(to environment) A8 Uses footprint analysis to estimate impact A9 Analyzes embedded energy of alternatives B1 Addresses stakeholder or client requests B2 Considers local circumstances and cultures B3 Incorporates public/stakeholder participation B4 Incorporates user experience Social B5 Protects human health and well-being B6 Uses inherently safe and benign materials (to humans) B7 Demonstrates ethics/ethical reasoning B8 Reflects social responsibility B9 Manufacturing complies with safety regulations
problem solving in multidisciplinary andinterdisciplinary teams. Undergraduate engineering students often are trained in disciplinaryconcepts and techniques of their specializations, but rarely given opportunities to reflect uponhow they work with collaborators. Here, we discuss a course that brings students fromengineering and non-engineering fields together to grapple with a technical and conceptualchallenge: designing and building drones for humanitarian purposes. This paper describes an“Engineering Peace” course and discusses preliminary findings from surveys, focus groups, andobservations regarding the course’s effects on students’ multidisciplinary and interdisciplinaryskills. This material allows us to analyze the emergence of professional
that emphasizes student discovery. Scholars are selectedannually based on academic ability and financial need. Faculty mentoring, tutoring, peer studygroups, college survival skills training, career development, and undergraduate researchexperiences are all tools to help the scholars. Some MEP Scholars are actively participating inthe following research projects: 1) Design and Development of an e-Health System, 2) Designand Development of an Electronic Health Records program, 3) Study of the Field Effect onCharge Transport through Conductive Polymers Injected in Vascular Channels of AngiospermLeaves, and 4) A 3D-printed desk organizer. In this paper, MEP Scholars briefly present theirprojects and share their thoughts and reflections about the
, curiosity, retention and accessibility ofknowledge, value-creation, and other desired learning outcomes. Much of the recent adoption ofactive and collaborative learning, self-directed learning, problem-based and project-basedlearning (PBL), peer to peer learning, and other similar learning strategies are aimed atdeveloping innovative and entrepreneurial mindset skills, but they have been limited to CapstoneDesign courses. Our aim is to develop the entrepreneurial mindset much earlier in the studentengineers’ undergraduate education.The Iron Range Engineering program is entrepreneurial in nature, based on continuousimprovement, self-directed learning, and reflective practice. Our student engineers learn incontext, by applying technical engineering
involved in that area of research. c American Society for Engineering Education, 2018 Preparation of the Professional Engineer: Outcomes from 20 years of a multidisciplinary and cross-sectoral capstone courseAbstractThe grand challenges outlined by the National Academy of Engineers and addressed by theABET (Accreditation Bureau for Engineering and Technology) learning outcomes reflect thechanging landscape of undergraduate engineering education. Indeed, to be competitive, the nextgeneration of engineering professionals must obtain skills and preparation beyond those in atraditional technical discipline. Accordingly, learners must principally demonstrate the ability to:understand ethics and social
, student andfaculty reflections and data received automatically by the game programs. Preliminary analysis ofstudent feedback and faculty reflections indicates increased learner motivation, enhanced reviewof technical content and an upbeat atmosphere to the classroom. Faculty reflections also notedthat the use of games that allow learners to answer the questions individually helped facultyidentify those students who had successfully mastered the concepts, which allowed the instructorto structure peer-to-peer active learning opportunities during class more effectively. Future workincludes analyzing test scores, and other measures of long-term retention of concepts. Overall,use of these gamification tools was found to be a significant addition to
which de-emphasizes subjectivity and emphasizes the “things” of experimental labssuch as equipment and processes, usually expressed as nouns and complex noun groups.Following the SFL framework, the teaching within the language enrichment course presentsappropriate language choices in relation to content (e.g., representing information from the lab ascomplex noun groups rather than verbs), organization (e.g., controlling the distribution of knownand new information across the paragraph to lead the reader through the processes described andimprove information flow), and interpersonal resources (e.g., hedging claims about experimentaldiscoveries in order to reflect the writer’s status as a novice academic researcher). Furtherinformation on
, we found that the patterns by gender reflect themesidentified in the literature for major preferences by gender. Zafar, for example, found that collegeaged women favored degree programs emphasized social responsibility, a concern for people andthe environment [15].Table 2: Analysis of students’ academic standing in the year following their departure fromengineeringColumn1 Women Men Count % Count %Not enrolled 205 16% 1733 20%Good Standing ProbationRemoved or Reinstated 28 14% 286 17%Switched Non Stem 92 7
