Paper ID #14939The Bucknell Poetry Path App Experiment: A Collaboration Across CampusProf. Michael S Thompson, Bucknell University Prof. Thompson is an associate professor in the department of Electrical and Computer Engineering at Bucknell University, in Lewisburg, PA. While his teaching responsibilities typically include digital design, computer engineering electives, and senior design, his focus in the classroom is to ignite passion in his students for engineering and design through his own enthusiasm, open-ended student-selected projects, and connecting engineering to the world around them. His research interests
Paper ID #14599”Construction Regulations and Organizational Management” - A Case Studyof a New Course Introduction to the Civil Engineering CurriculumDr. Hossein Ataei P.E., Syracuse University Dr. Ataei is an Assistant Professor of Civil & Infrastructure Engineering at Syracuse University in New York. As a registered Professional Engineer both in Canada and in the United States, he has the indus- try experience in the fields of structural design of civil infrastructure systems; business administration of heavy civil projects and project controls of large-scale civil infrastructure for global Engineering- Procurement
. Teaching Physics is always fun, butteaching the same course content in little less than half the time in is hard for the instructors,while learning the concepts and solving problems in an accelerated pace is challenging forstudents. To reverse this trend, and to make learning as interesting as possible, I restructured thecourse with weekly in class team activities and a final team project to work outside the class.One of the objectives of this approach is to help students develop the habit of helping others tounderstand the basic engineering physics concepts in a give and take manner.This restructuring was tested in a small class environment and for a summer accelerated course.In this report we will present detailed information about the team’s
main sections of the course: (1)Programming applications using LabVIEW, (2) Data acquisition, sensors, and signal conditioning,and (3) Design of measurement systems. Weekly laboratory activities mirror the lecture materials.Part of the requirements in the course includes an end-of-semester team design project where onepossible option is the design and implementation of an automated test & measurement system for apower supply and control board (PSCB). For this project, students design and build the PSCB tomeet these requirements: one DC output voltage, one function generator output with user selectablewaveform type (sinusoidal, triangular, square waveform) and user selectable amplitude andfrequency adjustments, four simultaneous TTL outputs
graduate and undergraduate levels. At Whirlpool, in addition to managing the usability group and conducting user research, she participated in a variety of global innovation efforts and worked with colleagues in a variety of fields in the US, Europe, Latin America, and Asia to promote customer-centered design. Her primary research and teaching interests are in ergonomics and human-machine systems design. She has conducted independent research investigating the link between usability and desirability in product design, worked with ARINC Engineering Services, LLC to provide human-systems integration support on a variety of projects for the US Navy, and has more recently been directing student teams on a number of projects
middle school students and to support entrepreneurship at primarily undergraduate institutions. Her background is in civil engineering with a focus on structural materials. She holds a B.S.E. degree from Princeton, and M.Eng. and Ph.D. degrees from Cornell.Ms. Sophia L. Poulos, Smith College Sophia Poulos is a 2016 engineering graduate from Smith College. She is interested in structural engineer- ing and has worked on earthquake engineering projects with NEES@UCLA. She is a research assistant on the CDHub 2.0 initiative and innovations in engineering design education at the capstone level. She is pursuing a masters degree in structural engineering at the University of California Davis.Ms. Laura Mae Rosenbauer, Smith
contact hours acrossthe curriculum.One of the opportunities in meeting the new curriculum requirements was merging therequirements and architecture courses. By merging the two courses, we could provide courseteam projects and individual activities that spanned the requirements specification andarchitecture design activities of software development. The tight relationship betweenrequirements and architecture development is often described with the Twin Peaks model,1,2emphasizing the iterative co-development of requirements and architecture. When the courseswere separate, we could not have a single project that spanned the two courses. With the mergedcourse, the students carry the same project from inception through to requirements specificationand
