games and the involvement of students in the gamedesign process, combined loading bone problems and the involvement of students in learningthrough teaching, the concept of functionally graded material structures and their potentialapplications, and the challenges faced in the analysis of graded materials with complexgeometries. The objectives of the challenges include reinforcing students’ understanding aboutsolid mechanics and the difference between analytical and numerical solutions, and fosteringstudents’ interest in the finite element stress analysis for design and research. According to theauthors, students are motivated to learn when they understand the connections between thesubject matter and their interests, values, goals, and career
Education, 2008 Design and Delivery of a Graduate-Level Project Management Course for Experienced Engineering Professionals: Collaborative, Applied Learning for Distributed TeamsIntroduction and Purpose of PaperThe purpose of this paper is to describe and evaluate the development and teaching of a projectmanagement course tailored in content and format to meet the needs of experienced, workingengineers. Key distinguishing characteristics of the course of interest to continuing educationprofessionals include: • Content is specifically optimized to meet the needs of mid-career engineers, rather than the more traditional approach of requiring such experienced professionals to participate in
Engineering Science and Mechanics, an M.S. in Engineering Mechanics, and a Ph.D. in Biomedical Engineering from Virginia Tech. Her interests in engineering education research center around recruitment and retention, understanding engineering students through the lens of identity theory, advancing problem based learning methodologies, assessing student learning, as well as understanding and integrating complex problem solving in undergraduate engineering education. This latter project is funded through her recent NSF CAREER award. Her other research interests lie in cardiovascular fluid mechanics and K-12 engineering education.Jamie Constantz, James Madison University JAMIE CONSTANTZ is a
increase in profits and other economic benefits. For example, by usingsimulation, a cancer treatment center was able to increase the number of patients seen per day by20% and the results of their Layout Scenario Analysis showed that the occupancy of their newintegrated facility would allow at least a 100% increase in chair capacity (14). With continuedresults such as this being published the demand for people with knowledge and experience in thisfield will undoubtedly continue to grow.Instructing IET and MfET students on discrete event process simulation concepts will allowthem to gain useful knowledge and experience for problem solving and project implementationbefore they begin their careers. It will also aid them in visualizing the bigger
did not understand the material they are supposed to be presenting. (2, Teaching (Curriculum))3=Neutral: e. One has to have a balance of school, work, and a social life (3, Lifestyle) f. I made my decision to study engineering because of my involvement in FIRST robotics. (3, Calling)4=Slightly Positive g. Having a co-op really opens up your eyes to the world of engineering; you get a sense of the vast amount of career paths that are available with an engineering degree, as well as the chance to “ test-drive ” your future. (4, Future) h. I have generally had good experiences with engineering. A lot of
exposure to students with educational robotics both within a classroom environment and in after school settings year round to stimulate student creativity and possible pursuit of STEM careers in order to meet national long term needs and global challenges posed by competitive engineering programs overseas. His other long term research interest has been in the area of renewable energy.Neal Grandgenett, University of Nebraska, Omaha Dr. Neal Grandgenett is the Peter Kiewit Distinguished Professor of Education at the University of Nebraska at Omaha and has authored over 80 articles and research papers related to the use of educational technology in mathematics and science. He teaches graduate level
theprocesses that are used to integrate the teams, and provides specific examples of projects wherethese tools are utilized.IntroductionThe importance of significant design experiences to prepare undergraduate engineering studentsfor engineering careers has been well-documented1-4. These experiences typically emphasizethe application of technical skills as well as professional skills, such as communication in bothwritten and verbal form, working as a team, and customer interaction. The need for suchexperiences has spawned many innovative approaches to capstone senior design courses.However, capstone senior design courses do not include underclassmen. Earlier designexperiences have become more common and have shown to be valuable in motivating students
