, manufacturing processes, machine design with CAE meth- ods, rapid prototyping, CNC machining and quality control. His research interest includes sensor based condition monitoring of machining processes, machine tool accuracy characterization and enhancement, non-invasive surgical tool design and bio-materials applications. During his career, Dr. Ertekin published papers in referred journals and in conference proceedings in his area of research interest. He has also been PI for various NSF research projects including NSF-TUES and MRI programs. Dr. Ertekin is an active member in the Society of Manufacturing Engineers (SME), and currently serves as a chair of Philadelphia SME Chapter-15.Dr. Radian G Belu, Drexel University
, researchers explain that a student’s intrinsic motivation hasthe greatest effect on his or her potential to genuinely enjoy activities and careers, expandknowledge, and seek out new challenges2, 3, 4.While research has proven that grades and other external structures can motivate students toperform well in classrooms5, 6, the authors of this report examine extrinsic and intrinsicmotivations and their effects on students’ performance in this class. Pintrich7 points to fivegeneral constructs in understanding the motivations of students in the classroom. Additionally,he offers suggestions as to how classroom instruction might be designed to encourage studentmotivation.First, Pintrich7 notes that courses should be designed to encourage self-efficacy and
of 12 hours spent in the mini-courses such as environmental engineering.Sessions were divided into three groups, girls entering grades 5-6th, 7-8th and 9-11th. Theprograms goals are to provide girls with strong role models, spark interest in science, dispelmyths and misconceptions about science and careers in science, and to introduce under-represented girls to a collegiate experience.SHWYF allows students of all ethnic and gender backgrounds to explore different fields of studythrough hands-on opportunities. The goal of the program is to develop student interest and focuson an academic path. Academically talented students, male and female, participate in morningand afternoon classes for four days dedicating a total of 12 hours for each mini
first place,thus focusing on creating capacity. Towards that end, we pervasively employed the NationalAcademy of Engineering Changing the Conversation messages4 throughout our recruitingcycle—in print materials, presentations and how we framed engineering as a “helping people”and “making the world a better place” career choice. Taken together, our strategies yielded goodresults. The percentage of female engineering students enrolled in the fall 2013 cohort jumped to27.7%, a 31% increase from the previous year.From the survey results, it appears that more personalization and contacts as well as the offeringof women-oriented events and recruiting materials do influence young women to attend aspecific college of engineering. Perhaps these efforts
Paper ID #9114Efficiency Measure for Colleges of EngineeringDr. Don E. Malzahn, Wichita State University Don E. Malzahn is Professor of Industrial and Manufacturing Engineering at Wichita State University. He received his BS, MS, and PhD degrees from Oklahoma State University. In his 40-year teaching career, he has taught a wide range of Industrial Engineering courses and currently directs the department’s capstone design experience. His research interests are in systems engineering, decision analysis, and engineering education.Dr. Lawrence E. Whitman, Wichita State University Lawrence E. Whitman is Associate Dean of
Computer Engineering at Purdue University. He is also an Associate Director of Purdue’s Global En- gineering Program, leads the Global Engineering Education Collaboratory (GEEC) research group, and is the recent recipient of an NSF CAREER award to study boundary-spanning roles and competencies among early career engineers. He holds a B.S. in Electrical Engineering from Michigan Tech and M.S. and Ph.D. degrees in Science and Technology Studies (STS) from Virginia Tech. Dr. Jesiek draws on expertise from engineering, computing, and the social sciences to advance understanding of geographic, disciplinary, and historical variations in engineering education and professional practice.Qin Zhu, Purdue University Qin Zhu is a
Paper ID #8811Balancing Daylight, LEDs, and Controls: The Future of Lighting for Design-ersMrs. Lisa A VanZee, Purdue University, West Lafayette Lisa VanZee is an Assistant Professor in Interior Design at Purdue University. She began her career in computer visualization, where she was involved in computer graphics technology, artanimation research and teaching. She holds an M.S.in Computer Graphics Technology and an M.F.A. in Interior Design. Her previous work experience includes threedimensional rendering and animation for architectural and engineering firms. Her research interests focus on interior visualization and
