Faculty research and input from industry partners provide a framework for the program that provides project-based training using CPS principles and techniques to solve real-world challenges.
Individuals enrolling in this degree program are given the opportunity to develop a strong background in Engineering Science and to learn the analysis, design, and synthesis tools necessary to contribute in traditional and emerging areas of technology. The department has excellent laboratory facilities where students receive hands-on instruction from faculty members.
Computer-aided design CAD facilities, including state-of-the-art workstations, are routinely used. Some classes are taught by adjunct faculty from local industries, giving students the opportunity to interact with engineering professionals engaged in relevant engineering practice. Because of the broad engineering training in this program, graduates may find employment in many industries, including companies or government agencies associated with aerospace, automotive, energy, petroleum, manufacturing, biomedical engineering, and research.
Bachelor of Science Degree in Mechanical Engineering The Bachelor of Science degree in Mechanical Engineering offers students the opportunity to prepare for careers in traditional, new, and emerging technologies related to the practice of Mechanical Engineering, which is a versatile and broadly-based engineering discipline.
Mathematics and basic sciences, such as physics and chemistry, form the foundation of mechanical engineering, which requires an understanding of diverse subject areas, such as solid and fluid mechanics, thermal sciences, mechanical design, structures, material selection, manufacturing processes and systems, mechanical systems and control, and instrumentation.
The Mechanical Engineering curriculum provides education and basic engineering training through the required coursework.
Students may develop increased specialization and depth through the selection of technical elective courses. Development of open-ended, problem-solving skills is a part of many mechanical engineering courses.
Design projects with formal report writing are included in many courses. In addition, a substantial portion of technical elective courses is devoted to the design of systems and components.
A capstone design sequence at the senior level provides an opportunity to apply and integrate the knowledge gained throughout the curriculum to the development of an instructor-approved project. The laboratory requirements are designed to provide hands-on experience in basic measurement and instrumentation equipment and the application of classroom theory.
Students may receive additional hands-on experiences by selecting technical elective courses with laboratory components. Opportunities exist for students to participate in research and design projects. All students are eligible to participate in undergraduate research, through the independent study courses.
Students also have an opportunity to participate in an approved co-op program and may receive up to 3 semester credit hours for their experience.
Program Educational Objectives The Mechanical Engineering Program prepares students to attain the following program educational objectives after graduation: Apply their engineering knowledge and skills to their professional careers.
Continue to advance their knowledge, communication and leadership skills using technology, continuing education, problem solving, and by serving technical or professional societies.
Apply their understanding of societal, environmental, and ethical issues to their professional activities. Attainment of these outcomes prepares graduates to enter the professional practice of engineering.
The minimum number of semester credit hours required for this degree isat least 39 of which must be at the upper-division level.CDR Sample for Mechanical Engineering Discipline - ANZSCO Code: CAREER EPISODE – 1.
Introduction: The project on ‘Solar Car’ is the foundation of my first career episode and this was completed by me while completing my graduations. A student-friendly introduction to core engineering topics.
This book introduces mechanical principles and technology through examples and applications, enabling students to develop a sound understanding of both engineering principles and their use in practice.
Biomedical engineering (BME) is one of the fastestgrowing engineering disciplines — with very promising job prospects. Focused on medical sciences and interventions, biomedical engineers create new, game-changing technologies that save lives and improve quality of life.
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Bachelor of Science Degree in Mechanical Engineering. The Bachelor of Science degree in Mechanical Engineering offers students the opportunity to prepare for careers in traditional, new, and emerging technologies related to the practice of Mechanical Engineering, which is a versatile and broadly-based engineering discipline.