increases in confidence for this high school students were in Computer Engineering (from 2.7 to 7.3), Biomedical Engineering (from 3.8 to 7.4), and Neurology (from 1.3 to 7.4). The data reflects their confidence in their knowledge, not their knowledge of that material. We did not conduct any final examinations on the material. The increase in confidence can be traced to the interaction between the high school students, undergraduates, graduate students, faculty, and industry professionals working in that area. When the students were working on their project, their knowledge was constantly being strengthened and reinforced by their partners. Therefore, a potential benefit of the proposed holistic approach is significantly
Learning,” Palo Alto, CA: Davies-black Publishing11. Dale, E. (1969), “Audiovisual Methods in Teaching,” (3rd ed.), New York: Dryden Press.12. Wankat, P.H. (1999), “Reflective Analysis of Student Learning in a Sophomore Engineering Course,” Journal ofEngineering Education, Vol.88, (no.2), 195 -203.13. Finelli, C., Klinger, A., & Budny, D.D. (2001), “Strategies for Improving the Classroom Environment,” Journalof Engineering Education, Vol 90, (no.4), pp. 491-497.14. Smith, K.A., Sheppard, A.D., Johnson, D.W. & Johnson, R.T. (2005), “Pedagogies of Engagement: Classroom-Based Practices,” Journal of Engineering Education, Vol. 94 (no.1), pp. 87-101
warranty, express or implied, orassumes any legal liability or responsibility for the accuracy, completeness, or usefulnessof any information, apparatus, product, or process disclosed, or represents that its usewould not infringe privately owned rights. Reference herein to any specific commercialproduct, process, or service by trade name, trademark, manufacturer, or otherwise doesnot necessarily constitute or imply its endorsement, recommendation, or favoring by theUnited States Government or any agency thereof. The views and opinions of authorsexpressed herein do not necessarily state or reflect those of the United States Governmentor any agency thereof.”Bibliography[1] Buonopane R. A. (1997), "Engineering Education for the 21st Century: Listen
many cases is or will be aligned with the GrandChallenges of Engineering as identified by the National Academy of Engineering 7. The partnersprovide our students both with interactions with their engineers and with educational contentaround the selected theme and their company’s related efforts. The theme, in turn, is reflected ina physical presence in the form of a theme-lobby on a floor of the residence hall. Partners onboard at the time of this writing include Consumers Energy, sponsor of the energy theme, and Page 25.645.2GE, sponsor of the transportation theme.Conversations are ongoing with additional potential partners. In addition, the
application/acceptance process.The fourth area identified by the solar energy industry is utility management. Although there isno specific degree associated with utility management, individuals are needed who possessworking knowledge of centrally generated and distributed generation of electricity as well asknowledge of utility scale generation. The successful individuals tend to have some workingexperience within an electric utility company.Wind Industry NeedsThe participation in this project by the wind industry was less robust than the solar industry.This may be a reflection of its infancy of the industry within the state. Regardless, the types ofjobs foreseen by the wind industry revolve largely around maintenance of wind turbinegenerators, which
places where the EPICS course has appeared is in careers exploration courses. Thesekinds of experiences allow students to explore different “jobs” as they rotate different roles onthe teams. Appropriate reflections can build on the experience to give students a deepunderstanding of opportunities for careers, casting the careers in the context of needs in theirown communities.Partnerships with EPICS High Engineering-based projects require many levels of partnerships from the community,government and private sectors. In the community, long term partnerships are needed betweenschools and community organizations. The EPICS Program has demonstrated the need andvalue of long-term community partnerships. First, in the quality of work that is
provided a way to reflect and improve the program. Ourwork developed similar conclusions. In a survey done to characterize programs collaborating withindustry partners across the country, it was noted that in most cases these collaborations lead tosuccess, but warrant further discussion and investigation 3 . Industry-academia collaborations alsofind a place in accreditation guidelines which makes it even more attractive to both academic andindustry partners 4 . Similar observations and experiences have been discussed in additional priorwork as well 5,6,7,8 , echoing many of the conclusions reached in our present work.Many of the academia-industry collaborations revolve around the senior design or capstoneproject experience, where an industry