not encourage creativity or innovation[1]. Innovation can bedefined as a new and valued product, process, or concept that has been introduced to the marketor society[2]. Engineering educators should better prepare students for careers in innovation. Indoing this, they must “undermine their students’ blind commitment to the engineering paradigm”[3] which is centered around the scientific approach to knowledge making. To accomplish thischallenge, the exploration of paradigms such as ones used in the schools of business,communications, and political science is suggested. Incorporating this exploration will allow theengineering and technology student to critically reflect on and debate the beliefs, practices, andvalues of their paradigms and
. Correlation analysis is also performed on several factorsfrom the pretests and posttests.Data Analysis and ResultsPaired t-testOverallThe primary assessment strategy utilizes the CAT© test, which is administered at the beginningand end of the civil engineering program. The first comparison investigates whether a change inthe CAT© score occurs for nineteen students who have graduated and also entered the civilengineering program after the beginning of this research project. In this comparison, the data setis a paired set of the early and late program CAT© scores. The hypothesis for this comparisonfollows: Ho: μ1= μ2: There is no significant difference between the early and late career CAT© scores. HA: μ1α(=0.1), which
all five colleges at MTSU.Universities usually do research as part of their missions (teaching, research, and service). As theinstitution with the largest undergraduate population in TN, MTSU is committed to being aleader in undergraduate education in the state. MTSU is known for student-centered learning andgreat classroom teaching. A natural extension of the classroom is the one-on-one interactionbetween a research student and his/her mentor that can shape a student's career. URC Mission As part of the Office of Research, the URC mission is to be the central hub for communication about undergraduate research grant programs and other related opportunities on and off campus and to distribute university funds for undergraduate research
. Short-term off-campus trainingexperiences can help students see the 'real-world' impact of engineering research and broadentheir understanding of their career opportunities. Arguably, internship and externship experiencesare particularly valuable for students in interdisciplinary majors, such as biomedical engineering,which cross more traditional fields and career paths. Thus, interdisciplinary graduate trainingprograms, such as those funded by the National Institute of Biomedical Imaging andBioengineering (NIBIB), sometimes include an internship or externship component as a way toensure breadth in the educational program. The purpose of this study is to review the graduatesummer internship/externship practices of NIBIB funded graduate training
Environment. She began her career as an Assistant Professor at the University of Pittsburgh, after having obtained her PhD in 2007 from the University of Illinois at Chicago under the supervision of Dr. Thomas L. Theis. Dr. Landis’ research focuses on Sustainable Renewable Biomaterials and she is highly engaged in Inno- vations in Engineering Education. Learn more at http://faculty.engineering.asu.edu/landis/ Page 24.717.1 c American Society for Engineering Education, 2014 Improving learning productivity and teamwork skills in freshman engineering students through conative
nature of these projects, where all students from a projectgroup had the same evidence available to use in their ePortfolio at the time of the reflection.Reflective assignments that focused on out of classroom events had more distinguishablemarkers for retention. We believe these assignments contained better markers due to thereflection requirements. For the Engineering Exploration assignments, students were asked toinclude personalized reasons for attending events and the growth they experienced because of it.These types of reflections led more naturally to student responses that included their doubts,interests, and career aspirations.With many universities experiencing a rise in class sizes, reading multiple reflections from everystudent in a
rather than a one-class exposure.Civil Engineering Program at the United States Military AcademyThe mission of the United States Military Academy has evolved since the institution’s inceptionin 18028:To educate, train, and inspire XXXXXXX so that each graduate is a commissioned leader ofcharacter committed to the values of Duty, Honor, Country, and prepared for a career ofprofessional excellence and service to the Nation as an XXXXXXXXXXXXX.The Department of Civil and Mechanical Engineering is one of thirteen academic departments atthe United States Military Academy and is ABET accredited. The Department’s missionsupports the Academy’s with focus on educating and inspiring students in the fields of civil andmechanical engineering9:To
part of being in the group or to identify the waysin which UTREE is preparing students for the next stage of their careers. Other questionsprobed for specific details such as the number of UTREE activities that a studentparticipated in or the number of class periods that a mentor has taught. Eighteen of those26 members responded to this survey. To identify the impact that UTREE classes have on the students who view thepresentations, ten faculty members at Penn State were surveyed. Six of those tenresponded. The questions of this survey addressed to the effectiveness of the UTREE classperiods. As with the first survey, the actual questions of this survey appear in theAppendix. The main audiences of the UTREE classes, including
