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Peter J. Rich; Scott Bartholomew; David Daniel; Kenzie Dinsmoor; Meagan Nielsen; Connor Reynolds; Meg Swanson; Ellyse Winward; Jessica Yauney – Journal of Research on Technology in Education, 2024
In this study, we attempted to curate a list of tools whose primary intent is to enable and teach children to code. From this list, we developed a framework for the classification of coding tools and reviewed current research to determine how tools are used to teach coding in elementary education. The catalog grew to over 300 specific tools…
Descriptors: Educational Trends, Teaching Methods, Coding, Thinking Skills
Andrew A. Tawfik; Linda Payne; Andrew M. Olney – Technology, Knowledge and Learning, 2024
Theorists and educators increasingly highlight the importance of computational thinking in STEM education. While various scaffolding strategies describe how to best support this skillset (i.e., paired programming, worked examples), less research has focused on the design and development of these digital tools. One way to support computational…
Descriptors: Thinking Skills, Computation, STEM Education, Scaffolding (Teaching Technique)
Emily Relkin; Sara K. Johnson; Marina U. Bers – Educational Technology & Society, 2023
"TechCheck" is an assessment of Computational Thinking (CT) for early elementary school children consisting of fifteen developmentally appropriate unplugged challenges that probe six CT domains. The first version of "TechCheck" showed good psychometric properties as well as ease of administration and scoring in a validation…
Descriptors: Elementary School Students, Developmentally Appropriate Practices, Computation, Thinking Skills
Ozyurt, Ozcan; Ozyurt, Hacer – Education and Information Technologies, 2023
Computational thinking (CT) has started to attract attention as an important research topic in recent years. It is important to describe the CT field in detail and to determine the research interests and trends of studies in this field. In this most comprehensive and first topic modeling based study in the field of CT, it was aimed to determine…
Descriptors: Computation, Thinking Skills, Educational Trends, Educational Research
Elif Çelik; Sevim Sevgi – Journal of Educational Technology and Online Learning, 2025
This research investigates the impact of mathematical problems created with Scratch on the problem-solving skills of 8th-grade middle school students. The research was based on the descriptive design of mixed research approaches. In this direction, the research model was single-group pretest-posttest design, which is a weak experimental design…
Descriptors: Middle School Students, Grade 8, Mathematics Instruction, Foreign Countries
Katchapakirin, Kantinee; Anutariya, Chutiporn; Supnithi, Thepchai – Education and Information Technologies, 2022
Computational Thinking (CT) has been formally incorporated into the National Curriculum of Thailand since 2017, where Scratch, a block-based visual programming language, has been widely adopted as CT learning environment for primary-level students. However, conducting hands-on coding activities in a classroom has caused substantial challenges…
Descriptors: Computation, Thinking Skills, Programming Languages, Foreign Countries
Ho, Chun-Heng; Zhang, Hang-qin; Li, Juan; Zhang, Min-quan – International Journal of Distance Education Technologies, 2023
Digital education has recently become a mainstream education model. Despite digital education's increasing popularity, there remain issues when it comes to teacher-student interactions in digital space, which have made it impossible for this model to achieve the same teaching quality as traditional in-person education. Compared with other academic…
Descriptors: Technology Uses in Education, Electronic Learning, Teacher Student Relationship, Interaction
Weipeng Yang – Journal of Educational Computing Research, 2024
Computational Thinking (CT) is essential for developing creativity, problem-solving, and digital competence in the 21st century. Coding tools like robotic toys and tablet apps have become popular in early childhood education to support CT development, but there is a debate on which tool is more effective. Little evidence exists on the effect of…
Descriptors: Coding, Preschool Children, Computation, Thinking Skills
Zha, Shenghua; Jin, Yi; Moore, Pamela; Gaston, Joe – TechTrends: Linking Research and Practice to Improve Learning, 2020
Researchers and educators have advocated computational thinking (CT) should be integrated into K-12 settings as early as elementary schools. However, there has been a lack of knowledge of how pre-service K-8 teachers would be engaged in the learning of CT and its integration in different subject areas. In this study, we taught a flipped learning…
Descriptors: Preservice Teacher Education, Preservice Teachers, Undergraduate Students, Thinking Skills
Cutumisu, Maria; Guo, Qi – IEEE Transactions on Education, 2019
Contribution: This paper employs the automatic scoring of short essays as a novel way to determine pre-service teachers' knowledge of and attitudes toward computational thinking (CT) from their written reflections. Implications about designing CT courses for pre-service teachers are discussed. Background: CT is an essential 21st-century competency…
Descriptors: Preservice Teachers, Computation, Reflection, Coding
Hunsaker, Enoch; West, Richard E. – TechTrends: Linking Research and Practice to Improve Learning, 2020
This design case documents the creation of open educational resources for preservice and inservice teachers at Brigham Young University (BYU). The purpose of this interdisciplinary project was to design and develop training, assessments and credentials to help the learners become competent in teaching computational thinking (CT) and coding in…
Descriptors: Open Educational Resources, Coding, Computation, Thinking Skills
Papadakis, Stamatios, Ed.; Kalogiannakis, Michail, Ed. – Lecture Notes in Educational Technology, 2022
This book brings together a collection of work from around the world in order to consider effective STEM, robotics, mobile apps education from a range of perspectives. It presents valuable perspectives--both practical and theoretical--that enrich the current STEM, robotics, mobile apps education agenda. As such, the book makes a substantial…
Descriptors: STEM Education, Robotics, Computer Oriented Programs, Handheld Devices
Estapa, Anne; Hutchison, Amy; Nadolny, Larysa – Technology and Engineering Teacher, 2018
Computational thinking is an important and necessary way of thinking for computer programmers and other professionals in science, technology, engineering, and mathematics (STEM). Research on emerging practices around computational thinking that is developed through coding initiatives in schools reports that elementary children typically learn how…
Descriptors: Elementary Education, Thinking Skills, Teaching Methods, Computer Oriented Programs
Matsumoto, Paul S.; Cao, Jiankang – Journal of Chemical Education, 2017
Computational thinking is a component of the Science and Engineering Practices in the Next Generation Science Standards, which were adopted by some states. We describe the activities in a high school chemistry course that may develop students' computational thinking skills by primarily using Excel, a widely available spreadsheet software. These…
Descriptors: Secondary School Science, High School Students, Computation, Thinking Skills
Renzulli, Joseph S. – International Journal for Talent Development and Creativity, 2020
In this article, I describe a series of Five Core Competencies that gifted education specialists should consider integrating into their teaching to respond to the many changes that are taking place in technology, work, and career preparation. Although the focus of this theory is on high- level jobs usually pursued by college graduates and advanced…
Descriptors: Academically Gifted, Gifted Education, Job Skills, Theories
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