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Demircioglu, Tuba; Karakus, Memet; Ucar, Sedat – Science & Education, 2023
Due to the COVID-19 pandemic and adapting the classes urgently to distance learning, directing students' interest in the course content became challenging. The solution to this challenge emerges through creative pedagogies that integrate the instructional methods with new technologies like augmented reality (AR). Although the use of AR in science…
Descriptors: Critical Thinking, Thinking Skills, Persuasive Discourse, Computer Simulation
Ferguson, Joseph Paul – Research in Science Education, 2022
In science education, there is a now established focus on fostering students' meaning making through/as multimodal representations as part of their induction into the epistemic practices of the discipline. Increasingly, this agenda is aligned with an emphasis on nurturing students' creative reasoning, as researchers move to enrich theories of…
Descriptors: Science Education, Creative Thinking, Grade 10, Science Activities
Atalay, Nurhan; Mutlu, Mehmet – Elementary School Forum (Mimbar Sekolah Dasar), 2023
Today, teaching strategies and methods changing with technology require a radical transformation in the teaching of science laws, which form the basis of science subjects. In this study, computational thinking skills, which will allow students to use information and communication technologies in today's conditions and the effect of these skills on…
Descriptors: Computer Simulation, Science Education, Knowledge Level, Scientific Concepts
Sumardani, Dadan; Sipayung, Elly Ramadhani; Chiu, Po-Sheng – Innovations in Education and Teaching International, 2023
The crystal structure is an important topic in the STEM field and the basic knowledge to determine the material structure and its behaviour. There is a wealth of literature on three-dimensional (3D) and augmented reality (AR) technology to represent 3D crystal environments to provide a new way of visualisation and to foster spatial skills. This…
Descriptors: Spatial Ability, Thinking Skills, Computer Simulation, Physical Sciences
Arici, Faruk; Yilmaz, Mehmet – Journal of Computer Assisted Learning, 2023
Background: Augmented reality (AR) is a widely used technology in science education today. Problem-based learning (PBL) is one of the teaching methods employed in science education for a long time. Studies where AR and PBL are used together are new and rare. PBL and AR technology are used together in the study because it is believed that…
Descriptors: Computer Simulation, Problem Based Learning, Science Education, Educational Technology
Zsolt Molnár; Marianna Radács; Márta Gálfi – International Electronic Journal of Elementary Education, 2024
The study of complexity is an important part of science education. This paper presents a pedagogical option that includes potentially feasible field solutions for complex science teachers. This work aims to examine how fieldwork has appeared in the international literature over the past five years and to explore the algorithms that can be used to…
Descriptors: Elementary School Curriculum, Field Studies, Integrated Curriculum, Science Education
Clark, Douglas B.; Sengupta, Pratim – Interactive Learning Environments, 2020
This paper situates a critical review of studies that we have conducted within the broader research literature to analyze the affordances of integrating modeling within disciplinarily-integrated games from computational thinking and science as practice perspectives. Across the studies, the analyses pursue two themes: (a) the role of agent-based…
Descriptors: Game Based Learning, Thinking Skills, Computer Games, Science Education
Develaki, Maria – Science & Education, 2017
Scientific reasoning is particularly pertinent to science education since it is closely related to the content and methodologies of science and contributes to scientific literacy. Much of the research in science education investigates the appropriate framework and teaching methods and tools needed to promote students' ability to reason and…
Descriptors: Computer Simulation, Epistemology, Educational Philosophy, Science Education
Chang, Hsin-Yi; Liang, Jyh-Chong; Tsai, Chin-Chung – Journal of Science Education and Technology, 2020
We engaged 47 eighth-grade students in a newly developed learning environment that integrates mobile augmented reality (AR) technology to support students' learning of nuclear energy use and radiation pollution, a topic related to a socioscientific issue (SSI) that involves complex reasoning considering scientific evidence and multiple…
Descriptors: Middle School Students, Grade 8, Handheld Devices, Computer Simulation
Papadakis, Stamatios, Ed.; Kalogiannakis, Michail, Ed. – Lecture Notes in Educational Technology, 2022
This book brings together a collection of work from around the world in order to consider effective STEM, robotics, mobile apps education from a range of perspectives. It presents valuable perspectives--both practical and theoretical--that enrich the current STEM, robotics, mobile apps education agenda. As such, the book makes a substantial…
Descriptors: STEM Education, Robotics, Computer Oriented Programs, Handheld Devices
Meng-Fei Cheng; Jang-Long Lin; Shih-Yin Lin; Chi-Ho Cheng – Journal of Baltic Science Education, 2017
This research explores how scaffolding students' reflections on scientific modeling criteria influence the students' views on scientific models, development of explanatory models, and understanding of scientific models. This research recruited treatment groups and comparison groups in middle schools and high schools. The treatment groups adopted a…
Descriptors: Secondary School Students, Science Education, Modeling (Psychology), Learner Engagement
Estwick, Noel M.; Griffin, Richard W.; James, Annette A.; Roberson, Samuel G. – Journal of Extension, 2016
There have been numerous efforts aimed at improving geographic literacy in order to address societal challenges. Extension educators can use geographic information system (GIS) technology to help their clients cultivate spatial thinking skills and solve problems. Researchers can use it to model relationships and better answer questions. A program…
Descriptors: Extension Education, Geographic Information Systems, Experiential Learning, Science Education
Cheng, Meng-Fei; Cheng, Yufang; Hung, Shuo-Hsien – Teaching Science, 2014
Based on our experience of teaching physics in middle and senior secondary school, we have found that students have difficulty in reasoning at the microscopic level. Their reasoning is limited to the observational level so they have problems in developing scientific models of magnetism. Here, we suggest several practical activities and the use of…
Descriptors: Thinking Skills, Magnets, Science Education, Computer Simulation
Wu, Hsin-Kai; Wu, Pai-Hsing; Zhang, Wen-Xin; Hsu, Ying-Shao – Science Education, 2013
Drawing upon the literature in computational modeling, multivariable reasoning, and causal attribution, this study aims at characterizing multivariable reasoning practices in computational modeling and revealing the nature of understanding about multivariable causality. We recruited two freshmen, two sophomores, two juniors, two seniors, four…
Descriptors: College Students, Thinking Skills, Logical Thinking, Semi Structured Interviews
Hsiao, Hsien-Sheng; Chang, Cheng-Sian; Lin, Chien-Yu; Wang, Yau-Zng – Interactive Learning Environments, 2016
This study focused on how to enhance the interactivity and usefulness of augmented reality (AR) by integrating manipulative interactive tools with a real-world environment. A manipulative AR (MAR) system, which included 3D interactive models and manipulative aids, was designed and developed to teach the unit "Understanding Weather" in a…
Descriptors: Foreign Countries, Weather, Elementary School Science, Science Education
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