Paper ID #9105Longitudinal Evolution of an Inclusive, College-Wide Integrated EngineeringLeadership CurriculumProf. Anton E Bowden, Brigham Young University Anton E. Bowden is an Associate Professor in the Department of Mechanical Engineering at Brigham Young University. He holds a B.S. in Mechanical Engineering from Utah State University and a Ph.D. in Bioengineering from University of Utah. He received a CAREER award from the National Science Foundation for his work investigating the role of ligaments as related to biomechanics of the lumbar spine. He is actively involved in the development and teaching of the
Paper ID #10703Match or Mismatch: Engineering Faculty Beliefs about Communication andTeamwork versus Published CriteriaDr. Marie C Paretti, Virginia Tech Marie C. Paretti is an Associate Professor of Engineering Education at Virginia Tech, where she co- directs the Virginia Tech Engineering Communications Center (VTECC). Her research focuses on com- munication in engineering design, interdisciplinary communication and collaboration, design education, and gender in engineering. She was awarded a CAREER grant from the National Science Foundation to study expert teaching in capstone design courses, and is co-PI on numerous
two components of the spring scale.In order to assess if the change in the project did improve students’ dimensioning skills, studentswere asked to complete a survey regarding the project. Responses to the survey and examquestions on dimensioning were compared. This paper will discuss the findings from theseanalyses.BackgroundMost engineers will create a drawing at some point in their career. For the object to be created,the material, structure and size need to be documented. Traditionally, students have learned howto do this in a “drawing” course. In these courses, students learn how to construct a multi-viewdrawing, a schematic or a diagram to illustrate the components of their design. Additionally, theyadd notes and dimensions to describe
also be focused upon reaching veterans. Approximately 3.4percent of Indiana community college students are identified as military or veteran students withapproximately 2.3 percent of the total student population benefiting from VA educationalbenefits. The project team will distribute materials to the Indiana Department of VeteransAffairs, which includes logistics careers as part of the new Veterans Retraining AssistancePrograms (VRAP), approved in 2012.22 The VRAP program focuses on training veterans througheducational benefits for programs in high demand careers. In collaboration with the VRAPveterans will be able to take a pathway from military skills to the Certificate through AS / AASdegrees to BS degrees at the university
Paper ID #8513Relationship of Final Grade and Use of On Line Course Materials for an En-gineering Economics CourseDr. Paul J. Kauffmann P.E., East Carolina University Paul J. Kauffmann is a professor in the Department of Engineering at East Carolina University. His industrial career included positions as Plant Manager and Engineering Director. Dr. Kauffmann received a BS degree in Electrical Engineering and MENG in Mechanical Engineering from Virginia Tech. He received his Ph.D. in Industrial Engineering from Penn State and is a registered Professional Engineer in Virginia and North Carolina.Dr. Joseph Wilck IV, East
modeling, and controls. He is an inventor with over twenty patents and the author of more than two hundred publications including two books. A Fellow of the American Society of Mechanical Engineers and Society of Plastics Engineers, he is the recipient of over twenty different recognition awards including the Office of Naval Research Young Investigator Award, the National Science Foundation CAREER Award, and the ASME Ishii-Toshiba Award for sustained and meritorious contribution to Design for Manufacturing and Life Cycle.Dr. Chris Swan, Tufts University Chris Swan is the Associate Dean of Undergraduate Curriculum Development in the School of Engineer- ing and an associate professor in the Civil and Environmental
Paper ID #9847Subscribing to WII-FM: When will we Begin to Function as a Team?Dr. Andrew E. Jackson, East Carolina University Dr. Jackson serves as a Tenured, Full Professor in the Department of Technology Systems at ECU. He is a senior faculty member in the Industrial Engineering Technology (IET) program where he teaches a variety of IET courses, including: Production Systems Engineering and Production Planning, Engineering Economics, Human Factors Engineering, and Risk Assessment. His career spans 40 years in the fields of aviation, aerospace, defense contract engineering support, systems acquisition, academics, and
