AC 2011-2360: INSTRUCT INTEGRATING NASA SCIENCE, TECHNOL-OGY, AND RESEARCH IN UNDERGRADUATE CURRICULUM AND TRAIN-INGRam V. Mohan, North Carolina A&T State University (Eng) Dr. Ram Mohan is currently an Associate Professor with the interdisciplinary graduate program in com- putational science and engineering (CSE). He serves as the module content director for the INSTRUCT project. Dr. Mohan currently has more than 90 peer reviewed journal articles, book chapters and con- ference proceedings to his credit. He plays an active role in American Society for Mechanical Engineers (ASME) and serves as the chair of the ASME materials processing technical committee and a member of the ASME Nanoengineering Council Steering
AC 2012-3718: EXPERIENCES LEARNED IN CONDUCTING A SUM-MER WORKSHOP ENTITLED ”INTEGRATING NASA SCIENCE, TECH-NOLOGY, AND RESEARCH IN UNDERGRADUATE CURRICULUM ANDTRAINING (INSTRUCT)” FOR HBCU/MI INSTITUTIONSDr. Ajit D. Kelkar, North Carolina A&T State University Ajit D. Kelkar is a professor and Chair of Nanoengineering Department at Joint School of Nanoscience and Nanoengineering. He also serves as an Associate Director for the Center for Advanced Materials and Smart Structures. For the past 25 years, he has been working in the area of performance evaluation and modeling of polymeric composites and ceramic matrix composites. He has worked with several federal laboratories in the area of fatigue, impact, and finite
’ connectedness across grade levels, Professional School Counseling 12, 137-143, 2008.17. Budny, D, CA Paul, and BB Newborg, Impact of peer mentoring on freshmen engineering students, Journal of STEM Education 11:9-24, 2010.18. Moslemi, JM, KA Capps, MS Johnson, J Maul, PB McIntyre, AM Melvin, TM Vadas, DM Vallano, JM Watkins, and M Weiss, Training tomorrow’s environmental problem solvers: an integrative approach to Page 25.499.7 graduate education, BioScience 59:514-521, 2009.19. McLean, M, Does the curriculum matter in peer mentoring? From mentee to mentor in problem-based learning: a unique case study, Mentoring and Tutoring
they will be completed in a single semester we will include averageand pessimist durations. The information obtained by PERT analysis will emphasize courses thatcould further delay more the time to get a degree. The continuous evaluation of dependenciesmight be used to bundle some outcomes into different courses and make an integrated curriculumwith other programs. Page 13.416.5There have been several successful attempts 5-9 to create threads around a single common area,such as a large design project that crosses several courses in their curriculum. In contrast thiseffort takes all the
, Retention, and Graduation Through an Integrated STEM Pathways Support Initiative for the Rio South Texas Region – Year One Activities and ResultsAbstractThis paper discusses in general the first year activities and results of an integrated STEMpathways support initiative for the Rio South Texas Region that was described last year. Thisinitiative is a collaboration between The University of Texas-Pan American (UTPA) and SouthTexas College (STC), both Hispanic Serving Institutions (HSIs), to facilitate studentengagement and success in STEM areas. With a recently funded College Cost Reduction andAccess Act (CCRAA) grant from the Department of Education, both institutions are developingand supporting strategies that will facilitate
isexpected that this activity will help retain freshmen and sophomores in STEM disciplines.Another enhanced student service is the STEM Calculus 1 Student Assistant Support Program. Areason for the high attrition in mathematics courses required of STEM students is the lack ofacademic student support in Calculus 1 classes. Calculus 1 forms the foundation for moreadvanced mathematics courses required by the STEM major and thus plays an important role inthe undergraduate curriculum. At UTPA and STC, there are weaknesses in services for Calculus1 students. Tutoring programs and online materials (available to anyone with an internetconnection) exist on both campuses. However, classroom resources for Calculus 1 classes arevirtually nonexistent. Data prior
the fate and transport of organic contaminants in the environment. Page 26.1385.2 c American Society for Engineering Education, 2015 Sophomore Unified Core Curriculum for Engineering Education (SUCCEEd) at Cal State LAAbstractThe SUCCEEd program at California State University-Los Angles (Cal State LA) was designedwithin an integrated curriculum context to overcome the low success rate with respect tograduation and professional licensing, a common problem in engineering programs at minorityserving institutions. The curriculum design has been driven by outcomes established to
aregenerally interested in environmental issues. In addition, research indicates a trend where womenare more likely to occupy a larger percentage of the workforce in environmental issues such asbioengineering. This proposed activity implements an Internet-Controlled Integrated Fish FarmEnvironmental curriculum activity to encourage female participation and combine engineeringcore concepts. The study involves a project to raise fish indoors while maintaining a garden-typeenvironment through integrated sustainable systems. Through this activity, female students canparticipate in water quality research, applying fundamental concepts of chemical engineering. Inaddition, the students manipulate the water recycling system and apply concepts of motion
