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Kinczkowski, Linda; Cardon, Phillip; Speelman, Pamela – Technology and Engineering Teacher, 2015
This paper provides examples of Aid-to-Thought uses in urban decision making, classroom laboratory planning, and in a ship antiaircraft defense system. Aid-to-Thought modeling and simulations are tools students can use effectively in a STEM classroom while meeting Standards for Technological Literacy Benchmarks O and R. These projects prepare…
Descriptors: Technological Literacy, Benchmarking, Computer Simulation, Computer Graphics
Pallant, Amy; Lee, Hee-Sun; Pryputniewicz, Sara – Science Teacher, 2012
Systems thinking suggests that one can best understand a complex system by studying the interrelationships of its component parts rather than looking at the individual parts in isolation. With ongoing concern about the effects of climate change, using innovative materials to help students understand how Earth's systems connect with each other is…
Descriptors: Climate, Teaching Methods, Computer Simulation, Electronic Learning
Saldana, Matt; Rodden, Leslie – Leadership, 2012
In this article, the authors discuss how educators can engage students in real world learning using their academic knowledge and technical skills. They describe how school districts have discovered that the world of robotics can help students use technical skills to solve simulated problems found in the real world, while understanding the…
Descriptors: Teaching Methods, Technology Education, World Problems, Problem Based Learning
Bollin, Andreas; Hochmuller, Elke; Mittermeir, Roland; Samuelis, Ladislav – IEEE Conference on Software Engineering Education and Training, Proceedings (MS), 2012
Software Engineering education must account for a broad spectrum of knowledge and skills software engineers will be required to apply throughout their professional life. Covering all the topics in depth within a university setting is infeasible due to curricular constraints as well as due to the inherent differences between educational…
Descriptors: Engineering Education, Computer Software, Integrated Curriculum, Computer Simulation
Ellington, Henry – Simulation & Gaming, 2012
In this invited autobiography, the author describes the impact that educational gaming and simulation has had on his professional career. He begins by reviewing his early life and education in Aberdeen and his subsequent work as a research scientist, schoolteacher, and physics lecturer. He then shows how he changed disciplines from physics to…
Descriptors: Curriculum Development, Educational Games, Systems Approach, Autobiographies
Maixner, Michael R.; Noyd, Robert K.; Krueger, Jerome A. – Journal of Natural Resources and Life Sciences Education, 2010
To assist student understanding of heat transfer through woody stems, we developed an instructional package that included an Excel-based, one-dimensional simulation model and a companion instructional worksheet. Guiding undergraduate botany students to applying principles of thermodynamics to plants in nature is fraught with two main obstacles:…
Descriptors: Plants (Botany), Computer Simulation, Thermodynamics, Heat
Young, William, II; Franklin, Teresa; Cooper, Tessa; Carroll, Stephen; Liu, Chang – Journal of Interactive Learning Research, 2012
In an age of technological advancement, video games have been found to be effective teaching aids in middle school science classrooms. A National Science Foundation (NSF) project at Ohio University, known as STEAM, (Science and Technology Enrichment for Appalachian Middle Schoolers), has examined Second Life as a curriculum aid through the design,…
Descriptors: Video Games, Middle Schools, Secondary School Science, Educational Games
Lee, C. P.; Uluagac, A. S.; Fairbanks, K. D.; Copeland, J. A. – IEEE Transactions on Education, 2011
This paper describes a competition-style of exercise to teach system and network security and to reinforce themes taught in class. The exercise, called NetSecLab, is conducted on a closed network with student-formed teams, each with their own Linux system to defend and from which to launch attacks. Students are expected to learn how to: 1) install…
Descriptors: Computer Security, Teaching Methods, Computer Networks, Computer Science Education
Wittman, William – EDUCAUSE Quarterly, 2010
Students in information technology (IT) need realistic, hands-on experience to master IT skills. When students have the opportunity to train with a hands-on curriculum and prepare to certify in the IT field, they become more deeply engaged in both their education and their career path. This article discusses LabSim, an IT certification training…
Descriptors: Information Technology, Hands on Science, Science Process Skills, Science Course Improvement Projects
Barella, A.; Valero, S.; Carrascosa, C. – IEEE Transactions on Education, 2009
This paper presents a new environment for teaching practical work in AI subjects. The main purpose of this environment is to make AI techniques more appealing to students and to facilitate the use of the toolkits which are currently widely used in research and development. This new environment has a toolkit for developing and executing agents,…
Descriptors: Research and Development, Science Education, Case Studies, Teaching Methods
Barry, Dana – Science Education Review, 2005
This article describes how students learn and experience the excitement of science by actively participating in the MarsLink Space Mission, an educational component of the National Aeronautics and Space Administration's (NASA) Mars Missions. This Mission has been made possible by Space Explorers, Inc., in collaboration with NASA. In the…
Descriptors: Space Exploration, Space Sciences, Science Projects, Science Activities
Mclaughlan, R. G.; Kirkpatrick, D. – European Journal of Engineering Education, 2004
Increasingly, professional university programmes seek to develop graduates' generic skills and capabilities and their capacity to transfer skills to new situations. Professionally-oriented study should demonstrate not only academic rigour, but also genuine relevance and value to the profession. In disciplines such as science and engineering this…
Descriptors: Learner Engagement, Economic Development, Active Learning, Foreign Countries