torobotics, that leads to a two-pronged approach: 1) Supply talent to a growing industry, and 2)Start enterprises (ranging from projects to products to companies) to grow the industry, that is,both entrepreneurs and intrapreneurs.2.2. PROGRAM EDUCATIONAL OBJECTIVESProgram Educational Objectives (PEOs) define the context and the content of the program. OurPEOs have evolved to better reflect current educational terminology, but the core ideas remainunchanged. The PEOs are that graduates of the Robotics Engineering program are expected to: 1. Successfully a. attain professional careers in robotics and related industries, academia, and government; b. expand human knowledge through research and development
multidisciplinary project presented in this paper brings together the fields of structuralengineering and computer science to address an existing shortcoming in seismic reconnaissance.Presently, expert engineers are required to manually filter and tag post-earthquake images ofdamaged civil infrastructure (acquired from engineering inspection teams or other formal/socialmedia platforms); the collaborative research team is attempting to automate these time intensiveand technically challenging tasks by developing a robust deep learning (DL) algorithm.The research team is based out of California Polytechnic State University – San Luis Obispo, apredominantly undergraduate public university located on the West Coast. As a reflection of thisacademic environment
working in industry she completed a Ph.D. is in Interdisciplinary Engineering with a specific focus on engineering education from Texas A&M University. Her research areas of focus are faculty perspectives and growth through curriculum design and redesign, interdisciplinary teaching and learning, reflective eportfolios and professional development of graduate students related to teaching.Dr. Raymundo Arr´oyave, Texas A&M University Dr. Arroyave is a Professor in the Department of Materials Science and Engineering. He received his Ph. D. degree in Materials Science from the Massachusetts Institute of Technology. His teaching inter- ests include undergraduate courses on materials science and numerical methods and
programs will be covered.IntroductionMost degree programs that teach building engineering have design opportunities are often less thanideally constructed to reflect practical careers due to relatively few faculty members being trained, or theyhave no similar industry experience necessary to guide students [1]. Consequently in these settings, only asurface level understanding of their value is realized [2]. Many engineering students do not know how toapproach large complex systems due to their exposure to idealistic examples [3]. Additionally, they notcapable of providing critical multi-disciplinary integration of their designs due to the isolated nature oftopics in the classroom [4] [5]. Capstone courses provide a comprehensive evaluation of
where it is safe to trynew ideas without the performance pressures experienced in industry. This gives them theopportunity to develop their creative design skills and to produce new products that reflect thiscreativity such as: • a motor-driven fishing reel for anglers with the use of one arm • an inexpensive water-filtration system for countries with water challenges • a self-propelled longboard (skateboard) with braking capability • a plant watering system to maintain healthy, unattended house plants • an aluminum can-crushing device • a lighted, flounder-gigging pole designed for night use • an emergency cell phone charger that is shaker-activated • autonomous robots for regional competitions • a 3D puzzle
Economy. Working with amultidisciplinary student team for testing and reflection turned out to be very informative andinsightful.References[1] M. Amrine, “The Real Problem is in the Hearts of Men”, New York Times Magazine,June 23 1946, pp. 7.[2] M. Geissdoerfer, P. Savaget, N.M.P. Bocken and E.J. Hultink, “The Circular Economy –A new sustainability paradigm?” Journal of Cleaner Production. 143, 2017, pp. 757–768.doi:10.1016/j.jclepro.2016.12.048[3] E. mac Arthur, “Homepage of Ellen MacArthur Foundation”. [Online]. Available:https://www.ellenmacarthurfoundation.org/circular-economy [Accessed Jan. 26, 2018].[4] L.R. Lattuca, “Creating interdisciplinary: Interdisciplinary research and teaching amongcollege and university faculty”. Nashville, TN
and enhancethe mathematical and statistical aspects of AM for other disciplines. Hence, students’ learningcritically depends on an inter-domain experience consisting of inventory control, engineeringmathematics, and additive manufacturing. Keywords—Abstract Mathematical Concepts; Visual and Tactile Aids; LearningOutcomesIntroduction Students have been characterized by their learning styles which affect their ability tolearn and the teaching modalities that make teaching effective [1] [2]. The Felder-Silvermanmodel describes learning styles using the dimensions of Active/Reflective, Sensing/Intuitive,Visual/Verbal, and Sequential/Global [3]. The majority of undergraduate engineering studentswere classified as having an Active, Sensing
