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Duatepe-Paksu, Asuman; Boz-Yaman, Burçak – Australian Mathematics Education Journal, 2021
This paper aims to present ways in which origami can be used in the mathematics classroom. Origami provides powerful tools for examining mathematical concepts. The authors explain how origami can be used in senior high school and tertiary levels to explore a Platonic octahedron by focusing on connections between mathematical topics. The folding…
Descriptors: Handicrafts, Manipulative Materials, High School Students, College Students
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Ioannis Rizos; Evaggelos Foykas – Pedagogical Research, 2024
The teaching of first-degree equations is a key point in secondary school curricula and requires the careful planning and selection of appropriate teaching materials. On the other hand, dyslexia, a specific learning disability, is increasingly common in the classroom. Thus, in the context of inclusion, the teaching methodology used by the…
Descriptors: Dyslexia, Students with Disabilities, Equations (Mathematics), Mathematics Instruction
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Giovanna Valori; Belén Giacomone; Veronica Albanese; Natividad Adamuz-Povedano – International Journal of Mathematical Education in Science and Technology, 2024
The combined use of origami and dynamic geometry software has recently appeared in mathematics education to enrich students' geometric thinking. The objective of this research is to study the roles played by the interaction of two artifacts, paper folding and GeoGebra, in a construction-proving problem as well as its generalization in the…
Descriptors: Educational Technology, Manipulative Materials, Computer Software, Geometry
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Brendan H. O'Connor – Classroom Discourse, 2024
How do people use objects and gestures to shape scientific argumentation? This paper engages the concept of "entanglement" as a heuristic for considering the potentials and constraints that gestures and materials create for interactants. Drawing on video recorded data from an academic-year-long linguistic ethnography of a high school…
Descriptors: High School Students, Secondary School Science, Science Instruction, Nonverbal Communication
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Giovanna Valori; Veronica Albanese; Natividad Adamuz-Povedano; Emilse Gómez-Torres – International Journal of Education in Mathematics, Science and Technology, 2024
Finding teaching methods that foster students' development of geometric thinking and visualization skills is still a current challenge. This study analyses the effects of the combined use of paper folding and dynamic geometry on high school students' geometric thinking and visualization skills. A quasi-experimental study pretest/post-test design…
Descriptors: Mathematics Instruction, Geometry, Educational Technology, Distance Education
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Fuwa Yoshioka; Masato Takada; Rui Itoh; Airi Uzawa; Junpei Hayakawa – Journal of Chemical Education, 2024
Xerogels, exemplified by silica gel, are substances formed by drying gels, resulting in a loss of their internal solvents. Understanding the production and properties of xerogels is crucial, owing to their widespread applications. Xerogel chemistry is widely utilized in several substances; therefore, understanding this chemistry is extremely…
Descriptors: Synthesis, Handwriting, Science Instruction, Teaching Methods
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Grace Bennett-Pierre; Thomas F. Shipley; Nora S. Newcombe; Elizabeth A. Gunderson – Cognitive Research: Principles and Implications, 2025
Non-rigid spatial thinking, or mental transformations where the distance between two points in an object changes (e.g., folding, breaking, bending), is required for many STEM fields but remains critically understudied. We developed and tested a non-rigid, ductile spatial skill measure based on reasoning about knots with 279 US adults (M = 30.90,…
Descriptors: STEM Education, Spatial Ability, Gender Differences, Object Manipulation
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Seth Amoako Atta; Ebenezer Bonyah; Francis Ohene Boateng; Prince Kusi – African Educational Research Journal, 2025
The objective of the study was to use mortar to teach the concept of the surface area of a cylinder. The target group included knowledgeable Akan traditional artists, seasoned mathematics teachers, and senior high school students from the Ashanti Region in Ghana. Data collection tools included Focus Group Discussions and interviews, with informed…
Descriptors: Foreign Countries, African Languages, Mathematics Education, Mathematics Instruction
James Russo; Sarah Hopkins; Jane Hubbard; Anne Roche – Mathematics Education Research Group of Australasia, 2025
This study explores two Year 2 teachers' perceptions of the affordances of a novel mathematical manipulative, the Keyboard, based on their observations of its use in the classroom. Analysis of the semi-structured interviews indicated that the Keyboard's linear structure, design features, and hands-on nature promoted flexible number strategies,…
Descriptors: Affordances, Novelty (Stimulus Dimension), Manipulative Materials, Mathematics Instruction
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Schifter, Deborah; Russell, Susan Jo – ZDM: Mathematics Education, 2022
This article addresses the nature of student-generated representations that support students' early algebraic reasoning in the realm of generalized arithmetic. We analyzed representations created by students for the following qualities: representations that distinguish the behavior of one operation from another, that support an explanation of a…
Descriptors: Mathematical Logic, Algebra, Arithmetic, Mathematics Skills
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Rich, Kathryn M. – Digital Experiences in Mathematics Education, 2023
Incorporating visual representations, rather than strictly relying on symbolic representations, is a research-based strategy for supporting fraction learning. However, students must also make transitions between visual and symbolic fraction representations to apply the conceptual understanding they gained from visual representations to symbolic…
Descriptors: Elementary School Teachers, Elementary School Mathematics, Mathematics Instruction, Teaching Methods
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Hernández, Irene Tovar; Vaquero, José Manuel – Physics Teacher, 2023
Old physics textbooks give us a great opportunity to learn about the history of science and rediscover different methods to teach physics to our students. There are many disused and forgotten experiments in them, but these can still be very useful to affirm and understand physics. This is the case of an instrument used in the 19th century to…
Descriptors: Science Education, Physics, Science History, Scientific Concepts
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Byrne, Elizabeth M.; Jensen, Hanne; Thomsen, Bo Stjerne; Ramchandani, Paul G. – Review of Education, 2023
Physical manipulatives (PMs) are concrete objects used during hands-on learning activities (e.g., building blocks, fraction tiles, counters), and are widely used in primary-school teaching, especially during maths instruction. This scoping review collated studies that have examined the effectiveness of educational PM interventions with pre-primary…
Descriptors: Manipulative Materials, Preschool Education, Elementary Education, Mathematics Education
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Ediyanto Ediyanto; Lia Liesdiawati; Asep Sunandar; Wiwik D. Hastuti – Pegem Journal of Education and Instruction, 2023
The hearing impairment can result in students having difficulty accepting learning. Obstacles Students in special schools when observing the understanding the numeracy skills. Students have problems sorting numbers and adding numbers from 1 to 10. Numeracy skills are an introductory lesson in learning mathematics. Several studies have shown that…
Descriptors: Numeracy, Mathematics Skills, Deafness, Students with Disabilities
Cassandra M. Smith – ProQuest LLC, 2023
All students, including students with learning disabilities, deserve a mathematics education that successfully prepares them for their future endeavors. This preparation includes effective instruction in algebra, which is known as the gatekeeper to post-secondary schooling, employment, and constructive citizenry. However, majority of students with…
Descriptors: Mathematics Instruction, Students with Disabilities, Learning Disabilities, Algebra
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