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Joohi Lee; Sham'ah Yunus; Joo Ok Lee – Early Childhood Education Journal, 2025
Robotics has emerged as a popular interdisciplinary pedagogical approach in the field of education to teach children STEM concepts. By providing playful learning experiences, the use of robots engages children in an active learning process, making it an effective tool to promote their targeted knowledge, skills, and disposition towards STEM,…
Descriptors: Preschool Children, Preschool Education, Programming, Skill Development
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Kalliopi Aslanoglou; Nikolaos C. Zygouris; Stella Tsermentseli; Eleftheria Beazidou; Apostolos Xenakis – Pedagogical Research, 2025
The present pilot study outlines findings from a study that evaluated the efficacy of educational robots in enhancing children's cognitive skills and historical knowledge. Applying LEGO® Wedo 2.0, the study focused on typically developing nine-year-old students in a K-12 public school setting. The hypothesis posited that students using robotics…
Descriptors: Robotics, Problem Solving, Skill Development, History Instruction
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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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Edgar Omar López-Caudana; Paloma Suarez-Brito; Jose Jaime Baena-Rojas – Educational Process: International Journal, 2025
Background/purpose: This study aimed to investigate teachers' perceptions of using advanced technological tools, specifically the NAO robot, in co-teaching settings to enhance class development and promote complex thinking in higher education. Complex thinking is a crucial skill in higher education, enabling students to effectively address and…
Descriptors: Robotics, Teacher Attitudes, Educational Technology, Technology Uses in Education
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Jian-Wen Fang; Jing Chen; Xiao-Ge Guo; Qing-Ke Fu; Gwo-Jen Hwang; Yun-Fang Tu – Education and Information Technologies, 2025
Digital competence is an essential skill for pre-service teachers, and self-regulation is an important factor in this competence. However, lack of emotional support often affects development of students' digital competence. Therefore, an emotional support-embedded robot-based self-regulated learning (ES-RSRL) system was developed. This ES-RSRL…
Descriptors: Robotics, Technology Uses in Education, Independent Study, Electronic Learning
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Segun Michael Ojetunde; Umesh Ramnarain – Smart Learning Environments, 2025
Learning interaction patterns is key to the explanation of learning outcomes. Different studies have reported the relationship between classroom process variables and learning outcomes in a traditional classroom setting. However, the advent of robotics and its attendant student-robot interaction moderated by students' mathematical ability is yet…
Descriptors: Robotics, Technology Uses in Education, Mathematics Skills, Outcomes of Education
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Theodosios Sapounidis; Sophia Rapti; Julie Vaiopoulou – Journal of Science Education and Technology, 2025
Communication, collaboration, critical thinking, and creativity are regarded as core skills of the twenty-first century required to succeed in life and working frameworks. Meanwhile, new technologies have entered educational settings to facilitate children's development of competencies. During the last decade, several studies have been conducted…
Descriptors: Robotics, Creative Thinking, Critical Thinking, Kindergarten
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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
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Lehong Shi; Roger Hill – Journal of Technology Education, 2025
Engineering and technology teachers have advocated using robotics and coding to cultivate students' computational thinking and problem-solving skills at PreK-12 levels. Understanding teachers' perceptions of how preschool children develop strategies and skills for engaging in robotics and coding activities is crucial for promoting the early use of…
Descriptors: Robotics, Coding, Computation, Thinking Skills
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Haoxin Xu; Tianrun Deng; Xianlong Xu; Xiaoqing Gu; Lingyun Huang; Haoran Xie; Minhong Wang – Education and Information Technologies, 2025
In the 21st century, the urgent educational demand for cultivating complex skills in vocational training and learning is met with the effectiveness of the four-component instructional design model. Despite its success, research has identified a notable gap in the address of formative assessment, particularly within computer-supported frameworks.…
Descriptors: Models, Instructional Design, Computer Assisted Testing, Formative Evaluation
OECD Publishing, 2025
As the capabilities of artificial intelligence (AI) and robotics continue to evolve, and the ways in which humans carry out tasks change as a result, education systems must begin to reassess the competencies required for life and work in the new context. These changes could be significant and fast. Therefore, policymakers must look beyond…
Descriptors: Artificial Intelligence, Technology Uses in Education, Robotics, Educational Benefits
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Shujun Dong; Ran Zhi; Feng Gan – European Journal of Education, 2025
As educational paradigms continue to evolve in response to technological advancements, there is growing interest in interdisciplinary approaches that bridge the gap between STEM and the arts. One such emerging area is the integration of robotics into art education, which holds the potential to enrich learning experiences and foster a range of…
Descriptors: Technology Integration, Technology Uses in Education, Art Education, Constructivism (Learning)