, undergraduate engineering students complete a two-semester interdisciplinarysenior design capstone project[1] – EGR 485 (winter term, 1 credit, design phase) andEGR 486 (summer term, 2 credits, build phase). This capstone experience reflects the“gold-standard” in that our students typically work on industry-sponsored projects thatinclude design and build phases, resulting in a working prototype and requiring sponsorsignoff approval prior to completion (and, hence, graduation). Most projects areinterdisciplinary in nature, requiring various combinations of students from our computer,electrical, mechanical and manufacturing degree programs (typically teams of 5-6students), to develop products that incorporate an assorted range of mechanical,electrical
InstitutionsTable 2 presents the mean responses for each scale (community, enjoyment, and value) at eachinstitution; possible values ranging from 0-4. For each scale, a 0 response would indicate theabsence of that scale, e.g. a score of 0 for Enjoyment would indicate that students found noenjoyment in their capstone projects. Similarly, a score of 4 for Community would reflect abelief that community service is extremely important. Scales that showed statistical differencebetween institutions are indicated with a **.Table 2: Overall response for Enjoyment, Value, and Community scales by institution Scale YCP Score Valparaiso Score Community** (p<0.001) M = 2.80±0.78
primarily for STEM students atcommunity and technical colleges. The responses from Honors students reflected afavorable experience toward history classes taken in secondary school and in the Honorsseminar. Several learners had AP history courses in high school, while one hadcompleted only an eighth grade world history class.The lone political science major was the most enthusiastic about studying history citingan “interest in colonization and how government originated…how political partiesoriginated and other areas such as finance policies, interest groups, and court cases.” Helisted a number of AP classes he took in high school in addition to history and politicalscience courses taken since he matriculated at TU.On the other hand, another student
pollution should be responsible for the cleanup. Reflecting on thepresumption that more than one party could be identified as a “contributor” of pollution,a percentage allocation must also be determined. Once an allocation has been made, itthen must be determined if the identified “contributor” has the ability to pay theproportionate share. Which of the identified parties possesses the financial resourcesand/or insurance coverage to pay for a cleanup? Pollution cases may require adetermination of whether employees or other individuals may have been impacted byenvironmental pollution and suffered either acute or chronic health effects.In pursuit of identifying responsible parties and implementing remedies for pollution orcontamination, this paper
participation equivalent to asingle 3 or 4-credit course. Building upon this credit structure, some academic units have establishedcredit-use policies that incentivize multiple semesters of participation in VIP [5]. However, whethercurricular incentives yield higher persistence has not been examined.The VIP model has been adopted by twenty-six colleges and universities, and at the Georgia Institute ofTechnology (Georgia Tech), additional departments continue to adopt and refine curricular policiesregarding the program. This expansion demands reflection on how policies affect student persistence inthe VIP program, and how other factors may contribute. We hypothesize that different Georgia Techcredit-use policies affect student persistence in different
previously incomplete. Chepén’s officials stated that the studentscarried out a conscientious work and had a positive valuation of the information collectedfrom local actors. Interviewee 2 stated that all the students’ work had been very fruitful interms of reflecting what the residents said, which had not been addressed in a comprehensivemanner previously due to lack of specialists.The students’ projects were feasible, consistent and applicable to the actual city context,which was highly appreciated by the city officials. During the workshop’s closure, the Mayorsaid that the municipality’s contingency plans were being drawn up using the course projectsas reference.In interviews, the former students of the course stated that they have substantially
experience.Assumptions: When asked to reflect on any underlying assumptions or perceptions the students may havebrought with them into the collaboration with the prompt, “what assumptions or perceptions didyou have about your counterparts prior to the experience?” Two themes emerged from thestudent responses: 1) No Assumptions and 2) Unhelpfulness (Table 4)Table 4: Summary of Assumption Themes Prompt: What assumptions or perceptions did you have about your counterparts prior to the experience? Assumption Themes Description A lack of awareness regarding counterparts prevented any No Assumptions preconceptions. The differences between the two groups of students
, the VIP Program is intended forstudents of sophomore rank and above. Freshmen who participate are exceptions to the rule, who oftenhave related experience and high motivation. The higher means reflect these traits. If the programactively recruited freshmen, the mean would likely approach that of or be lower than the sophomoremean.Analysis of variance on giving help also showed statistical significance for the number of semestersstudents were in VIP, with groupings of one, two, and three or more semesters. However, VIP experienceis related to academic rank, as both increase over time. The correlation is not one-to-one, because studentscan begin VIP at any academic rank, but they are related. This can be seen by visually mapping upperoutliers