Paper ID #20374Student Paper: Small Team Agile Systems Engineering For Rapid Prototyp-ing of Robotic SystemsMr. Charles Avery Noren, Texas A&M University Vehicle Systems & Control Laboratory Charles Noren is an undergraduate research assistant at the Texas A&M University Vehicle Systems & Control Laboratory and task leader for the rail-based robotic system project. He is expected to graduate with a Bachelor of Science in Aerospace Engineering in May of 2018, and plans to continue his education at Texas A&M University with a Master of Science in Aerospace Engineering.Kendra Lynne Andersen, Texas A&M
Paper ID #19939Introduction and Application of Lean Manufacturing Techniques in Mechan-ical Engineering Senior Design PracticumMr. Jamison Taylor Bair , Colorado State University Jamison Bair is a Graduate Student pursuing a Masters of Science in Mechanical Engineering at Colorado State University. He received his BS in Mechanical Engineering from Colorado State University in May 2016. Jamison is one of the GTAs for MECH-468, the senior design capstone class at CSU. He is also the Project Manager for the CSU Vehicle Innovation Team competing in the intercollegiate automotive engineering competition EcoCAR3 and the
in your applicationmaterials and/or recommendation letters include: Research experience (volunteer or paid work in a lab; independent study with a faculty; extensive research or design projects completed as part of coursework; research or problem solving skills developed through internships or work experience) Industry experience (volunteer or paid internships; opportunities to solve problems, test equipment, investigate materials, give presentations, work in a team, etc.) Leadership experience (serving as an officer in student organizations; organizing an event or activity; leading a research or project team, etc.) Teamwork skills (working effectively with others to solve problems or complete
concepts and science fiction medium used by students is listed in Table encourages students to take ownership of their learning [1]. There has been a recent push by the 1. Overall, students showed creativity in applying the biomechanical concepts (Figure 3). The American Society of Biomechanics (ASB), as evidenced by the first annual National Biomechanics instructor of record addressed any misconceptions and errors in the students’ biomechanical Day and 2016 K-12 Outreach Expo, to compile and present ‘hands-on’ biomechanics demonstrations analyses in a written comment with the grade. Despite varying projects, average total scores and lab activities to get K-12 school age
techniques. The event took place over one day, andincluded a speaker at lunch, who provided the women with a female role model who was familiarwith manufacturing processes. Participants in this event were asked to fill out a short post-eventsurvey, in order to determine the program’s value and effectiveness and guide futureimprovements.In this paper, the program is described, and the evaluation data from the survey is presented. Thisdata shows that participants felt that the event was valuable. The description of the event, togetherwith the data on its effectiveness, can be used by other universities that wish to create similarprograms. With additional programs, it would be possible to further explore the role of individualhands-on projects in
. Julie P Martin, Clemson University Julie P. Martin, Ph.D. is an associate professor of Engineering and Science Education at Clemson Univer- sity. Her research agenda has focused on diversity and inclusion in engineering education. In particular, her NSF-funded CAREER work has investigated how social relations—operationalized as social capi- tal—influence student academic decisions and success, especially for underrepresented and underserved students. Her CAREER research supports the need for continued proactive outreach, educational and support systems that have the potential to form ”resource-rich” networks in which students receive infor- mation and resources in routine exchanges. Dr. Martin’s current projects
collaborates with faculty on the Scholarship of Teach- ing and Learning through various research projects. Particular current areas of collaboration include instructional design, evaluation, engineering education and learner support. In addition, Dr. Jackson is an Affiliate Faculty in Penn State’s Higher Education Department.Prof. Karl R Haapala, Oregon State University Dr. Karl R. Haapala is an Associate Professor in the School of Mechanical, Industrial, and Manufacturing Engineering at Oregon State University, where he directs the Industrial Sustainability Laboratory and is Assistant Director of the OSU Industrial Assessment Center. He received his B.S. (2001) and M.S. (2003) in Mechanical Engineering, and his Ph.D. in
understanding of informed design (pilot)funded research project, Collaborative Research: Large-Scale Research on Engineering Design Based on Big • Developed a protocol to assess students’ level of reflectivity • Conceptions of Design Test to assess
research project, of which this resumeintervention is a component. Students were told completing the research participation and releasedocuments were completely voluntary and any information gained from their data would be usedto support and improve future students' experiences.The “initial” resumes from the application materials for these 26 rising seniors were scored from0 to 5 according to the following points: 1 point if the resume included information about the student’s educational background 1 point if the resume focused exclusively on post high school experiences 1 point if the resume did not include a separate objective section 1 point if the resume was less than two pages and divided into understandable sections
research projects to understand student learning in engineering problem-solving and design. c American Society for Engineering Education, 2017 Writing in the Disciplines for Engineers: Implementation and Assessment of Student Learning Jordan Trachtenberg Department of Bioengineering, Rice