University before joining NKU. At NKU, he teaches graduate and undergraduate classes in the area of computer networks and network security. He has chosen academic career since he believes that by teaching he can contribute towards community development.Wei Hao, Northern Kentucky University Dr. Hao came to NKU in August 2008 from Cisco Systems in San Jose, California, where he worked as a software engineer. He earned his PhD in Computer Science from the University of Texas at Dallas in 2007. He brings both academic and industrial expertise, having also worked for Motorola and Alcatel. His research interests include Web Technologies (such as web caching, web services, and web-based
preparation for a career as an engineer. Furthermore, colleges of engineering cannotjust be a stop on the educational assembly line which takes decreasing numbers of high-schoolstudents with widely varied levels of preparation, provides them with an academic exposure totheory and then graduates them to be trained, as needed, by their employer. Students must beeducated to be life-long-learners, and industry and the university must become constant andpersistent collaborators in this process. This will require universities to rethink the educationalparadigms which have shaped engineering education for the last half century.5 PBL is oneapproach that provides a solution to improving the education of incipient engineers on campusand engineers on the
broader educationalobjectives are to improve the students’ understanding of thermodynamics, to help them integratethis knowledge with other subjects, and to give them a better basic understanding of the first andsecond law of thermodynamics. Practically speaking, it also gives them insight into the actualoperation of a steam turbine electrical generation power plant, which may inspire some toeventually pursue a career in this field.IntroductionThis experiment is designed to give the students a hands-on experience with a Rankine Cycle,and to directly relate the mechanical device to the theory learned in a typical thermodynamicscourse. This paper describes the experiences the students gained in the areas of thermodynamicsand power generation. The
, the student trainee, and the student being taught in the class.Introduction Only the rare individual is born to teach, being somehow naturally equipped with the ability toeffectively communicate new ideas and spark imaginations that marks the best instructors. For the rest of us,learning to be a good teacher can be an awkward, sometimes frustrating, process of trial and error that isoftentimes unsatisfactory to both the fledgling instructor and to the students. To overcome these limitations,individuals who are preparing for careers as elementary or secondary education instructors are required tocomplete a program of study that includes a core of professional education and methodology courses, as wellas a supervised teaching practicum
areintegrated. Through this practice, first-year engineering students will see, early on in their career, that asuccessful design is multi-disciplinary and requires a systems approach. They will be exposed to theseexperiences by participating in two case studies prior to carrying out their own design projects. Studentsenrolled in ME125 will be provided with a detailed schedules of the design project timeline. They will havethe opportunities to practice scheduling in creating a team schedule to meet project timeline. Through thispractice, they will have the opportunity to appreciate the importance and relevance of timeliness in each stepof the design process. In addition to providing a real-world, social context to practice the design process
. To this end, we will offer a degree program using both on-site and distance learning delivery mechanisms. Emphasis and care will be given to meet the career broadening needs and expectations of individual students from all engineering and scientific disciplines and meeting industrial needs for sustained competitiveness and growth. We will continually strive to improve ourselves and our education processes from the current baselines. ” ., On the surface one might consider that the basic difference in the two statements is in opening up the market boundaries past the state borders. Identifying the market is
to the laboratory classes very well. There has been a markedincrease of interest on signal analysis on behalf of the students. Even those initially more reluctantto regard the fundamental mathematical tools as relevant to their future Engineering career becomeincreasingly aware of the power, usefulness and applications of those tools. We feel that teachingthe theory of signals and systems in this way is more in agreement with the engineeringperspective. Page 1.430.4 1996 ASEE Annual Conference Proceedings
motivate him to pursue a career in research and to FIGURE 2. Droplet holder for droplet attend graduate school. combustion test rig showing filaments. Worthy of particular note was the student’s work to re-engineer an automated droplet combustion rig for use in drop tower experiments. Figure 3 shows aclose-up view of the fiberglass droplet holder used in the test-rig. This self-contained unit is placed in a droptower package, which, when dropped, begins a complex set of data acquisition and control operations. At theinstant free fall begins, the control system ignites the droplets which are held