Paper ID #15792Building Computational Thinking Skills Using Robots With First-Year Engi-neering StudentsDr. Sarah B. Lee, Mississippi State University Dr. Sarah B. Lee is an Assistant Clinical Professor in the Department of Computer Science & Engineer- ing at Mississippi State University and is a Gender Studies faculty affiliate. She received her BS from the Mississippi University for Women, a Master’s degree in Computer Science at Mississippi State Univer- sity, and her PhD in Computer Science at the University of Memphis. She brings software development and project management experience to the classroom from her
multi- manages both first year engineering students in the First Year Experience Program and senior capstone students going through the Multidisciplinary Capstone Program. Outside teaching, he is also a graduate research associate (GRA) with a research focus on the aerodynamics of jet engines, jet engine simulators, and jet engine testing facilities. c American Society for Engineering Education, 2016 Capstone Advisor Valuation of a Multidisciplinary Capstone ProgramIntroductionReal-world engineering projects typically lend themselves to multidisciplinary teams. Industryprojects are multidisciplinary in nature and require interdisciplinary teams and
interests in- clude creativity and innovation in learning and teaching, Design based learning, Cloud learning & located learning and engineering education innovation. His education philosophy is founded on the Project Ori- ented Design Based Learning (PODBL) approach at Deakin University.Dr. Riyadh Ibrahim Al-Ameri, Deakin University Al-Ameri is a Fellow of the Institution of Engineers Australia and chartered Structural Engineer. Since 2010, Al-Ameri is appointed as a Senior Lecturer at the School of Engineering, Deakin University. He have more than 25 years of mixed academic and industrial experience and involved significantly with academia, research, construction industry and consultations. He received his BSc in
fundamental concernthe first in the chemical engineering curriculum, and provides in the field[7] . By immersing the students in technical writingmany students their initial exposure to calculations in the field. and providing constructive feedback in an introductory courseThis work aims at supplementing the concepts included in thisintroductory course through a simple design project that students such as this, students will be better prepared for future coursescan easily relate to. More specifically, they were asked to design involving technical writing.a water reservoir using campus buildings as a guide for itsvolume, as well as consumption data based on their personal II. P ROJECT OVERVIEWhabits. Aside
development opportunities related to project-based learning in middle and high school classrooms. Her academic training includes a B.S. in Physics and an M.S. in Biology, both from Auburn University.Prof. Virginia A. Davis, Auburn University Dr. Virginia A. Davis’ research is primarily focused on using fluid phase processing to assemble cylin- drical nanomaterials into larger functional materials. Targeted applications include optical coatings, 3D printed structures, light-weight composites, and antimicrobial surfaces. Her national awards include selec- tion for the Fulbright Specialist Roster (2015), the American Institute of Chemical Engineers Nanoscale Science and Engineering Forum’s Young Investigator Award (2012), the
engineering design process in thecontext of a semester-long project. The previous course design used the first half of the semesterto teach important aspects of the engineering design process through scaffolding activitiesdesigned to highlight each step in the design process before having students apply those steps toa full design project in the second half of the semester. The new course design utilizes more just-in-time learning strategies as students learn and apply the design process steps directly to theirproject as they work on the same project throughout the entire semester. To assess the impactthat this course has on the students’ knowledge and application of the engineering design processas well as potential benefits that may arise from the
technologyAbstract Teaching software development in environments that mimic industry practices isessential for teaching applicable real-word development skills. In addition, these delivery-basedprojects engage students in meaningful design work that encourages clear, sustainable code. TheSoftware Factory has provided such projects and environment to students at Montana StateUniversity (MSU) since the 2014 academic year. This project aimed to explore the effectivenessof such instruction for high school students with limited programming experience. Students fromBozeman High School, Bozeman, Montana, were selected to work in a team with two MSUundergraduate students with the goal of creating an Android application over the course of asummer semester
, mechanicals, as well as programs and project management. Since graduation, Jasmine has been working in a technical program management position at a company in Atlanta, GA that specializes in the use of ultrasonic technologies.Mr. Steven Howell SimsDr. Kevin Stanley McFall, Kennesaw State University c American Society for Engineering Education, 2016 A Mobile Telepresence Robot: a Case Study for Assessment of Capstone Design CourseAbstractThis paper presents the assessment scheme used to evaluate that learning outcomes are met in thecapstone design course for an undergraduate Mechatronics Engineering program. Included aresample rubrics used to evaluate the design-build-test model
