attempt to get the new and at risk students to mingle with mature students and facultywithout enrolling them in a "special" program. The program's key objective is to get students toteach each other with mentors available to intervene only when necessary. In the Fall 2011 term,the project was started with virtually no funding. Laboratory space that was only being used20% of the time was made available to students to study in during the unused 80% of the classschedule.The motivation for this program and its objectives are discussed. Data collected following thefirst semester of operation is presented and discussed. Conclusions are drawn regarding theprograms impact on participating students.IntroductionStudents at every academic level are prone to
, engaging discussions about entrepreneurship and engineeringdisciplines with graduate students, faculty, and invited speakers, an interactive chemistrylaboratory, campus tours, evening fireside chats with industry executives, nightly researchcollaborations, guided site visits to corporations such as Google and NASA, computerscience lectures and laboratories, and a hands-on collaborative research experience. Althoughall these elements work in tandem to make the LEAD-SEI experience phenomenal, the last Page 22.623.4two activities are critical elements that have helped to make LEAD-SEI a success at U.Va.Hence, we will give an in depth overview of these
Sciences, ElectricCircuits etc. Besides, all engineering students are required to take an introductory engineeringcourse called “Principles of Engineering Analysis and Design” in the sophomore year. Alaboratory component was introduced to this course in the academic year 2002-03 to createexcitement about the engineering subjects among the students as well as expose them to modernmanufacturing and testing equipment. The laboratory projects are based on an array of hardwareand software such as Lego-Nxt programmable robots, PC Turn 55 CNC machine, FLOTEK windtunnel, Dimension 3D printer, NextEngine 3D scanner, SolidWorks CAD and RapidWorksreverse engineering software. As is evident from the list of the equipment, an attempt was madeto expose students
] cites undergraduate research opportunitiesas a way to engage students from traditionally marginalized populations in STEM. Theseopportunities for students from traditionally underrepresented populations positively impact theirinterest in STEM, exposure to research, career aspirations, STEM identity and self-efficacy.Research experiences and other experiential learning formats are effective means for encouragingpersistence of underrepresented groups in STEM fields.Supporting students with disabilities in research and experiential learning activities is especiallychallenging. These experiences are generally unstructured and multi-faceted. Standardaccommodations made for students in a traditional classroom or teaching laboratory [8] –modifications
http://www.asq.org/ASTC Association of Science Technology Centers http://www.astc.orgAVMA American Veterinary Medical Association http://www.avma.org/AWAA American Water Works Association http://www.awwa.org/Biophysical Society http://www.biophysics.org/BFRL Building and Fire Research Laboratory http://www.bfrl.nist.orgESA Ecological Society of America http://www.esa.org/FASEB Federation of American Societies for Experimental Biology http://www.faseb.org/FMB Federation of Master Builders http://www.fmb.org.ukFMS Federation of Materials
http://www.aspp.org/ASQ American Society for Quality http://www.asq.org/ASTC Association of Science Technology Centers http://www.astc.orgAVMA American Veterinary Medical Association http://www.avma.org/AWAA American Water Works Association http://www.awwa.org/Biophysical Society http://www.biophysics.org/BFRL Building and Fire Research Laboratory http://www.nist.gov/bfrl/ESA Ecological Society of America http://www.esa.org/FASEB Federation of American Societies for Experimental Biology http://www.faseb.org/FMB Federation of Master Builders
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
Transactions on Semiconductor Manufacturing from 1997-2001 and was a National Science Foundation "National Young Investigator" (1993-98). He was a National Science Foundation and an AT&T Bell Laboratories graduate fellow, and has worked as a member of the technical staff at AT&T Bell Laboratories in Murray Hill, NJ. He is a Fellow of the American Association for the Advancement of Science and a member of the National Advisory Board of the National Society of Black Engineers (NSBE). Page 14.464.2© American Society for Engineering Education, 2009 Development and Implementation
