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Showing 1 to 15 of 25 results Save | Export
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Spencer, Deborah; Mark, June; Reed, Kristen; Goldenberg, Paul; Coleman, Kate; Chiappinelli, Kathryn; Kolar, Zachary – Mathematics Teacher: Learning and Teaching PK-12, 2023
As computer-science-for-all initiatives continue to grow, many schools are looking for ways to introduce computer science skills and thinking to elementary-age children. Some initiatives have focused on coding as its own endeavor, not integrated with other subjects like mathematics, science, or literacy. Increasingly, developers and researchers…
Descriptors: Computer Science Education, Teaching Methods, Thinking Skills, Elementary School Students
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Elif Çelik; Sevim Sevgi – Journal of Educational Technology and Online Learning, 2025
This research investigates the impact of mathematical problems created with Scratch on the problem-solving skills of 8th-grade middle school students. The research was based on the descriptive design of mixed research approaches. In this direction, the research model was single-group pretest-posttest design, which is a weak experimental design…
Descriptors: Middle School Students, Grade 8, Mathematics Instruction, Foreign Countries
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Welch, Lise E.; Shumway, Jessica F.; Clarke-Midura, Jody; Lee, Victor R. – Education Sciences, 2022
Programming activities have the potential to provide a rich context for exploring measurement units in early elementary mathematics. This study examines how a small group of young children (ages 5-6) express their emergent conception of a dynamic linear unit and the measurement concepts they found challenging. Video of an introductory programming…
Descriptors: Coding, Programming, Robotics, Measurement
Calder, Nigel – Mathematics Education Research Group of Australasia, 2022
This paper reports on teachers' perceptions of students learning as part of a project examining teacher practice and student learning when using "ScratchMaths" in their classroom programmes. The project used design-based methodology, incorporating video-recorded classroom excerpts; teacher interviews; and teacher analysis and review of…
Descriptors: Elementary School Students, Mathematics Instruction, Coding, Cognitive Processes
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Brady, Corey; Vogelstein, Lauren; Gresalfi, Melissa; Knowe, Madison – North American Chapter of the International Group for the Psychology of Mathematics Education, 2021
STEM integration holds significant promise for supporting students in making connections among ideas and ways of thinking that might otherwise remain "siloed." Nevertheless, activities that integrate disciplines can present challenges to learners. In particular, they can require students to shift epistemological framing, demands that can…
Descriptors: Mathematics Instruction, Computer Science Education, STEM Education, Coding
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Hyeseong Lee; Seung H. Kim; Hae Min Yu – International Journal on E-Learning, 2024
Despite the benefits of teaching computational thinking (CT) and applying coding tools in schools, many teachers feel unprepared to use these technologies. Hence, we introduced CT concepts and coding tools to pre-service teachers (n=36; 17 in online class and 19 in in-person class), equipping them with digital competencies through activities with…
Descriptors: Coding, Mathematics Instruction, Pedagogical Content Knowledge, Faculty Development
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How, Meng-Leong; Looi, Chee-Kit – International Journal of Computer Science Education in Schools, 2018
Computational Thinking (CT) is pervasive in our daily lives and is useful for problem-solving. Decision-making is a crucial part of problem-solving. In the extant literature, problem-solving strategies in educational settings are often conveniently attributed to intuition; however, it is well documented that computer programmers might even have…
Descriptors: Mathematics Instruction, Equations (Mathematics), Scaffolding (Teaching Technique), Decision Making
Miller, Jodie; Larkin, Kevin – Mathematics Education Research Group of Australasia, 2017
In this paper, we present data from a study exploring the use of coding to promote mathematical thinking. A teaching experiment was undertaken with 40 Year 2 students participating in six 45-minute lessons of coding (one lesson per week for six weeks). All lessons were video-recorded and analysed to determine students' mathematical thinking.…
Descriptors: Foreign Countries, Mathematics Instruction, Perspective Taking, Video Technology
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Estapa, Anne; Hutchison, Amy; Nadolny, Larysa – Technology and Engineering Teacher, 2018
Computational thinking is an important and necessary way of thinking for computer programmers and other professionals in science, technology, engineering, and mathematics (STEM). Research on emerging practices around computational thinking that is developed through coding initiatives in schools reports that elementary children typically learn how…
Descriptors: Elementary Education, Thinking Skills, Teaching Methods, Computer Oriented Programs
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Stockero, Shari L.; Van Zoest, Laura R.; Peterson, Blake E.; Leatham, Keith R.; Rougée, Annick O. T. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2017
This study investigates teacher responses to a common set of high potential instances of student mathematical thinking to better understand the role of the teacher in shaping meaningful mathematical discourse in their classrooms. Teacher responses were coded using a scheme that disentangles the teacher move from other aspects of the teacher…
Descriptors: Mathematical Logic, Mathematics Instruction, Thinking Skills, Discussion (Teaching Technique)
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Hunt, Jessica H.; Empson, Susan B. – Learning Disability Quarterly, 2015
Little to no information exists explaining the nature of conceptual gaps in understanding fractions for students with learning disabilities (LD); such information is vital to practitioners seeking to develop instruction or interventions. Many researchers argue such knowledge can be revealed through student's problem-solving strategies. Despite…
Descriptors: Learning Disabilities, Mathematics Instruction, Problem Solving, Elementary School Students
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Livy, Sharyn; Downton, Ann; Muir, Tracey – Mathematics Teacher Education and Development, 2017
Developing pre-service teachers' (PSTs') knowledge of pedagogical practices can be particularly challenging within university classrooms. Teacher educators are well placed to provide PSTs with theoretical perspectives on pedagogical practices; what is particularly challenging, however, is linking theory with practice and developing PSTs' breadth…
Descriptors: Preservice Teachers, Teacher Competencies, Theory Practice Relationship, Mathematics Instruction
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Güçler, Beste – Research in Mathematics Education, 2014
Symbols play crucial roles in advanced mathematical thinking by providing flexibility and reducing cognitive load but they often have a dual nature since they can signify both processes and objects of mathematics. The limit notation reflects such duality and presents challenges for students. This study uses a discursive approach to explore how one…
Descriptors: Symbols (Mathematics), Coding, Educational Practices, Educational Strategies
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Polly, Drew – Journal of Computers in Mathematics and Science Teaching, 2015
Preparing pre-service teachers to effectively integrate technology in the classroom requires rich experiences that deepen their knowledge of technology, pedagogy, and content and the intersection of these aspects. This study examined elementary education pre-service teachers' development of skills and knowledge in a technology integration course…
Descriptors: Preservice Teachers, Elementary School Teachers, Mathematics Instruction, Technology Integration
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Xin, Yan Ping; Liu, Jia; Jones, Sarah R.; Tzur, Ron; Si, Luo – Journal of Educational Research, 2016
Reform efforts in mathematics education arose, in part, in response to constructivist works on conceptual learning. However, little research has examined how students with learning disabilities (LD) respond to constructivist-oriented instruction in mathematics, particularly in moment-to-moment interactions. To understand the nature of…
Descriptors: Mathematics Instruction, Constructivism (Learning), Learning Disabilities, Case Studies
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