Paper ID #241932018 CoNECD - The Collaborative Network for Engineering and ComputingDiversity Conference: Crystal City, Virginia Apr 29Diversity and Student Persistence in the Vertically Integrated Project (VIP)Course SequenceJ. Sonnenberg-Klein, Georgia Institute of Technology Assistant Director, Vertically Integrated Projects (VIP) Program, Georgia Institute of Technology; Doc- toral student in Education at Georgia State University, with a concentration in Research, Measurement and Statistics; Master of Education in Education Organization and Leadership, University of Illinois at Urbana-Champaign; Bachelor of Science in
• Acceptance • WaitlistProgrammatic Timeline - Applications• Applications collected concurrently• Grad projects info needed for matching• Online process for both• Secondary info session for undergrads• Might need several rounds of grad mentor recruitmentProgrammatic Timeline - Matching• More of an art• Distribution of majors• Mentors dictate majors• Personality matching• Location (off campus research park)• Returning mentorsProgrammatic Timeline - Waitlist• Auto waitlist• Personnel changes – mentor & UG’s• Internships• Class schedule changes• Other research opportunitiesProgrammatic Timeline - Training• First Meeting Worksheet• Background reading• Mentor training 1st week of semesterProgrammatic
Paper ID #241012018 CoNECD - The Collaborative Network for Engineering and ComputingDiversity Conference: Crystal City, Virginia Apr 29Teaching to Increase Diversity and Equity in STEMDr. Kelly Mack, Association of American Colleges and Universities Dr. Kelly Mack is the Vice President for Undergraduate STEM Education and Executive Director of Project Kaleidoscope at the Association of American Colleges and Universities (AAC&U). As such, she leads national efforts to reform STEM higher education that are uniquely focused on empowering STEM faculty to implement evidence based/culturally responsive pedagogies and
Matlen Ph.D. is a Senior Research Associate in the Science, Technology, Engineering, and Mathe- matics (STEM) Program at WestEd. Bryan explores how cognitive science-based strategies can be applied to support learning and inform instructional decision-making. Bryan currently serves as Principal Investigator (PI) of the IES-funded project ”Exploring the Spatial Alignment Hypothesis in STEM Disciplines”, which investigates optimal ways in which to design STEM visuals, and he is also co-PI of the NSF funded project ”An Instructional Complexity Approach to the Science of Learning by Analogy”, which explores how analogical principles interact to support learning in mathematics classrooms. Bryan is also a senior
CoNECD ASEE Conference April 29-May 1, 2018Members of the CSP-Hatchery team include: • Timothy Andersen, PhD, Professor, BSU CS • Amit Jain, PhD, Associate Professor, BSU CS • Dianxiang Xu, PhD, Professor, BSU CS • Noah Salzman, PhD, Assistant Professor, Electrical Engineering & Engineering Education (IdoTeach) • Don Winiecki, EdD, PhD, Professor of Ethics & Morality in Professional Practice, College of Engineering, BSU, and Professor, Organizational Performance & Workplace Learning, [Social Scientist] • Carl Siebert, PhD, Assistant Professor, Curriculum & Instruction (Education), [Outside Evaluator]As required by NSF, the project team included experts in engineering education and
stereotyping on student project teams, the impact this has on student learning, and tools and strategies to empower students and faculty to create more equitable team dynamics. Lisa has also worked with faculty to develop active and project-based learning techniques, including a focus on STEM and social justice, through conferences, workshops, and individual consultations. Lisa has published a number of book chapters and articles that focus on food, environmental, and social justice, particularly in the area of livestock production in the rural southern United States. Her work can be found in The Annals of the Association of American Geographers, Political Ecologies of Meat, and Critical Animal Geographies.Dr. Geoff Pfeifer
Paper ID #242582018 CoNECD - The Collaborative Network for Engineering and ComputingDiversity Conference: Crystal City, Virginia Apr 29Embedding Cross-Cultural Communication Awareness and Skills Trainingin a Living Learning Community for First-Year Undergraduate EngineeringStudentsMs. Ashley R Taylor, Virginia Tech Ashley Taylor is a doctoral candidate in engineering education at Virginia Polytechnic and State Univer- sity, where she also serves as a program assistant for the Center for Enhancement of Engineering Diversity and an advisor for international senior design projects in the Department of Mechanical Engineering. Ash
