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Showing 1 to 15 of 23 results Save | Export
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Lorien Cafarella; Lucas Vasconcelos – Education and Information Technologies, 2025
Middle school students often enter Computer Science (CS) classes without previous CS or Computational Thinking (CT) instruction. This study evaluated how Code.org's block-based programming curriculum affects middle school students' CT skills and attitudes toward CT and CS. Sixteen students participated in the study. This was a mixed methods action…
Descriptors: Middle School Students, Computation, Thinking Skills, Problem Solving
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Zehui Zhan; Yao Tong; Xixin Lan; Baichang Zhong – Interactive Learning Environments, 2024
In recent years, Game-Based Learning (GBL) has been widely adopted in various educational settings. This paper aims to review empirical studies that adopt GBL in the field of AI education and explore its future research perspectives. After a systematic keyword search in the online database and a snowballing approach, a total of 125 empirical…
Descriptors: Game Based Learning, Robotics, Teaching Methods, Artificial Intelligence
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Özdemir, Furkan – Acta Didactica Napocensia, 2022
The aim of this study is to examine pre-service mathematics teachers' views on reasoning, importance of reasoning in geometry and development of reasoning skills. The study was designed in the phenomenological (phenomenological) design, one of the qualitative research methods. The study group of the study was conducted on 61 pre-service teachers…
Descriptors: Preservice Teachers, Student Attitudes, Thinking Skills, Skill Development
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Cynthia Pinheiro Santiago; Antonio Rodrigo dos Santos Silva; José Wally Mendonça Menezes; Francisco José Alves de Aquino – Informatics in Education, 2025
The introductory programming disciplines, which include the teaching of algorithms and computational logic, have high failure and dropout rates. Developing Computational Thinking in students can contribute to learning programming fundamentals by building algorithmic and problem-solving skills. However, keeping students engaged in training such…
Descriptors: Gamification, Self Determination, Computation, Thinking Skills
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Agbo, Friday Joseph; Olaleye, Sunday Adewale; Bower, Matt; Oyelere, Solomon Sunday – Smart Learning Environments, 2023
Researchers are increasingly exploring educational games in immersive virtual reality (IVR) environments to facilitate students' learning experiences. Mainly, the effect of IVR on learning outcomes has been the focus. However, far too little attention has been paid to the influence of game elements and IVR features on learners' perceived…
Descriptors: Student Attitudes, Technology Uses in Education, Cognitive Processes, Teaching Methods
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Huang, Yueh-Min; Silitonga, Lusia M.; Murti, Astrid T.; Wu, Ting-Ting – Journal of Educational Computing Research, 2023
Higher-order thinking skills (HOTS) are reliable predictors of success in school and the workplace. A typical technique for encouraging higher-order thinking is to use instructional design interventions that engage learners in simple cognitive activities. Business simulation game (BSG) is one of the types of interactive learning environments that…
Descriptors: Learner Engagement, Undergraduate Students, Business Administration Education, Educational Games
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Emre Zengin; Yasemin Karal – International Journal of Assessment Tools in Education, 2024
This study was carried out to develop a test to assess algorithmic thinking skills. To this end, the twelve steps suggested by Downing (2006) were adopted. Throughout the test development, 24 middle school sixth-grade students and eight experts in different areas took part as needed in the tasks on the project. The test was given to 252 students…
Descriptors: Grade 6, Algorithms, Thinking Skills, Evaluation Methods
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Melati Khoirunnisya – International Society for Technology, Education, and Science, 2023
The research aimed to know the result of validity, practicality, and effectiveness of products from the development of games-based learning media in terms of students' mathematical reasoning in three-dimensional shapes. The type of research and development referred to ADDIE model which included five stages, namely analysis, design, development,…
Descriptors: Game Based Learning, Mathematics Instruction, Teaching Methods, Teacher Attitudes
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Iqbal A. Rizki; Nadi Suprapto; Hanandita V. Saphira; Yusril Alfarizy; Riski Ramadani; Aulia Dwi Saputri; Dewi Suryani – Journal of Pedagogical Research, 2024
Low levels of critical thinking skills and learning motivation, particularly in physics learning, pose significant challenges that must be promptly addressed to ensure students' future success. To tackle this issue, the present study endeavors to develop a Cooperative Model, Digital Game, and Augmented Reality (CAP)-based learning, which is both…
Descriptors: Foreign Countries, High School Students, Physics, Game Based Learning
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If Only Dia; Zetra Hainul Putra; Gustimal Witri; Dahnilsyah; Ayman Aljarrah – Mathematics Teaching Research Journal, 2024
This study aimed to develop a supplementary mathematics textbook on traditional game-based computational thinking for elementary school students. This textbook was developed using a research and development model consisting of five stages: analysis, design, development, implementation, and evaluation (ADDIE). The mathematical contexts of the…
Descriptors: Game Based Learning, Supplementary Reading Materials, Textbooks, Mathematics Education
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Gloria Concepcion Tenorio-Sepulveda; Katherine del Pilar Muñoz-Ortiz; Maria Soledad Ramirez-Montoya – Journal of Social Studies Education Research, 2025
Computational thinking (CT) is an indispensable higher-order competency in our complex, digitalized era; its development in students can be an effective tool for societal problem-solving. This research aimed to use an escape room to develop students' computational thinking using challenges oriented toward Sustainable Development Goal (SDG) 7 of…
Descriptors: Computation, Thinking Skills, Problem Solving, Game Based Learning
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Amos Oyelere Sunday; Friday Joseph Agbo; Jarkko Suhonen; Ilkka Jormanainen; Markku Tukiainen – Education and Information Technologies, 2025
The need to integrate the teaching and learning of computational thinking (CT) in K-12 education has been on the rise since it was identified as a skill for solving 21st-century problems. The co-design pedagogical approach has shown great potential in promoting effective communication of CT to both university and K-12 students with the support of…
Descriptors: Computation, Thinking Skills, Foreign Countries, Elementary Secondary Education
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Li, Jiansheng; Lin, Yuyu; Sun, Mingzhu; Shadiev, Rustam – Interactive Learning Environments, 2023
This study examined whether socially shared regulation of learning (SSRL) enhances students' algorithmic thinking performance, promotes learning participation and improves students' learning attitudes through game-based collaborative learning. The students learned algorithmic knowledge and completed programing tasks using Kodu, a new visual…
Descriptors: Cooperative Learning, Game Based Learning, Educational Environment, Algorithms
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Ríos Félix, José Mario; Zatarain Cabada, Ramón; Barrón Estrada, María Lucía – Education and Information Technologies, 2020
Digital literacy is a need for our current society. In Mexico, digital incursion programs are barely implemented, which represents an educational delay compared to other countries that have faced the need to integrate the teaching of digital skills, in a wide range of educational levels. This paper presents a learning environment of Computational…
Descriptors: Foreign Countries, Elementary School Students, Teaching Methods, Thinking Skills
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Shakeel Mohammad Cassam Atchia; Dhavini Chummun; Saheel Luckho – Journal of Biological Education, 2024
This study uses a case study methodology to showcase the use of the DTSICM (Design thinking Strategy to Identify and Clear Misconceptions) model, which provides a design thinking approach to identify and clear a common misconception on photosynthesis, held by a sample of 27 A-level students. As a first stage, data collected through the…
Descriptors: Design, Thinking Skills, Scientific Concepts, Misconceptions
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