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Gina Passante; Antje Kohnle – Physical Review Physics Education Research, 2024
When thinking about measurement uncertainty in a laboratory experiment that features quantum mechanical effects, it is important to consider both the physical principles of underlying quantum theory (e.g., the uncertainty due to quantum mechanical superposition states) as well as the limitations of the measurement (e.g., the spread in outcomes due…
Descriptors: Quantum Mechanics, Homework, Measurement, Science Laboratories
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Vilarta Rodriguez, Luiza; van der Veen, Jan T.; Anjewierden, Anjo; van den Berg, Ed; de Jong, Ton – Physics Education, 2020
This paper describes the design process for a digital instructional sequence on introductory quantum physics for upper secondary education. Based on a collaboration between teachers and physics education researchers, this sequence incorporates relevant theoretical foundations from the field of science teaching to promote meaningful and conceptual…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Secondary School Science
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Kohnle, Antje; Passante, Gina – Physical Review Physics Education Research, 2017
Analyzing, constructing, and translating between graphical, pictorial, and mathematical representations of physics ideas and reasoning flexibly through them ("representational competence") is a key characteristic of expertise in physics but is a challenge for learners to develop. Interactive computer simulations and University of…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Simulation
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Kohnle, Antje; Benfield, Cory; Hahner, Georg; Paetkau, Mark – Journal of Chemical Education, 2017
The QuVis Quantum Mechanics Visualization Project provides freely available research-based interactive simulations with accompanying activities for the teaching and learning of quantum mechanics across a wide range of topics and levels. This article gives an overview of some of the simulations and describes their use in an introductory physical…
Descriptors: Quantum Mechanics, Computer Simulation, Science Instruction, Physics
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O'Malley, Patrick J.; Agger, Jonathan R.; Anderson, Michael W. – Journal of Chemical Education, 2015
An analysis is presented of the experience and lessons learned of running a MOOC in introductory physical chemistry. The course was unique in allowing students to conduct experimental measurements using a virtual laboratory constructed using video and simulations. A breakdown of the student background and motivation for taking the course is…
Descriptors: Chemistry, Teaching Methods, Virtual Classrooms, Open Education
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Pedersen, Mads Kock; Skyum, Birk; Heck, Robert; Müller, Romain; Bason, Mark; Lieberoth, Andreas; Sherson, Jacob F. – Physical Review Physics Education Research, 2016
A virtual learning environment can engage university students in the learning process in ways that the traditional lectures and lab formats cannot. We present our virtual learning environment "StudentResearcher," which incorporates simulations, multiple-choice quizzes, video lectures, and gamification into a learning path for quantum…
Descriptors: Simulated Environment, Educational Technology, Technology Uses in Education, Quantum Mechanics
Murphy, P. J.; And Others – 1981
This report describes evaluations of two courses which were conducted, primarily through participant observation, in 1981. A general introduction looks at simulation in computer assisted learning (CAL) and at use of simulation CAL in the Open University science faculty. The first study discussed was based largely on a tutor's observations of…
Descriptors: College Students, Computer Assisted Instruction, Computer Simulation, Courseware