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Fongsamut, Kanokkarn; Tanasittikosol, Monsit; Phaksunchai, Mingkhuan – Physics Education, 2023
This research studied the effectiveness of the simulation-based learning assisted with scaffolding approach to address students' misconceptions (MCs) about projectile motion. The five MCs were related to the direction of the force acting on an object (MC1), the acceleration of an object at the top of the trajectory (MC2), the directions of…
Descriptors: Instructional Effectiveness, Simulation, Scaffolding (Teaching Technique), Misconceptions
Aydin, Mirac; Ozcan, Ibrahim – Physics Education, 2022
Advancements in mobile technologies have accelerated mobile Augmented Reality (AR), and many applications have been developed and presented in online stores. This study aims to evaluate the accuracy of the AR model of the Solar System simulated in mobile AR applications located in the Google Play Store. The applications were examined in the store…
Descriptors: Educational Technology, Computer Simulation, Astronomy, Telecommunications
Oktay, Ozlem; Avci, Zeynep; Sen, Ahmet Ilhan – Physics Education, 2022
The purpose of this study was to provide an online astronomy activity using the Stellarium program as a virtual planetarium. The implementation was conducted with 30 preservice primary school teachers (PPTs) who participated in a non-formal workshop that included interactive, technology-based astronomy practices embedded with the…
Descriptors: Astronomy, Science Instruction, Educational Technology, Computer Simulation
Kucukozer, Huseyin – Physics Education, 2008
In this study, prospective science teachers' misconceptions about the seasons and the phases of the Moon were determined, and then the effects of 3D computer modelling on their conceptual changes were investigated. The topics were covered in two classes with a total of 76 students using a predict-observe-explain strategy supported by 3D computer…
Descriptors: Astronomy, Science Teachers, Misconceptions, Science Instruction

do Couto Tavares, Milton; And Others – Physics Education, 1991
A mechanical analogy between the microscopic motion of a charged carrier in an ordinary resistor and the macroscopic motion of a ball falling along a slanted board covered with a lattice of nails is introduced. The Drude model is also introduced to include the case of inelastic collisions. Computer simulation of the motion is described. (KR)
Descriptors: Computer Simulation, Electricity, Laboratory Procedures, Misconceptions