radiation hardened nanoelectronics. Dr. Ryan joined JSNN after working at the College of Nanoscale Science and Engineering (CNSE) of the University at Albany as Associate Vice President of Technology and Professor of Nanoscience from 2005 to 2008. At CNSE, he managed the cleanrooms and numerous consortia involving CNSE and its industrial partners such as IBM, TEL, AMAT, ASML and others. Dr. Ryan joined CNSE after a 25 year career with IBM. From 2003 to 2005, he was a Distinguished Engineer and Director of Advanced Materials and Process Technology Development and served as the site executive for IBM at Albany Nanotech. Prior to that assignment Dr. Ryan managed interconnect technology groups in research, development and
that students who are self-regulated, who keep their goals inmind, and know what they are doing and why they are doing it feel competent and do their workat a level that would enable them to do well in the class. This finding aligns well with empiricalstudies in cognitive science29. The implications of these findings suggest the importance ofmotivation, self-regulation, and self-efficacy in student learning process. While contentknowledge is important, keeping students motivated, self-regulated, and efficacious wouldcertainly help students reach their academic and career goals.Acknowledgements This project was funded by the National Science Foundation TUES Program through the Division of Undergraduate Education (Proposal 0837647). The authors
and Engineering Tech- nology programs covering topics such as control systems, digital signal processing and electromagnetics.Manuel Alejandro Martinez, Virginia Tech Manuel A. Martinez is a sophomore at Virginia Tech majoring in Chemical Engineering. He hopes to pursue a career in the chemical industry with a focus on monitoring chemical impacts on environmental Page 23.783.1 health. He participated in the summer 2012 NSF REU Program, Water Sciences and Engineering, as a water quality monitoring technician in the LEWAS Lab. Based on his performance in this program, he was brought on as a student member of
academic careers about the impact of learning these geotechnicalconcepts for other classes, graduate school or jobs.CONCLUSIONSThe installation of an educational module that for the first time integrates remote major researchinstrumentation into an undergraduate class appears to have been successful. Students’perceptions of the module were very positive. Students agreed that observing the stressdistribution under the footing and loading it to failure in the live experiment helped them betterunderstand stress distribution and bearing capacity. Additionally, many students showed interestin interacting with students from other schools. Many students showed interest in seeing moreexperiments like this one for other applications in geotechnical
disseminated throughASEE conference papers, and some of the problem sets described in this paper will be used inthe next edition of Felder et al. 5Current efforts include expanding the dissemination of this material through the ASEE ChemicalEngineering Division (CHED) Summer School. This will help extend the reach of thesematerials to an audience of educators early in their careers who will be able to directly impact thestudents they teach. The 2012 ASEE-CHED Summer School was held at the University of Page 23.793.2Maine in Orono, Maine, July 21- 27. The Summer School included over 20 workshops andmany opportunities for faculty to network and share
the Department of Computer Science at Stanford University, a Guest Researcher position in the Institute of Life Science and Technology at Shanghai Jiao Tong University, and a Visiting Researcher position at Microsoft Research Asia. Tan was a recipient of the prestigious US National Science Foun- dation’s Early Faculty Development (CAREER) Award, and she was a Chinese National Natural Science Funds’ Distinguished (Overseas) Young Scholar. In addition to serving on numerous program commit- tees, she was a co-organizer (with Blake Hannaford) of the International Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems from 2003 to 2005. In 2006, Tan served as the Found- ing Chair of the IEEE
Foundation CAREER award in 2006. He is also a visiting scholar at the Berkeley Wireless Research Center for the 2012-13 academic year.Dr. andre knoesen, Department of Electrical and Computer Engineering, U C Davis Andr´e Knoesen received his B.Ing. degree in electronics engineering from the University of Pretoria, South Africa, in 1980 and the M.S.E.E. and Ph.D. degrees from the Georgia Institute of Technology, Atlanta, in 1982 and 1987, respectively. He joined the Department of Electrical Engineering, University of California, Davis, in 1987 where he is now a Professor. He performs research in biosensors, and materials for high-frequency electronic and optoelectronic applications. Dr. Knoesen is a fellow of the
