such structures including percussion instruments, land- mines/IED, and coupled resonator arrays.Dr. Colleen Janeiro, East Carolina University Dr. Colleen Janeiro teaches engineering fundamentals including Introduction to Engineering, Materials and Processes, and Mechanics of Materials. Her teaching interests include development of solid commu- nication skills and enhancing laboratory skills, while ensuring students are aware of, and adhere to, the University’s academic integrity policies.Dr. Patrick F. O’Malley, Benedictine College Patrick O’Malley teaches in the Mechanical Engineering program at Benedictine College in Atchison, KS. c American Society for Engineering Education, 2018
), Page 24.128.20 1-1012. Harding, T., Carpenter, D., Montgomery, S. and Steneck,N.H. (2001) The Current State of Research on Academic Dishonesty Among Engineering Students. 31st ASEE/IEEE Frontiers in Education Conference Reno, NV13. Jensen, L.A., Arnett, J.J., Feldman, S.S. and Cauffman, E. (2002) It’s Wrong, But Everybody Does It: Academic Dishonesty among High School and College Students. Contemporary Educational Psychology 27, 209-22814. Del Carlo, D.I., Bodner, G.M. (2004) Students’ Perceptions of Academic Dishonesty in the Chemistry Classroom Laboratory. Journal of Research in Science Teaching Vo. 41, No. 1, 47-6415. Lambert, E.G., Hogan, N.L. and Barton, S.M. (2003), ‘Collegiate Academic Dishonesty Revisited: What
-traditional channels, given that thesocial science students will unlikely encounter the internship information through science andengineering publications.International Winter School for Graduate StudentsThe International Winter Schools for Graduate Students (iWSG) are organized jointly by NNINand institutions in third world countries with the goal of promoting international bridge buildingand understanding by bringing together students and faculty in an intense teaching and societalexperience. Each year, 10 graduate students and faculty participate in a rigorous course in anemerging and research-intensive interdisciplinary direction that is not part of U.S. graduatecurriculums. This lasts six days and includes laboratory sections, followed by travel
engineer in the state of Louisiana.Bill Elmore, Mississippi State University BILL ELMORE, Ph.D., P.E., is Associate Professor and Hunter Henry Chair, Mississippi State University. His teaching areas include the integrated freshman engineering and courses throughout the chemical engineering curriculum including unit operations laboratories and reactor design. His current research activities include engineering educational reform, enzyme-based catalytic reactions in micro-scale reactor systems, and bioengineering applied to renewable fuels and chemicals. Page 11.562.1© American Society for
eleven years combined. Much of her current work and research focuses on Cognitively Guided Instruction in mathematics.Dr. Gregg Morris Warnick, Brigham Young University Gregg M. Warnick is the Director of the Weidman Center for Global Leadership and Associate Teaching Professor of Engineering Leadership within the Ira A. Fulton College of Engineering and Technology at Brigham Young University (BYU). The center provides oversight for leadership development and inter- national activities within the college and he works actively with students, faculty and staff to promote and develop increased capabilities in global agility and leadership. His research and teaching interests in- clude developing global agility
the other hand, howethics education manifests in engineering programs is still an open question. There are myriadways in which ethics can be taught, places where it can be taught, and ideas to teach under therubric of engineering ethics. Our paper takes a simple approach to address parts of this issue ofheterogeneity in engineering ethics education by asking one basic question: “what kinds ofpatterns can we observe by looking at how much ethics-related content engineering students maysee in their undergraduate engineering programs?” In order to help the engineering education community have a more detailed view of thestate of engineering ethics education, we collected data from the top 30 engineering degree-granting universities in the
analysis, and was an original member of the IBM Research speech recognition group that started in 1972. He was manager of the Speech Terminal project from 1976 until 1980. At IBM Dr. Silverman received several outstanding innovation awards and patent awards. In 1980, Dr. Silverman was appointed professor of Engineering at Brown University, and charged with the devel- opment of a program in computer engineering. His research interests currently include microphone-array research, array signal processing, speech processing and embedded systems. He has been the director of the Laboratory for Engineering Man/Machine Systems in the School of Engineering at Brown since its founding in 1981. From July 1991 to June 1998 he was
Endowment for the Humanities and the National Science Foundation. She is currently investigating the intersections between engineering and CSR on the NSF grant ”The Ethics of Extraction: Integrating Corporate Social Responsibility into Engineering Education.”Dr. Nicole M. Smith, Colorado School of Mines Dr. Smith is a Assistant Professor in Mining Engineering at the Colorado School of Mines. She is a cultural anthropologist with research and teaching interests in livelihoods and extractive industries, corporate social responsibility, indigenous peoples, artisanal and small-scale mining, and engineering education.Dr. Greg Rulifson P.E., Colorado School of Mines Greg currently teaches in Humanitarian Engineering at Mines
