Program Information
BS Degree - Code 633500 - Catalog 2025/2026
Nabeel Yousef, Chair, Angela & D.S. Patel School of Engineering, 386-506-4123, Nabeel.Yousef@daytonastate.edu
Donna Miller, Administrative Assistant, 386-506-4138, Donna.Miller@daytonastate.edu
Program Mission, Description, and Outcomes
Mission
To prepare students for successful employment in the field of Engineering Technology through quality education and advisement.
Description
The Bachelor of Science in Engineering Technology Industrial Engineering Technology Specialization prepares graduates for technical positions in the expanding fields of industrial operations and manufacturing. The program has a strong commitment to maintain standards of excellence in content and to continuously upgrade curriculum to meet industry needs.
The program uses a 2 + 2 model requiring the completion of an associates degree for entry into the program.
Educational Objectives
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Career: Graduates will use their broad understanding of the key principles and practices of engineering technology, the written and oral communications skills, and the ability to work with others to apply these skills and knowledge to the design, implementation, and maintenance of systems.
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Skills: Graduates will contribute to their profession using the mathematical and scientific concepts that underlie engineering technology applications, will apply this understanding, and acquire new skills and knowledge necessary to analyze technology problems and develop suitable solutions.
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Professionalism and Ethics: Graduates will understand the ethical, human, and social issues of their field and will be involved members of their local and global communities acting as responsible technical professionals.
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Life-Long Learning: Graduates will be active contributors to their employer and their profession with a strong commitment to continuous individual and organizational improvement, effective communication, teamwork, quality, timeliness, and continued professional development.
Outcomes
Graduates of the program will be able to:
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Apply knowledge, techniques, skills and modern tools of mathematics, science, engineering, and technology to solve broadly-defined engineering problems appropriate to the discipline;
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Design systems, components, or processes meeting specified needs for broadly-defined engineering problems appropriate to the discipline;
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Apply written, oral, and graphical communication in broadly-defined technical and non-technical environments; and an ability to identify and use appropriate technical literature;
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Conduct standard tests, measurements, and experiments and to analyze and interpret the results to improve processes; and
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Function effectively as a member as well as a leader on technical teams.
Competencies
The program prepares graduates to have competence in the following areas:
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Systems Thinking: Understanding the big picture of how different components of a system interact and influence one another. Industrial Engineers must be adept at identifying inefficiencies and devising strategies to streamline operations, reduce costs, and improve quality.
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Technical Proficiency: Have the knowledge of manufacturing processes, product design, ergonomics, and quality control. Familiarity with computer-aided design (CAD) software, statistical analysis tools, and simulation modeling is also crucial.
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Quantitative Analysis and Data-Driven Decision Making: Industrial Engineers must excel in quantitative analysis to support data-driven decision making. This skill set encompasses the ability to collect, process, and interpret data to make informed decisions.
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Project Management and Organizational Skills: Project management is a key competency for Industrial Engineers, who often lead projects aimed at improving efficiency and productivity. This skill involves planning, executing, and overseeing projects from inception to completion.
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Communication and Teamwork: Effective communication and teamwork are indispensable for Industrial Engineers, who frequently work in multidisciplinary teams. This skill type includes the ability to articulate complex ideas clearly, listen actively, and collaborate with colleagues from various backgrounds.
Financial Aid
This program is eligible for federal financial aid and state Bright Futures Scholarship Program.
Financing Options: All students are encouraged to apply for federal and state student financial assistance by completing their FAFSA at studentaid.gov/h/apply-for-aid/fafsa. For more information on grants, loans and work programs available see the Office of Financial Aid webpage at daytonastate.edu/financial-aid/. Students are also encouraged to apply for one of the many Daytona State College Foundation scholarships offered each semester. For more information see: daytonastate.edu/scholarships/.
Additional Admission Requirements
- Submit a Bachelor of Science in Engineering Technology application to the Admissions Office, the BSET program office, or online through https://www.daytonastate.edu.
- Possess a conferred Associate of Arts or Science or Applied Science from a regionally accredited institution of higher education,
- or sixty (60) credits of transferable college-level coursework from a regionally accredited institution
- including 15 credits of general education courses.
- Complete general education, technical, and prerequisite coursework with a grade "C" or better.
- Successfully complete ENC1101 and MAC1105 (or equivalent or higher).
- Have an overall grade point average of 2.5 or higher.
- A grade point average between 2.0 and 2.49 may be admitted conditionally with the approval of the Chair of the BSET program.