Paper ID #21884What Does Hidden Curriculum in Engineering Look Like and How Can ItBe Explored?Dr. Idalis Villanueva, Utah State University Dr. Villanueva is an Assistant Professor in the Engineering Education Department and an Adjunct Pro- fessor in the Bioengineering Department in Utah State University. Her multiple roles as an engineer, engineering educator, engineering educational researcher, and professional development mentor for un- derrepresented populations has aided her in the design and integration of educational and physiological technologies to research ’best practices’ for student professional development and
AC 2007-2381: FACTORS FOR AN EFFECTIVE LSAMP REULeo McAfee, University of Michigan Leo C. McAfee received the BS degree from Prairie View A&M University, Prairie View, TX, in 1966, and the MSE and PhD degrees from the University of Michigan, Ann Arbor, MI, in 1967 and 1970, respectively, all degrees in Electrical Engineering. He joined the University of Michigan in 1971 and is currently an Associate Professor of Electrical Engineering and Computer Science. He has had summer and leave positions at General Motors Research Laboratories, IBM T.J. Watson Research Center, AT&T Bell Laboratories, and Telecom Analysis Systems. He has held leadership positions for curriculum and degree
effort for decades [1] However, many of these efforts have focused on support of aspecific underrepresented group, but do not necessarily address the independent behaviors orattitudes of all students, or the overall cultural influence of the department, school, or university.The development of a new generation of engineering graduates that is more conscientious of theneed for diverse thinking and teams is critical for retaining members of these underrepresentedpopulations outside of a university setting and developing a stronger and more effectiveengineering workforce.In order to work towards this goal, an NSF-funded multi-institutional project in its third year isdeveloping unique curriculum activities that highlight how the engineering
AC 2010-1303: ADAPTING A COMMUNICATIONS SYSTEM TO THEENVIRONMENT OF AN AFRICAN NATIONWillie Ofosu, Pennsylvania State University, Wilkes-Barre WILLIE K. OFOSU is an Associate Professor of Electrical Engineering Technology at Penn State Wilkes-Barre. Dr. Ofosu has over 25 years of experience as an engineer and an educator. He is a member of ASEE, IEEE, IET (England) and a Chartered Engineer (CEng) of England.Francois Sekyere, Kwame Nkrumah University of Science and Technology FRANCOIS SEKYERE received BSc in electrical engineering in 1995 from Kwame Nkrumah University of Science and Technology. He is currently pursuing MSc in telecommunication with a thesis topic on power line
dropout rates because of lack in studentsincentive and limited hands-on experience. The model is articulated with the 2008 ACM andIEEE Computer Society Guidelines for Engineering Information Technology, and enablesstudents to achieve multiple ABET program outcomes. Results of the implementation of thecomputer networks model in a minority serving institution are included. Index TermsComputer networks, computing disciplines, curriculum development, student learning outcomes,ABET.I. IntroductionComputer networks is an important area in the body of knowledge of multiple degree programs,such as Electrical Engineering, Computer Engineering, Computer Science, InformationEngineering, Software Engineering, and
thatinformed this study were: 1) What are the elements applied in a culturally responsive trainingmodel within a summer intervention program? 2) How does the implementation of a culturallyresponsive training model prepare program mentors to engage with culturally diverse students inintervention programs? 3) What lessons learned can be translated to similar interventionprograms? Relevant LiteratureSTEM Intervention ProgramsSTEM intervention programs (SIPs) integrate student culture and curriculum by designinginterventions that focus on aiding the non-dominant cultural groups in “catching up” [11]. SIPsare structured in many ways, they vary in their purpose, curriculum focus, and academic level;regardless, SIPs work
status reportTo date, the TORCH curriculum is in final revisions however the program is in operation inselect locations with data being collected from those sites. For the intervention experiences thatare a part of the informal engineering and science aspect of the program has collected some datato date from student participants, parents, and member facilitators. Early results have someinteresting findings regarding students understanding of engineering, math and scienceperformance and interest in attending college in a STEM discipline, yet have not yielded enoughstatistical data for publication purposes.STEM community training programs have had several target populations and curricularoutcomes. An ACT program conducted in October of 2009
