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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
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Kinnebrew John S.; Killingsworth, Stephen S.; Clark, Douglas B.; Biswas, Gautam; Sengupta, Pratim; Minstrell, James; Martinez-Garza, Mario; Krinks, Kara – IEEE Transactions on Learning Technologies, 2017
Digital games can make unique and powerful contributions to K-12 science education, but much of that potential remains unrealized. Research evaluating games for learning still relies primarily on pre- and post-test data, which limits possible insights into more complex interactions between game design features, gameplay, and formal assessment.…
Descriptors: Computer Games, Educational Games, Data Analysis, Science Education
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Clark, Douglas B.; Tanner-Smith, Emily E.; Killingsworth, Stephen S. – Review of Educational Research, 2016
In this meta-analysis, we systematically reviewed research on digital games and learning for K-16 students. We synthesized comparisons of game versus nongame conditions (i.e., media comparisons) and comparisons of augmented games versus standard game designs (i.e., value-added comparisons). We used random-effects meta-regression models with robust…
Descriptors: Educational Games, Computer Games, Meta Analysis, Multiple Regression Analysis
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Clark, Douglas B.; Sengupta, Pratim; Brady, Corey E.; Martinez-Garza, Mario M.; Killingsworth, Stephen S. – International Journal of STEM Education, 2015
Background: In this paper, we investigate the relationship between theory and design in the context of creating digital games to support children's development of scientific expertise. Synthesis: Theoretically, we consider two frameworks--Knowledge in Pieces (or KiP) and Science as Practice (or SaP). While KiP is a theory about the structure of…
Descriptors: Educational Games, Video Games, Computer Games, Science Education
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Sengupta, Pratim; Krinks, Kara D.; Clark, Douglas B. – Journal of the Learning Sciences, 2015
How does deep conceptual change occur when students play well-designed educational games? To answer this question, we present a case study in the form of a microgenetic analysis of a student's processes of knowledge construction as he played a conceptually-integrated digital game (SURGE Next) designed to support learning about Newtonian mechanics.…
Descriptors: Educational Games, Physics, Science Instruction, Technology Uses in Education
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Van Eaton, Grant; Clark, Douglas B.; Smith, Blaine E. – International Journal of Education in Mathematics, Science and Technology, 2015
Students playing digital learning games in the classroom rarely play alone, even in digital games that are ostensibly "single-player" games. This study explores the patterns of physics reasoning that emerge in face-to-face and online forum collaboration while students play a physics-focused educational game in their classroom. We…
Descriptors: Physics, Educational Games, Online Courses, Computer Mediated Communication
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Martinez-Garza, Mario; Clark, Douglas B.; Nelson, Brian C. – Studies in Science Education, 2013
This review synthesises research on digital games and science learning as it supports the goals for science proficiency outlined in the report by the US National Research Council on science education reform. The review is organised in terms of these research-based goals for science proficiency in light of their alignment with current science…
Descriptors: Computer Games, Video Games, Science Education, Science Achievement