college degree information, expected graduation term, and GPA with scale (e.g., 3.358/4.0). As appropriate, include additional majors/minors, concentrations, study abroad activities, or accomplishments (Dean’s List, Honors College membership, etc.). Also list professional training activities or certifications (e.g., EIT or PE status; certification in software or equipment), training completed as part of a co-op or internship, and other professional development activities you have participated in (teamwork training, communications skills seminar, etc.). Research Experience: include both paid and volunteer experiences, as well as substantial research projects completed as part of your technical
academia, most will facebalancing substantial research, teaching and service requirements. Yet, a graduate educationtypically focuses predominately on preparing students to lead research projects, without an emphasison development of pedagogical skills. Especially in engineering fields, graduate students may notautomatically be required to teach, receive pedagogical instruction, or engage in other careerdevelopment aspects beyond research. The exact reason for this is unclear but may be linked tounderestimating the positive impact of teaching by graduate students. Yet, there appear to beconcrete benefits for both the graduate students and the students taught by them. In fact, manygraduate students are interested in teaching and would like to
classes to native English speakers, he has also taught special introductory engineering classes for foreign students who do not have English as their primary language.Mr. Jamison Taylor Bair , Colorado State University Jamison Bair is a Graduate Student pursuing a Masters of Science in Mechanical Engineering at Colorado State University. He received his BS in Mechanical Engineering from Colorado State University in May 2016. Jamison is one of the GTAs for MECH-468, the senior design capstone class at CSU. He is also the Project Manager for the CSU Vehicle Innovation Team competing in the intercollegiate automotive engineering competition EcoCAR3 and the President of the CSU Student Chapter of the Society for the
the excerpt from Bok is often true at research-intensive engineering institutions.Perhaps even more critical than the delay to a student’s doctoral thesis completion, as identifiedby Bok, many faculty advisors view student-time spent teaching as directly conflicting withprogress on experimental testing, computational simulation, and technical publicationagreements with research sponsors. This perception of conflict is not unwarranted: faculty are atthe behest of governmental/private entities that can freeze further funding or request recompensefor previously distributed grants if project deliverables are not timely. A graduate student, orteam of students, is a significant driver in moving the research forward to meet these
vague, researchers will often develop a codebook thatdescribes each code with a concrete definition and example quote from the data (Creswell,2014). This codebook can then be used by multiple researchers within the project or futureresearchers conducting similar studies. It is common to have multiple coders code the same dataset or split large data sets between multiple coders. Walther et al. (2013) suggested IRR as ameans to “mitigate interpretative bias” and ensure a “continuous dialogue between researchers tomaintain consistency of the coding” (p. 650). Miles and Huberman (1994) suggest that an IRR of80% agreement between coders on 95% of the codes is sufficient agreement among multiplecoders(Miles & Huberman, 1994)(Miles & Huberman
to real-life scenarios inschool project, at work, and in teaching.Peer-Presentation ReviewTo specifically enhance the presentation skills of the engineering ambassadors, the studentspractice the presentation portion of the lesson their group designed to their fellow ambassadorsand faculty. During the presentation, the audience took note on the presentation skills such asposture, filler words, body language verbal tone, volume, and eye contact are ranked on anexcellent to needs improvement scale. This provided the ambassadors with a list of requiredimprovements in their presentations. The presenting ambassadors received a similar sheet withthe combined results as shown in table 3. Table 3: Sample of
infrastructure projects, sustainability education, and increasing diversity in STEM fields.Dr. Denise Rutledge Simmons P.E., Virginia Tech Denise R. Simmons, Ph.D., PE, LEED-AP, is an assistant professor in the Myers-Lawson School of Construction and in the Civil & Environmental Engineering Department, and an affiliate faculty of the Department of Engineering Education at Virginia Polytechnic Institute and State University. She holds a B.S., M.S., and Ph.D. in civil engineering and a graduate certificate in engineering education – all from Clemson University. She is the 2016 recipient of Virginia Tech’s College of Engineering Dean’s Award for Outstanding New Assistant Professor and the Black Graduate Student
psychology, and the learning sciences. Through in-situ studies of classroom and institutional practice, Chandra focuses on the role of culture in science learning and educational change. Chandra pursues projects that have high potential for leveraging sustainable change in undergraduate STEM programs and makes these struggles for change a direct focus of her research efforts. c American Society for Engineering Education, 2017 The Role of Empathy in Supporting Teaching Moves of Engineering Design Peer EducatorsAbstractEmpathy is a diverse and complex phenomena by which humans relate their experiences to oneanother. This work explores empathy as a resource for engineering
that she received. Furtherfunding will come from asking the students, faculty, and staff alliances at the University.Funding can also come from other internal organizations, however these provide minimal funds.Additional funding comes from percentage nights from local food establishments.Best PracticesDespite the difficulties with membership at meetings, the DAC has been successful in helping tobring in speakers and holding events. Further, the DAC has been included in diversity measuresand organizations within the university. Finally, the DAC has spearheaded both physical anddigital accessibility change projects within Virginia Tech and the surrounding community.Purdue University: ASEE Student ChapterBackground and DevelopmentPurdue
