sliding mode control, image processing, machine learning and energy management. He won the excellent teaching assistant award in National Chiao Tung university, 2016.Prof. Yon-Ping Chen, National Chiao Tung University Yon-Ping Chen received the B.S. degree in electrical engineering from National Taiwan University, Tai- wan, in 1981, and the M.S. and Ph.D. degrees in electrical engineering from the University of Texas at Arlington, USA, in 1986 and 1989, respectively. He is currently a Distinguished Professor with the Department of Electrical Engineering, National Chiao Tung University, Taiwan. His researches include control, image signal processing, and intelligent system design.Prof. Sunny S. J. Lin, National Chiao Tung
reprints for government purposes notwithstanding any copyright notation hereon.Finally, the authors would like to thank the students from the Introduction to MechanicalEngineering course at SDSM&T that answered the STTS in the fall 2018 semester.Bibliography[1] The Engineering Accreditation Commission (EAC), 2017, "General Criteria forBaccalaureate Programs," http://www.abet.org/wp-content/uploads/2017/12/E001-18-19-EAC-Criteria-11-29-17-FINAL_updated1218.pdf[2] American Association of Engineering Societies, and United States Department of Labor,2015, "Engineering Competency Model," Employment and Training Administration, ed., UnitedStates Department of Labor.[3] Crawley, E. F., Malmqvist, J., Östlund, S., Brodeur, D. R., and Edström, K., 2014
failures [13]. Of the 21 causes, we consider in this work the 10 that apply to studentprojects, as shown in Table 1. Table 1: Common causes of systems engineering failures. Adapted from [13]. Systems engineering failure causesFailed to consider Actor(s) in the organization failed to consider an aspect in the system design. In many cases,design aspect this causal action describes a design flaw, such as a single-point failure or component compatibility.Used inadequate Actor(s) in the organization used inadequate justification for a decision.justificationFailed to form a Actor(s) in the organization failed to form a contingency plan to implement if an
. Infact, other disciplines such as large-scale systems theory may need to be applied to addressthe management of large data when it comes to real-time control of complex systems.References 1. Guide to the Systems Engineering Body of Knowledge (SEBoK). Retrieved December 31, 2015, from http://sebokwiki.org/wiki/Guide_to_the_Systems_Engineering_Body_of_Knowledge_(SEBoK) 2. Blanchard, B. S., & Fabrycky, W. J. (2010). Systems Engineering and Analysis (5th ed.). Upper Saddle River, NJ: Prentice Hall. 3. Banks, J., Carson, J. S. II, Nelson, B. L., & Nicol, D. M. (2009). Discrete-Event System Simulation (5th ed.). Upper Saddle River, NJ: Prentice Hall. 4. Buede, D. M., &
settings to generalize our findings, identifyingwhich SE principles may be most effective, and investigating the role of previous SE education inmultidisciplinary course outcomes.References [1] George Vachtsevanos [et. Intelligent fault diagnosis and prognosis for engineering systems. John Wiley & Sons, Hoboken, N.J., 2006. [2] Armando Rugarcia, Richard M Felder, Donald R Woods, and James E Stice. The future of engineering education i. a vision for a new century. Chemical Engineering Education, 34(1):16–25, 2000. [3] Tim King. Millwrights to mechatronics: The merits of multi-disciplinary engineering. Mechatronics, 5(2): 95–115, March 1995. [4] M B Manju, K S Nikhil, D Nishanth, K S Sai Vignesh, B S Anupama, and Madhav Murthy
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, and value and enable students and instructors to moreclearly identify gaps and misalignments that may lead to unsuccessful designs.ReferencesABET Engineering Accreditation Commission, Criteria for Accrediting Engineering Programs,Effective for Reviews During the 2016-17 Cycle, Baltimore, MD, October 16, 2015.Castellion, G. and Markham, S. K. (2013), “Perspective: New Product Failure Rates: Influenceof Argumentum ad Populum and Self-Interest”, Journal of Product Innovation Management, 30:976–979. doi:10.1111/j.1540-5885.2012.01009.xCrismond, David P. and Robin S. Adams, “The Informed Design Teaching and LearningMatrix”, Journal of Engineering Education, October 2012, Vol. 101, No. 4, pp. 738–797.Dym, Clive L., Agogino, Alice M., Eris, Ozgur
