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Lawson, Hal A. – Quest, 2020
Employing the ideal type of "The Physical Education System," in this analysis I explore the import of systems frameworks for new institutional designs which hold promise for better outcomes. The inherited idea of a system is restricted to the relationship between teacher education and school programs. It draws on the developmental…
Descriptors: Physical Education, Social Influences, Design, Kinetics
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Boys, Alexander J.; Walsh, Mark C. – Journal of Chemical Education, 2019
Elementary and middle school science curricula typically focus on generating an interest in science and engineering through the use of hands-on activities that demonstrate specific concepts. Laboratory activities designed in this manner often circumvent some of the main challenges that engineers and scientists face, namely balancing advantages and…
Descriptors: Elementary School Students, Middle School Students, Science Instruction, Science Laboratories
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Orr, Marisa K.; Jordan, Shawn S. – Advances in Engineering Education, 2019
Dynamics of Machine Elements is a junior-level course in mechanical engineering that covers the kinematics (motion) and kinetics (causes of motion) of machine elements such as linkages, cams, and gear trains. This paper describes the results of adding a Rube Goldberg Machine Contest® project to the course to address student concerns over the lack…
Descriptors: Teaching Methods, Motion, Kinetics, Equipment
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Amir, Nazir; Abdullah, Nor'Aini Bte – Physics Education, 2021
A way to promote student interest and engagement in physics is by capitalizing on students' skills in arts and crafts to design and make physics-based toys. This article illustrates how two students (averaging 14 years of age) in the authors' science class designed and fabricated a variation of a physics-based teaching aid that demonstrates the…
Descriptors: Foreign Countries, Science Interests, Physics, Learner Engagement
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Schultz, Kelly M.; Snyder, Mark A. – Chemical Engineering Education, 2019
A hands-on educational module was created to illustrate the scope of chemical engineering. Students are taught fundamental concepts that they integrate in a laboratory experience designing and fabricating a 'plant-on-a-chip' microfluidic device capable of continuous processing of reactive flows. Students gain insight into chemical engineering…
Descriptors: Chemical Engineering, STEM Education, Outreach Programs, Student Recruitment
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Temiz, Burak Kagan – Physics Education, 2014
This study was conducted to develop a simple and inexpensive experimental apparatus that can measure the position of an object moving along a straight line at certain time intervals. For the construction of the apparatus, a battery-powered toy car, a fine-tipped paint brush, gouache (or watercolour) paint and paper tape were used. The working…
Descriptors: Kinetics, Science Equipment, Science Experiments, Cost Effectiveness
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McLaughlin, Cheryl A.; McLaughlin, Felecia C.; Pringle, Rose M. – Science and Children, 2013
This article presents the experiences of Miss Felecia McLaughlin, a fourth-grade teacher from the island of Jamaica who used the model proposed by Bass et al. (2009) to assess conceptual understanding of four of the six types of simple machines while encouraging collaboration through the creation of learning teams. Students had an opportunity to…
Descriptors: Grade 4, Scientific Concepts, Scientific Principles, Mechanics (Process)
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Carlson, Eric D.; Gast, Alice P. – Chemical Engineering Education (CEE), 1998
Presents an open-ended project tailored for a senior kinetics and reactor design course in which basic reactor design equations are used to model the digestive systems of several animals. Describes the assignment as well as the results. (DDR)
Descriptors: Animals, Chemical Engineering, Course Content, Design