students for several years while the faculty securesexternal funding. It might contain details surrounding reimbursements associated with movingcosts. It might describe a certain square-footage laboratory. Such start-ups can run to hundreds ofthousands of dollars of support at research-intensive institutions, and future faculty membersshould be careful to understand what the “going rate” for a start-up might be at the institutionsthey are interviewing with. (Tactic #1: Do your homework – ground your request in facts.)1BackgroundAs described in “Getting to Yes: Negotiating Agreement Without Giving In,”2 which uses“Harvard Principled Negotiation,”2,3 any method of negotiation may be evaluated based on threecriteria: first, it should produce a “wise
STEM activities throughout years for local high school and middle school students, outreach efforts with local high schools, and other com- munity involvements for many years through enrichment workshops and summer opportunities for the local community.Mr. Gerardo Javier Pinzon PE, Texas A&M International University Mr. Pinzon is the STEM Advisor & Laboratory Manager in the Engineering, Mathematics and Physics Department at Texas A&M International University (TAMIU). He is currently a PhD Candidate (ABD) in Environmental Engineering at Texas A&M University at Kingsville (TAMUK). He holds a Masters of Environmental Engineering from TAMUK, a Masters of Business Administration from TAMIU and a
shown that students who engage in research projects are morelikely to enroll in and complete STEM degree programs when compared to other students9.Increased understanding of the research process10,11,12, a shift from passive to activelearning13,14,15, enhanced research and laboratory skills10,11,16,17, and increased understanding and Page 23.307.2interest in the discipline are some of the benefits undergraduate students gain by engaging inresearch. Students are also more likely to pursue careers in the STEM field when they hadexperienced undergraduate research- gains were particularly noticeable among minorities3.Also in the last several years
, Northwestern State University, and Franklin University. Dr. Bachnak received his B.S., M.S., and Ph.D. degrees in Electrical Engineering from Ohio University. His experience includes several fellowships with NASA and the US Navy Laboratories and employment with Koch Industries. Dr. Bachnak is a registered Professional Engineer in the State of Texas, a senior member of IEEE and ISA, and a member of ASEE.Dr. Rohitha Goonatilake, Texas A&M International University (TAMIU) Dr. Rohitha Goonatilake, professor of mathematics, received his Ph.D. in Applied Mathematics from Kent State University, in Kent, OH in Fall 1997, three masters in the areas of applied mathematics, mathemat- ics, and actuarial sciences, and a bachelor’s
Karl Haefner, PEEC Collaborative Team Member. University of Phoenix, M.A.e.d., Secondary Education, 2008 Grand Valley State University, B.S. Geology, 2004 Sagi- naw Valley State University, B.S. Mechanical Engineering, 1988 Mr. Haefner is an engineering instructor at Cankdeska Cikana Community College, where he is actively working to build the Pre-Engineering Department. He assisted with writing the AMI accreditation report to the HLC, wrote several success- ful grants, and managed CCCC’s Advanced Manufacturing Curriculum and Pre-Engineering Educational Consortium. In addition the Advanced Manufacturing initiative at CCCC has hired two undergraduates to run the 3-D/Scanner Laboratory. The aforementioned gives the
last for two weeks. About 20 students will beadmitted into the camp each year. Some topics to be covered in the camp will include computerengineering, math, physics, english, electrical engineering, and laboratory exercises withLEGOs, plant visits, and engineering ethics. Table 3 shows a tentative schedule of activities forthe camp.By having the summer camp, we intend to get more students interested in the Engineeringprofession. The positive experience of the high school students due to the engineering campmay turn them on to study engineering. In addition, the summer camp will make the studentsunderstand that engineering can be fun, rewarding, and beneficial to society. Table 3 Tentative Schedule of Activities for the Summer Camp
relevant information from all levels and exchange ideas as well as report progress or problems.• Visit laboratories and other facilities if possible in order to better understand the Center’s capabilities and observe new developments. Page 12.1096.5 • Attend all professional development training sessions sponsored by the UNCFSP Institute for Advancement (SPIA) to enhance your leadership and management skills. • Understand the organizational structure and become familiar with the system. Get involved with the NASA scientists and engineers in existing research activities as it may lead to new research and help you
