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Lu, Yang; Santino, Luciano M.; Acharya, Shinjita; Anandarajah, Hari; D'Arcy, Julio M. – Journal of Chemical Education, 2017
The design and fabrication of functional scientific instrumentation allows students to forge a link between commonly reported numbers and physical material properties. Here, a two-point and four-point probe station for measuring electrical properties of solid materials is fabricated via 3D printing utilizing an inexpensive benchtop…
Descriptors: Energy, Electronics, Energy Education, Power Technology
Roman, Harry T. – Technology and Engineering Teacher, 2014
A serious drawback to electric vehicles [batteries only] is the idle time needed to recharge their batteries. In this challenge, students can develop ideas and concepts for battery change-out at automotive service stations. Such a capability would extend the range of electric vehicles.
Descriptors: Motor Vehicles, Auto Mechanics, Power Technology, Energy Education
Caleon, I. S.; Wui, Ma. G. Lopez; Regaya, Ma. H. P. – Science Education International, 2015
The movement towards the use of the history of science and problem-based approaches in teaching serves as the impetus for this paper. This treatise aims to present and examine episodes in the lives of prominent scientists that can be used as resources by teachers in relation to enhancing students' interest in learning, fostering skills about…
Descriptors: Beliefs, Problem Based Learning, Science Education History, Scientists
Chen, Wang-Kun; Wang, Ping – Online Submission, 2012
This study presents a student-centered teaching model based on concept mapping and problem-solving. The concept map is used as a tool to develop curriculum and evaluate teaching performance. Case-based teaching was implemented on the course of building energy conservation. The results of this study, which include teaching plans, evaluation tools,…
Descriptors: Active Learning, Curriculum Development, Case Method (Teaching Technique), Energy Conservation

Reiva, Greg – Science Teacher, 2001
Presents the EnergyNet Energy Audit Project, a project-based curriculum on energy education. Includes ideas for working with the community and cost analysis. (YDS)
Descriptors: Cost Effectiveness, Critical Thinking, Energy Conservation, Energy Education

Maloney, David P. – Journal of Research in Science Teaching, 1985
Investigated methods science and nonscience majors use to make predictions about five situations involving the conservation of mechanical energy. Two findings, among others, show that subjects did not employ identifiable strategies in over 97 percent of the cases and show differences in the way majors and nonmajors worked the problems given.…
Descriptors: College Science, Energy, Energy Conservation, Energy Education

Lijnse, Piet – Science Education, 1990
Proposed is a scheme for concept development in teaching the topic of energy. Levels within the scheme are described, as well as their interrelationships and their relation to the student's own world. (KR)
Descriptors: Cognitive Processes, Concept Formation, Energy, Energy Education
Curow, Fred C., Jr. – Intercom, 1985
This simulation can be used to help secondary students examine the national and global energy issue. Students role-play various groups, including the Departments of Energy and Transportation, the U.S. Automobile Manufacturer's Association, oil lobby groups, conservation groups, citizen groups, a solar lobbying organization, and a nuclear power…
Descriptors: Conflict Resolution, Decision Making, Decision Making Skills, Energy

Jones, L. P. – School Science Review, 1986
Contains six articles on various aspects of British science education. Deals with problem solving, the common examining system and the science curriculum, a comparison of girls and physics in Australia and the United Kingdom, energy education, the use of observations in science and science teaching and science software. (TW)
Descriptors: College Science, Computer Uses in Education, Courseware, Energy Education