Paper ID #41895Interdiscipinary Project (ME/EE) for Students in Shop to Increase Conductivityof Aluminum StockGiselle S. Veach, University of IdahoDr. Herbert L. Hess, University of Idaho Herb Hess is Professor of Electrical Engineering at the University of Idaho. He received the PhD Degree from the University of Wisconsin-Madison in 1993. His research and teaching interests are in power electronics, electric machines and drives, electric ©American Society for Engineering Education, 2024 A Review and Proposal for Increasing Conductivity of Aluminum
Paper ID #42436Development of an Interactive, Game-Based Nuclear Science Museum Exhibiton Probabilistic Risk AssessmentCamille S. Levine, University of Maryland Camille Levine is a graduate student in the SyRRA Lab pursuing her Ph.D. in Reliability Engineering. She graduated from the University of Maryland in 2021 with a bachelor’s in Mechanical Engineering with a minor in Project Management. Her research focuses on enhancing the causal basis behind current human reliability analysis methods. She has also worked on human reliability analysis for external hazard probabilistic risk assessment, particularly in nuclear power
)Kinyua, A., Negusse, E., Adesua, E.D. Adedapo, A., Akingbola, T., Isa, A., Oshineye, O., Yazdandoust, F.,Adedoyin, A., Mirindi, D., Isola F., Payne K., Owusu, G.K., Mallory, K., Wilson, K., Houston, T., Peterson,M., Dzotcha, A., Ariyibi, A., Pramanik, S., Koissi, N., Moncrieffe, K., Damoah, R., Murdock, M., Dyson, K.,Almahdi, A., Bista, K., Gaulee, U., Peters, K., Owolabi, O., OladoKun, H., Addo E., Keels-Fields, T., Holmes,C. and Wilson, J. Morgan State University, 1700 East Cold Spring Lane, Baltimore, MD, USA.AbstractOur HBCU has a well-established record of providing quality college and pre -college programs in mostacademic disciplines in the state and the nation. We present our on-going experiences in thedevelopment and
withoutdelving into the intricacies of the diverse chemical reactions that may occur. In summary, thebrevity of topics in the VR game may not fully capture the inherent complexities of subsurfacehydrogen production operations.References 1. J.A. Okolie, B.R. Patra, A. Mukherjee, S. Nanda, A.K. Dalai, J.A. Kozinski, Futuristic applications of hydrogen in energy, biorefining, aerospace, pharmaceuticals and metallurgy, Int J Hydrogen Energy. 46 (2021) 8885–8905. https://doi.org/10.1016/j.ijhydene.2021.01.014. 2. IEA, "The Future of Hydrogen – Analysis," IEA, (2019). https://www.iea.org/reports/the- future-of-hydrogen. [Accessed May 14, 2023]. 3. S. Salahshoor, S. Afzal, "Subsurface technologies for hydrogen production from fossil
might live around these systems and facilities and be impacted bytheir presence for decades. While these logics may have served the field for decades, we are ofthe view that moving forward, particularly in the nuclear (and other energy) field(s), these logicsare going to become increasingly impractical. This is because of the growing interest in smallerscale (eventually perhaps even personalized) energy systems sited in much greater proximity topeople and communities than have the systems of the past. As a result, there is a growing interestfrom communities that might host these systems to shape key decisions about how these systemsand facilities are designed. Despite this shift, students are given little to no formal training onhow to frame
in a newlydefined core curriculum in our undergraduate courses, and a more integrated approach of differentdisciplines that is consistent with sustainable energy technologies.References:[1] Nall, D. H., “An Engineering Approach to Evaluating Energy Technology,” ASHRAE Journal, Vol. 61, Issue 10, October 2019.[2] Pacala, S., Socolow, R., “Stabilization Wedges: Solving the climate problem for the next 50 years with current technologies,” Science, Vol 305, Issue 5686, pp. 968-972, 13 Aug 2004. https://doi.org/doi:10.1126/science.1100103[3] The CMI at the High Meadows Environmental Institute at Princeton University https://cmi.princeton.edu/resources/stabilization-wedges/introduction/[4] Winters, J., “ASME’s unique approach to
