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Ahu Canogullari; Ayhan Kursat Erbas – Interactive Learning Environments, 2024
Technological mediums such as dynamic environments with drag-and-drop features have been considered promising agents in helping students explore and generate conjectures about mathematical concepts. This study investigated the dragging modalities sixth and seventh-grade students use in solving proportional problems in a dynamic geometry…
Descriptors: Problem Solving, Interaction, Computer Simulation, Grade 6
Jessica Thomas; Sara Bicard; Kate D. Simmons – Journal of Special Education Technology, 2025
An alternating treatments design was used to analyze the effects of concrete and virtual manipulatives on the duration and number of correctly solved linear equations by three middle school students with cognitive disabilities. Participants physically manipulated algebra tiles to solve an equation during the concrete manipulative condition. During…
Descriptors: Students with Disabilities, Algebra, Problem Solving, Manipulative Materials
Barlow, Elizabeth K.; Barlow, Angela T.; Nadelson, Louis S. – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2023
Advancements in computing have led to increased interest in integrating computational thinking in the K-12 curriculum. Computational thinking can be defined as a problem-solving process with the goal of developing algorithms that can be coded for computer use. With its emphasis on problem solving, the processes associated with computational…
Descriptors: Computation, Thinking Skills, Student Attitudes, Preservice Teachers
Javier Del Olmo-Muñoz; Pascual D. Diago; David Arnau; David Arnau-Blasco; José Antonio González-Calero – ZDM: Mathematics Education, 2024
This research, following a sequential mixed-methods design, delves into metacognitive control in problem solving among 5- to 6-year-olds, using two floor-robot environments. In an initial qualitative phase, 82 pupils participated in tasks in which they directed a floor robot to one of two targets, with the closer target requiring more cognitive…
Descriptors: Elementary School Students, Metacognition, Robotics, Computer Simulation
Xin Gong; Weiqi Xu; Shufan Yu; Jingjing Ma; Ailing Qiao – British Journal of Educational Technology, 2025
Tangible programming tools have become a mainstream teaching aid in gamification programming learning (GPL) due to their interactivity and ability to enhance novice learners' computational thinking and spatial reasoning skills. However, comparing the relative efficacy of different programming tools that simultaneously support these skills was not…
Descriptors: Computation, Thinking Skills, Spatial Ability, Gamification
Sezai Kocabas; Signe Kastberg; Melva Grant; Hanan Alyami – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Research on pre-service teachers' discussion practices has focused on decompositions of practice into subskills, while acknowledging the importance of the role of context, identity, and relationships between interactive moves. We focused on 66 elementary preservice teachers' (PSTs') framing-launching moves in discussions after problem-solving in a…
Descriptors: Preservice Teachers, Elementary School Teachers, Discussion (Teaching Technique), Problem Solving
Arici, Faruk; Yilmaz, Mehmet – Journal of Computer Assisted Learning, 2023
Background: Augmented reality (AR) is a widely used technology in science education today. Problem-based learning (PBL) is one of the teaching methods employed in science education for a long time. Studies where AR and PBL are used together are new and rare. PBL and AR technology are used together in the study because it is believed that…
Descriptors: Computer Simulation, Problem Based Learning, Science Education, Educational Technology
Kyungbin Kwon; Thomas A. Brush; Keunjae Kim; Minhwi Seo – Journal of Educational Computing Research, 2025
This study examined the effects of embodied learning experiences on students' understanding of computational thinking (CT) concepts and their ability to solve CT problems. In a mixed-reality learning environment, students mapped CT concepts, such as sequencing and loops, onto their bodily movements. These movements were later applied to robot…
Descriptors: Thinking Skills, Computer Science Education, Robotics, Programming
Elkjaer, Morten; Thomsen, Lui A. – Digital Experiences in Mathematics Education, 2022
This article presents the theoretical considerations leading to the design and development of a digital experience for teaching linear equations using a modified balance model for equation solving. We modified the balance to alter physics behaviour in a virtual reality (VR) experience, to strengthen students' schemes for solving linear equations…
Descriptors: Educational Technology, Technology Uses in Education, Mathematics Instruction, Equations (Mathematics)
Merve Aydin; Ünal Çakiroglu – Journal of Computer Assisted Learning, 2025
Background: Students experience higher-order thinking skills by finding ways to solve the problem, debugging errors while applying the solution, and testing the solution in programming. However, the inability to create schemas that will characterise programming structures is one of the difficulties during this process. Objectives: This study aimed…
Descriptors: Programming, Computer Science Education, Thinking Skills, Problem Solving
Bone, Erin K.; Bouck, Emily C.; Satsangi, Rajiv – Exceptionality, 2023
Manipulatives are an effective mathematical tool to support students with disabilities in the area of mathematics. Yet, there remain inconsistencies in terms of which type -- concrete or virtual -- is more effective for students with disabilities working on algebra related content and which type is preferred by students. The researchers used an…
Descriptors: Manipulative Materials, Students with Disabilities, Mathematics Instruction, Algebra
Wang, Cixiao; Wang, Jingxin; Shi, Zhu; Wu, Feng – Interactive Learning Environments, 2023
Digital instructional tools, such as virtual manipulatives, have been widely adopted as an enhanced approach to inquiry-based learning. However, the optimal ratio of mobile devices to students in instructional settings remain controversial. This research introduced a counterbalanced quasi-experiment to compare the learning performance and…
Descriptors: Comparative Analysis, Science Education, Inquiry, Active Learning
Pretty Thandiswa Mpiti; Bulelwa Makena; Motsi Qoyi – Research in Social Sciences and Technology, 2023
Augmented reality (AR) has recently become a new leading edge in mobile-assisted language learning attributed to the popularity of smartphones. The place-based approach (PBA) is a situated, context-rich teaching and learning modality characterized by its relationship to place. AR and PBA have proven to be useful in educational settings; however,…
Descriptors: Computer Simulation, Rural Schools, Educational Technology, Telecommunications
Rajiv Satsangi; Stephanie D. Sigmon – Remedial and Special Education, 2024
Whole number computations are a critical skill that serves as a foundation upon which higher-order concepts in mathematics are taught to children. To facilitate their instruction, educators often use multiple representations to support a child's cognition. Representations with physical manipulatives are widely studied through a graduated…
Descriptors: Multiplication, Thinking Skills, Elementary School Students, Learning Problems
Aguilar, Jair J.; Flores, Yajaira – EURASIA Journal of Mathematics, Science and Technology Education, 2022
First-year elementary pre-service teachers usually conduct field observations but are barely offered opportunities to engage in well-structured teaching situations. In the current study, we implemented mixed-reality simulations (MRS) in a mathematics methods course to improve elementary pre-service teacher's abilities to elicit, question, and…
Descriptors: Preservice Teachers, Elementary School Teachers, Mathematics Instruction, Methods Courses