Michigan State University. He earned his M.S. degree in pavement engineering in 1988 from the University of Michigan, Ann Arbor and his Ph.D. in pavement and materials engineering from Texas A&M University, College Station, in 1995. Dr. Buch began his academic career at Michigan State University in 1996. Dr. Buch teaches undergraduate and graduate courses in concrete materials and pavement engineering. He is also involved in teaching short courses on pavement design and rehabilitation and pavement materials for practicing engineers in Michigan. He is a co-PI on two National Science Foundation grants in the areas of integration of computation in engineering curricula and in the area of
AC 2009-1171: A REMOTE LABORATORY FOR COLLABORATIVEEXPERIMENTSJan Machotka, University of South Australia Jan Machotka is an electrical engineering graduate of the Czech Technical University in Prague. He spent more than 10 years working as a professional consultant in industry in Czechoslovakia and abroad. He started his academic career 20 years ago at the South Australian Institute of Technology. He is currently a Programme Director for undergraduate, postgraduate and transnational students at the University of South Australia, Adelaide, Australia. He is also responsible for final year students’ projects for four engineering streams in the School of Electrical and Information Engineering
Nafalski, University of South Australia Andrew Nafalski's career spans several decades in academic and research institutions in Poland, Austria, the UK, Germany, France, Japan and Australia. He holds BEng(Hons), GradDipEd, MEng, PhD and DSc degrees. He is Chartered Professional Engineer and Fellow of the Institution of Engineers, Australia, Fellow of the Institution of Engineering and Technology (UK), Senior Member of the Institute of Electrical and Electronic Engineers (USA) and Honorary Member of the Golden Key International Honour Society. He is currently a Professor of Electrical Engineering at the University of South Australia in Adelaide and Professor of Information Technology and
workshops is to bring together AE students, electrical apprentices, andindustry professionals to facilitate learning based on proven methods supported byresearch. This entails exposing students to careers and practices in the electricalconstruction industry. By doing so, students will be influenced to design electricalsystems that better meet the needs of electrical contractors. Not only will this projectbenefit students, it will also introduce the electrical construction industry to theunderlying fundamental design principles used by AE students. This project willpromote the development of practical and code-related learning modules expected to bedistributed by NECA and other construction and training organizations.Section two will provide details
years of industrial and academic experience encompassing engineering and environmental consulting, research and development, and technology development. Career experience includes teaching at the University level, conducting fundamental research, and developing continuing educational courses.Howard Evans, National University, San Diego Dr. Howard Evans was appointed founding Dean of the School of Engineering and Technology, National University, in October, 2003. He received B.S. degrees in Physics and Chemical Engineering from Brigham Young University, and a Ph.D. in Chemical Engineering Science from the California Institute of Technology. Dr. Evans has over 20 years of executive and
-30: Between 21 and 30 hours outside the school >30: More than 30 hours If the student has been Yes 5 Trnsf transferred from another No institution If the student has made a Yes 6 Crch career change No The number of semesters <4
is designed for students who seek to develop their problem-solving andanalytical skills. Degree candidates in engineering, mathematics and science, as well as workingprofessionals who wish to advance their careers or gain certification are attracted by the depth ofthis curriculum. The CCNA Exploration curriculum is designed to be integrated into varioustechnology curricula or programs offered at postsecondary institutions such as technical schools,colleges, and universities. In this paper the content of classical networking textbooks, includingwell established reference books1, 2, 3, are reviewed for the purpose of developing an effectivenetworking curriculum. Various objectives of the Cisco networking academy, which is a set ofwell
, with highest scores in the areas of data analyses and interpretationwith a mean score of 3.4. We correlated the laboratory rubric score with grades in the courseaccompanying each degree project element for which the rubric was utilized and found highlypositive correlations (r = .66, p 0.70 indicates reliable measure),trouble shooting confidence (α = 0.84), career encouragement (α = 0.71), career exploration (α= 0.72), satisfaction with college, (α = 0.78), and course anxiety (α = 0.78). Reliability statisticsfor each of the subscales were obtained by computing inter-item correlations. Page 14.24.10
