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Valérie Munier; Claude Devichi – International Journal of Mathematical Education in Science and Technology, 2024
This paper discusses the relevance of using physical situations to introduce the concept of angles at elementary school. We compare the effectiveness of two geometry teaching sequences. In the first one (physical sequence), the pupils learned the angle concept by experimenting on the playground (i.e. mesospace) and then modelling the situation. In…
Descriptors: Geometric Concepts, Elementary School Students, Mathematics Education, Teaching Methods
Anne-Cécile Mathé; Joris Mithalal – Educational Studies in Mathematics, 2025
Transitioning from material to theoretical geometry is often considered a significant challenge in compulsory education. Over the last twenty years, research rooted in the Theory of Didactical Situations (TDS) has explored how material geometry can support the teaching and learning of theoretical geometry, promoting continuity in teaching. These…
Descriptors: Mathematics Education, Geometric Concepts, Geometry, Mathematics Instruction
AnnaMarie Conner; Michal Tabach; Chris Rasmussen – International Journal of Research in Undergraduate Mathematics Education, 2023
One goal of inquiry-oriented instruction is student engagement with others' mathematical ideas. This paper analyzes a relatively short episode in which students engaged with others' ideas; the instructor facilitated engagement in order to support students in making mathematical progress. Students expressed some bafflement pertaining to the…
Descriptors: Intuition, Persuasive Discourse, Inquiry, Active Learning
Xu, Wenjing; Meng, Qun – Science Insights Education Frontiers, 2023
The Compulsory Education Course Standards for Mathematics 2022 have highlighted the educational objectives of junior secondary mathematics by emphasizing the development of mathematical competence and practical learning. Model consciousness, as one of the fundamental mathematical competencies to be developed at the junior secondary level, can…
Descriptors: Geometry, Mathematics Instruction, Standards, Educational Objectives
Hamilton L. Hardison – Mathematics Teacher: Learning and Teaching PK-12, 2024
A one-degree angle would certainly be difficult to draw accurately, especially without the aid of other tools like a protractor. However, mentally making a one-degree angle in visualized imagination is not only possible, but it is important for students' emergent understandings of angular measure. When students begin learning about length,…
Descriptors: Teaching Methods, Visualization, Mathematics Instruction, Elementary Secondary Education
King, Sarah; Rojo, Megan; Bryant, Diane Pedrotty – Intervention in School and Clinic, 2023
An understanding of concepts related to geometric measurement is considered to be critical to the development of individuals' mathematics knowledge. Specifically, the National Mathematics Advisory Panel's 2008 report listed the skills of area and perimeter as foundational for algebra readiness. Yet, this content knowledge continues to be an…
Descriptors: Mathematics Instruction, Geometric Concepts, Algebra, Manipulative Materials
Friedman, Michael – Paedagogica Historica: International Journal of the History of Education, 2018
This article aims to present the transformations as well as the decline of the Froebelian occupation of paper folding that took place in Great Britain between 1851 and the 1920s. Froebel's original intention was to transmit implicit mathematical knowledge to be learnt by means of folding several shapes. In contrast to his account of paper folding,…
Descriptors: Foreign Countries, Kindergarten, Paper (Material), Incidental Learning
González, Antonio; Gavilán-Izquierdo, José María; Gallego-Sánchez, Inés; Puertas, María Luz – Journal on Mathematics Education, 2022
The need to develop consistent theoretical frameworks for the teaching and learning of discrete mathematics, specifically of graph theory, has attracted the attention of the researchers in mathematics education. Responding to this demand, the scope of the Van Hiele model has been extended to the field of graphs through a proposal of four levels of…
Descriptors: Graphs, Validity, Mathematics Instruction, Geometry
Aydin-Güç, Funda – Journal of Inquiry Based Activities, 2021
This article presents theoretical knowledge, sample activities, and reflections from the implementation process on how teachers can benefit from the Variation Theory to help students enhance their mathematical comprehension. In this context, "congruence of triangles" was conceptualized as an object of learning. Critical aspects were…
Descriptors: Educational Environment, Learning Theories, Geometry, Geometric Concepts
McFeetors, P. Janelle; MacDonald, Broek – Australian Primary Mathematics Classroom, 2020
In this article, the authors explore a number of interesting games as contexts for students learning geometry and enhancing their development of problem solving and reasoning. The games selected were appealing, content-aligned games for approximately four players with simple rules and 10-30 minutes of play time. The games were integrated by…
Descriptors: Geometry, Mathematics Education, Game Based Learning, Play
Carpenter, Yuen-ying; Sullivan, Erin Rae – Papers on Postsecondary Learning and Teaching, 2017
The visualization of chemical compounds in three-dimensions is a foundational skill in the study and practice of chemistry and related fields, and one which has the potential to be supported by interaction with virtual models. Here, we present a collaborative learning activity piloted in first-year chemistry which investigates if inquiry-driven…
Descriptors: Chemistry, Science Instruction, Spatial Ability, Geometric Concepts
Byrne, Martha – PRIMUS, 2017
This paper discusses the author's experiences of getting advanced undergraduate math students to engage in mathematical inquiry by using games as a vehicle for exploration. The students explored the mathematics behind SET®1, Spot it!®2, Blokus®3, and Six®4. Specifically, we present the experience of the instructor and students and how the games…
Descriptors: Undergraduate Students, Advanced Students, Mathematics Education, Inquiry
Maruyama, Ryoga; Ogata, Shinpei; Kayama, Mizue; Tachi, Nobuyuki; Nagai, Takashi; Taguchi, Naomi – International Association for Development of the Information Society, 2022
This study aims to explore an educational learning environment that supports students to learn conceptual modelling with the unified modelling language (UML). In this study, we call the describing models "UML programming." In this paper, we show an educational UML programming environment for science, technology, engineering, art, and…
Descriptors: Case Studies, Programming Languages, Learning Processes, Models
Cook, S. A.; Hartman, J.; Pierce, P. B.; Seaders, N. S. – PRIMUS, 2017
As mathematics educators we want our students to develop a natural curiosity that will lead them on the path toward solving problems in a changing world, in fields that perhaps do not even exist today. Here we present student projects, adaptable for several mid- and upper-level mathematics courses, that require students to formulate their own…
Descriptors: Mathematics, Mathematics Teachers, Algebra, Problem Solving
Fu, Zhengling – Journal of Education and Practice, 2016
Spatial language constitutes part of the basic fabric of language. Although languages may have the same number of terms to cover a set of spatial relations, they do not always do so in the same way. Spatial languages differ across languages quite radically, thus providing a real semantic challenge for second language learners. The essay first…
Descriptors: Spatial Ability, Second Language Learning, Semantics, Form Classes (Languages)