Engineering on the topics of soil-structure interaction and engineering characterization of geomaterials, Dr. Pando has been actively involved in teaching and mentoring students at both UPRM and UNCC, including 14 undergraduate civil engineering students through the NSF Louis Stokes Alliance for Minority Participation Program. Examples of his recent and ongoing engineering education research projects include the development of a Bridge to the Doctoral Program to attract Latinos to geotechnical earthquake engineering (NSF-NEES), use of a multi-institutional classroom learning environment for remote geotechnical engineering education (NSF-TUES), as well as a mixed methods study of the role of student–faculty relationships in
Freshman Engineering Program, in the Benjamin M. Statler College of Engineering and Mineral Resources at West Virginia University (WVU). She graduated Summa cum Laude with a BSME in 2006, earned a MSME in 2008, and completed her doctorate in mechanical engineering in 2011, all from WVU. At WVU, she has previously served as the Undergraduate and Outreach Advisor for the Mechanical and Aerospace Engineering department and the Assistant Director of the Center for Building Energy Efficiency. She has previously taught courses such as Thermodynamics, Thermal Fluids Laboratory, and Guided Missiles Systems, as well as serving as a Senior Design Project Advisor for Mechanical Engineering Students. Her research interests
collaborative within the NSF-funded National Girls Collaborative Project which brings together girl-serving organizations across Delaware, Maryland, Virginia, and Washington, D.C. that are committed to increasing the number of young women pursuing science, technology, engineering, and math (STEM) careers. Currently, Paige is serving as the Immediate Past President for the Women in Engineering ProActive Network (WEPAN). Paige earned her Ph.D. and M.S. in industrial and systems engineering and B.S. in engineering science and mechanics from Virginia Tech. c American Society for Engineering Education, 2018Title: Exploring the incorporation of diversity and inclusion curriculum in engineering
turn, has shapedsociety [1], [2]. However, the engineering education system is still challenged to be moreinclusive of women and underrepresented minorities to reflect the demographics of society [3].According to the Census Bureau, women were slightly more than half of U.S. residents, andminorities constituted 36% of the U.S. population in 2010 [4]. The projections also suggest thatminorities will be about half of the resident U.S. population by 2050 [4]. However, womenrepresented 21.4% of enrolled engineering undergraduates, 24.1% of enrolled Master’sengineering students, and 26.2% doctorate students in the United States in 2015 [5]. Thesepercentages have remained steady for decades and do not approach the 50.6% representation ofwomen in
Facilities Engineering Branch at the USCGA. During this tour, she served as both the Safety Officer and the Construction Officer. In this latter capacity, she was the Contracting Officer’s Technical Representative (COTR) as well as Civil Engineering Project Manager for the Academy’s $5.2 million dollar construction program. In 2003, she was selected for graduate school and attended the University of Texas, Austin where she earned a M.S.C.E with an emphasis on Construction Engineering and Project Management. In December 2004, she joined the USCGA faculty as an Instructor. During her time at the Academy, she has been the advisor for both the American Society of Civil Engineering and Society of American Military Engineers
publisher-partner Tim O’Reilly in 2005; Make: publishes amagazine highlighting maker’s projects and also hosts ‘Maker Faire’ events touted as the“Greatest Show and Tell on Earth” [2], [3]. Dougherty and his company did not invent thesewords – the first maker space was founded in Germany in 1995 [1] and it has always been “aninherent part of human nature to ideate, plan and create things with our hands and with tools” [4]– but his company gave makers a larger community to rally around and built the MakerMovement’s momentum.Dougherty says the term ‘making’ can refer to “creating, producing, crafting, shaping, tinkering,composing, and building” but that there is often overlap, and making “covers many areas ofinterest and many skills.” Elaborating, he
University Susannah C. Davis is a postdoctoral research associate in the School of Chemical, Biological and Envi- ronmental Engineering at Oregon State University. She received her Ph.D. and M.Ed. from the University of Washington, and her B.A. from Smith College. She is currently working on the NSF-funded REvolu- tionizing engineering and computer science Departments (RED) project at OSU. Her research focuses on organizational learning and change, particularly in higher education; learning in the workplace; curricular and pedagogical development; and the preparation of professionals for social justice goals. c American Society for Engineering Education, 2018 Engineering Students
