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Horwitz, Paul; Reichsman, Frieda; Lord, Trudi; Dorsey, Chad; Wiebe, Eric; Lester, James – Technology, Knowledge and Learning, 2023
Studies of educational games often treat them as "black boxes" (Black and Wiliam in Phi Delta Kappan 80: 139-48, 1998; Buckley et al. in Int J LearnTechnol 5:166-190, 2010; Buckley et al. in J Sci Educ Technol 13: 23-41, 2010) and measure their effectiveness by exposing a treatment group of students to the game and comparing their…
Descriptors: Educational Games, Genetics, Middle School Students, High School Students
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Casanoves, Marina; Solé-Llussà, Anna; Haro, Juan; Gericke, Niklas; Valls, Cristina – Research in Science & Technological Education, 2023
Background: Game-based science learning (GBSL) provide an alternative route for learning genetics, but its effects on students' conceptual learning is contested. In this paper we assess the utility, in primary teacher education, of Recal - a game designed to promote participants' learning of key genetic concepts through acting as detectives…
Descriptors: Science Instruction, Genetics, Teaching Methods, Game Based Learning
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Rosenheck, Louisa; Cheng, Meng-Tzu; Lin, Chen-Yen; Klopfer, Eric – Educational Technology Research and Development, 2021
Games can be rich environments for learning and can elicit evidence of students' conceptual understanding and inquiry processes. Illuminating students' content-specific gameplay decisions, or methods of completing game tasks related to a certain domain, requires a context that is open-ended enough for students to make choices that demonstrate…
Descriptors: Game Based Learning, Decision Making, Learning Analytics, Genetics
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Rachmatullah, Arif; Reichsman, Frieda; Lord, Trudi; Dorsey, Chad; Mott, Bradford; Lester, James; Wiebe, Eric – Journal of Science Education and Technology, 2021
This study examined students' genetics learning in a game-based environment by exploring the connections between the expectancy-value theory of achievement motivation and flow theory. A total of 394 secondary school students were recruited and learned genetics concepts through interacting with a game-based learning environment. We measured their…
Descriptors: Models, Secondary School Students, Genetics, Game Based Learning
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Funa, Aaron; Ricafort, Jhonner – Online Submission, 2019
Instructional material is an integral part of teaching and learning process. Validating instructional materials is imperative to ensure quality before widespread utilization. This study validated the developed Gamified Instructional Material (GIM) in genetics for grade 12 STEM students. It employed the descriptive-developmental research design…
Descriptors: Instructional Materials, Genetics, Grade 12, Secondary School Science
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Alicia Bower; Kami L. Tsai; Carey S. Ryan; Rebecca Anderson; Andrew Jameton; Maurice Godfrey – Journal of STEM Outreach, 2018
We describe a game and teachers' experiences using it in their middle and high school science courses. The game, which is called "Luck of the Draw", was designed originally to engage medical students and later adopted for middle school, high school, and college students in genetics, and to encourage critical thinking about is-sues such…
Descriptors: Learner Engagement, Critical Thinking, Thinking Skills, Educational Games