for crowd- sourcing bicycle and pedestrian conflict data, transportation public health performance measures, policy and infrastructure improvements resulting from bicycle and pedestrian fatality crashes, linking physi- cal activity levels to travel modes, transportation mobility for the transportation disadvantaged, and the development of planning and transit performance measures for access to opportunities, integrating sus- tainability into the engineering curriculum and creating an engineering sustainability minor. He has published several articles in the Transportation Research Record, other journals and conferences on these and other related topics. He is currently serving on the Transportation Research Board
AC 2012-4143: AN UNUSUAL PARTNERSHIP: TRANSPORTATION EN-GINEERING OUTREACH AND SPANISH TRANSLATION PROGRAMDr. Rema Nilakanta, Iowa State University Rema Nilakanta is the Program Coordinator of the K-12 outreach e-zines Go! and Vamos! at the Institute for Transportation at Iowa State University, Ames, Iowa. She has a Ph.D. in curriculum and instruction from Iowa State University and a master’s in German from Rice University, Houston, Texas. Nilakanta’s research interest lies in the study of technology in teaching and learning, especially in the area of designing online learning systems. She has worked extensively with faculty and teachers in STEM and non-STEM fields, students, and tech developers to research and
Paper ID #18668A Methodology to Model the Integrated Nature of the Sustainable Develop-ment Goals: Importance for Engineering EducationMr. David Zelinka, University of Colorado, Boulder David Zelinka was part of the first official graduating class from Purdue University’s Environmental and Ecological Engineering Program. In his final year, he passed his FE exam focusing in environmental engineering. Following, he completed his MS in Civil Engineering at the University of Colorado Denver in the Environmental and Sustainability Engineering program with his thesis focusing on an environmental impact assessment of the
Ethics in an Introductory Bioengineering Course (Work In Progress)IntroductionEthics and diversity are critical components of engineering training and practice, but mostundergraduate engineering programs do not address these issues in-depth [1-3]. In this work-in-progress, we describe the design and implementation of a novel curriculum that allows earlyengineering students to explore the interplay of diversity and ethics in an engineering context.Importantly, our curriculum can be incorporated into any engineering course, and thus serves asa model for educators in any engineering discipline.This work-in-progress describes student response to three rounds of pilot efforts [4] and how weare developing and implementing the first
Elizabethtown College, a Master’s degree in Computer Science and Software Engineering from Auburn University, eleven years of experience in industry as a software engineer, and three years as a full-time faculty in the department of engineering at a small Midwest engineering university.Dr. Susan McGrade, Indiana Institute of Technology Dr. McGrade is a Professor of English at Indiana Institute of Technology, where she teaches a range of classes from First-Year Composition to African American Literature. She often works closely with the College of Engineering, and has developed both an integrated model for English instruction within a Software Engineering program, and a problem-based learning curriculum for a First-Year
residential computing camp for students in grades 6-8 (entering sixth through ninth). The camp follows a project-based curriculum using entry-level Robotics Kits and is designed to integrate Art, Computer Science and Engineering, and English to foster and strengthen computational thinking and design, programming, and communication skills. Additionally, given the nature of the Internet in the 21st Century, cyber safety will be emphasized and girls will have the opportunity to learn about how computer crimes are investigated. High School Track: A 5-night residential computing camp for students in grades 9-12 (just graduating 9th to just entering 12th). The camp follows a project-based curriculum
writes that a holistic curriculum shouldconnect the coursework to one another and emphasize all areas of development and growth –spiritual, emotional, physical, and environmental. He advocates that the teachings of BlessingWay and Protection Way should be a mainstay in the pedagogy in order to practice characterdevelopment (e.g. integrity with social transactions) and learn new skills and knowledge (e.g.viewing coursework through a lens of ecological awareness). By providing Western links to aNavajo framework for learning, Benally attempted to represent a connection between Navajo andWestern knowledge while explicating a framework from Navajo sacred knowledge. The intent ofthis was to prepare Navajo children to be able to function in the modern
coursework, seminars and workshops that accommodate their educational, researchtraining, and career placement needs. The fellows have to attend an introductory panel discussionwith several faculty members, researchers at national lab, industry professionals, and currentgraduate students to help new fellows identify their interest.With successful completion of background knowledge and core research skill training, studentsstart working in their home institution’s research laboratories for the first year. Faculty andexternal mentors help trainees in developing his/her applied research project (i.e., thesis,dissertation or undergraduate project depending on the student’s level) that addresses asustainability priority track.3.1 Integration of