absorbing state-of-the-artknowledge.3. Benefits to the StudentsThe faculty associates with the students in the classroom lectures and in thelaboratory sessions. As part of these regular responsibilities research activities areperformed by both the faculty and the students via laboratory operations withstate-of-the-art innovations. Students constantly gain from such activities for theiradvanced degrees. The NASA Administrator’s Fellowship Program allowsopportunity for the students to interact with the NASA Employees. Uponreturning to the home institution the faculty gets opportunity to utilize students inresearch activities related to the NASA’s interest. Thus, students are benefited viaresearch publications and advanced knowledge.Program
disabilitieswhile the lectures and discussions will center on the impact of disabilities as well as thepsychosocial aspects of those disabilities. The sensitivity training module includes roleplaying and simulation to explore the interaction of a student with a disability and his/herenvironment. The workshop will also focus on the barriers to learning that are oftenapparent yet frequently overlooked within the classroom, laboratories, campus, andcommunity.School teachers are continually challenged with their task to teach 30 or more students,four or more times a day. If we add to that task the need to accommodate a student with adisability, then the challenge may become overwhelming and may cause the teacher to beless effective. The goal of the workshops
on the Status of Women at Purdue in recognition of outstanding efforts on behalf of women (2007). In 2008, he received the ASME Johnson and Johnson Consumer Companies Medal, for his ”unwavering commitment to diversity”.Dr. Daniel Lopresti, Lehigh University Daniel Lopresti received his bachelor’s degree from Dartmouth in 1982 and his Ph.D. in computer science from Princeton in 1987. After completing his doctorate, he joined the Department of Computer Science at Brown and taught courses ranging from VLSI design to computational aspects of molecular biology and conducted research in parallel computing and VLSI CAD. He went on to help found the Matsushita Information Technology Laboratory in Princeton, and later also
exposed to critical thinkingprinciples, system engineering basics, and team-working skills. During the program, the CASHstudents conduct NASA-related research, complete a project, and present their findings in aresearch exposition at the conclusion of the summer program.For the 2010 program, NASA’s Jet Propulsion Laboratory (NASA-JPL) in Pasadena, Californiaworked with ISF over the spring and provided the CASH program with both a Solar-based and aTelecom-based project for its CASH students. These two projects allowed the CASH students towork in research areas relevant to NASA.Program DescriptionSelection of ParticipantsFor the first two years of the CASH program, students have been provided to the programthrough a partnership with the Bluford
portion of the laser micromachiningresearch complemented the courses he took as an undergraduate, the exposure to lasers andpiezoelectric materials provided a broader exposure to the field. The ET students in this programare exposed to sensors that use piezoelectric materials, but they do not get the opportunity tomachine those materials in the laboratory. Page 22.1652.3Overview of Laser Machining CenterAcquired from Oxford Lasers in England, the Oxford Lasers Micro-Machining Center (seeFigure 1) was introduced for precision machining and part marking of materials ranging frompolymers to high-tech super-alloys. Figure 1: Oxford
Paper ID #33091Engaging Underrepresented Students in Cybersecurity usingCapture-the-Flag(CTF) Competitions (Experience)Dr. Michel A. Kornegay, Morgan State University Dr. Michel A. Kornegay (Reece) is currently an Associate Professor and a senior faculty researcher for the Center of Reverse Engineering and Assured Microelectronics (CREAM) in the Department of Electrical and Computer Engineering at Morgan State University. In this center, she pursues research in the areas of wireless signal characterization and device authentication of IoT devices. She is also the director of the laboratory for Advanced RF/Microwave
Paper ID #18560Assessment of a Summer Bridge Program: Seven Years and CountingDr. Robert W. Whalin, Jackson State University Dr. Whalin, Professor of Civil and Environmental Engineering, and Director, Coastal Hazards Center, Jackson State University. He is Director Emeritus of the Engineer Research and Development Center, Vicksburg, MS. He received his PhD in Oceanography from Texas A&M University in 1971 and is a Registered Professional Engineer. Dr. Whalin was Director of Army Research Laboratory (1998-2003; Adelphi, MD), and Technical Director /Director of Waterways Experiment Station (1985-1998; Vicks- burg
