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Negoro, Ridho Adi; Rusilowati, Ani; Aji, Mahardika Prasetya – Journal of Turkish Science Education, 2023
The rapid development of technology requires education to provide learning that can improve students' critical thinking and ICT (information and communication technology) skills. One of the lessons that can be applied is ICT-based. The material is packed with state-of-the-art technology and computer programming. For this reason, a study was…
Descriptors: Instructional Materials, Technological Literacy, Critical Thinking, Thinking Skills
Rina Zviel Girshin; Nathan Rosenberg; Ida Kukliansky – Journal of Research in Childhood Education, 2024
This longitudinal study of robot programming in early childhood (ROPEC) was performed based on summative and formative assessments of the robotics program in kindergarten and year one of elementary school. The study aims to broaden our knowledge about children's understanding of programming, their confidence in ability to read and write programs,…
Descriptors: Kindergarten, Grade 1, Early Childhood Education, Computation
Christine Eith; Denise Zawada – Impacting Education: Journal on Transforming Professional Practice, 2025
This paper proposes a framework for integrating generative artificial intelligence (AI) tools into statistical training for Doctor of Education (EdD) students. The rigorous demands of doctoral education, coupled with the challenges of learning complex statistical software and coding language, often lead to anxiety and frustration among students,…
Descriptors: Doctoral Programs, Artificial Intelligence, Technology Integration, Statistics Education
Edstrand, Emma; Sjöberg, Jeanette – Journal of Digital Learning in Teacher Education, 2023
The increased emergence of digital tools in educational contexts have changed the conditions for teaching and learning which, in turn, has meant a need for the development of professional digital competence (PDC) among teachers worldwide. Simultaneously, and aligned with this, programming has become an increasingly important part of schooling in…
Descriptors: Technological Literacy, Preservice Teachers, Preservice Teacher Education, Thinking Skills
Hijón Neira, Raquel; García-Iruela, Miguel; Connolly, Cornelia – International Journal of Computer Science Education in Schools, 2021
Effective and reliable assessment approaches to computational thinking in secondary education are in demand. This paper uses a guided technological pedagogical content knowledge (TPACK) framework, incorporating a visual execution environment (VEE) and Scratch project for secondary school students as a method to teach and assess computational…
Descriptors: Computation, Thinking Skills, Pedagogical Content Knowledge, Technological Literacy
Esteve-Mon, Francesc M.; Adell-Segura, Jordi; Llopis Nebot, María Ángeles; Valdeolivas Novella, Gracia; Pacheco Aparicio, Julio – Journal of Information Technology Education: Innovations in Practice, 2019
Aim/Purpose: This research aims to describe and demonstrate the results of an intervention through educational robotics to improve the computational thinking of student teachers. Background: Educational robotics has been increasing in school classrooms for the development of computational thinking and digital competence. However, there is a lack…
Descriptors: Computation, Thinking Skills, Skill Development, Robotics
Suters, Leslie; Suters, Henry; Anderson, Adam – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2021
This paper describes a 54-hour summer institute for grades 6-12 mathematics and science teachers (N = 19) with a comprehensive approach to preparing teachers to use computational thinking (CT) in their classrooms, including training in Python computer programming with Lego® Mindstorms® robotics, mathematics content sessions, and opportunities to…
Descriptors: Algebra, Mathematics Instruction, Pedagogical Content Knowledge, Programming
Tsai, Meng-Jung; Wang, Ching-Yeh; Hsu, Po-Fen – Journal of Educational Computing Research, 2019
Computer programming has been gradually emphasized in recent computer literacy education and regarded as a requirement for all middle school students in some countries. To understand young students' perceptions about their own learning in computer programming, this study aimed to develop an instrument, Computer Programming Self-Efficacy Scale…
Descriptors: Programming, Computer Literacy, Middle School Students, Student Attitudes
Bezuidenhout, Hanrie S. – South African Journal of Childhood Education, 2021
Background: The South African Department of Basic Education (DBE) aims to expand science, technology, engineering and mathematics (STEM) learning in the national curriculum through a "Digital Skills for All Curriculum" (DSfAC) for Grade R-9. The DSfAC intends to educate a STEM-literate future citizenry with refined computational thinking…
Descriptors: Elementary School Students, STEM Education, Reading Programs, Curriculum Development
Tsai, Meng-Jung; Liang, Jyh-Chong; Hsu, Chung-Yuan – Journal of Educational Computing Research, 2021
Computational thinking has received tremendous attention from computer science educators and educational researchers in the last decade. However, most prior literature defines computational thinking as thinking outcomes rather than thinking processes. Based on Selby and Woodland's framework, this study developed and validated the Computational…
Descriptors: Computation, Thinking Skills, Skill Development, Technological Literacy
Falcinelli, Floriana; Moscetti, Caterina – Research on Education and Media, 2021
In the school year 2020-2021, the COVID-19 pandemic imposed distance learning (in Italian, the DAD acronym is used). Therefore, the Degree Course in Primary Education Sciences of the University of Perugia has proposed an innovative programme for the training of future teachers by developing a distance learning laboratory focusing coding and…
Descriptors: Preservice Teacher Education, Preservice Teachers, Early Childhood Education, Workshops
Wu, Ting-Ting; Chen, Jian-Ming – Journal of Educational Computing Research, 2022
Many countries have incorporated computational thinking (CT) and programming languages into their science and technology courses. Students can improve their CT ability by learning programming languages. Moreover, situated learning enables students to generate knowledge and master problem-solving skills through interaction with situations. This…
Descriptors: Computer Software, Thinking Skills, Programming, Situated Learning
Umutlu, Duygu – Australasian Journal of Educational Technology, 2022
Integration of computational thinking and programming into science, technology, engineering, and math (STEM) classes is needed to promote students' learning of twenty-first century skills. Yet, teachers are not equipped to achieve this integration successfully as teacher education curricula do not generally align with this need. With the COVID-19…
Descriptors: Technological Literacy, Pedagogical Content Knowledge, Teaching Methods, Online Courses
de Ruiter, Laura E.; Bers, Marina U. – Computer Science Education, 2022
Background and Context: Despite the increasing implementation of coding in early curricula, there are few valid and reliable assessments of coding abilities for young children. This impedes studying learning outcomes and the development and evaluation of curricula. Objective: Developing and validating a new instrument for assessing young…
Descriptors: Programming Languages, Computer Software, Coding, Computer Science Education
Kjällander, Susanne; Mannila, Linda; Åkerfeldt, Anna; Heintz, Fredrik – Education Sciences, 2021
Digital competence and programming are actively highlighted areas in education worldwide. They are becoming part of curricula all over the world, including the Swedish elementary school curriculum, Children are expected to develop "computational thinking" through programming activities, mainly in mathematics--which are supposed to be…
Descriptors: Elementary School Students, National Curriculum, Computer Science Education, Programming
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