, though they follow somewhat different mechanical constructionprocedure, electronic packaging and software for programming. Currently we are in the processof acquiring electronic components so that students can start fabricating the new sensor boardwhich will be integrated with the BalloonSat for further testing of the circuit and software. Weexpect to launch our payload along with next balloon launch by the Columbus group which hasbeen tentatively fixed at the first or second weekend of April 2010. Because of the timeconstraint, it was decided to postpone the launch of the second payload with Arduino, GPSmodule and solar cells for a future mission. Since the launch will take place within an hour’sdrive from the university, it will allow us to
Science Foundation, National Center for Science and Engineering Statistics. (2013). Women, Minorities,and Persons with Disabilities in Science and Engineering: 2013.http://www.nsf.gov/statistics/wmpd/2013/pdf/nsf13304_digest.pdf6. Schoenbach, R., Greenleaf, C., & Murphy, L. (2012). Reading for Understanding. How Reading ApprenticeshipImproves Disciplinary Learning in Secondary and College Classrooms. (Jossey-Bass) 22 – 29.7. Chen, X., Solder N. (2013). STEM Attrition: College Students’ Paths Into and Out of STEM Fields StatisticalAnalysis Report. http://nces.ed.gov/pubs2014/2014001rev.pdf8. Karp, M., Hughes, K., & O’Gara, L. (2008). An Exploration of Tinto’s Integration Framework for CommunityCollege Students. Community College Research
.). Exposure to the componentis measured by time. During the development of the fidelity checklist, the necessary timerequired for participants to gain the knowledge, skill or ability is predetermined. The actual timedevoted to the component is recorded on the checklist. Finally, the responsiveness of theaudience is also recorded. Here the evaluator is determining the audience’s engagement with thecontent (Gerstner & Finney, 2013). By assessing the training program in this way, a morethorough understanding of the program components can be assessed and the intended curriculumversus the presented curriculum can be evaluated holistically.An implementation fidelity assessment provides an environment where programmaticcomponents are articulated
Mississippi State University, a predominately white institution, iscommitted to creating an educational environment of inclusiveness and high academic excellence.This environment is fostered to enable students to persist in the engineering curriculum, graduatewith an engineering degree, and allow for exposure to research and graduate school opportunities.By promoting a culturally diverse environment, the College of Engineering seeks to increase theparticipation of minorities and women in the field of engineering and to close the social gaps ofunderrepresented minority students. In the fall 2013 first-time incoming freshmen in engineeringconsisted of 637 students with 531 (83%) of students being White American and 87 AfricanAmerican students making up
keep your integrity? Do youcopy and cheat on homework assignments just to get through the end of the semester? Doyou fail a course and retake over the next semester/summer? Not everyone has the money,mental health, nor the support to adapt to these changes in such a short timeframe. Yethere we are as students contemplating the value of an honest education. I know I certainlydidn't pay nearly $22,000 for this semester only to be taught by a pre-recorded lecture andpowerpoints, so why should I be perfectly honest? The system is flawed currently and Icannot blame our staff for the nature of their emergency plans, after all this was veryunexpected. What we should be discussing is how we can better teach and reinforcelearning, rather than enforcing
Paper ID #16344Experiences in Establishing an Outreach Program for Attracting and Retain-ing Minorities to EngineeringDr. Rocio Alba-Flores, Georgia Southern University Rocio Alba-Flores received her M.S. and Ph.D. in Electrical Engineering from Tulane University. She is an Assistant Professor in the Department of Electrical Engineering at Georgia Southern University. Her main areas of interest include control systems, robotics, digital systems, microprocessors, signal and image processing, and engineerign education.Dr. Fernando Rios-Gutierrez, Georgia Southern University Fernando Rios-Gutierrez was born in Mexico City
totransition instead of remediation resulted in an increase in URM student performance andretention [13, 14].In January of 2004, after benchmarking the Challenge Program at Georgia Tech and similarprograms at large predominant white institutions around the country, a minority program in alarge selective Midwestern university launched a five-week summer bridge program to simulatethe rigor of the first semester of the freshman engineering curriculum. It was designed with afocus on URM student transition, preparing incoming URM freshmen engineering students forthe cultural shift from high school to global competition at a selective institution.This study quantitatively examines the effect of this summer bridge program on the URMengineering student