- Provide an official transcript from all previous institutions attended. International students must have their transcripts evaluated by a member of the National Association of Credential Evaluation Services (NACES) naces.org/members.htm
Additional Completion Requirements
- Undertake and successfully pass:
- Physics coursework from either of the following two recommended courses:
- Mathematical coursework from the either of the following two options:
- Senior Design courses, ETI4448 and ETG4950C, at Daytona State College.
- Fulfill the 48 credit hours of approved upper-level technical courses, 36 credit hours of General Education, and 44 credit hours of approved lower-level technical coursework.
- Conclude two years of the same foreign language in high school or two semesters of the same college-level foreign language.
- Satisfy the College-Level Communication and Computational Skills and the Civic Literacy Competency requirement.
- Earn a grade "C" or better in all program specific and prerequisite courses.
Careers
The occupational outlook for engineering technology is available at the U.S. Bureau of Labor Statistics. Students considering careers in engineering technology should read the information on types of jobs available and salary ranges.
Note: It’s never too early to prepare for your career! Login to your Daytona State Career Services Student Job Board and create your personal account to submit your resume for review and search for jobs, and practice your interview skills with Big Interview. For questions, please email Career Services to connect with a Career Advisor.
Program Credit Requirements
| |
General Education |
36.00 |
|
Lower Level Technical Electives |
44.00 |
|
BSET Core Program of Study |
18.00 |
|
BSET- Industrial Engineering Technology Concentration |
30.00 |
| TOTAL |
... |
128.00 |
Note: Prior to enrollment in college-level English or math courses, some students may be advised to complete college preparatory/developmental course work. See an Academic Advisor to determine developmental course requirements.
BSET Core Program of Study Courses
| GEB3213 | Business Writing | 3 |
| EGN3311 | Statics | 3 |
| EGN3321 | Dynamics | 3 |
| EGN3613 | Engineering Economics Analysis | 3 |
| ETG4950C | Project Management and Senior Design II and Lab | 3 |
| ETI4448 | Project Management and Senior Design I | 3 |
| Total Credit Hours: | 18 |
Industrial Engineering Technology Concentration Courses
| ETS4502C | Metrology and Instrumentation and Lab | 3 |
| ETI4205 | Applied Logistics | 3 |
| ETI4186 | Applied Reliability | 3 |
| ESI4312 | Operations Research | 3 |
| EIN3314 | Work Design and Measurement | 3 |
| EGN3214 | Programming for Engineers | 3 |
| EGN3443 | Probability and Statistics for Engineers | 3 |
| ETI3116 | Engineering Quality Assurance | 3 |
| EET3085 | Electricity and Electronics | 3 |
| Program Elective | 3 |
| Total Credit Hours: | 30 |
Program Elective Course
Select One (3 credits):
Sample Program of Study
Year 1
1st Semester
| GEB3213 | Business Writing | 3 |
| ETI4205 | Applied Logistics | 3 |
| EET3085 | Electricity and Electronics | 3 |
| MAC2311C | Calculus I and Lab | 4 |
| Technical Elective | 3 |
| Total Credit Hours: | 16 |
2nd Semester
| ETI3116 | Engineering Quality Assurance | 3 |
| ETG3541 | Applied Mechanics and Physics | 3 |
| EGN3443 | Probability and Statistics for Engineers | 3 |
| EGN3613 | Engineering Economics Analysis | 3 |
| MAC2312C | Calculus II and Lab | 4 |
| Technical Elective | 3 |
| Total Credit Hours: | 19 |
Year 2
1st Semester
| ETS4502C | Metrology and Instrumentation and Lab | 3 |
| EGN3311 | Statics | 3 |
| ETI4186 | Applied Reliability | 3 |
| ETI4448 | Project Management and Senior Design I | 3 |
| MAC2313C | Calculus III and Lab | 4 |
| Total Credit Hours: | 16 |
2nd Semester
| EGN3214 | Programming for Engineers | 3 |
| EGN3321 | Dynamics | 3 |
| ETG4950C | Project Management and Senior Design II and Lab | 3 |
| ESI4312 | Operations Research | 3 |
| EIN3314 | Work Design and Measurement | 3 |
| MAP2302C | Differential Equations and Lab | 3 |
| Total Credit Hours: | 18 |
Students are strongly encouraged to seek advisement prior to enrolling in courses.
Note: Sequence of courses may vary. Check catalog course descriptions for requisite requirements.
Total Credit Hours: 68