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Rotem Israel-Fishelson; Arnon Hershkovitz – Interactive Learning Environments, 2024
Creativity and computational thinking (CT) have been recognized as crucial skills for the twenty-first century and have been extensively researched in recent years. However, their connections have not yet been fully understood, and there is room to expand the body of knowledge. This study examines the impact of an intervention program to increase…
Descriptors: Creativity, Middle School Students, Computation, Thinking Skills
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Rino Richardo; Siti Irene Astuti Dwiningrum; Rahayu Condro Murti; Ariyadi Wijaya; Robiatul Adawiya; Ivan Luthfi Ihwani; Martalia Ardiyaningrum; Anggi Erna Aryani – Journal of Education and Learning (EduLearn), 2025
The aim of this qualitative research is to describe the thinking process as a profile of students' mathematical computational thinking (CT) skills in terms of CT attitudes. The subjects in this study were 66 junior high school students in grade IX. There were three students taken by purposive sampling based on high, medium, and low CT attitude.…
Descriptors: Computation, Thinking Skills, Junior High School Students, Grade 9
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Jinbo Tan; Kinshuk; Lei Wu – Educational Technology Research and Development, 2024
The role of creativity has been well recognized in wholesome development of children's personality and attitude. Among various approaches to foster creativity in children, design thinking (DT) has emerged as a significant approach. The study presented in this paper explores the implementation of DT into maker education to help K-12 students…
Descriptors: Design, Thinking Skills, Elementary Secondary Education, Creativity
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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
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Xin Gong; Weiqi Xu; Ailing Qiao; Zhixia Li – Journal of Computer Assisted Learning, 2025
Background: Robot programming can simultaneously cultivate learners' computational thinking (CT) and spatial thinking (ST). However, there is a noticeable gap in research focusing on the micro-level development patterns of learners' CT and ST and their interconnections. Objectives: This study aims to uncover the intricate development patterns and…
Descriptors: Mental Computation, Thinking Skills, Skill Development, Robotics
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Ünal Çakiroglu; Volkan Selçuk – Education and Information Technologies, 2025
In recent years, when computational thinking (CT) has become increasingly important, utilizing machine learning (ML) techniques provides a revolutionary method for comprehending and improving cognitive skills for young students. However, few studies deepen the process of learning ML and CT. This exploratory study aims to investigate the impact of…
Descriptors: Thinking Skills, Computation, Grade 5, Secondary School Students
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Suhendar Suhendar; Ari Widodo; Rini Solihat; Riandi Riandi – Journal of Pedagogical Research, 2025
Future-thinking skills are crucial competencies to prepare students to face global challenges through sustainable education. However, until now there is no comprehensive profile of this skill in the context of secondary school students. This research aims to map students' future thinking skills, starting from the development and validation of…
Descriptors: Futures (of Society), Thinking Skills, Gender Differences, Grade Level Differences
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Gunawan; Ferry Ferdianto; Nuhyal Ulia; Lukmanul Akhsani; Reni Untarti; Istiqomah – Mathematics Teaching Research Journal, 2025
Computational thinking is an essential ability for students in the 21st century. Therefore, this study described students' mathematical computational thinking process in terms of self-efficacy of eighth graders, consisting of 32 students. The applied instruments were self-efficacy questionnaires, computational thinking ability tests, and interview…
Descriptors: Thinking Skills, Computation, Self Efficacy, Grade 8
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Aysegul Yilmaz; Devkan Kaleci – Educational Policy Analysis and Strategic Research, 2024
The research aims to explore the acquisition of Computational Thinking (CT) sub-skills among 5th and 6th grade secondary school students in Turkey through a block-based programming application, code.org. It seeks to understand if mastering these skills is essential for students globally. This study involved seven volunteer students selected…
Descriptors: Foreign Countries, Computation, Thinking Skills, Mastery Learning
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Andrews-Larson, Christine; Wilson, Jonee; Mauntel, Matthew; Smith, Jessica; Hawthorne-Glover, Thomeca – Mathematics Teacher: Learning and Teaching PK-12, 2023
Integer addition and subtraction entail significant conceptual shifts for many students, and teachers often offer rules intended to help mitigate this challenge. When these rules are not connected to sense making, a misremembered rule can function as a barrier to student learning. In this article, the authors highlight the work of an expert…
Descriptors: Numbers, Subtraction, Thinking Skills, Mathematics Education
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Tufan Inaltekin; Tolga Saka – Journal of Baltic Science Education, 2025
In science, one of the most crucial representations for constructing meaning about physical events is graphs. The first graph students encounter in science class is the constant velocity motion graph. Therefore, examining students' understanding of structuring and interpreting these graphs for the relationship between distance, time, and velocity…
Descriptors: Science Instruction, Graphs, Motion, Scientific Concepts
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Ryan V. Lansangan; Antriman V. Orleans – Science Education International, 2024
In today's knowledge-based and rapidly changing society, developing students' critical thinking skills in instruction is a vital concern in almost all science curricula. To acquire meaningful learning, learners need to develop skills in choosing suitable information, gauging the integrity of information, and crafting sound decisions. With this,…
Descriptors: Foreign Countries, Critical Thinking, Science Instruction, Science Laboratories
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Anna Beinke; Lisa O’Keeffe; Amie Albrecht; Bruce White – Australian Mathematics Education Journal, 2024
With the aim of engaging more students in meaningful thinking in mathematics, a cohort of Year 7 students were introduced to a 'Building Thinking Classrooms' framework for learning in mathematics. In this paper, the authors outline the key features of the implemented framework and share reflections on challenges and benefits.
Descriptors: Mathematics Instruction, Grade 7, Thinking Skills, Teaching Methods
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Lihui Sun; Junjie Liu – Journal of Educational Computing Research, 2024
Computational thinking (CT), as a new future-oriented literacy, has gained attention at the basic education level. Graphical programming is the common way to develop CT in primary students, but this drag-and-drop programming may weaken students' understanding of programming's abstract concepts and code logic. Text-based programming approaches can…
Descriptors: Thinking Skills, Computation, Programming, Gamification
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Ari Krakowski; Eric Greenwald; Natalie Roman; Christina Morales; Suzanna Loper – Journal of Research in Science Teaching, 2024
The role of computation in science is ever-expanding and is enabling scientists to investigate complex phenomena in more powerful ways and tackle previously intractable problems. The growing role of computation has prompted calls to integrate computational thinking (CT) into science instruction in order to more authentically mirror contemporary…
Descriptors: Computation, Thinking Skills, Coding, Science Instruction
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