that students often feel as they try tomake a final decision about which graduate program is the best option.In the end, the best choice is often the graduate program that “feels right” to the student: theplace where they found multiple connections and diverse opportunities, with strong support foryour academic, personal and financial goals. When faced with a choice between the “perfect”research project and the “perfect” faculty advisor, it is wise to remember that the mentoringrelationship is critical to success in graduate school – while projects come and go, the support ofa good mentor can have a much longer impact on your academic and professional success.References[1] “How to Make the Final Grad School Enrollment Decision | Applying to
research agenda includes epistemological beliefs in science and evolution education. He is recently engaged in professional development activities supported by several grants targeting to increase elementary teachers’ knowledge and skills to integrate science, language arts, and engineering education within the context of Next Generation Science Standards.Miss Ezgi Yesilyurt, University of Nevada, Las Vegas Ezgi Yesilyurt is a PhD student in curriculum and instruction/science education at University of Nevada, Las Vegas. She is working as a graduate assistant and teaching science methods courses. She received her MS degree and BS degree in elementary science education. She participated European Union Projects in which
the preservice teachers’ final project where they wrote andtaught a 20-minute lesson on a topic of their choice. The preservice teachers planned theirlessons using the recommended lesson plan format. Some documented their process bycompleting a written log of their steps and/or a screen capture video. After completing theirlesson planning, the preservice teachers completed a reflection about the process of writing theirlesson plan and presented their lesson to their peers. The purpose of the written log and screencapture video was to see the specific processes used by each preservice teacher to complete thelesson. The aim of the reflection was to gain an understanding of how the preservice teachersviewed their process of writing lesson plans
research assistant.Justin Lee Clough, Rensselaer Polytechnic Institute Justin Clough received his Bachelors of Science in Mechanical Engineering with minors in mathematics and applied physics from the Milwaukee School of Engineering. As an undergraduate, he has worked on research projects with the National Science Foundation, Argonne National Laboratory, and the Stanford Linear Accelerator Center. He is working on his doctorate in Mechanical Engineering at Rensselaer Poly- technic Institute specializing in computational materials and volunteers with Engineering Ambassadors.Ms. Elizabeth S. Herkenham, Rensselaer Polytechnic Institute Ms. Herkenham is the K-13 Education Outreach Director of the School of Engineering (SoE) at
subjects that are related to engineering, and provide information regarding the major and field.Because prior experience played a large role in the sample, it could be beneficial to work withlocal schools and Project Lead the Way programs to expose more students to engineering. Theseare just a few ideas that could be implemented in recruitment.There were some limitations in our study, one of which is that this study only occurs at oneuniversity. This is an external validity threat, as this pertains to the generalizability of our study.The demographics from our study are quite consistent with the 2013 national averages found bythe National Science Foundation, indicating that generalizability is possible. As this research iscurrently in-progress, we
Louisiana State University, managing all aspects of the STEP project that consists of a large-scale peer mentoring program in the College of Engineering. Previously, she founded and coordinated the Scope-On-A-Rope Outreach Program (SOAR) in the Department of Biological Sciences, where she worked for 10 years. Prior to her positions at LSU, Adrienne was the Science Education Curator at the Louisiana Art and Science Museum in Baton Rouge. Adrienne has a Master of Science degree in zoology from LSU, where she studied in the Museum of Natural Science collections, and an Education Specialist Certification in science education.Dr. Warren N. Waggenspack Jr., Louisiana State University Warren N. Waggenspack, Jr. is currently
) “I have a solid mentorship experience as a graduate student as I have trained multiple undergrads and graduate students in my lab for different research projects. So, I think I would be able to do this well in my job as a faculty member.” Harsh (reflection) “Next [to teaching and research] is the planning for mentoring graduate students which, in my opinion, is the most fulfilling aspect of the faculty's job.” Hassan (reflection)Arguably, Hassan is intrinsically motivated towards mentoring and weighs it as important as teaching andresearch. From the students
education. Currently, Adrienne works at Louisiana State University, managing all aspects of the STEP project that consists of a large-scale peer mentoring program in the College of Engineering. Previously, she founded and coordinated the Scope-On-A-Rope Outreach Program (SOAR) in the Department of Biological Sciences, where she worked for 10 years. Prior to her positions at LSU, Adrienne was the Science Education Curator at the Louisiana Art and Science Museum in Baton Rouge. Adrienne has a Master of Science degree in zoology from LSU, where she studied in the Museum of Natural Science collections, and an Education Specialist Certification in science education.Dr. Warren N. Waggenspack Jr., Louisiana State University
, state, local and institutional policies and practice and that result in professional competency in civil and construction engineering.Dr. Lisa D. McNair, Virginia Polytechnic Institute and State University Lisa D. McNair is an Associate Professor of Engineering Education at Virginia Tech, where she also serves as co-Director of the VT Engineering Communication Center (VTECC) and CATALYST Fellow at the Institute for Creativity, Arts, and Technology (ICAT). Her research interests include interdisciplinary collaboration, design education, communication studies, identity theory and reflective practice. Projects supported by the National Science Foundation include exploring disciplines as cultures, liberatory maker spaces