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Showing 1 to 15 of 360 results Save | Export
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Hohenstein, Jill; Tenenbaum, Harriet R. – Science Education, 2023
To examine the ways that 6- to 11-year-old children's conversation with their parents support their developing understandings of evolution, 49 parent-child dyads participated in a study with two elicited discussion tasks: origins of species and potential species change. Conversational data were transcribed, coded, and qualitatively and…
Descriptors: Family Relationship, Evolution, Children, Parent Child Relationship
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Cui-Yu Wang; Bao-Lian Gao; Shu-Jie Chen – Education and Information Technologies, 2024
How to develop students' computational thinking (CT) is an important topic faced by academics and front-line teachers. However, the solution of programming problems requires paying attention to every detail of the problem and building a solution to the problem step by step, and for beginners, they often get stuck when one of these aspects goes…
Descriptors: Computation, Thinking Skills, Elementary School Students, Metacognition
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Heron, Marion; Palfreyman, David M. – College Teaching, 2023
A key purpose of higher education seminars is to support higher-order thinking, yet empirical evidence of how this is evidenced and scaffolded in higher education remains scarce. Building on previous work on identifying rhetorical and linguistic devices for argumentation, we found that higher-order thinking can be evidenced through using…
Descriptors: Higher Education, Thinking Skills, Seminars, Persuasive Discourse
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Xuemin Gao; Yuqin Yang; Yuxia Du; Daner Sun – Journal of Educational Computing Research, 2025
Block-based visual programming tools are widely used in elementary education. Nonetheless, these tools alone may not ensure the spontaneous and efficient acquisition of concepts and skills in computational thinking (CT). Using mind mapping as a form of scaffolding to facilitate the visualization of abstract thinking processes may enhance the…
Descriptors: Computation, Thinking Skills, Programming, Cognitive Mapping
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Annisa Ulfa Yana; Supriyono Koes-Handayanto; Sahal Fawaiz; Fauzul Rizal – Journal of Learning for Development, 2025
Procedural and conceptual e-scaffolding has been shown to be effective for assisting novice learners in understanding new concepts. Its integration with modelling instructions (E-MI) raises expectations for improving scientific reasoning (SR) in students whose level is still a concern in Indonesia. A quasi-experimental study was conducted to find…
Descriptors: Science Process Skills, Thinking Skills, Abstract Reasoning, Physics
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Megan Shiroda; Clare G.-C. Franovic; Joelyn de Lima; Keenan Noyes; Devin Babi; Estefany Beltran-Flores; Jenna Kesh; Robert L. McKay; Elijah Persson-Gordon; Melanie M. Cooper; Tammy M. Long; Christina V. Schwarz; Jon R. Stoltzfus – CBE - Life Sciences Education, 2024
Causal mechanistic reasoning is a thinking strategy that can help students explain complex phenomena using core ideas commonly emphasized in separate undergraduate courses, as it requires students to identify underlying entities, unpack their relevant properties and interactions, and link them to construct mechanistic explanations. As a…
Descriptors: Undergraduate Students, College Faculty, STEM Education, Science Instruction
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Xiaowen Wang; Kan Kan Chan; Qianru Li; Shing On Leung – Journal of Educational Computing Research, 2024
The interest in Computational Thinking (CT) development among young learners increases with the number of studies located in literature. In this study, a meta-analysis was conducted to address two main objectives: (a) the effectiveness of empirical interventions on the development of CT in children aged of 3-8 years; and (b) the variables that…
Descriptors: Young Children, Computation, Thinking Skills, Meta Analysis
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Tugba Abanoz; Filiz Kalelioglu – European Early Childhood Education Research Journal, 2025
In the digital age, it's crucial to equip children with twenty-first-century skills, including programming and other competencies such as creativity, analytical thinking, and collaboration. This study introduces an integrated STEM (Science, Technology, Engineering, and Mathematics) curriculum focused on computer science for educators. It explores…
Descriptors: Foreign Countries, Early Childhood Education, Preschool Children, STEM Education
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Emily E. Scott; Jack Cerchiara; Jenny L. McFarland; Mary Pat Wenderoth; Jennifer H. Doherty – Journal of Research in Science Teaching, 2023
In recent years, there has been a strong push to transform STEM education at K-12 and collegiate levels to help students learn to think like scientists. One aspect of this transformation involves redesigning instruction and curricula around fundamental scientific ideas that serve as conceptual scaffolds students can use to build cohesive knowledge…
Descriptors: Thinking Skills, Science Education, Scientific Concepts, Curriculum Development
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Jian Liao; Linrong Zhong; Longting Zhe; Handan Xu; Ming Liu; Tao Xie – IEEE Transactions on Learning Technologies, 2024
ChatGPT has received considerable attention in education, particularly in programming education because of its capabilities in automated code generation and program repairing and scoring. However, few empirical studies have investigated the use of ChatGPT to customize a learning system for scaffolding students' computational thinking. Therefore,…
Descriptors: Scaffolding (Teaching Technique), Thinking Skills, Computation, Artificial Intelligence
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Erin P. Argyilan; Kristin T. Huysken; Robert Votaw – Journal of the Scholarship of Teaching and Learning, 2024
Field-based education is an integral component of undergraduate geoscience curricula and provides educational and social benefits associated with enhanced learning. But field excursions can too often end up as simple show-and-tell events and fall short of implementing effective teaching practices and achieving desired student learning gains.…
Descriptors: Undergraduate Students, Commuter Colleges, Geology, Field Trips
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Smith, Jennifer M.; Robertson, Marla K. – Reading Teacher, 2021
Infographics are appearing in children's magazines, picture books, and informational texts. Understanding, and ultimately creating, these complex visual representations of information or data requires higher level thinking skills to analyze and understand how the text and graphics work together to convey meaning. The authors provide a framework…
Descriptors: Visual Aids, Visual Learning, Thinking Skills, Guidelines
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Astuti Muh. Amin; Fitriyah Karmila; Muh Khalifah Mustami; Noor Hujjatusnaini; Romi Adiansyah; Atia Cahyani Putri Cando; Siti Fatimah Albaar – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
The enhancement of higher-order thinking skills (HOTS) can be achieved through the implementation of active learning models. The current study aimed to examine the efficacy of the Pj4CS (Integrated Project-Based and 4C-Scaffolding) learning model on pre-service biology teachers' HOTS. This study employed a quasi-experimental design. The…
Descriptors: Thinking Skills, Active Learning, Student Projects, Scaffolding (Teaching Technique)
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Zhou, Ying; Chai, Ching Sing; Li, Xiuting; Ma, Chao; Li, Baoping; Yu, Ding; Liang, Jyh-Chong – Journal of Educational Computing Research, 2023
Computational thinking is a way of thinking that helps people "think like a computer scientist" to solve practical problems. However, practicing computational thinking through programming is dependent on the problem solvers' metacognition. This study investigated students' metacognitive planning and problem-solving performance in…
Descriptors: Metacognition, Computation, Thinking Skills, Problem Solving
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Shiyao Liu; Chaonan Liu; Ala Samarapungavan; Stephanie M. Gardner; Kari L. Clase; Nancy J. Pelaez – Science & Education, 2024
Science educators report that students struggle with understanding, using, and evaluating the evidence underpinning scientific knowledge. However, there are not many studies focused on helping instructors address those difficulties. Here, we report on a laboratory instructor's scaffolding of students' evidentiary reasoning with and about evidence…
Descriptors: Biology, Science Instruction, Laboratory Experiments, Evolution
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