SeniorEngineer/Scientist. In early 1997, Branch left Lockheed Martin for his new career at McDonnellDouglas. Later that year, McDonnell Douglas and Boeing merged to form The BoeingCompany.26 Shortly after Branch left Lockheed Martin, a fellow employee reported seeing him withproprietary Lockheed Martin documents, prompting an internal investigation. The investigatorreported that Branch did not have any proprietary Lockheed Martin papers.27 Boeing was pleased in late 1998 when the first round of EELV contracts was awarded bythe Air Force. It was generally thought that Lockheed Martin was a superior rocket builder.Evidently, Boeing’s lower prices helped Boeing to win 19 of those first 28 EELV rockets.28 Again, in June of 1999, a Boeing
engineering. She has an NSF CAREER and Presidential Early Career Award for Scientists and Engineers (PECASE) award for this work. Page 14.683.1© American Society for Engineering Education, 2009 IGERT Funding and the Institutionalization of Interdisciplinary Graduate EducationAbstract Interdisciplinary graduate education is key to the preparation of tomorrow’s engineers,researchers and faculty. The U.S. National Science Foundation’s Integrative Graduate EducationResearch Traineeships (IGERTs) provide funding to train students in interdisciplinary scienceand engineering
important in today’s competitive environment.The goal of the laboratory was to exercise and enhance the creative process in lower level ECEstudents. This trait, creativity, is considered to impact globalization1 yet most engineeringprograms do not emphasize this skill. Globalization is stressed as a critical issue for the successof future STEM professionals in The Engineer of 20202 and Educating the Engineer of 2020.3 Adisadvantage in de-emphasizing creativity is that functionality may dominate the design processwith little regard to visual considerations.1 Project objectives include: 1) Making ECE more appealing to students early in their academic career
) Research center support (Regenstrief center) Page 14.862.12 Meebo/Qwidget reference Data archiving (staffed when open; 56; 68* hours/week) New professors open house Patent training seminar (4/sem.) Career seminar* First and last 3 weeks of semester¹As of June 26, 2008 - SFX²As of June 26, 2008 – Engineering Standards Database
member to either have this skill set or to be willing to work for it?In this paper, we offer our experiences and advice for new faculty as they begin the process ofanalyzing instruction. We caution that educational research is time consuming and that one needsto thoughtfully reconcile if it is worthwhile and if it is the right time in your career to take onsuch endeavors. We will share what we’ve learned in this process and warn you of the error ofour ways. This paper is not meant to be an exhaustive explanation of the techniques and tools forscientific inquiry of education, but rather it provides a practical look at how and why to conductsystematic studies on instruction.A basic definition states, “Educational research is the application of the
AC 2009-239: A MODEL FOR TECHNOLOGY COMMERCIALIZATION:MISSISSIPPI STATE UNIVERSITYGerald Nelson, Mississippi State University Gerald Nelson, an industrial engineering graduate (1974) with an MBA (1985) from Mississippi State University, began his career with a co-op experience at Rockwell International. Nelson worked five semesters with Rockwell before joining them full time after graduation as a Project Engineer and Program Manager. Nelson’s career includes former positions as Plant Manager, Trinity Industries; President and Chief Operating Officer of the Wear Resistance Group of Thermadyne Industries, Inc.; Executive Vice President of Operations, Viasystems Group, Inc.; and Chief
in the classroom, so it is possible to discussparticipants’ experiences with direct bosses or professors without fear that their comments willbe transmitted to those bosses. As the author put it in the interview16, they were ‘people that youknow well enough but at the same time don’t directly affect you, [and] your career’.The inequality in representation of women and men in the engineering classroom was seen ashaving not only a detrimental effect on society, but also on people’s personal lives. A wish wasexpressed ‘to go home to your life partner and talk about your work and they would understandit.’ The male students commented, “Yeah, it’s comfortable to be in a guys-mostly classroom, butwhere are all the girls?” Conversely, the female
student’s points of view. Areas of future research will also be discussed.Review of Literature Most engineering schools use team based projects, or laboratory assignments to helpstudents develop skills necessary for their professional careers. Teamwork skills havetraditionally been developed by assigning students to teams. To some extent, this approach doesproduce results, but a better approach was undertaken at the University of Dayton[4] wherestudent teams were instructed on teambuilding and leadership. One of their suggestions was notonly to instruct, but to give students opportunities to work on teams where students refine theirskills as they mature though the engineering program. Many researchers have struggled with thedifficult task of