level of electric power. Another trend hasstarted very recently to utilize the telephone and other communication devices to control and monitorothers wirelessly using the Internet and its extensions. All types of communication devices havebecome popular among consumers, particularly college-age young.Electrical and computer engineers will not be successful without having a good skill set inunderstanding how the communication devices work in terms of exchanging and processing data.While most of them may not become software application developers, they would still need tounderstand the trends, adapt, and adopt the technologies to be successful in their careers. Teachingembedded systems has been around for a long time for the purpose of giving the
course demanded. To achievethe goals of the project, the challenges needed to be difficult in order to engage the students in Page 23.281.10authentic practice. Some students with little prior knowledge may find the challenges toodifficult; therefore, a great variance among the responses may occur on items related toperformance. The students also appreciated the classroom learning experience and instructor.Students reported these experiences prepared them for their engineering career, but were neutralabout how well the challenges prepared them for the exam. This finding was not too surprising,because the objectives of the exams were more focused on
, resourcefulness as well as social and cultural.• Taking professional attitude consistent with the principles governing the work area, working in multidisciplinary teams and relating appropriately with other professionals, clients and suppliers.• Manage the career with initiative and in an entrepreneurial way, to provide services or organizations to conduct own business. Page 23.284.9• Acting responsibly, committing to the principles of ethics, environmental sustainability, the preservation of health and social development, directing its activities to the values expressed in the professional ethos, which results in quality and
student learning of one-to-two fundamental concepts, or to demonstrate acomplex theorem, also taught in the companion lecture course. The students are required to havethe equipment available to them throughout their academic career as faculty members can assignhands-on homework assignments or in-class experiments into other courses. Hands-on activitiesusing the electronic platform have been incorporated into courses on electromagnetic fields,signals and systems, and fiber opticsiii.As the circuits laboratory courses were refined, open-ended design projects were introduced toallow students to select and apply an appropriate set of concepts to create a circuit that metspecifications. In our review of the assignments and their mapping to the design
Research Laboratory (1998- 2003; Adelphi, Md.), and Technical Director /Director of Waterways Experiment Station (1985-1998; Vicksburg, Miss.). He has authored/co-authored over a hundred technical papers and reports during his career in private industry, government and academia. His current research interests are nearshore wave transformations, coastal structures, tsunami inundation, hurricane surges, high performance computing, and engineering education.Ms. Qing Pang, Jackson State University Ms Qing Pang is Research Associate in the Department of Computer Engineering, School of Engineer- ing, College of Science, Engineering & Technology, Jackson State University. She earned her M.S. in Electrical and Computer
science class in 10,000 US high schools by the year2016, uses teacher professional development programs as the main vehicle for accomplishingthis goal. Professional development programs provide opportunities for teachers to bring aboutchange in their classroom practices, attitudes and beliefs, and learning outcomes 5. Othercountries have begun to realize the same need of increasing the number of professionals optingfor a computing related career. The US model can be used as a framework for addressing thesame issue. Page 23.301.2Developing countries, such as Colombia, are not the exception. Colombia faces the possibility offalling behind if they do
Army Corps of Engineers and the contractor and coordinated alternative traffic flow with emergency response and facility personnel. Mr. Bates’ career in the Air Force provided experience with several Department of Defense construction projects where he was able to refine his leadership and construction management skills. He planned, resourced, and executed the design-build of over thirty construction projects involving airfield pavements, base facilities, maintenance and repair ranging from $25K to $180M. He wrote project statements of work, performed periodic design reviews, developed feasibility reports, schedule updates, executed the change-order process, and validated progress payments. He also conducted
computing careers. The curriculumcontent for the Computer Science degree is based on the 2008 ACM Curriculum Report. TheComputer Science degree at UVU is accredited by Accreditation Board for Engineering andTechnology (ABET) in 2002 and currently has more than 500 students.To integrate Computational Intelligence concepts into our curriculum, we decided to use the firstmodel by offering an undergraduate course on Artificial Neural Networks. This course wasoffered as a senior level elective course for the first time in the Fall 2012 semester. Offering this Page 23.316.13course as a required course was not an option for us, so not every student is