), individual activities, and evaluation of interactions.Author History with Engineering Ethics InstructionDr. Leitch has constructed and instructed engineering ethics courses at three institutions, all of which have adedicated course for engineering ethics instruction. As a doctoral candidate at New Mexico State University(NMSU), he was tasked with teaching during three consecutive summers (2000 – 2002), a combined EngineeringEconomics and Ethics course that consisted of the equivalent of one-credit hour of ethics instruction. A feature ofinstruction at NMSU was the use of National Society of Professional Engineers (NSPE) case studies that werediscussed in a collaborative classroom format as well as also in a technical report and presentation at the
AC 2011-1501: A CASE STUDY-BASED GRADUATE COURSE IN ENGI-NEERING ETHICS AND PROFESSIONAL RESPONSIBILITYCraig T Evers, PhD, PE, Minnesota State University - Mankato Craig T. Evers currently I am an assistant professor at Minnesota State University Mankato teaching un- dergraduate and graduate courses in the Automotive and Manufacturing Engineering department. I have over 25 years experience in the manufacturing industry, mostly in automotive related positions. Some of my past employers include John Deere, Robert Bosch Corporation, Intel and IBM. Previous positions include tooling manager for a Fortune 500 electronics company, production engineer for fuel components line with $125 million annual sales, manufacturing
Paper ID #18716Which Factors are Correlated with Engineering Students’ Expectations ofEthical Issues?Dr. Rockwell Franklin Clancy III, University of Michigan, Shanghai Jiao Tong Joint Institute Rockwell F. Clancy is a lecturer in engineering ethics and philosophy at the University of Michigan- Shanghai Jiao Tong Joint Institute, Shanghai Jiao Tong University, and has acted as a long-term educa- tional, setting up a course and writing a corresponding textbook with Heinz Luegenbiehl on global moral issues for engineers. His research and teaching interests include engineering ethics, philosophy of tech- nology, Chinese
, sign-offs, and standards development) and reactive tasks (such as product investigations, safety recalls, and regulatory affairs) for all of their products worldwide.Dr. Andrew S Merryweather, University of Utah Andrew S. Merryweather is director of the Ergonomics and Safety Program at the University of Utah and Assistant Professor in the department of Mechanical Engineering where he teaches and directs research in the areas of biomechanics, human factors, musculoskeletal injury prevention and human modeling. Dr. Merryweather obtained his Ph.D. degree in Mechanical Engineering at the University of Utah in 2008 as a NIOSH Trainee in Occupational Injury Prevention. Over the past 12 years Dr. Merryweather has managed
classifications, but faculty can typically teach to only a fractionof these learning styles within their constraints of time and resources.” Accordingly, the authorevaluates the usefulness of various technologies in delivering content to a wider range of studentlearner types. Smith’s research supports the importance of providing faculty with morecomprehensive profiles of student learning styles in order to cultivate a learning environmentthat supports a greater diversity of STEM students. Angolia [6] uses foundational theories of learning styles and Kolb’s experiential learning theoryamong others to assess the competency requirements outlined in the Engineering ManagementBody of Knowledge. Angolia adapted Kolb’s model and emphasizes both student
, microfluidics for measuring cell motility, wearable electronics, laboratory automation of fly work in genetics research and 3d printing in mechanics education. c American Society for Engineering Education, 2019 Implicit Attitudes in Engineering: Coding, Marketing and BiasAbstractSome of the most difficult to teach and measure student learning outcomes are those associatedwith societal awareness and impact. Many engineering classes are already oversaturated withtechnical material leaving the discussion of current events and social changes that impact oureveryday lives for general education courses. This tendency is reinforced by cultural aspects ofengineering emphasizing technical skills over social
.) to train unmanned aircraft pilots and operators, Bachelor ofScience in Unmanned Aircraft System Sciences. Students within its program are exposed to anumber of aviation and engineering topics within their four-year degree program. Students aregiven the opportunity to reinforce their learning with co-curricular opportunities such asinternships and hands-on projects, and extra curricular activities including participation withinthe AUVSI student unmanned systems competitions. In addition to a four-year baccalaureatedegree, a minor in UAS is also available.Within the College of Engineering, faculty performing teaching and researching within threemajor departments, Mechanical Engineering (ME); Aerospace Engineering (AE); and Electrical,Computer