in the classroom, so it is possible to discussparticipants’ experiences with direct bosses or professors without fear that their comments willbe transmitted to those bosses. As the author put it in the interview16, they were ‘people that youknow well enough but at the same time don’t directly affect you, [and] your career’.The inequality in representation of women and men in the engineering classroom was seen ashaving not only a detrimental effect on society, but also on people’s personal lives. A wish wasexpressed ‘to go home to your life partner and talk about your work and they would understandit.’ The male students commented, “Yeah, it’s comfortable to be in a guys-mostly classroom, butwhere are all the girls?” Conversely, the female
ABET.Neeraj Buch, Michigan State University Dr. NEERAJ BUCH is a Professor in the Department of Civil and Environmental Engineering at Michigan State University. He is also the Director of Cornerstone Engineering and Residential Experience program at Michigan State University. He earned his M.S. degree in 1988 from the University of Michigan, Ann Arbor and his Ph.D. from Texas A&M University, College Station, in 1995. Dr. Buch began his academic career at Michigan State University in 1996. Dr. Buch teaches undergraduate and graduate courses in concrete materials and pavement engineering. He is also involved in teaching short courses on pavement design and rehabilitation and pavement
Loutfallah Georges Chedid received the B.S. degree in electronics engineering technology from Wentworth Institute of Technology (WIT), Boston, MA, the M.S. degree in electrical engineering from Tufts University, Medford, MA, the Master’s degree in education from Harvard University, Cambridge, MA, and the Ph.D. degree in manufacturing engineering from Worcester Polytechnic Institute (WPI), Worcester, MA. He is on the faculty of Electronics and Mechanical Engineering of WIT, and he has taught in the interdisciplinary electromechanical engineering program for the last twelve years. He has more than 20 years of combined teaching and industry experience. During his teaching career, he
members at Middle Tennessee State University realized the need to create anenthusiastic program that will properly train students for careers in engineering. Implementing Page 14.575.8Page 14.575.9universities in experimental vehicle competitions. These contests challenge the students andrequire them to spend numerous hours together planning, constructing, and traveling as a team.These extensive projects encourage freshman and sophmore students to continue the program bycreating a support system of team members who have experienced the same trials that theyencounter.PL-TL Model as a Mentoring Program The Experimental Vehicles Program at Middle
in hurricane Katrina. As Associate Dean, he oversees curriculum, advising, career planning, study abroad, early engineering and other related initiatives.Wolfgang Bauer, Michigan State University Wolfgang Bauer is University Distinguished Professor and Chairperson of the Department of Physics and Astronomy at Michigan State University, as well as Founding Director of the Institute for Cyber-Enabled Discovery. He has pioneered internet-based distance learning classes for college and advanced placement high school audiences and has been a co-PI on the MSU Lon-Capa project, a course management and automated individualized homework system. He is MSU’s representative for the Science &
” decisions. Because licensure would nottherefore be required to accomplish many of this P.E.’s work tasks, much of the work could becompleted by a highly skilled Civil Engineering Technologist. The question is then, how muchof a P.E.’s workday time is actually spent doing civil engineering analysis and design tasks thatcould just as well be done by a civil engineering technologist?Will the civil engineering industry be willing to undertake the creation of a category of positionsthat have different prerequisites and career paths from those of the Professional Engineer? Tocreate such a position would at a minimum require there be established formalizing of credentialsfor the Technologist, complete with educational requirements, examination
Page 14.1358.2 bacteria in Mammoth Cave in collaboration with Dr. Chris Groves. His research was incorporated into the Center for Water Resource Studies at WKU in conjunction with the merger of environmental laboratories at Mammoth Cave National Park and WKU. Fowler’s research career has produced over 15 articles in peer-reviewed journals including Science and Nature and he was co-winner of the National Caves Association Science Award in 2001. He is a member of the© American Society for Engineering Education, 2009 National Speleological Society, the Cave Research Foundation, and the National Parks Conservation Association