the application of Computational Fluid Dynamics in natural settings with a balanced view of diverse water user needs. She has worked with the Fish and Wildlife Service both in Bozeman, MT and at the Region 5 headquarters in Amherst, MA on fish passage research projects, practical applications and assessments. Dr. Plymesser also serves as a professional mentor to the Montana State University, Engineers Without Borders chapter.Mr. Damon Lee Sheumaker Damon Sheumaker currently works at Enviromin, Inc. Where he is responsible for biogeochemical data collection and analysis and assisting with program management of operations for mining operations worldwide. He is currently completing a degree in Biomedical Sciences at
working to find new contexts in which to offer research experiences to non-science majors, including a new undergraduate research class conducted by physics andchemistry faculty. These courses are inherently interdisciplinary. Students in the engineering andcomputer science fields step into physics and chemistry labs to solve science problems, ofteninvoking their own relevant expertise. In this paper we start by discussing the common themesand outcomes of the course. We then discuss three particular projects that were conducted withengineering students and focus on how the undergraduate research experience enhanced theiralready rigorous engineering curriculum.KeywordsUndergraduate research, Physics Education, Laboratory Instruction
regional economic development in the UpperCumberland. The implementation was based on Deming’s System of Profound Knowledge, theAppalachian Regional Commission definitions of Program Areas, and the Morrill Land GrantAct of 1862 with an expanded definition of economic development.A cohort of industrial engineering seniors were instrumental in the design and development ofthe system. Similar to an AmeriCorps VISTA engagement, a characterization of the studentperspective is the opportunity to strengthen an organization so it can continue to serve the needsof the community after the project has ended.The system includes an organizational platform, a strategic planning process based onquantitative measures of regional employment, and a methodology for
members of the team composed of students from the UniversidadIcesi and the Pontificia Universidad Javeriana Cali participating in the SolarDecathlon for Latin America & Caribbean 2015 was carried out three timesduring the competition: at the beginning stage, in the middle of the project, and atthe end of the competition. The goal was to analyze the attainment of studentoutcomes and their development over time. This team was comprised of 40students from eight professional disciplines (including four industrial engineeringstudents) for more than a year. Furthermore, this study presents how theinterdisciplinary composition of the team evolved throughout the development ofthe project in order to fulfill the requirements of the competition. The
Paper ID #15342Positioning Students to Understand Urban Sustainability Strategies throughVertical Integration: Years 1 through 3Mr. Mohamed Elzomor, Arizona State University Mohamed grew up in Cairo, Egypt. Following college graduation in 2006 from American University in Cairo (AUC), he worked for several consultancy firms. He then joined a leading real estate corporation where he elevated to the post of a Deputy Project Manager for an office park project worth over hundred million USD. After completing his Masters of Engineering in Construction at the AUC, Mohamed could not bear the thought of leaving the School and so
Paper ID #15447MAKER: A Maker Space Smart Badging SystemJulie DarwinMr. Joseph Patrick Kale, Bucknell UniversityProf. Michael S. Thompson, Bucknell University Prof. Thompson is an associate professor in the department of Electrical and Computer Engineering at Bucknell University, in Lewisburg, PA. While his teaching responsibilities typically include digital design, computer engineering electives, and senior design, his focus in the classroom is to ignite passion in his students for engineering and design through his own enthusiasm, open-ended student-selected projects, and connecting engineering to the world around
Education, 2016 Effective building and development of student teamwork using personality types in engineering coursesAbstractEngineers have a high calling of contributing to the betterment of humanity. Engineering projectshave become more complicated in recent years. One solution to solving complex problems andworking on engineering projects is team building. Competent and effective team buildingrequires time and effort in the workplace or school. To best prepare students to meet theengineering profession’s demands and the needs of experienced professionals, teamwork andteam building need to be taught in the educational system. Teamwork is also a necessarycomponent of an engineering education. This paper presents
