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Showing 1 to 15 of 18 results Save | Export
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Brian R. Belland; ChanMin Kim; Emre Dinç; Anna Y. Zhang – Educational Technology Research and Development, 2024
Computer science is often integrated within early childhood education (ECE) through the use of educational robots. This requires adequate preparation of ECE teachers to program and debug, which can be done with scaffolding. In this paper, we use a QUANT + qual mixed method approach incorporating lag sequential analysis, ICAP framework coding,…
Descriptors: Scaffolding (Teaching Technique), Early Childhood Teachers, Preservice Teachers, Computer Science Education
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Chiao Ling Huang; Lianzi Fu; Shih-Chieh Hung; Shu Ching Yang – Journal of Computer Assisted Learning, 2025
Background: Many studies have highlighted the positive effects of visual programming instruction (VPI) on students' learning experiences, programming self-efficacy and flow experience. However, there is a notable gap in the research on how these factors specifically impact programming achievement and learning intentions. Our study addresses this…
Descriptors: Attention, Self Efficacy, Visual Aids, Instructional Effectiveness
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Shumway, Jessica F.; Welch, Lise E.; Kozlowski, Joseph S.; Clarke-Midura, Jody; Lee, Victor R. – Mathematical Thinking and Learning: An International Journal, 2023
The purpose of this study was to explore how kindergarten students (aged 5-6 years) engaged with mathematics as they learned programming with robot coding toys. We video-recorded 16 teaching sessions of kindergarten students' (N = 36) mathematical and programming activities. Students worked in small groups (4-5 students) with robot coding toys on…
Descriptors: Kindergarten, Preschool Children, Mathematics Education, Knowledge Level
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Qin, Chao; Liu, Yanjia; Zhang, Hemei – Journal of Computer Assisted Learning, 2023
Background: Being easy to learn and fun, block-based programming tools are widely used to teach students introductory programming. Scratch and LEGO robots are two popular block-based programming tools. However, the objects they manipulate are completely different. Scratch manipulates graphical virtual sprites, whereas LEGO robots manipulate…
Descriptors: Foreign Countries, Undergraduate Students, Learner Engagement, Robotics
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Rafael Herrero-Álvarez; Rafael Arnay; Eduardo Segredo; Gara Miranda; Coromoto Leon – IEEE Transactions on Learning Technologies, 2025
RoblockLLy is an educational robotics simulator designed for primary and secondary school students, whose goal is to increase their interest in science, technology, engineering, and mathematics. In the particular case of computer science, it allows developing computational thinking skills. It has been designed with ease of use in mind. This free…
Descriptors: Secondary School Students, STEM Education, Computer Science Education, Robotics
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Socratous, Chrysanthos; Ioannou, Andri – Educational Technology Research and Development, 2021
The study aims to compare the effect of a structured versus an unstructured educational robotics (ER) curriculum on (a) the frequency and type of programming errors made by students in block-based programming, (b) their ability to debug a programme, and (c) their engagement in the learning process. The authors' hypothesis is that, in programming…
Descriptors: Robotics, Educational Technology, Programming Languages, Computer Science Education
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Verner, Igor M.; Perez, Huberth; Lavi, Rea – International Journal of Technology and Design Education, 2022
Student engagement has been described as active involvement in a learning activity that significantly affects learning achievement. This study investigated student engagement in robotics education, considering it as an instant emotional reaction on interaction with the teacher, the peers, and the robotic environment. The objective was to…
Descriptors: Learner Engagement, High School Students, Robotics, Grade 11
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Arslan, Kürsat; Tanel, Zafer – Education and Information Technologies, 2021
The purpose of this study was to determine IT teacher candidates' attitudes, self-efficacy and opinions about educational robotic-based programming education. The participants of this study consisted of 2nd class students in Computer Education and Instructional Technologies department of a university in Turkey. The study group of the research…
Descriptors: Student Attitudes, Positive Attitudes, Self Efficacy, Computer Science Education
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Scharber, Cassandra; Peterson, Lana; Chang, Yu-Hui; Barksdale, Sarah; Sivaraj, Ramya – Pedagogies: An International Journal, 2021
We recommend the conceptualization of computing as a critical literacy, and ground this conceptualization in considerations of historical and current realities in computing. The frameworks of connected learning and computational participation are recommended as guides for "doing" critical computing literacy. We present the findings from…
Descriptors: Critical Theory, Computer Science Education, Elementary Secondary Education, After School Programs
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Pei, Christina; Brady, Corey; Wilensky, Uri J. – AERA Online Paper Repository, 2017
To address a need for a more computationally literate population, we need to better understand the processes by which students engage with computer science. We thus designed a pilot study to explore how students come to identify with computer science. Specifically, how does engaging in making and take-apart activities impact students' sense of…
Descriptors: Self Evaluation (Individuals), Self Efficacy, Computer Science Education, Learner Engagement
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Merkouris, Alexandros; Chorianopoulos, Konstantinos; Kameas, Achilles – ACM Transactions on Computing Education, 2017
Pedagogy has emphasized that physical representations and tangible interactive objects benefit learning especially for young students. There are many tangible hardware platforms for introducing computer programming to children, but there is limited comparative evaluation of them in the context of a formal classroom. In this work, we explore the…
Descriptors: Computer Science Education, Programming, Robotics, Computers
Geeta Gambhir; Juliet Kyoshabire Kotonya – National Foundation for Educational Research, 2023
Right to Play's Plug-in-Play (PIP) project in Rwanda aims to enhance Science and Elementary Technology (SET) education through playful and interactive methods. This study, conducted by the National Foundation for Educational Research (NFER) and Three Stones International (TSI), explores the implementation of learning through play with technology…
Descriptors: Science Education, Technology Education, Teaching Methods, Elementary School Students
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Cukurbasi, Baris; Kiyici, Mubin – Educational Technology & Society, 2018
The purpose of this study was to investigate the high school students' views on instructions based on Flipped Classroom Model (FC) and LEGO applications. The case study, which is one of the qualitative research methods, was used within the scope of the study, the duration of which was 7 weeks. In order to choose the research group of the study,…
Descriptors: High School Students, Student Attitudes, Grade 10, Problem Based Learning
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Cielniak, G.; Bellotto, N.; Duckett, T. – IEEE Transactions on Education, 2013
This paper describes the integration of robotics education into an undergraduate Computer Science curriculum. The proposed approach delivers mobile robotics as well as covering the closely related field of Computer Vision and is directly linked to the research conducted at the authors' institution. The paper describes the most relevant details of…
Descriptors: Robotics, Computer Science Education, College Curriculum, Integrated Curriculum
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Lykke, Marianne; Coto, Mayela; Jantzen, Christian; Mora, Sonia; Vandel, Niels – Journal of Problem Based Learning in Higher Education, 2015
Based on the assumption that wellbeing, positive emotions and engagement influence motivation for learning, the aim of this paper is to provide insight into students' emotional responses to and engagement in different learning designs. By comparing students' reports on the experiential qualities of three different learning designs, their…
Descriptors: Foreign Countries, Problem Based Learning, Student Motivation, Learning Experience
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