Bachelor of Science
The Bachelor of Science in Engineering Technology Program will prepare students for professional careers developing systems, components, and processes to meet needs in a wide variety of industries. The Engineering Technology program includes a core of engineering sciences and provides a strong foundation in graphical communication, electro-mechanical systems, testing and experimentation, process control, and fabrication. The program includes a multi-disciplinary design sequence in which students from different programs in the engineering department work in teams to bring solutions to engineering design problems from concept to implementation. Students will complete a two-semester capstone experience that develops competence in both technical and non-technical skills. Additionally, students will have the opportunity to specialize in electrical or mechanical areas of study through major electives.
The Engineering Technology (BS) program contains 29 identified courses across 4 requirement categories. The prerequisite data currently includes 66 known course relationships.
Structured catalog requirement categories, credit thresholds, and nested course rules.
42 Total Credits
Complete all of the following
42 credit(s) from: GenEd
Complete:
Complete:
Complete:
48 Total Credits
Complete all of the following
Complete:
1 of the following:
1 of the following:
1 of the following:
1 of the following:
15 Total Credits
Complete all of the following
15 credit(s) from EE, EG, or ETE within the 200 - 400 range or from the following courses:
At least 12 credits in the 300-400 level
15 Total Credits
15 credit(s).
Known courses in this degree map with credits and prerequisite links from catalog data.
| Course | Title | Credits | Prerequisites |
|---|---|---|---|
| CHM 120 | General Chemistry I | 3 | None listed |
| CHM 120L | General Chemistry I Lab | 1 | None listed |
| CS 110 | Fundamentals of Programming | 3 | None listed |
| CS 113 | Introduction to Programming | 3 | None listed |
| CS 113LExternal | Introduction to Programming Lab | — | None listed |
| CS 219 | Computer Architecture I | 3 |
|
| EE 201External | Signals and Systems | — | None listed |
| EE 220External | Electromagnetics | — | None listed |
| EG 110 | Engineering Ideas into Prototypes | 3 | None listed |
| EG 200 | Statics | 3 |
|
| EG 201External | Fluid Mechanics | — | None listed |
| EG 202 | Mechanics of Materials I | 3 |
|
| EG 203External | Dynamics | — | None listed |
| EG 207 | Instrumentation & Measurements | 3 |
|
| EG 208 | Materials Science | 3 |
|
| EG 209External | Thermodynamics I | — | None listed |
| EG 210 | Introduction to Mechanical Design | 3 |
|
| EG 216 | Circuits and Systems I | 3 |
|
| EG 301 | Fabrication and Fundamentals of Geometric Dimensioning and Tolerancing | 3 |
|
| EG 310 | Junior Engineering Design | 3 |
|
| EG 316 | Electrical Circuits | 3 |
|
| EG 333External | Control Systems Analysis | — | None listed |
| EG 340 | Probability and Statistics for Engineers | 3 |
|
| EG 342 | Circuits and Systems II | 3 |
|
| EG 407 | Manufacturing Process Control | 3 |
|
| EG 498 | Capstone Design I | 3 |
|
| EG 499 | Capstone Design II | 3 |
|
| ETE 200 | Fundamentals of Statics | 3 |
|
| ETE 202 | Strength of Materials | 3 |
|
| IT 145External | Foundation in Application Development | — | None listed |
| MAT 140External | Precalculus | — | None listed |
| MAT 142External | Precalculus with Limits | — | None listed |
| MAT 225 | Calculus I: Single-Variable Calculus | 3 |
|
| MAT 275 | Calculus II: Integration and Series | 3 |
|
| MAT 330External | Differential Equations | — | None listed |
| MAT 350 | Applied Linear Algebra | 3 |
|
| PHY 215 | Physics I | 3 |
|
| PHY 215L | Physics I Lab | 1 |
|
| PHY 216 | Physics II | 3 |
|
| PHY 216L | Physics II Lab | 1 |
|