increase occupants’ discomfort.This capstone project was led by an MET student (Mechanical Engineering Technology) atPurdue Polytechnic Kokomo. The objective of the project was to investigate temperaturedisturbances across an office space that can help solve temperature non-uniformity that wouldultimately help in saving HVAC energy consumption. The project built a temperature monitoringsystem by freely hanging temperature thermocouples in air throughout an office space. Thetemperatures at different locations were compared to a common reference point collected by athermocouple located near the room’s current thermostat. The study investigated theinstantaneous changes in temperature readings throughout the room during day and night timesunder normal
learning in two senior-level courses: Integrated Engineering Design, which is asenior capstone course where students work on a design problem in interdisciplinary teams, andDesign & Manufacturing of BME Devices and Systems, where students work in teams on thedesign of biomedical devices and systems. Providing students with more opportunities to engagein project-based learning earlier in the curriculum would allow students to start developing theirprofessional, technical, and problem-solving skills at an earlier stage and to start putting theirknowledge into practice.One of the challenges of incorporating project-based learning early in an engineering curriculumis finding an appropriate project. The project must integrate knowledge, have real
powerful, GD seemed almosttoo flexible and complicated to a number of students whose computer literacy was stilldeveloping. In following semesters, we plan to use BBL as main platform, supplemented byGD.Introduction“Introduction to Engineering Design” is a course taken mostly by first- and second-year studentsin the Mechanical and Mechatronic Engineering programs at California State University, Chico.This course represents the first engineering design experience for most students in the programs.Students are instructed to keep a notebook in most of lab- and project-oriented courses in ourcurriculum, including “Measurements and Instrumentation” and the senior Capstone designproject. Specific format of these notebooks may vary, depending on the
Engineer in my spare time. In addition to biomedical research, I have been interested in engineering education since 2011. I am an active member of ASEE, and have published a number of papers in the area of student learning, capstone design, etc.Miss Emily Teresa Carbaugh, University of Wisconsin, Platteville I am a junior electrical engineering student at the University of Wisconsin-Platteville. c American Society for Engineering Education, 2018 Work in Progress: Application of Internet of Things (IoT) in remote lab checkoffAbstract: Many colleges and universities provide education for students who are unable toattend classes in person, called distance learning
Ibrahim is a civil engineer who is passionate about the sustainability of global cities. She is a triple graduate of the University of Toronto, and holds a BASc (2000), MASc (2003), and PhD (2015) in Civil Engineering, and a Certificate of Preventive Engineering and Social Development. Nadine has leveraged her industry experience to expand her inquiry into cities through urban and environmental projects in Canada and abroad. In 2010, she received the Early Career Award, awarded by the Faculty of Applied Science and Engineering at U of T to one alumnus, in celebration of 10 years of achievements. From undergrad research in structural engineering, into sustainable infrastructure in grad school, her vision is to connect
innovative solutions require theintegration of introductory computer programming and microcontroller functions with electricaland mechanical engineering applications. Students mention the open ended, hands-on activitiesin the course feedback as relevant applications that helped them improve their understanding andappreciation for the theory learned in the classroom. Additionally, students have learned toincorporate some of the lab requirements into their senior capstone projects. Working throughthe labs provides an excellent vehicle for deeper understanding and solving open-ended problemswhile contributing to a number of ABET student outcomes.IntroductionIndustry has recognized the need for engineers with a multidisciplinary background
learning.IntroductionIt has long been recognized that engineers need strong communication skills in addition to strongtechnical skills.1, 2 Engineers typically take a sequence of composition and rhetoric courses dur-ing the freshmen year. These courses are followed by other writing experiences more technical innature, including formal reports in laboratory courses and writing associated with the capstone de-sign experience. Many creative attempts have been made to improve writing frequency and qualityin academic programs. One example is the PITCH (Project to Integrate Technical Communica-tion Habits) initiative at the University of New Haven.3 The goal is to develop communicationskills (written, oral, and visual) and professional habits in engineering students
and sensors formeasuring common engineering quantities such as pressure, strain, temperature, etc. In addition,this course serves as the primary lab experience in thermofluids, covering experimentaltechniques for measuring heat transfer coefficients, analyzing heat exchanger efficiency, andmeasuring wind turbine behavior in a wind tunnel. A term long group project requires students todevelop, execute, and report on a measurement experiment of their own choosing. This course isdesigned to particularly prepare students for their senior year capstone design experience bygiving them practice in open ended projects and higher level analysis skills. The author hastaught this course as the sole instructor since Fall 2010.ME4505 has seven major lab
Paper ID #23018Is a Virtual Reality-based Laboratory Experience a Viable Alternative to theReal Thing?James R. McCusker Ph.D., Wentworth Institute of Technology James R. McCusker is an Associate Professor at Wentworth Institute of Technology in the Department of Electrical Engineering. Since joining Wentworth in 2010, he has been heavily involved with an array of interdisciplinary design courses that range from introductory to capstone courses.Mr. Mohammed A. Almaghrabi, Wentworth Institute of Technology Mohammed A. Almaghrabi is a Trainee Engineer at ASM Process Automation, where he helps developing factory automation
. Sirinterlikci, K. G. Jr. Moran, C. S. Kremer, B. A. Barnes, J. Cosgrove, and S. A. III Colosimo, “A Capstone Project on Design and Development of a Digital Light Processing 3D Printer, 2015 American Society for Engineering Education Annual Conference and Exposition Proceedings, Seattle, WA, June 14-17, 2015. Paper ID 14128[33] N. Jaksic, “MAKER: 3-D–Printing Evolution in Engineering Education: The Things We Make,” 2016 American Society for Engineering Education Annual Conference and Exposition Proceedings, New Orleans, LA, June 26-29, 2016. Paper ID 16253[34] Anon, Thingiverse, Accessed on Feb. 4, 2018. from https://www.thingiverse.com/[35] A. Bandura, Self-Efficacy: The Exercise of Control, W. H. Freeman and Company, NY, 1997.
currently the Chair of the Department of Teaching & Learning at Washington State Uni- versity. He has collaborated with engineering scholars on numerous projects, providing expertise in cur- riculum and instruction, learning, and K-12 schools.Dr. Phillip Himmer, Montana State University Phillip Himmer received his B.S. in Physics at Washington State University and M.S. in physics at Mon- tana State University. He obtained his PhD in engineering at Montana State University in the Electrical Engineering department. His PhD research focused on the design and fabrication of micro-optical elec- tromechanical systems for aberration correction in imaging systems. As a postdoctoral researcher at Montana State University he
undertake more open-ended inquiry. With each step in thisprogression, the student is given increasing amounts of autonomy in making decisions about howto conduct the investigation, and eventually what to investigate and why. This aligns with thedevelopmental assumption underlying the Thirteen Objectives; these were always intended to becumulative and apply over the entire undergraduate program and not be the outcome of any onelaboratory experience [6]. With the possible exception of a capstone research project, arguablyfew undergraduate students get to experience a level 3 lab.Several of the Thirteen Fundamental Objectives of Engineering Instructional Laboratories [4]point to a broader conception of what might be encompassed by lab. For instance