&G) 2022/23 U.S. Higher EducationGrant titled- Data-driven Approach to Problem Solving in Engineering Education Using Greenhouse GasMitigation Experiments and Simulations and by VentureWell Grant ID-25827-22. Any opinions, findings,conclusions, or recommendations expressed in this material are those of the author(s) and do not necessarilyreflect the views of the funding agency.References[1] A. Mehta, "A COP where the world finally faced up to the need to wean itself off fossil fuels," Reuters, 15 December 2023. [Online]. Available: https://www.reuters.com/sustainability/climate-energy/cop-where-world-finally-faced-up- need-wean-itself-off-fossil-fuels-2023-12-15/. [Accessed 28 March 2024].[2] R. Jalli, P. P. Kumar, R. S. Nuvvula
-temperature[2] “Is sea level rising?” Accessed: Dec. 02, 2023. [Online]. Available: https://oceanservice.noaa.gov/facts/sealevel.html[3] A. Colbert, “Extreme Weather and Climate Change,” Climate Change: Vital Signs of the Planet. Accessed: Dec. 02, 2023. [Online]. Available: https://climate.nasa.gov/extreme- weather[4] “Physical Hydrogen Storage,” Energy.gov. Accessed: Dec. 02, 2023. [Online]. Available: https://www.energy.gov/eere/fuelcells/physical-hydrogen-storage[5] S. Zs. Al Ghafri et al., “Hydrogen liquefaction: a review of the fundamental physics, engineering practice and future opportunities,” Energy Environ. Sci., vol. 15, no. 7, pp. 2690–2731, 2022, doi: 10.1039/D2EE00099G.[6] M. Niermann, A. Beckendorff, M. Kaltschmitt
spentseveral weeks discussing the meaning of “equitable and sustainable STEM education.” Thegroup found that developing empathy for other communities is an important and recurring themeamong curricula that are designed with equity in mind [4-6], and hands-on activities arewidespread [6-8]. In addition, STEM literacy and the integration of multiple STEM areas werecommon themes [9-13]. Among all of the articles reviewed, the team found Jackson et al.’s“Equity-Oriented Conceptual Framework for K-12 STEM Literacy” [4] to be especially relevantand helpful in guiding the development of the lesson activities. Overarching themes thatappeared repeatedly in the team’s literature review and guided the subsequent work on theproject include the following
teach global software engineering.Proceedings of EDULEARN17 International Conference on Education and New LearningTechnologies, Barcelona, Spain.Darban, M. (2021). Learning in virtual student teams: an examination of sharedleadership. Journal of Research on Technology in Education, 1-18.https://doi.org/10.1080/15391523.2021.1916800Edstrom, W., Soderholm, D., Wedel, M. (2007). Teaching and learning. In E. Crawley, J.Malmqvist, S. Ostlund, & D. Brodeur (Eds.), Rethinking engineering education. The CDIOApproach (pp. 130-151). New York: Springer.Guo, P., Saab, N., Post, L. S., & Admiraal, W. (2020). A review of project-based learning in highereducation: Student outcomes and measures. International Journal of Educational Research, 102,1-13
]. Table 1: Measured wind resource in terms of Weibull parameters [17]. Weibull Distributions Month k c (m/s) VmW (m/s) January 1.64 5.64 5.04 February 1.6 6.78 6.08 March 1.82 6.73 6 April 1.41 4.83 4.39 May 1.7 5.7 5.1 June 1.95 6.35 5.66 July 2.02 7.66 6.78 August 1.87
analysis of battery charge controllers for comparing three off-gridPV power plants," Heliyon, vol. 7, no. 11, p. e08331, 2021/11/01/, https://doi.org/10.1016/j.heliyon.2021.e08331.[2] M. Can Filibeli, et al., "Embedded web server-based home appliance networks," Journal of Network & Comp.Appl., vol. 30, no. 2, pp. 499-514, 2007/04/01/, doi: https://doi.org/10.1016/j.jnca.2006.04.001.[3] M. K. Ghodki, "Microcontroller and solar power based electrical energy management system for renewableenergy applications," International Journal of Electrical Power & Energy Systems, vol. 44, no. 1, pp. 852-860,2013/01/01/ 2013, doi: https://doi.org/10.1016/j.ijepes.2012.08.041.[4] H. S. a. U. B. a. K. Harismah, "Design, Construction and Testing of Portable
in the competition, and theyintend to encourage at least one student group to participate in the competition in the future. Thecompetition team students who participated in the project said they gained more practicalexperience. However, they noted that it required dedication and time commitment. To betterassist the capstone students in the future, several sites and data will be provided for students whowould like an experience similar to the competition project. The capstone requirements would bemodified if they chose this option as their capstone project. This will not impact the capstoneproject timeline while providing a competition-like experience.References[1] A. S. Baitule and K. Sudhakar, “Solar Powered Green Campus: A simulation study