The mission of the Department of Mechanical Engineering is to educate students in fundamental engineering principles, thus enabling the understanding of existing and next generation technologies relevant to research and engineering practice.  All graduates will receive a broad education that will enable them to be successful in industry or academia, the profession, and the community.

To carry out this mission, the Mechanical Engineering faculty, with input from other constituencies, has established the following objectives that describe the expected accomplishments of graduates during the first few years following graduation:

Program Learning Objectives and Outcomes for the Mississippi State University Mechanical Engineering Undergraduate Program
Program Educational Objectives Supporting Student Outcomes
1. Apply fundamental engineering knowledge, industry perspective and research skills to become experts or leaders within a chosen engineering career path.(a) an ability to apply knowledge of mathematics, science, and engineering.
(b) an ability to design and conduct experiments, as well as to analyze and interpret data.
(e) an ability to identify, formulate, and solve engineering problems.
(j) a knowledge of contemporary issues.
(k) an ability to use the techniques, skills, and modern engineering tools necessary for engineering practice.
2. Exhibit life-long learning and develop personal and teamwork skills in order to effectively solve real-life problems and clearly communicate their results. (d) an ability to function on multidisciplinary teams.
(g) an ability to communicate effectively.
(h) the broad education necessary to understand the impact of engineering solutions in a global, economic, environmental, and societal context.
(i) a recognition of the need for, and an ability to engage in life-long learning.
(j) a knowledge of contemporary issues.
3. Practice ethical responsibility and accountability in professional activities and actively participate in professional development.(c) an ability to design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability.
(f) an understanding of professional and ethical responsibility.
(h) the broad education necessary to understand the impact of engineering solutions in a global, economic, environmental, and societal context.
(j) a knowledge of contemporary issues.

* Bagley College of Engineering Enrollment Data

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