Paper ID #242602018 CoNECD - The Collaborative Network for Engineering and ComputingDiversity Conference: Crystal City, Virginia Apr 29First-Year Experience (FYrE@ECST): Pre-Physics Course (WIP)Ni Li, California State University Los AngelesDr. Gustavo B Menezes, California State University, Los Angeles Menezes is an Associate Professor in Civil Engineering Department at CalStateLA. His specialization is in Environmental and Water Resources Engineering. Since becoming part of the faculty in 2009, Menezes has also focused on improving student success and has led a number of engineering education projects. He is currently the PI
author found that somepredictors of success for women were related to frequency of working on group projects while formen it had to do with satisfaction with math and science coursework and the opportunity to conductresearch. It appeared that the college environment was a greater predictor of success compared tobackground characteristics or precollege experiences. The study also indicated that the collegeenvironment makes students less sure of their motivation to achieve. This may indicate that despitelack of academic preparation, these students can achieve success if the college climate issupportive and conducive to success. Strayhorn [12] summarized his study on the social barriers and supports for URM studentsin STEM fields based upon
about the effectiveness of the flipped classroom approach in freshmen and sophomore STEM gateway classes in comparison to student performance in traditional lecture classes Goal 3: Strengthen STEM core academic performance in two key areas: retention and graduation Outcome 4. Increased retention of STEM majors at SJSU, CSULA, and CPP Goal 4: Facilitate a culture of transformative pedagogical change among STEM faculty at the three CSUs Outcome 5. Increased number of STEM faculty at the 3 CSUs who are using active learning in their classroomsTheFlippedClassroom For the FITW project, the FCM is defined as an active learning strategy that delivers
, and the abundance of intensive engineering projects lead to an unhealthywork-life balance and eventually lower levels of mental health for this population. To date, however,there has been no comprehensive study on the prevalence and types of mental health conditions thatafflict engineering students, or any data on whether certain disciplines within engineering may see agreater prevalence of certain mental health conditions among students than other disciplines.This paper presents the results of a one-year study performed at California Polytechnic State Universityto address the knowledge gap surrounding mental health across students in different engineeringdisciplines in higher education. For this study, the authors developed and administered
are over 100 full-time and part-time faculty and more than 1,100undergraduate and graduate students. In addition to rigorous technical educations where theory isbalanced with hands-on, laboratory-based work, our students experience emphasis on leadership,teamwork, and oral and written communication.All engineering and computer science students participate in a year-long senior design project which issponsored by local industry. Teams of students mentored by a faculty member and a liaison engineersolve real-world engineering problems. Students design, build and test their own solution, writeproposals and reports, and present the result to their sponsors. By bridging the gap between academiaand industry, the senior design project prepares
- University of Washington Emily Knaphus-Soran is a Research Associate at the Center for Evaluation & Research for STEM Equity (CERSE) at the University of Washington. She works on the evaluation of several projects aimed at improving diversity, equity, and inclusion in STEM fields. She also conducts research on the social- psychological and institutional forces that contribute to the persistence of race and class inequalities in the United States. Emily earned a PhD and MA in Sociology from the University of Washington, and a BA in Sociology from Smith College.Dr. Donna C. Llewellyn, Boise State University Donna Crystal Llewellyn received her BA (major in Mathematics and minor in Economics) with High Honors from
and math (STEM) fields have increased inoverall importance from a variety of perspectives during the past few decades. In terms ofindividual employment opportunities and overall quality of life, STEM occupations have higherthan average job growth projections and higher than average wage rates [1] . STEM occupationsare also closely linked to high prestige and economic prosperity from a national standpoint [2] .In terms of practical application, STEM fields are responsible for identification of solutions tomyriad challenges in multiple business sectors, government, entertainment, and everyday life.It is widely acknowledged that the United States must increase its production of individualsskilled in various STEM fields in order to maintain and