member of the teamapproached the then Director of the Research Centre for Gender Studies (RCGS) at theUniversity of South Australia to see if any members of the centre would be interested in workingwith her, to undertake qualitative research to support the national qualitative study that she hadjust managed to explore the careers of women engineers in Australia. The Director (theeducation member of the team) then approached the sociologist and economist team members Page 14.1111.4and secured their initial interest. A key feature at the time was the existence of the ResearchCentre for Gender Studies which enabled cross campus and cross
.1 Numerous studies have investigated the barriers encountered bywomen with aspirations of university careers, many referred to in “Beyond Bias andBarriers”, a 2006 report by the National Academy of Sciences.1 These studies seek toprovide a deeper understanding of various issues including those pertaining to the careerpipeline, and faculty recruitment, retention and advancement. Recognizing the critical needfor full participation of women in the sciences, the National Science Foundation hassupported for the last 7 years efforts to study and improve recruitment and retention ofwomen faculty in the sciences through the ADVANCE Institutional Transformationprogram.2 Work within this program has allowed researchers to study multi
) their presentations 4 to 6 times on average before submitting their final one.This is significant because most other students within the department will do less than 3 oralpresentations during their academic career. By students being able to “see and hear” themselvespresent, it made them aware of their oral skills or fallacies and motivated them to enhancepresentation skills by practicing more. The survey also showed that student’s overall experiencewith ViP was positive. As commonly as a lecturer currently asks students to write a report,lecturers can now also assign an oral presentation using ViP. Segments of ViP presentations canbe discussed in class to highlight good and poor presentation techniques. Since ViP oralpresentations are saved in
as well aspotential students not being aware of the engineering career field. We have met this challengewith a variety of awareness and recruiting programs. A common thread in these efforts is ahands-on laboratory program in digital design fundamentals. This program exposes students tothe exciting world of engineering, Boolean logic, and fundamental design principles. This lowcost program consists of a series of theory modules coupled with a hands-on laboratorycomponent. We have purposely developed laboratory modules using low cost, readily availablecomponents and test equipment. This approach has been used for the past five years with amiddle school girls program, science and engineering summer programs for high school juniorsand seniors, K
how they were used in chemical engineering. Eventually the pure water boiled at100 oC while the salt-water mixture boiled at 105 oC. A few students were selected to come to thefront and observe the thermometer. Finally, after the ice cream was sufficiently cold, the studentsremoved the one-quart bags and measured the temperature of the salt water solution. Many wereunder -10 oC. After this, the students were given plastic spoons and ate the ice cream that theymade.Class 7: Co-op Information DayAbout two-thirds of the students at Tennessee Tech in the Department of Chemical Engineeringchoose to co-op. A Career Services office facilitates finding these positions for the students andin setting up the interviews. During Co-op day, the Associate
-Class Activities1. Think about your team tower-building exercise (an in-class activity on the first day of class). • Describe your design and manufacturing process. • What went well? Why? How could you build upon it in the future? • What difficulties did you have? Why? How could you improve in the future?2. Last week, you used an ad-hoc technique to generate concepts for a golf-ball retriever. Today, you used a systematic method. Compare the breadth, quality, and number of concepts from the two trials. How would you explain the differences?Lecture Topics3. Do highly innovative products typically serve new functions? Or do they satisfy old (previously satisfied) functions in new forms?4. In what situations during your career do
and2,041 graduate students enrolled in the fall of 2005. Over 50% of these students areenrolled in Science, Technology, Engineering, and Mathematics (STEM) programsRIT students can prepare for technical and professional careers in more than 200 differentacademic programs. Many of the academic offerings are unique or unusual: imagingscience, microelectronic engineering, software engineering, and telecommunicationsengineering technology; the programs draw students from every state and more than 80foreign countries. Many degree programs emphasize co-operative education whereperiods of formal instruction are combined with off-campus hands-on paid internshipswhich enhance the university’s “learn by doing” philosophy. RIT is respectedinternationally as
elementary education majors. She is a member of ASME, ASEE, SWE, ESW and EWB.Elise Amel, University of St. Thomas Professor Amel is an industrial/organizational psychologist. Her expertise includes survey development, psychometrics (reliability, validity, utility), data analysis, as well as feminist issues in psychology and business law. She is personally interested in how gender affects career choice. She believes strongly in the scientist-practitioner model, using her academic background to solve practical problems and using her problem solving experiences to enhance her teaching. She has received an award for excellence in service learning. Professor Amel also has specific expertise