Very likely) 3. Rank the reasons for you to select a career. Please use consecutive numbers starting with 1 for the most important, 2 for the second important, etc. Select N/A if you think that a factor/skill does not help result in a successful job application.The options for this question included good salary, I have previous experiences relevant to theoccupation, my family member(s) is/are in that field, impact from role model(s) who are not myrelatives, it is personally satisfying to work in that field, it is important to society to havesomebody work in that field, and the job is very interesting to me. 4. Assume you have multiple job offers. What are the top 3 reasons for you to accept a company’s offer?The
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with the students the more standard sensitivityanalysis: change in price of goods, change in price of key raw material(s), change in price ofutilities, change in price of labor. These are the ones sometimes discussed in design textbooks.Ask students if that is all there is to a Financial Operational Model? See what the students answerhere. Get them to understand the sheer power of having the engineering design melded to theeconomics. What does that truly mean? Start to get them to see other types of sensitivities that arenot simply linear changes in slope but can have actual minimum or maximum optimal values.Examples include key design specifications to the product, parameter uncertainty in the modelsfor a piece of equipment such as extent of
, NY: Springer. 11. Crawley, E. F., Malmqvist, J., Östlund, S., Brodeur, D.R., & Edström, K. (2014). Rethinking Engineering Education: The CDIO Approach (2nd ed.). New York, NY: Springer. 12. Mills, J. E. & Treagust, D. F. (2003). Engineering Education - Is Problem-based or Project-based Learning the Answer? Australian Journal of Engineering Education, 3(2), 2-16. 13. Dym, C. L., Agogino, A. M., Eris, O., Frey, D. D., & Leifer, L. J. (2005). Engineering Design Thinking, Teaching, and Learning. Journal of Engineering Education, 94(1),103-120. 14. Frank, M. & Elata, D. Developing the Capacity for Engineering Systems Thinking (CEST) of Freshman Engineering Students. Systems Engineering, 8(2), 187
to Designing Courses for Significant Learning,” University of Oklahoma, Norman, Oklahoma, 2003. [Online] Available: http://www.bu.edu/sph/files/2011/06/selfdirected1.pdf.[10] A. B. Badiru, “Quality Insights: The DEJI Model for Quality Design, Evaluation, Justification, and Integration,” International Journal of Quality Engineering and Technology, vol. 4(4), pp. 369- 378, 2014[11] A. B. Badiru and S. C. Bommer, Work Design: A Systematic Approach. Boca Raton, FL: Taylor & Francis/CRC Press, 2017.[12] A. June, “A Helping Hand for Young Faculty Members,” Chronicle of Higher Education, vol. 55(3), pp. A10, 2008.
refers to how long a movement or sequence of movements continues.Kinesthetic response refers to a spontaneous reaction to motion. Repetition refers to the repeatingof something onstage. The viewpoint of space encompasses shape, gesture, architecture, spatialrelationship, and topography. Shape refers to the contour the body(ies) makes in space. Gesturerefers to a movement that engages part(s) of the body; gesture is a shape with a beginning, middle,and end. Architecture refers to the environment the actors are working in and how their awarenessof it impacts the way they move. The actors learn “to dance with the space, to be in dialogue witha room, to let movement evolve out of our surroundings” [10]. Topography refers to the floorpattern and the
the US and even around the world. This accreditation certainly ensures highquality of the engineering education that is provided to the students. However, with ABET’sapproach of accrediting individual programs, universities (and departments) tend to develop theirengineering programs largely in isolation. There is likely to be a strong overlap between thecollege-level math and basic sciences courses that are required by ABET, but the courses onengineering topics may or may not be common across multiple programs. There could certainlybe overlap based on the history of how these courses were initially designed, the programs theywere initially offered under, the faculty member(s) who designed and/or taught them, scheduling,etc. Universities and