provided help with the engineering, science, and mathematics concepts needed tosupport and supplement the units of Engineering is Elementary.The teachers were also asked to develop with the assistance of the community collegefaculty an appropriate plan for the professional development of their elementary schoolcolleagues over the next year and to present the plans to the districts.An outside evaluator was employed to gather and evaluate data and report the results ofthe summer's activities. His findings are included.IntroductionIn 2003, by act of the Massachusetts legislature, in an effort to increase the number ofstudents choosing STEM (Science, Technology, Engineering, and Mathematics) careers,a STEM Pipeline Fund of $2.5 million was established
Performance forSteelcase, Keith Grass, CEO of the David J. Joseph Company, a scrap metalrecycling company, and Rachel Charron, Environmental Engineer at GMPowertrain Flint Engine South. All speakers are asked to stay and speak withGEO students so that students can ask questions and explore career pathsinvolving the environment. In addition, GEO hosted a Kettering University section of Focus theNation, a nation-wide simultaneous event to spread environmental awareness.This event consisted of four talks, focused around energy and the environment,given throughout the day on campus. GEO also hosted an outreach event for200 elementary school students for Focus the Nation. The students were brokeninto groups where they learned about fuel cells and
greater expectations and need for such responsiveness than does the typical university clientele.1. Dobrowski, T. College-Industry Collaboration, 2006 ASEE Annual Conference Proceedings of the AmericanSociety for Engineering Education. (2006).2. Exploring common ground: A report on business/academic partnership. Washington, D.C. AmericanAssociation of State Colleges and Universities. (1987).3. Newton, K. A., Sutton, J. J., and Dunlap, D. D., Instructional Delivery Rationale for an On and Off-CampusGraduate Education Program Using Distance Education Technology, 2000 ASEE Annual Conference Proceedingsof the American Society for Engineering Education. (2000).4. Accelerate your career: A five-semester weekend program of master of science
between the course and their future career. Similarly, only abouthalf of the students felt they were more interested in teaching for their future career. Manystudents do not anticipate seeking an instructional or faculty position, as a career goal, and planto go into industry.Of the course activities in the seminar, students rated the peer observations to be the most helpfulwith over 70% describing them to be “helpful” or “very helpful.” For example, one studentstated, “Peer observations were excellent.” Another student stated, “The peer review was themost important part of the course” but still desired wanting “more time to practice in front ofpeers [which] would have been valuable.” Yet another student noted that the peer observations“were the
, and levels of teaching. Nowadays, electrical engineering (EE) classesare part of the core curriculum of several other majors such as: mechanical engineering,mechanical engineering technology, computer network and system administration,surveying engineering, among others. Modern technologies are interdisciplinary andoften require knowledge of several engineering fields. Students graduating from thesemajors must have at least a basic understanding of electrical engineering principles, sincethey will be working with electronic systems and devices in their careers. The studentscan be motivated by seeing how the EE principles apply to specific and relevant problemsin their own field.Most of us face the challenge of teaching both non-majors and
members endeavor to prepare their students for a variety ofcareer paths within the engineering industry. Several of those paths require or arebolstered when students decide to pursue licensure to practice as professional engineers.As students, individuals learn about the merits of professional licensure from a variety ofsources. Not to be overlooked is the influence that professors, licensed as professionalengineers, have on their students and the opportunity to act as a role model to thosestudents considering a career path that includes professional licensure.The research question explored during this study was; “Among currently licensed civilengineering faculty members, what are the perceived values of professional experienceand of licensure as
spent on follow-up activities, including data analysis.Writing Attitude SurveyThe Writing Attitude Survey was created and to assess perspectives, reflections, and opinions ofengineering students about the importance of writing skills. Survey questions covered suchtopics as previous studies and experiences in writing and communication, guidance fromprevious instructors, perceived need for strong writing skills in the student’s chosen career field,perceived importance of those skills, and self-assessment of specific communication skills. The63-question survey combined demographic questions, Likert-Scale questions, and questions thatallowed free-form responses. Both Blackboard® and hard copies were used to administer thesurvey to students. The