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Becker, Sebastian; Küchemann, Stefan; Klein, Pascal; Lichtenberger, Andreas; Kuhn, Jochen – Physical Review Physics Education Research, 2022
Eye tracking enables the reconstruction of eye movements and thus the analysis of visual information selection and integration processes during problem solving. In this way, learner-specific difficulties can be identified and problem-solving process can be adapted accordingly. For such an adaptation, the prediction of response behavior plays a…
Descriptors: Foreign Countries, High School Students, Eye Movements, Visual Stimuli
Wörner, Salome; Fischer, Christian; Kuhn, Jochen; Scheiter, Katharina; Neumann, Irene – Physics Teacher, 2021
Video motion analysis allows tracing trajectories of objects in motion and is an established method in physics education. Tablet computers, with their integrated cameras, offer the opportunity to both record and analyze dynamic motions during experiments on a single device. This enables students to work without transitioning the data between…
Descriptors: Video Technology, Motion, Astronomy, Science Instruction
Hochberg, Katrin; Becker, Sebastian; Louis, Malte; Klein, Pascal; Kuhn, Jochen – Journal of Science Education and Technology, 2020
Mobile devices (smartphones or tablets) as experimental tools (METs) offer inspiring possibilities for science education, but until now, there has been little research studying this approach. Previous research indicated that METs have positive effects on students' interest and curiosity. The present investigation focuses on potential cognitive…
Descriptors: Telecommunications, Handheld Devices, Teaching Methods, Science Instruction
Becker, Sebastian; Thees, Michael; Kuhn, Jochen – Physics Teacher, 2018
A magnetic linear accelerator (or Gauss accelerator) is a device that uses the conversion of magnetic energy into kinetic energy to launch an object with high velocity. A simple experimental implementation consists of a line of steel spheres in which the first one is a permanent magnetic sphere. If another steel ball collides with the magnetic…
Descriptors: Equipment, Magnets, Energy, Kinetics
Vogt, Patrik; Kuhn, Jochen – Physics Teacher, 2014
It has been illustrated several times how the built-in acceleration sensors of smartphones can be used gainfully for quantitative experiments in school and university settings (see the overview in Ref. 1 ). The physical issues in that case are manifold and apply, for example, to free fall, radial acceleration, several pendula, or the exploitation…
Descriptors: Handheld Devices, Mechanics (Physics), Motion, Computation
Hochberg, Katrin; Kuhn, Jochen; Müller, Andreas – Journal of Science Education and Technology, 2018
Smartphones as experimental tools (SETs) offer inspiring possibilities for science education, as their built-in sensors allow many different measurements, but until now, there has been little research that studies this approach. Due to current interest in their development, it seems necessary to provide empirical evidence about potential effects…
Descriptors: Handheld Devices, Telecommunications, Educational Technology, Technology Uses in Education
Kuhn, Jochen; Vogt, Patrik – European Journal of Physics Education, 2013
New media technology becomes more and more important for our daily life as well as for teaching physics. Within the scope of our N.E.T. research project we develop experiments using New Media Experimental Tools (N.E.T.) in physics education and study their influence on students learning abilities. We want to present the possibilities e.g. of…
Descriptors: Handheld Devices, Telecommunications, Physics, Science Instruction