engineering and is a registered professional engineer with APEGA (Association of Professional Engineers and Geoscientists of Alberta). Prior to her career at MacEwan, Shelley worked in industry as a research engineer and a consulting engineer for several years. Page 23.323.1 c American Society for Engineering Education, 2013 Assessment Tools as Predictors of Changing Pre-Engineering SkillsAbstractThis article was motivated by a need to understand the academic strengths and weaknesses ofengineering students entering first-year. The underlying impetus was the improvement of theeducational
and approaches. While studying as an undergraduate I hadtaken classes in civil engineering materials, transportation engineering and pavement design,which provided me a working knowledge to preparing me for career. The clinics expanded myunderstanding of the material and introduced me to new material like reclaimed asphaltpavement, warm mix asphalt, modified binders, which typically aren’t discussed in detail inclass. Furthermore the clinics provided an opportunity to hone my soft skills by writing projectreports and presenting our research and designs to our clients and other professors. Byperforming hands on testing and analysis as an undergraduate I gained a deeper understandingof testing results which has helped me extensively in my
students ratetheir interest in taking each on a scale of 1 to 5. A combined score is calculated using sixcourses relevant to biometrics, namely, computer forensics, biometric signal processing,machine learning, digital image processing, pattern recognition and biometric securitytechnologies. For questions 3 and 4, fourteen subject areas are given. For question 3,students rate each area in terms of pursuing a graduate degree. In question 4, students ratetheir interest in pursuing a career. A combined score is calculated using five subject areasrelated to biometrics, namely, image processing, computer forensics, machine learning,biometrics and speech processing. Table 2 gives the results. For questions 2 and 4, thereis a statistically significant
’ ‘overall very good lab component’ ‘labs were interesting and helped me to get exposure to new equipment’ ‘the lab helped me gain skills I can use in my career’ ‘the labs helped me better understand what I was learning in the class’ ‘the tutorials helped me to understand lecture content’ ‘labs were directly related to what we did in class. That made it a lot easier to understand the material’ ‘the lab helped me become more comfortable with MATLAB’ ‘lab helped to give meaning to what was taught in lecture’ ‘lab was interactive, fun and useful for the learning process’The student comments were collected through a survey at the end of the semester. The studentcomments listed above clearly
University. He was a recipient of the NSF CAREER award in 2009. He serves as an associate editor for the IEEE Power Engineering Letters and the IEEE Transactions on Energy Conversion. His research interests are related to electromechanical energy conversion and the analysis of power systems. More recently his work has focused on technologies that enable the integration of renewable energy sources in the electric power system, and the electrification of transportation.Prof. Maryam Saeedifard, Purdue University Page 23.422.1 c American Society for Engineering Education, 2013
students design should assume noprior computing experience. Considering we do not have a computer science teacher preparationprogramme in any university in Ireland, we cannot assume any prior computing experience.Occasionally we work with teachers that studied computer science, changed careers and completedteacher training or teachers that would have worked in the UK education system as ICT teachersand moved back to Ireland but these would be exceptions.Lesson 3: Build RelationshipsBuild relationships with national networks/bodies responsible for curriculum development and foractivities relating to teachers and ICT. Leverage and utilize resources, infrastructure,communication channels, and so on, for established subjects to spread the word about
. Karen A. Thole, Pennsylvania State University, University Park Dr. Karen A. Thole is the head of the Department of Mechanical and Nuclear Engineering at Pennsylvania State University. She holds two degrees in Mechanical Engineering from the University of Illinois, and a Ph.D. from the University of Texas at Austin. After receiving her Ph.D., she spent two years as a post-doctoral researcher at the Institute for Thermal Turbomachinery at the University of Karslruhe in Germany. Her academic career began in 1994 when she became an Assistant Professor at the University of Wisconsin-Madison. In 1999, she accepted a position in the Mechanical Engineering Department at Virginia Tech where she was promoted to Professor in
thepinnacle and capstone of the students’ engineering curriculum while propelling them into theirprofessional careers. When consciously adopted by engineering faculty as an underlying projectmanagement pedagogy, servant-leadership is an effective and powerful teaching technique.Faculty become servant-leaders by providing guidance to their students in planning,implementing, and testing their designs.As a teaching pedagogy used in business, servant-leadership has been shown to increase courseimpact, meaning, and relevance while empowering students, increasing their confidence, andenriching the student-teacher relationship. [1] Servant-Leadership used in marketing has beenshown to increase student knowledge and skills as well as instilling increased
