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Lili Yan; Chungsoo Na; Jina Kang – Journal of Science Education and Technology, 2024
Collaborative problem-solving (CPS) includes multiple socio-cognitive processes that can be challenging to investigate. Constructing arguments is a key practice at the intersection of CPS and science learning. To understand how students construct arguments and develop science knowledge during CPS, we focus on team synchrony--the extent of…
Descriptors: Persuasive Discourse, Cooperative Learning, Problem Solving, Science Education
Jennifer Newell-Caito; Edward Bernard – Journal of Chemical Education, 2024
Pedagogical research over the past decade has shown that chemistry courses have high failure rates and low accessibility. The implementation of novel active-learning approaches has great potential to offset these trends. Fundamental concepts that serve as "pinch points" are ripe targets for designing innovative, gamified course materials…
Descriptors: Game Based Learning, Educational Technology, Chemistry, Science Education
Liu, Min; Cai, Ying; Han, Songhee; Shao, Peixia – Journal of Learning Analytics, 2022
Research on learning analytics (LA) has focused mostly at the university level. LA research in the K-12 setting is needed. This study aimed to understand 4,115 middle school students' learning paths based on their behavioural patterns and the relationship with performance levels when they used a digital learning game as their science curriculum.…
Descriptors: Learning Analytics, Navigation, Game Based Learning, Middle School Students
Stephen M. Fitzjohn; Alice M. Semenenko; Frances M. MacMillan – Advances in Physiology Education, 2025
In response to a decline in the numeracy skills and confidence of first-year biomedical science undergraduate students, a series of quizzes was developed to encourage students to practice their numeracy skills with topic-related problems. The quizzes were created using existing tools in the online learning platform Blackboard (Blackboard, Inc.).…
Descriptors: Active Learning, Numeracy, Self Efficacy, Learning Management Systems
Kuan-Fu Chen; Gwo-Jen Hwang; Mei-Rong Alice Chen – Educational Technology Research and Development, 2024
Many studies have incorporated concept maps into digital games to enable learners to make connections between subject concepts in the game. However, most learners do not associate spontaneously with the thematic concepts in the game but need to be facilitated by effective scaffolding mechanisms to reconceptualize the learning process and content.…
Descriptors: Concept Mapping, Game Based Learning, Learning Strategies, Grade 7
Hsu, Mei-En; Cheng, Meng-Tzu – British Journal of Educational Technology, 2021
Games have been regarded as a potential vehicle for enhancing student learning. Previous studies mainly focused on learning outcomes; however, the learning processes and dynamic in-game behaviours of students who are immersed in a game context are relatively undiscovered. The purposes of this study were to develop an educational game, "Bio…
Descriptors: Game Based Learning, Middle School Students, Grade 7, Educational Games
Liu, Min; Li, Chenglu; Pan, Zilong; Pan, Xin – Interactive Learning Environments, 2023
More research is needed on how to best use analytics to support educational decisions and design effective learning environments. This study was to explore and mine the data captured by a digital educational game designed for middle school science to understand learners' behavioral patterns in using the game, and to use evidence-based findings to…
Descriptors: Computer Games, Educational Games, Instructional Design, Instructional Effectiveness
Liang, Hsin-Yi; Hsu, Tien-Yu; Hwang, Gwo-Jen; Chang, Shao-Chen; Chu, Hui-Chun – Interactive Learning Environments, 2023
In the past decades, collaborative game-based learning has been used to facilitate students' learning in authentic learning contexts. Although several previous studies have reported the potential of this approach for students' learning performance and motivation, unequal participation could negatively influence the learning effectiveness of…
Descriptors: Museums, Science Education, Critical Thinking, Competency Based Education
Bressler, Denise M.; Bodzin, Alec M.; Eagan, Brendan; Tabatabai, Sara – Journal of Science Education and Technology, 2019
According to the National Research Council, the ability to collaboratively solve problems is of the utmost importance in scientific careers, yet students are not exposed to learning experiences that promote such expertise. Recent studies have found that interdependent roles used within collaborative mobile games are an effective way to scaffold…
Descriptors: Network Analysis, Epistemology, Computer Games, Cooperation
Kaya, Erdogan; Newley, Anna; Yesilyurt, Ezgi; Deniz, Hasan – Journal of College Science Teaching, 2020
With the release of the Next Generation Science Standards (NGSS), assessing K-12 science teachers' self-efficacy in Computational Thinking (CT) is an important research gap to study. Bandura defines self-efficacy as awareness of the individual's potential and capabilities to accomplish a goal. Teaching efficacy beliefs is a significant identifier…
Descriptors: Thinking Skills, Computation, Self Efficacy, Preservice Teachers
Christie, Simon – set: Research Information for Teachers, 2018
This article reflects on a school's approach to gamifying the Royal Society Te Aparangi's First CREST Award. The article explains how CREST was reconceived as a quest using elements of live action role playing (LARP) and gamification, and the tools that were used to do this. It describes how progress was measured using a points system and the…
Descriptors: Foreign Countries, Teaching Methods, Play, Role Playing
Li Sun, Editor; Cheng-Yao Lin, Editor – IGI Global, 2025
Many educators face the challenge of engaging students in science and mathematics, often struggling to bridge the gap between theoretical concepts taught in classrooms and their real-world applications. This disconnect can lead to disinterest and disengagement among students, hindering their learning outcomes. "Cases on Informal Learning for…
Descriptors: Informal Education, Science Education, Mathematics Education, Problem Solving

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