - Winter
Courses
Credits
MAT 2810
Differential Equations
4
PHY 2400
Engineering Physics I
5
TOTAL CREDITS
9
Year 2 - Summer
Courses
Credits
ENG 1520
English Composition II
3
GenEd
Fine Arts/Humanities
3
TOTAL CREDITS
6
Year 3 - Fall
Courses
Credits
PHY 2500
Engineering Physics II
5
EGR 2060
Engineering Digital Circuits
4
TOTAL CREDITS
9
Year 3 - Winter
Courses
Credits
EGR 2080*
Engineering Microcontrollers
4
GenEd
Social Science
3
TOTAL CREDITS
7
MILESTONE: Make an appointment to meet with a Counselor to apply for graduation for
this degree.
Year 3 - Summer
Courses
Credits
EGR 2700*
Engineering Circuits I
5
GenEd
Social Science
3
TOTAL CREDITS
8
* Select 1 of 2 courses required for degree (Recommend taking both courses)
TOTAL CREDITS
63-64
Note: To receive MTA endorsement, students must fulfill the requirements noted for each
MTA category and successfully complete at least 30 credits. All coursework used to fulfill MTA requirements must be completed with a grade of 2.0
or higher in EACH course.