Gaudette, Worcester Polytechnic Institute Glenn R. Gaudette, PhD, is a Professor of Biomedical Engineering at Worcester Polytechnic Institute. His research, which is supported by the National Institutes of Health and the National Science Foundation, aims to develop a treatment for the millions of Americans suffering from myocardial infarction and other cardiovascular diseases. In May of 2012, he co-founded a company based on some of the pioneering technology developed in his laboratory. Prof. Gaudette also teaches biomedical engineering design and innovation, biomechanics and physiology. He promotes the development of the entrepreneurial mindset in his students through support provided by the Kern Family Foundation
University Dr. Colleen Janeiro teaches engineering fundamentals such as Introduction to Engineering, Materials and Processes, and Statics. Her teaching interests include development of solid communication skills and enhancing laboratory skills.Dr. William E. Howard, East Carolina University William E (Ed) Howard is an Associate Professor in the Department of Engineering at East Carolina University. He was previously a faculty member at Milwaukee School of Engineering, as well as as a design and project engineer with Thiokol Corporation, Spaulding Composites Company, and Sta-Rite Industries.Dr. Patrick F. O’Malley, Benedictine College Patrick O’Malley teaches in the Mechanical Engineering program at Benedictine College
Page 23.1097.3of the laboratory courses that are found at bachelor degree granting institutions. The surveywritten and delivered at CC is available in Appendix C. A total of 91 students were surveyed atCC, all from the Introduction to Engineering (ENGR 1020) course. CC students are composed ofa mix of traditional and non-traditional students from various backgrounds. Many students are inthe first year of their engineering study, but many have other degrees or have pursued studies inother areas prior to joining the engineering department. At CC, students took the survey on paperafter a lecture and discussion on engineering ethics, without the instructor present. Studentresponses were collected by a student volunteer and results recorded by a
Buzzanell, Purdue University, West Lafayette (College of Engineering) Patrice M. Buzzanell is a Distinguished Professor in the Brian Lamb School of Communication and the School of Engineering Education (courtesy) at Purdue University. She also serves as the Butler Chair and Director of the Susan Bulkily Butler Center for Leadership Excellence. Editor of four books and author of over 175 articles and chapters as well as proceedings and encyclopedia entries, her research centers on the intersections of career, change, leadership, and resilience. Fellow and past president of the International Communication Association, she has received numerous awards for her research, teaching/mentoring, and engagement. She has worked on
resonator arrays.Dr. Colleen Janeiro, East Carolina University Dr. Colleen Janeiro teaches engineering fundamentals such as Introduction to Engineering, Materials and Processes, and Statics. Her teaching interests include development of solid communication skills and enhancing laboratory skills.Dr. William E. Howard, East Carolina University William E (Ed) Howard is an Associate Professor in the Department of Engineering at East Carolina University. He was previously a faculty member at Milwaukee School of Engineering, following a 14- year career as a design and project engineer with Thiokol Corporation, Spaulding Composites Company, and Sta-Rite Industries. c American Society for Engineering
University of Nevada, Las Vegas, as an Assistant Professor. His research interests include design and optimization of mechanical systems, characterization of material properties under dynamic loading, system identification and control of smart actuators. Dr. Trabia has been the author of more than 150 technical journal and conference papers. He was involved with multiple funded research grants with total budget exceeding 6 million dollars. Dr. Trabia is a Fellow of the American Society of Mechanical Engineers (ASME). Dr. Trabia has received multiple awards recognizing his teaching, research, and service efforts including, the ASME Dedicated Service Award.Mrs. Julie A. Longo, University of Nevada - Las Vegas Julie
. Rabb P.E., The Citadel Robert Rabb is a professor and the Mechanical Engineering Program Director at The Citadel. He previ- ously taught mechanical engineering at the United States Military Academy at West Point. He received his B.S. in Mechanical Engineering from the United States Military Academy and his M.S.E. and PhD in Mechanical Engineering from the University of Texas at Austin. His research and teaching interests are in mechatronics, regenerative power, and multidisciplinary engineering. c American Society for Engineering Education, 2020 Measuring Curriculum Effectiveness for Developing Principled Leaders in an Undergraduate Engineering Program.AbstractA standard
