- An ability to apply knowledge of mathematics, physical sciences, engineering sciences to the practice of MEM
 - An ability to design and conduct experiments to test hypotheses and verify assumptions, as well as to analyze and interpret data and to simulate processes
 - An ability to design and conduct experiments to test hypotheses and verify assumptions, as well as to analyze and interpret data and to simulate processes
 - An ability to work effectively in multi-disciplinary and multi-cultural teams in diverse fields of practice
 - An ability to identify, formulate, and solve engineering problems
 - An understanding of the effects and impact of the MEM profession on the environment and the society, as well as the social and ethical responsibilities of the profession
 - The specialized knowledge in at least one field of MEM practice, and the ability to apply such knowledge to provide solutions to actual problems
 - An ability for effective oral and written communications particularly in the English language
 - An ability to engage in life-long learning and to keep abreast of the current trends and development in a specific field of specialization
 - An ability to use the appropriate techniques, skills and tools necessary for the practice of MEM
 - A knowledge of contemporary issues.
 
Student Outcomes – Manufacturing Engineering and Management
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 - Department of Biomedical, Manufacturing, and Robotics Engineering
 - Student Outcomes – Manufacturing Engineering and Management
 

