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Samuel Jere; Mamotena Mpeta – Research in Science Education, 2024
One of the critical goals of teaching chemistry is to enable learners to gain conceptual understanding. Traditional instruction has often been associated with rote memorisation, resulting in learners failing to explain observed chemical phenomena, make predictions based on acquired concepts, advance convincing arguments, and engage in meaningful…
Descriptors: Computer Simulation, Concept Formation, Energy, Scientific Concepts
Mirjana Maricic; Stanko Cvjeticanin; Branko Andic; Mia Maric; Aleksandar Petojevic – Journal of Research on Technology in Education, 2024
This research aimed to determine the effectiveness of applying instructive simulation experiments (SE) to the development of deeper conceptual understanding, retention of static electricity contents, and engagement of 4th-grade students. The correlation between student achievements and engagement was examined. 76 4th graders (10-11 years) were…
Descriptors: Scientific Concepts, Science Education, Energy, Science Experiments
Ernesto Sánchez; Victor Nozair García-Ríos; Francisco Sepúlveda – Educational Studies in Mathematics, 2024
Sampling distributions are fundamental for statistical inference, yet their abstract nature poses challenges for students. This research investigates the development of high school students' conceptions of sampling distribution through informal significance tests with the aid of digital technology. The study focuses on how technological tools…
Descriptors: High School Students, Concept Formation, Thinking Skills, Skill Development
Alkmini Gogou; Kostas Kasvikis – Education 3-13, 2024
The aim of the paper is to analyse and discuss the results of research concerning the development of historical concepts by Greek primary education pupils when engaged in a history game based on ICT. For purposes of the research, an experimental intervention was implemented. It was addressed to 67 pupils aged 10-11 years old, using an application…
Descriptors: Computer Simulation, History Instruction, Technology Uses in Education, Children
Haas, Alison; Grapin, Scott; Simon, Katie; Llosa, Lorena; Lee, Okhee – Science and Children, 2021
As computational models are becoming more widely used with the release of "A Framework for K-12 Science Education" (NRC 2012) and the "Next Generation Science Standards" ("NGSS"; NGSS Lead States 2013), these models are reshaping the way science is practiced in increasingly diverse classrooms. For students classified…
Descriptors: Science Instruction, English Language Learners, Teaching Methods, Grade 5
Robson M. Araujo-Junior; Alec M. Bodzin – Interactive Learning Environments, 2024
Digital game-based and gamified technologies hold much promise to promote the development of learners' conceptual knowledge. This efficacy study used desktop virtual reality (dVR) to investigate how the place-based digital gameful learning experience (DGLE) "Watershed Explorers", implemented as a curriculum enhancement activity, impacted…
Descriptors: Game Based Learning, Place Based Education, Learning Experience, Middle School Students
Zoupidis, Anastasios; Spyrtou, Anna; Pnevmatikos, Dimitris; Kariotoglou, Petros – Themes in eLearning, 2018
In the present paper, we have examined the impact of explicit linkage between simulated (i.e., virtual) and real (i.e., physical) experimental settings in order to scaffold conceptual understanding, in the case of floating and sinking (F/S) phenomena explanations. This research is part of a research-based curriculum project and has been…
Descriptors: Computer Simulation, Science Experiments, Science Instruction, Concept Formation
Johnson, Heather Lynn; Hornbein, Peter; Azeem, Sumbal – Mathematics Teacher, 2016
The authors provide a dynamic Ferris wheel computer activity that teachers can use as an instructional tool to help students investigate functions. They use a student's work to illustrate how students can use relationships between quantities to further their thinking about functions.
Descriptors: Mathematics Instruction, Teaching Methods, Educational Technology, Computer Uses in Education
Luo, Wei; Pelletier, Jon; Duffin, Kirk; Ormand, Carol; Hung, Wei-chen; Shernoff, David J.; Zhai, Xiaoming; Iverson, Ellen; Whalley, Kyle; Gallaher, Courtney; Furness, Walter – Journal of Geoscience Education, 2016
The long geological time needed for landform development and evolution poses a challenge for understanding and appreciating the processes involved. The Web-based Interactive Landform Simulation Model--Grand Canyon (WILSIM-GC, http://serc.carleton.edu/landform/) is an educational tool designed to help students better understand such processes,…
Descriptors: Computer Simulation, Teaching Methods, Computer Uses in Education, Comparative Analysis
Howe, Christine; Devine, Amy; Tavares, Joana Taylor – International Journal of Science Education, 2013
When students reason during school science, they often refer to conceptions that are derived from out-of-school experiences and are poor proxies for science orthodoxy. However, for some areas of science, these conceptions represent only a proportion of students' full conceptual knowledge, for tacit understanding exists that is superior to the…
Descriptors: Science Instruction, Concept Formation, Abstract Reasoning, Computer Software
Cheng, Kun-Hung; Tsai, Chin-Chung – Journal of Science Education and Technology, 2013
Augmented reality (AR) is currently considered as having potential for pedagogical applications. However, in science education, research regarding AR-aided learning is in its infancy. To understand how AR could help science learning, this review paper firstly has identified two major approaches of utilizing AR technology in science education,…
Descriptors: Computer Simulation, Science Education, Computer Uses in Education, Inquiry
Kynigos, Chronis; Psycharis, Giorgos – International Journal for Technology in Mathematics Education, 2013
In this paper we aim to contribute to the process of networking between theoretical frames in mathematics education by means of forging connections between Constructionism and Instrumental Theory to discuss a design for instrumentalisation. We specifically focus on instrumentalisation, i.e. the ways in which students make changes to digital…
Descriptors: Mathematics Education, Educational Technology, Computer Software, Teaching Methods
Chen, Yu-Lung; Pan, Pei-Rong; Sung, Yao-Ting; Chang, Kuo-En – Educational Technology & Society, 2013
Computer simulation has significant potential as a supplementary tool for effective conceptual-change learning based on the integration of technology and appropriate instructional strategies. This study elucidates misconceptions in learning on diodes and constructs a conceptual-change learning system that incorporates…
Descriptors: Computer Simulation, Concept Formation, Misconceptions, Electronics
Herbert, Sandra – Mathematics Education Research Group of Australasia, 2012
This paper reports on the different gesture types employed by twenty-three Year 10 students as they endeavoured to explain their understanding of rate of change associated with the functions resulting from two different computer simulations. These gestures also have application to revealing students' understanding of functions. However,…
Descriptors: Nonverbal Communication, Secondary School Students, Computer Simulation, Mathematics Instruction
Dega, Bekele Gashe; Kriek, Jeanne; Mogese, Temesgen Fereja – Journal of Research in Science Teaching, 2013
The purpose of this study was to investigate Ethiopian physics undergraduate students' conceptual change in the concepts of electric potential and energy (EPE) and electromagnetic induction (EMI). A quasi-experimental design was used to study the effect of cognitive perturbation using physics interactive simulations (CPS) in relation to cognitive…
Descriptors: Energy, Magnets, Scientific Concepts, Concept Formation