to integrating academic and professionalskills in European higher engineering programs in light of the relatively recent conversion tothe three cycle system. The study has been performed in a Mechanical Engineering programat KTH, in Stockholm, Sweden, where one of the main issues has been the addition of newlearning goals relating to scientific methods and research.The author presents three models for how research and scientific methods can be integratedwith engineering work in a thesis project context. We show that it is indeed possible toperform the integration synergistically, providing the various sets of requirements are clearlycommunicated particularly to any industrial representatives.Introduction: professional and academic
Society for Engineering Education, 2016 Designing with Lessons from the Machine Design Course: A Capstone Experience Sangarappillai Sivaloganathan and Farag K. Omar Department of Mechanical Engineering College of Engineering United Arab Emirates University P.O. Box 15551, Al Ain United Arab EmiratesKey Words: Machine Design, Capstone Project, Impact of Designed ArtefactsAbstract:Extensive procedures and complex calculations involved in the Machine Designcourses make the students feel dull. To enthuse the students there is a need to haveinspiring capstone projects that
and Alterna- tives Laboratory. He is the recent recipient of a major $2.1M microgrid research project from the Xcel Energy Renewable Development Fund. Dr. Mowry’s research interests vary widely. His current research is focused on reliable, robust, and economic microgrids, alternative energy systems, power electronics, graphene, and biofuels. Microgrids have a wide variety of commercial and humanitarian applications. Humanitarian microgrid projects require non-traditional design approaches since their operation requires minimal human intervention and maintenance. Furthermore, users typically become dependent on the reliable operation of these systems hence premature failures can have serious negative consequences.Dr
Designettes in Capstone: Characterizing the Impact of Early Design Experiences in Capstone Education with Emphasis on Designette Project Choice Cory A. Cooper,a Michael L. Anderson,a Daniel D. Jensen,a Joseph M. Fulton,a Kristin L. Woodb a United States Air Force Academy, Colorado, USA b Singapore University of Technology and Design, SingaporeAbstractFull engineering design experiences often require months to accomplish. In an effort toincorporate design, design thinking, and design innovation into curriculum without consumingextensive time, the use of shortened design
thinking, making and design innovation project courses. Dr. Lande researches how technical and non-technical people learn and apply design thinking and mak- ing processes to their work. He is interested in the intersection of designerly epistemic identities and vocational pathways. Dr. Lande received his B.S in Engineering (Product Design), M.A. in Education (Learning, Design and Technology) and Ph.D. in Mechanical Engineering (Design Education) from Stan- ford University. Dr. Lande is the PI on the NSF-funded projectShould Makers Be the Engineers of the Future? He is a co- PI on the NSF-funded projects:Might Young Makers Be the Engineers of the Future?,I-Corps for Learn- ing:Leveraging Maker Pathways to Scale Steam
nominated for the Eisenhart Award for Outstanding Teaching, RIT’s premiere teach- ing award at RIT. Dr. Kim has directed numerous undergraduate research projects and several students won the first place in the undergraduate and graduate research competitions at the 2012 and 2013 GPEC (Global Plastics Environment Conference; Division of Society of Plastics Engineers).Prof. Elizabeth Dell, Rochester Institute of Technology (COE) Professor Dell is an associate professor in the Manufacturing & Mechanical Engineering Technology department at RIT. She serves as the Faculty Associate to the Provost for Women Faculty and is co-PI for RIT’s NSF ADVANCE project. Her research interests include: characterization of biodegradable
, California State University, Los Angeles Jianyu Dong is a professor in electrical and computer engineering at CSULA. Her area of expertise is video compression/communication, multimedia networks, QoS, etc. As the PI of the NSF CCLI Project entitled ”Enhancing undergraduate computer networking curriculum using remote project-based learn- ing,” she works closely with colleagues from computer science to redesign the network curriculum to integrate project-based and inquiry-based learning. c American Society for Engineering Education, 2016 Addressing the Learning Needs of Minority Students in Engineering through Participatory DesignAbstractThis paper provides
integrated ProjectBased Learning (PBL), and undergraduate research experiences. The SPIRIT Scholar programattracted a diverse group of Engineering and Engineering Technology students, thus increasingthe percentage of female and minority student participation as compared to the host departmentprogram demographics. Over the last academic year, fifty-four undergraduate researchprojects/activities were conducted by the twenty-seven scholars under the direction of twelvefaculty fellows. Additionally, peer-to-peer mentorship and student leadership were developedthrough the program’s vertically integrated PBL model, which incorporated four courses andseven small-group design projects. Academic and professional support for the student scholarswere