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Sauter, Megan; Uttal, David H.; Rapp, David N.; Downing, Michael; Jona, Kemi – Distance Education, 2013
Teachers use remote labs and simulations to augment or even replace hands-on science learning. We compared undergraduate students' experiences with a remote lab and a simulation to investigate beliefs about and learning from the interactions. Although learning occurred in both groups, students were more deeply engaged while performing the remote…
Descriptors: Distance Education, Video Technology, Undergraduate Students, Hands on Science
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Onorato, P.; Mascheretti, P.; DeAmbrosis, A. – European Journal of Physics, 2012
In this paper, we describe how simple experiments realizable by using easily found and low-cost materials allow students to explore quantitatively the magnetic interaction thanks to the help of an Open Source Physics tool, the Tracker Video Analysis software. The static equilibrium of a "column" of permanents magnets is carefully investigated by…
Descriptors: Physics, Science Instruction, Magnets, Interaction
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Krišták, L'uboš; Nemec, Miroslav; Danihelová, Zuzana – Informatics in Education, 2014
The paper presents results of "non-traditional" teaching of the basic course of Physics in the first year of study at the Technical University in Zvolen, specifically teaching via interactive method enriched with problem tasks and experiments. This paper presents also research results of the use of the given method in conditions of…
Descriptors: Foreign Countries, Physics, Science Instruction, College Science