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Fatni Mufit; Yeka Hendriyani; Muhammad Dhanil – Journal of Turkish Science Education, 2024
This research aims to design immersive virtual reality with cognitive conflict to support practical learning of quantum physics. This type of research is design research through the stages of needs analysis, product design, validity test, and practicality test. The needs analysis used questionnaire sheets distributed with Google Forms and obtained…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
Hughes, Ciaran; Isaacson, Joshua; Turner, Jessica; Perry, Anastasia; Sun, Ranbel – Physics Teacher, 2022
Quantum computing is a growing field at the intersection of physics and computer science. The goal of this article is to highlight a successfully trialled quantum computing course for high school students between the ages of 15 and 18 years old. This course was designed to bridge the gap between popular science articles and advanced undergraduate…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
Nyirahabimana, Pascasie; Minani, Evariste; Nduwingoma, Mathias; Kemeza, Imelda – Journal of Baltic Science Education, 2023
The research on students' perceptions after implementing a teaching style is recommended due to its potential to inform reformed education. The present study surveyed 319 students and revealed their perceptions of multimedia usage in teaching and learning quantum physics. Among these students, 156 were surveyed after learning quantum physics with…
Descriptors: Physics, Science Instruction, Computer Simulation, Video Technology
Freericks, J. K.; Cutler, D.; Kruse, A.; Vieira, L. B. – Physics Teacher, 2019
We describe a new style of MOOC designed to engage students with an immersive multimedia environment including text, images, video lectures, computer-based simulations, animations, and tutorials. Quantum Mechanics for Everyone is currently running on edX and has been successful by a number of different measures. Building on the pioneering work of…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Large Group Instruction
Fisher, Aidan A.E. – Journal of Chemical Education, 2019
Computational approaches toward simulating chemical systems and evaluating experimental data has gathered great momentum in recent years. The onset of more powerful computers and advanced software has been instrumental to this end. This manuscript presents a hands-on activity which trains students in basic coding skills within the Matlab…
Descriptors: Computer Software, Chemistry, Quantum Mechanics, Energy
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
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
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
Sayer, Ryan; Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2017
Learning quantum mechanics is challenging, even for upper-level undergraduate and graduate students. Research-validated interactive tutorials that build on students' prior knowledge can be useful tools to enhance student learning. We have been investigating student difficulties with quantum mechanics pertaining to the double-slit experiment in…
Descriptors: Quantum Mechanics, Interaction, Tutorial Programs, Student Improvement
Jewett, John W., Jr. – Physics Teacher, 2015
The notion of bringing technology into the classroom has been the subject of many recent presentations at conferences and papers in physics teaching journals. The use of devices such as laptops, smartphones, tablets, and clickers is rising in today's classrooms and laboratories. PhET simulations have been available online for over a decade. A…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Simulation
Teaching Basic Quantum Mechanics in Secondary School Using Concepts of Feynman Path Integrals Method
Fanaro, Maria de los Angeles; Otero, Maria Rita; Arlego, Marcelo – Physics Teacher, 2012
This paper discusses the teaching of basic quantum mechanics in high school. Rather than following the usual formalism, our approach is based on Feynman's path integral method. Our presentation makes use of simulation software and avoids sophisticated mathematical formalism. (Contains 3 figures.)
Descriptors: Quantum Mechanics, Secondary School Science, Science Instruction, Teaching Methods
Facao, M.; Lopes, A.; Silva, A. L.; Silva, P. – European Journal of Physics, 2011
We propose an undergraduate numerical project for simulating the results of the second-order correlation function as obtained by an intensity interference experiment for two kinds of light, namely bunched light with Gaussian or Lorentzian power density spectrum and antibunched light obtained from single-photon sources. While the algorithm for…
Descriptors: Computer Simulation, Optics, Mathematics, Quantum Mechanics
Garriz, Abel E.; Sztrajman, Alejandro; Mitnik, Dario – European Journal of Physics, 2010
The propagation in time of a wavepacket is a conceptually rich problem suitable to be studied in any introductory quantum mechanics course. This subject is covered analytically in most of the standard textbooks. Computer simulations have become a widespread pedagogical tool, easily implemented in computer labs and in classroom demonstrations.…
Descriptors: Textbooks, Quantum Mechanics, Science Instruction, Introductory Courses
Singh, Gurmukh – Journal of Educational Technology Systems, 2012
The present article is primarily targeted for the advanced college/university undergraduate students of chemistry/physics education, computational physics/chemistry, and computer science. The most recent software system such as MS Visual Studio .NET version 2010 is employed to perform computer simulations for modeling Bohr's quantum theory of…
Descriptors: Undergraduate Students, Quantum Mechanics, Physics, Chemistry
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
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