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Vicente Talanquer; Resa Kelly – Journal of Chemical Education, 2024
Analysis of results from research in cognitive science and discipline-based education in recent years suggests that student thinking and learning can be better understood and investigated by adopting a systemic perspective that recognizes the complex and dynamic interactions taking place within and across multiple interconnected and interdependent…
Descriptors: Chemistry, Science Instruction, Cognitive Science, Thinking Skills
Siu-Cheung Kong; Ming Lai; Yugen Li; Tak-Yue Dickson Chan – Education and Information Technologies, 2025
Concepts and practices are widely used to assess students' development in computational thinking (CT). However, less is known about how the development of each construct relates to that of the other. With a sample of 997 grade 6 students (average age = 11.43 at the beginning of the school year) from 14 primary schools, we examined the…
Descriptors: Computation, Thinking Skills, Elementary School Students, Student Development
Zuokun Li; Pey Tee Oon – International Journal of STEM Education, 2024
Background: Integrating computational thinking (CT) into STEM education has recently drawn significant attention, strengthened by the premise that CT and STEM are mutually reinforcing. Previous CT-STEM studies have examined theoretical interpretations, instructional strategies, and assessment targets. However, few have endeavored to delineate the…
Descriptors: Thinking Skills, STEM Education, Mental Computation, Cognitive Development
Instruction in the Age of Misinformation: Pedagogical Implications for Educating Responsible Knowers
Martha Perez-Mugg – Educational Theory, 2025
Recent calls by legislators to exclude "divisive concepts" and histories from our curricula pose a challenge to the development of students' epistemic responsibility and agency in classrooms. In this paper, Martha Perez-Mugg examines the classroom as a space for the development of epistemic responsibility, ultimately suggesting that…
Descriptors: Misinformation, Teaching Methods, Epistemology, Responsibility
Martin A. Simon – Journal for Research in Mathematics Education, 2024
Students' ability to operate with increasingly more complex units has been shown to be a key factor in their conceptual development. These abilities have been characterized as "stages of units coordination." This article focuses on the domain of composing and decomposing composite units. Using data from a teaching experiment with a…
Descriptors: Numbers, Mathematics Education, Concept Formation, Academic Ability
Pál Sarmasági; Anikó Rumbus; Javier Bilbao; András Margitay-Becht; Zsuzsa Pluhár; Carolina Rebollar; Valentina Dagiene – Informatics in Education, 2025
Algebraic Thinking (AT) and Computational Thinking (CT) are pivotal competencies in modern education, fostering problem-solving skills and logical reasoning among students. This study presents the initial hypotheses, theoretical framework, and key steps undertaken to explore characterized learning paths and assign practice-relevant tasks. This…
Descriptors: Algebra, Computation, Thinking Skills, Problem Solving
Yen-Nan Lin; Lu-Ho Hsia; Gwo-Jen Hwang – British Journal of Educational Technology, 2025
To win in sports competitions, in addition to excellent sports skills, coping strategies in the face of various competition situations are also critical for success. Therefore, cultivating students' diverse, creative and flexible tactical application abilities is an important educational goal in sports training. However, in the online component of…
Descriptors: Problem Solving, Creative Development, Creative Thinking, Educational Strategies
Lindsay Paturalski; Alesha Seroczynski – Metropolitan Universities, 2025
Scholars and practitioners have argued that higher education in prison (HEP) can help transform incarcerated people and prepare them to re-enter society in productive ways. Viewing education as a mechanistic device that can help incarcerated students attain jobs or skills without engaging with larger questions of personal growth and fulfillment,…
Descriptors: Institutionalized Persons, Correctional Education, Liberal Arts, Higher Education
Xiaojing Weng; Huiyan Ye; Yun Dai; Oi-lam Ng – Journal of Educational Computing Research, 2024
A growing body of research is focusing on integrating artificial intelligence (AI) and computational thinking (CT) to enhance student learning outcomes. Many researchers have designed instructional activities to achieve various learning goals within this field. Despite the prevalence of studies focusing on instructional design and student learning…
Descriptors: Computation, Thinking Skills, Artificial Intelligence, Technology Integration
Lei Bao; Max Stephens – Mathematics Education Research Group of Australasia, 2024
Research has shown that many primary students experience transition barriers between additive and multiplicative thinking. This paper analysed responses from 253 Years 3 to 6 students to a diagnostic assessment which consists of whole number multiplication and division problems involving equal groups, arrays, multiplicative comparison and…
Descriptors: Foreign Countries, Elementary School Mathematics, Elementary School Students, Mathematics Instruction
Adam M. Story; Melinda Delbridge; Brandi Fulwider; Sue Dahl-Popolizio – Journal of Occupational Therapy Education, 2024
The person, environment, and therapist (PET) Principle is an innovative teaching strategy designed to improve recall of foundational information, facilitate critical thinking, and improve self-efficacy of student and novice therapists. Specifically, the PET Principle is a microlearning strategy that helps students and novice therapists break down…
Descriptors: Critical Thinking, Thinking Skills, Self Efficacy, Educational Innovation
Sorin Valcea; Maria Riaz Hamdani; Shuai Wang – Journal of Management Education, 2024
This essay explores the nuanced impact of generative AI technologies on management and business education, framed through three paradoxes: the "Expertise Paradox" suggests that AI's adequate performance at lower-level tasks may weaken students' development of higher-level thinking; the "Innovation Paradox" states that AI's…
Descriptors: Artificial Intelligence, Natural Language Processing, Business Administration Education, Technology Uses in Education
Allison Hahn Elowson; Greg Wickliff; Paul Thompson Hunter; Alisa Wickliff; Kristen Fye; David Pugalee; Christopher Gordon – Journal of STEM Education: Innovations and Research, 2024
Summer Ventures in Science and Mathematics is a four-week summer enrichment program where high school students study a variety of STEM topics. This article explores how participation in the Mathematical Evolution course affected students' skills in research, communication, and scientific reasoning and changes in self-efficacy towards STEM. Data…
Descriptors: Student Research, Scientific Concepts, Thinking Skills, Secondary School Mathematics
Wawan Kurniawan; Khairul Anwar; Jufrida Jufrida; Kamid Kamid; Cicyn Riantoni – Journal of Information Technology Education: Innovations in Practice, 2025
Aim/Purpose: This study aims to implement and evaluate a personalized digital learning environment (PDLE) that delivers differentiated instruction for enhancing computational thinking competencies through robotics education. Background: The background emphasizes the growing demand for computational thinking skills in the modern workforce and the…
Descriptors: Individualized Instruction, Electronic Learning, Computation, Thinking Skills
Chang Xu; Hongxia Li; Sabrina Di Lonardo Burr; Jiwei Si; Jo-Anne LeFevre; Xinfeng Zhuo – Journal of Cognition and Development, 2024
Students' understanding of the meaning of the equal sign develops slowly over the primary grades. In addition to updating their representations of equations to recognize that the equal sign represents an equivalence relation rather than signaling an operation, students need to move beyond full computation to efficiently solve equivalence problems.…
Descriptors: Mathematics Achievement, Grade 3, Grade 4, Elementary School Students
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