struggling educators rather than penalize them. Finally,two cohorts mentioned the potential of generous monetary incentives to attract new educators toAmerican Indian schools; however the 2015 cohort felt that one negative consequence of thismethod may be the recruitment of teachers who are less devoted to the community and moreinterested in the salary. An insightful comment from one participant also noted that there isopportunity to stimulate interest in the teaching field among indigenous populations bypromoting careers in teaching to their own students.Table 1: Summary of Focus Group Consensus Number ofTools/attributes/actions that assist teachers in relating to and
. (2011). Engineering Education Discourses on Underrepresentation: Why Problematization Matters. International Journal of Engineering Education, 27(5), 1117. 4. Lewis, B. F. (2003). A critique of literature on the underrepresentation of African Americans in science: Directions for future research. Journal of Women and Minorities in Science and Engineering, 9(3&4). 5. Moore, J. L. (2006). A qualitative investigation of African American males' career trajectory in engineering: Implications for teachers, school counselors, and parents. Teachers College Record, 108(2), 246. 6. May, G. S., & Chubin, D. E. (2003). A retrospective on undergraduate engineering success for underrepresented minority
National Science Foun- dation and an associate dean and director of interdisciplinary graduate programs. Her research awards include U.S. Presidential Early Career Award for Scientists and Engineers (PECASE), a National Science Foundation CAREER award, and two outstanding publication awards from the American Educational Research Association for her journal articles. Dr. Borrego is Deputy Editor for Journal of Engineering Education and served on the board of the American Society for Engineering Education as Chair of Pro- fessional Interest Council IV. All of Dr. Borrego’s degrees are in Materials Science and Engineering. Her M.S. and Ph.D. are from Stanford University, and her B.S. is from University of Wisconsin
/08/08).4. McAlpine, L, Amundsen, C. and Turner, G. 2014. Identity-trajectory – Reframing early career academic experience. British Education Research Journal, 40(6): 952-969. http://onlinelibrary.wiley.com/doi/10.1002/berj.3123/abstract (2015/08/04).5. Gardner, A. and Willey, K. 2015. Engineering academics’ identity transitions in becoming established engineering education researchers. In Proceedings of the 6th Research in Engineering Education Symposium: Translating Research into Practice (REES), 9 pp. Dublin, Ireland. July 13-15.6. Walther, J., Sochacka, N. W. and Kellam, N. N. 2013. Quality in interpretive engineering education research: Reflections on an example study, Journal of Engineering Education, 102(4
STEM; (4) retaining students 5,6. Theglobal need for STEM major is evident but how can we attract more students into STEM fields?Numerous studies5,6,7,8,9 have shown that exposing students to STEM fields early in theireducation is the best time to increase their interest for science, engineering, and technology.Furthermore, students in an early age may have the wrong perception of what professionals inthose fields do10. Usually, for example, they associate engineering with just building or fixingthings8 or a profession for people who are good in math. Not having a clear picture of the widerange of possibilities after going into those fields, may discourage students from willing topursue an engineering or science degree for a career. Studies
career. The value was “1” if the studenteither remained or graduated in engineering for each year. The value was “0” if the studentswitched to a different curriculum, graduated in a different curriculum, dropped out, ortransferred out of the university. Retention was determined using the 14th day enrollment figuredefined by the registrar’s office, and graduation was recorded for fall, spring, and summer ofeach year. SI attendance was recorded using sign in sheets during each session. In previous studies,an individual student could be counted multiple times in the dataset if they had taken more thanone course where SI was offered. For this study, students were only counted once in the dataset;the percent attendance in every course the
FCS and the programs available thathave any relationship to engineering. The research bore out that the terminology varies greatlyfrom institution to institution, and focused exclusively on the AA degree. Thus, a studentdesiring to attend a FCS institution for the first two years and then transfer into an engineeringprogram does not necessarily have a clear pathway to success. What follows is a listing of allprograms related to engineering at each of the 28 FCS institutions.Table 3: Table of Colleges and the AA Degree Terminology and Program of Study Florida College System AA Degree Program of Study/Topics Institutions Alphabetically Terminology Broward College [15] AA by Career Separated into 8