Economic Development Board, Inc. (Maui, Hawaii) and is funded in part by theDepartment of Labor as a workforce development project. Research indicates that the transitionfrom middle school to high school is a critical time when girls often lose interest in math andscience. They view these career fields as boring, not relevant to their lives, and Caucasian male-dominated―thus they do not pursue them. WIT has worked with Native Hawaiian culturaladvisors and Kupuna (native teachers) in conjunction to the U.S. Air Force Research Laboratory(which has oversight of the Maui astronomical assets) to address the dual barriers of gender andethnicity facing Native Hawaiian girls by exposing them at this pivotal point in their lives totechnology in the context
General Electric Corporation NC Department of Hewlett-Packard Company Transportation Intel Corporation The Procter & Gamble Company International Paper Time Warner Cable, Inc. Microsoft Corporation NC Math & Science Education Milliken & Company Network Nortel Networks Underwriters Laboratories, Inc. Northrop Grumman CaterpillarIn addition to formal board affiliations and interactions described in this paper, severalcompanies also host our students who attend a high
the fall semester. Students were treated asif they were enrolled as freshmen, a key to past success2. Students attended classes during theday, Monday through Friday. Instructors gave tests and homework to show students the rigor ofcollege curriculum. Below are brief overviews of each subject. The average size of ASPIREallowed one section for each class.Chemistry - Influence on problem solving through problem sets and homework assignments - Covered chemical fundamentals, bonding, and thermodynamics - Three exams given with the opportunity to participate in prior help sessions - Pre- and post-tests given to assess comprehension of materialChemistry Lab - Covered lab safety, lab report format, and laboratory experiments
gene regulation during development in Drosophila melanogaster in his newly established Laboratory of Molecular Genetics at SAU. Dr. Melton received his B.A. degree in biology from the University of North Carolina at Chapel Hill, the M.S. degree in developmental biology from North Carolina A&T State University and the Ph.D. in developmental neurophysiology from the University of Maryland at College Park. He also conducted c American Society for Engineering Education, 2019 Paper ID #27241postdoctoral research in molecular genetics at the University of North Carolina at Chapel Hill’s School ofMedicine.Dr
University of California, Irvine in 2013. As a graduate student, Dr. Mayoral worked on the shielding of jet noise by a hybrid wing body aircraft. In 2014, Dr. Mayoral joined the Department of Mechanical Engineering at California State University, Fullerton where he currently serves as an Assistant Professor. As the PI of the Wind Tunnel Laboratory, his research interests span the areas of aeroacoustics, ground effect aero- dynamics, and has recently expanded his interests into the hydrodynamics of marine life. Moreover, Dr. Mayoral is a CoPI of the NSF funded ”Advancing Student Success by Utilizing Relevant Social-cultural and Academic Experiences for Undergraduate Engineering, Computer Science Students” (ASSURE-US
programs. In the first week of the camp,students visit science and engineering departments, research laboratories and institutions, andindustrial facilities to gain general understanding of different scientific fields, and application ofscience and technology in engineering practice. In the second week, students work in smallgroups with professors on specific project to learn more about specific disciplines though hands-on and exploratory activities. Exercises in mathematics, journaling, and presentation skills areintegrated into daily activities. Students stay on campus during the entire period of two weeks ofcamp. In addition to academic activities, various social activities, such as sports, games, andvisiting local Native American groups, are
that they need to work harder; boosted their self-esteem when they gotgood grades during the program; got more confident in freshman year classes; and founda study buddy. The second and third groups agreed that the mathematics and chemistryclasses served as a good review before the beginning of fall semester. Some studentsfrom the second group stated that they knew what to expect in college, and the scienceclass helped in learning how to write laboratory reports. The third group’s students statedthat the study skills class was good in teaching them time management. Page 25.711.9Discussion:In examining the results obtained, it was indicated that