& Trademark Resource Center Association. She holds a MLIS from the University of South Carolina, a MA from the University of Michigan, and a BA from Calvin College.Dr. Robin A.M Hensel, West Virginia UniversityMs. Mary L. Strife, West Virginia University Mary is the director and senior engineering librarian of the Evansdale Library at West Virginia Univer- sity, a position she has held since 2002. She has been at WVU since 1995, arriving as Coordinator of Physical Sciences and Math Libraries. Over her 31 year career, she has worked at Cornell and Syracuse Universities, the University of Rochester and SUNY Institute of Technology Utica/Rome
received BSCE and MSCE degrees from the University of Colorado Boulder and a PhD degree in civil engineering from the University of Texas at Austin. Dr. McCartney’s research interests include unsaturated soil mechanics, geosynthetics, and thermally active geotechnical systems. He has received several research awards, including the NSF Faculty Early Development (CAREER) Award in 2011, the Croes medal from ASCE in 2012, the DFI Young Professor Award in 2012, and the Young IGS Award from the International Geosynthetics Society in 2008. His teaching efforts were recognized by the 2012 Shamsher Prakash Prize for Excellence in Teaching of Geotechnical Engineering. For his service on ASTM committee D18 on Soil and Rock, he has
-developed and co- teaches the biomedical engineering capstone design sequence at Rose-Hulman Institute of Technology. Glen’s educational research interests include student learning styles, the statistical evaluation of assess- ment instruments, and increasing student engagement with hands-on activities. He has received an NSF CAREER award and served as a Fellow at the National Effective Teaching Institute.Dr. Jameel Ahmed, Rose-Hulman Institute of Technology Jameel Ahmed is Associate Professor and Head of the Department of Biology and Biomedical Engineer- ing at Rose-Hulman Institute of Technology. He has been teaching at Rose-Hulman since 1999, and his technical interests lie in the areas of quantitative physiology and
Technology Tom Mason is Professor Emeritus of Economics and Engineering Management. After retiring from his 38 year career at Rose-Hulman in 2010, he continues part-time teaching of entrepreneurship, exploring innovation in engineering education and advising technology based start ups.Dr. Michael Wollowski, Rose-Hulman Institute of Technology Michael Wollowski obtained his undergraduate degree in Informatics from the University of Hamburg, Germany. He obtained M.S. and Ph.D. degrees in Computer Science from Indiana University in Bloom- ington, IN, USA. He studied under Jon Barwise and as part of his dissertation developed a diagrammatic proof system for planning in the blocks world of Artificial Intelligence. Michael is
experience with Entrepreneurship and Systems Thinking which pointstowards the conclusion that the activities were useful even for those students who already hadsome prior skills.In terms of their attitudes toward learning the skills, an overwhelming majority of respondentsagreed that Systems Thinking (89%) and Innovation and Entrepreneurship (95%) were importantin their research or career, and that employers value these skills. In terms of the activitiesthemselves, over 80% of respondents in both surveys agreed that the activities were well Page 24.1281.11organized, had clear objectives, and met their needs. Over 94% of respondents said they
undergraduateengineering programs. They are largely the result of engineering programs seeking to bettermeet the needs of industry and have become so important that ABET requires universities toinclude them [1]. Nevertheless, capstone programs vary widely from school to school and asingle definition that applies to all programs does not exist. According to Fairchild and Taylor[2] , capstone projects are “culminating experiences in which students synthesize the skills theyhave acquired, integrate cross-disciplinary knowledge, and connect theory and application in Page 24.1344.2preparation for entry into a career.” Durel [3] offers another perspective stating
) indicate that mathematics score gapsbetween male and female students are negligible, if they exist at all.4This increase in female student attainment, however, has not significantly impacted middleschool and high school female student interest in pursuing education and a career in science andengineering. As discussed by the AAUW (2010), “a 2009 poll of young people ages 8–17 by theAmerican Society for Quality, 24 percent of boys but only 5 percent of girls said they wereinterested in an engineering career.”5 In 2006, just over 20% of first year male students plannedto major in engineering, computer science, or the physical sciences. However, according to NSFdata from 2009, only 5% of first year female students planned to major in these non
Paper ID #9215How Students’ Informal Experiences Shape their Views of Engineering andAffect their Plans for Professional PersistenceDr. Kerry Meyers, Youngstown State University Dr. Kerry Meyers is in her second year as the Director of the STEM College’s First-Year Engineering Program at Youngstown State University. Her career is focused on the development of common, project based First-Year Engineering experiences, beginning at the University of Notre Dame where she was also the Director of the First-Year Engineering Program from 2005-2012. Further, her research interests relate to Engineering Educational issues in the