AC 2009-1735: ASSESSING TEAM WORK AND ETHICAL AWARENESS ININTERPROFESSIONAL UNDERGRADUATE TEAMS AND ENTREPRENEURIALSTUDENT START-UPS: REPORT #1John Ochs, Lehigh UniversityLisa Getzler-Linn, Lehigh UniversityMargaret Huyck, Illinois Institute of TechnologyScott Schaffer, Purdue University Scott P Schaffer is currently an associate professor in the Educational Technology program in the College of Education at Purdue University where his research and teaching focuses on workplace learning and performance. He received his M.S. and Ph.D. in Instructional Systems from Florida State University and teaches courses such as E-Learning Design, Program Evaluation, Learning Systems Design, and Human Performance
Paper ID #22127Where Should We Begin? Establishing a Baseline for First-year StudentAwareness of Engineering EthicsMs. Natalie C.T. Van Tyne, Virginia Tech Natalie Van Tyne is an Associate Professor of Practice at Virginia Polytechnic Institute and State Univer- sity, where she teaches first year engineering design as a foundation courses for Virginia Tech’s under- graduate engineering degree programs. She holds bachelors and masters degrees from Rutgers University, Lehigh University and Colorado School of Mines, and studies best practices in pedagogy, reflective learn- ing and critical thinking to inform enhanced student
Humanitarian Opportunities for Service, ETHOS, states as theirpurpose to “facilitate research and the development of appropriate technology by formingcollaborative North-South partnerships between universities, research laboratories,engineers and non-governmental organizations in foreign countries.”16New Pedagogy: Service Learning A new pedagogy which has been gaining increasing attention across the universityparticularly in engineering is a form of experiential education known as service-learning.Service-learning is a teaching and learning strategy that integrates meaningful communityservice with instruction and reflection to enrich the learning experience, teach civicresponsibility, and strengthen communities and thus may be an important
) and applications.However, all such technologies do not specify the range of wireless systems they use,thus, violating a primary ethical proof that they can do their job. None of the luxury carmanuals tell us that if it has a power window it would not open when the car is sunk orstanding in flood. The most alarming thing is that we are still not doing or teaching athing about our environment, and wish to live in a culture of insensitivity. Engineers havenow produced nano-bio convergence but have ceased to learn about energy, costefficiency and green engineering strategies. This can only happen when materialsengineer work with chemical and electrical engineers. In this paper we will discussconsequences of above and describe proactive approaches
program curricula to determine if and what kinds ofchanges are needed.1The current outcome assessment process for E and ET programs is primarily designed to meetthe requisite ABET Criteria 3 (a-k) requirements. Evaluation is concentrated on 3rd and 4th yearcourses and measures performance in specific embedded assignments within the core area, i.e.those most relevant to the major and taught within the College. Core courses may be classified asone of the following 5 types: • Theoretical – 3 or 4 semester credits, largely lecture-based, and devoted to an advanced topic within a specific discipline such as thermodynamics or wireless communications. • Experiential – Laboratory-oriented course equivalent to 1 to 3 semester credit
and technology-in-use as a reflection on, and an influence on social morals and social ethics.Mr. Lynn Catlin P.E., Boise State UniversityDr. Harold Ackler, Boise State University Dr. Harold Ackler is a Clinical Assistant Professor in the Micron School of Materials Science and En- gineering at Boise State University. He teaches advanced undergraduate laboratory courses and manages the senior capstone program in the Micron School. He received BS and MS degrees from the University of California at Berkeley and his PhD degree from the Massachusetts Institute of Technology (1997), all in Materials Science and Engineering. He has over 13 years of experience working in industry where he learned how important hands-on
semiconductor device fabrication, now focus on the societal and ethical implications of nanotechnology and other emerging technologies. In response to the increasing need for interdisciplinary function, she initiated and leads the University of New Mexico's 'Science and Society Dialogue' project, embraced by a wide range of University departments, schools and institutes. As well as teaching engineering ethics, Dr. Mills offers seminars and workshops to a range of stakeholder groups. Page 11.48.1© American Society for Engineering Education, 2006 A Graduate Level Ethics Course
others? How does the team undertake thecollective gate keeping surrounding inclusion artifacts? These are a few of the questions thatexplorations of inclusion artifacts may begin to provide answers to.Furthermore, in teaching teamwork practices, faculty could use the concept of BNAs to teachcommunication skills by demonstrating how inclusion artifacts can help them explain their ideasto other team members and other relevant stakeholders. Prototypes, sketches, and CADdrawings—all of which could be boundary negotiating artifacts—are significant parts ofengineering work, and their importance should not be downplayed. When such objects areassignments for interdisciplinary teams, they can be conceptualized as BNAs and used to callstudents’ attention