: As one of our strategic initiatives to improve the undergraduate program and to better prepare our students for their professional careers, we are investigating means for Page 23.508.7 improving our engineering ethics program. As you are likely aware, most if not all of our students currently are required to take an ethics course from the ethics department. A study that we funded 3 years ago to look at that approach indicated that while the students were getting a good fundamental introduction to ethics principles, they were not getting an opportunity to understand these principles and apply them in an
states the outcomes that a student is expected to achieveimmediately upon graduation.SACS Long-Term Objectives for MSSE GraduatesThese are goals for career and lifetime achievement for graduates to attain 5 to 20 yearsafter graduation, by applying the Program Learning Outcomes.1. IMSE Graduates will assume enterprise leadership responsibilities in Industrial, Manufacturing and Systems Engineering environments.2. IMSE Graduates will develop innovative systems and processes for the design, development and deployment of products and services, for the benefit of society.3. IMSE Graduates will discover new knowledge, and develop new tools for the practice of Industrial, Manufacturing and Systems Engineering.4. IMSE Graduates will earn
learning material will enable instructors to easily select, share, expand, and modify Page 23.69.5the materials to fit students with various learning capabilities and career goals.Due to the complex nature of the biofuel processes and students’ limited exposure to biofueltechnology, most students would feel incompetent in dealing with problems related to biofuel.To help students overcome this barrier, we have also been creating a series of web modules toaccompany the classroom modules by exploiting two instructional strategies: computer-assistedinstruction and visual learning. Computer-assisted instruction is an innovative instructionalstrategy
linkbetween program impacts on student motivation and self-efficacy and ultimate graduate rates.The Wright State ModelIt is well known that student success in engineering is highly dependent on student success inmath, and perhaps more importantly, on the ability to connect the math to the engineering1-6.However, first-year students typically arrive at the university with virtually no understanding ofhow their pre-college math background relates to their chosen degree programs, let alone theirfuture careers. And despite the national call to increase the number of graduates in engineeringand other STEM disciplines7 , the inability of incoming students to successfully advance past thetraditional freshman calculus sequence remains a primary cause of
Page 23.93.5component tasks that are connected and help the solver step through the production of requestedresults. It may be chattiness, comfort-speech, weak academic humor, or attempts to makeconnections to a young person's sense of humor, curiosity, wonder, honesty, dignity, social life,future career, and/or passion for reform. It may call attention to the key concepts and tools neededto solve the problem. It may be embedded in the statement of the required tasks.A challenge is the statement of what the solver is required to produce. It may be formulated with orwithout scaffolding.A target is what the problem poser hopes will be accomplished when a learner engages with theproblem. This could be the exercise or development of any
helps them to become a reflective practitioner once they graduate andbegin their professional career. The topics for their individual reflection paper included: The engineering design process Engineering/math/science connections Technical writingThe students were provided several resources(4-7) to help them with this assignment. In addition,the students were provided a grading rubric (provided in Appendix A), prepared by the authorwhich is a synthesis of other critical thinking rubrics(8-10).Results In the analysis of the original design solution, the most striking result was that less thanhalf of the teams as freshman did not connect the design criteria to human constraints (bloodvolume, system
. Frontiers in Education 2009, San Antonio, TX, October 18-21, 2009.9. Orr, M.K., M.W. Ohland, R.A. Long, S.M. Lord, C.E. Brawner, and R.A. Layton, “Engineering Matriculation Paths: Outcomes of Direct Matriculation, First-Year Engineering, and Post-General Education Models,” Proc. 2012 IEEE/ASEE Frontiers in Education Conference, Seattle, WA, October 3-6, 2012.10. Brannan, K.P. and P.C. Wankat, "Survey of First-Year Programs," Proceedings of the 2005 American Society for Engineering Education annual Conference and Exposition, June 12-15, 2005 in Salt Lake City, UT.11. C. Adelman, “Women and men of the engineering path: A model for analyses of undergraduate careers,” Washington, DC: Department of Education, 1998