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Li, Maximilian Xiling; Nadj, Mario; Maedche, Alexander; Ifenthaler, Dirk; Wöhler, Johannes – Technology, Knowledge and Learning, 2022
With the advent of physiological computing systems, new avenues are emerging for the field of learning analytics related to the potential integration of physiological data. To this end, we developed a physiological computing infrastructure to collect physiological data, surveys, and browsing behavior data to capture students' learning journey in…
Descriptors: Physiology, Computation, Artificial Intelligence, Psychological Patterns
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Peel, Amanda; Sadler, Troy D.; Friedrichsen, Patricia – Journal of Science Education and Technology, 2022
Computing has become essential in modern-day problem-solving, making computational literacy necessary for practicing scientists and engineers. However, K-12 science education has not reflected this computational shift. Integrating computational thinking (CT) into core science courses is an avenue that can build computational literacies in all…
Descriptors: Computation, Thinking Skills, Problem Solving, Science Education
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Lai, Rina P. Y. – Journal of Educational Computing Research, 2022
As a dynamic and multifaceted construct, computational thinking (CT) has proven to be challenging to conceptualize and assess, which impedes the development of a workable ontology framework. To address this issue, the current article describes a novel approach towards understanding the ontological aspects of CT by using text mining and…
Descriptors: Computation, Thinking Skills, Teacher Attitudes, Competence
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Murillo-Gonzalez, Gabriel; Burkholder, Eric W. – Physical Review Physics Education Research, 2022
Back-of-the-envelope (BOTE) calculations require the use of estimations and approximations. They are used by expert physicists to simplify complex problems to obtain quick and approximate solutions. Though BOTE calculations are routine for experts in physics, they are not well defined in academic literature. In this study we interviewed 9…
Descriptors: Decision Making, Specialists, Physics, Science Instruction
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Yin, Yue; Khaleghi, Soroush; Hadad, Roxana; Zhai, Xiaoming – Educational Technology Research and Development, 2022
Computational thinking (CT) skills are critical for the science, technology, engineering, and mathematics (STEM) fields, thus drawing increasing attention in STEM education. More curricula and assessments, however, are needed to cultivate and measure CT for different learning goals. Maker activities have the potential to improve student CT, but…
Descriptors: Thinking Skills, Computation, Learning Activities, Computer Software
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Eloy, Adelmo; Achutti, Camila F.; Fernandez, Cassia; Lopes, Roseli de Deus – Informatics in Education, 2022
Integrating computational thinking into K-12 Education has been a widely explored topic in recent years. Particularly, effective assessment of computational thinking can support the understanding of how learners develop computational concepts and practices. Aiming to help advance research on this topic, we propose a data-driven approach to assess…
Descriptors: Computation, Thinking Skills, Learning Processes, Evaluation Methods
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Bowers, Jonathan; Eidin, Emanuel; Damelin, Daniel; McIntyre, Cynthia – Science Teacher, 2022
The COVID-19 crisis has demonstrated the importance of being able to understand complex computational models for everyday life. To make sense of the evolving predictive models of the COVID-19 pandemic, global citizens need to have a firm grasp of both systems thinking (ST) and computational thinking (CT). ST is the ability to understand a problem…
Descriptors: Computation, Thinking Skills, Models, Systems Approach
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Sovey, Saralah; Osman, Kamisah; Mohd-Matore, Mohd Effendi @ Ewan – European Journal of Educational Research, 2022
Computational thinking (CT) is a method for solving complex problems, but also gives people an inventive inspiration to adapt to our smart and changing society. Globally it has been considered as vital abilities for solving genuine issues successfully and efficiently in the 21st century. Recent studies have revealed that the nurture of CT mainly…
Descriptors: Factor Analysis, Computation, Thinking Skills, Measures (Individuals)
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Seckel, María José; Vásquez, Claudia; Samuel, Marjorie; Breda, Adriana – Education and Information Technologies, 2022
Computational thinking in the educational environment has awaken a rising interest, having been included as part of the curricula from the very beginnings of education. Programmable robots have become a valuable positive resource in order to succeed in the development of computational thinking, demanding proper training from kindergarten teachers…
Descriptors: Error Patterns, Programming, Ownership, Robotics
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Perkins, Laurel; Feldman, Naomi H.; Lidz, Jeffrey – Cognitive Science, 2022
Learning in any domain depends on how the data for learning are represented. In the domain of language acquisition, children's representations of the speech they hear determine what generalizations they can draw about their target grammar. But these input representations change over development as a function of children's developing linguistic…
Descriptors: Persuasive Discourse, Language Acquisition, Form Classes (Languages), Verbs
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Grapin, Scott E.; Llosa, Lorena; Haas, Alison; Lee, Okhee – Journal of Science Education and Technology, 2022
Computational models are increasingly being used in K-12 science classrooms to engage students in developing and testing explanations of phenomena. However, research has only begun to consider whether integrating computational models into science instruction could be particularly beneficial to students from diverse backgrounds, including a…
Descriptors: Affordances, Computation, Models, Science Instruction
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Jiang, Shan; Wong, Gary K. W. – Journal of Computer Assisted Learning, 2022
Over the past decade, the call to foster computational thinking (CT) in every child has received considerable attention. However, there is little understanding of whether children are developmentally ready to think computationally and what specific CT concepts and skills can be developed at various ages. This study explored the developmental and…
Descriptors: Age Differences, Gender Differences, Thinking Skills, Computation
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Johnson, Amy L.; Gleit, Rebecca D. – Teaching Sociology, 2022
Despite the centrality of data analysis to the discipline, sociology departments are currently falling short of teaching both undergraduate and graduate students crucial computing and statistical software skills. We argue that sociology instructors must intentionally and explicitly teach computing skills alongside statistical concepts to prepare…
Descriptors: College Students, Sociology, Social Science Research, Computer Science Education
Westaway, Lise; Vale, Pam – Mathematics Education Research Group of Australasia, 2022
For pre-service teachers to develop learners' number sense, they need have a broad repertoire of non-standard calculation strategies. In this paper, we present an analysis of selected research literature from 2000 to 2022 on pre-service teachers' mental mathematics published in peer-reviewed journals. The results of this brief review indicate that…
Descriptors: Preservice Teachers, Teacher Education, Numeracy, Research Reports
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Ogegbo, Ayodele Abosede; Ramnarain, Umesh – African Journal of Research in Mathematics, Science and Technology Education, 2022
Although there is a lot of interest in the development of computational thinking (CT) and the benefits it could have for every student, integrating it into science classrooms may be more difficult than traditional teaching. This can be very challenging for South African science teachers. Thus, there is an increasing need to prepare teachers and…
Descriptors: Thinking Skills, Computation, Science Instruction, Teacher Attitudes
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