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Zolfaghari, Maryam – ProQuest LLC, 2023
The purpose of this study was to understand children's operations on fragmenting schemes while they are engaged with three different visual models, including circle, rectangle, and length model. This study was a sequential explanatory mixed method, which included two phases that happened sequentially with the dominant use of the quantitative…
Descriptors: Elementary School Students, Elementary School Mathematics, Fractions, Numbers
Cartwright, Katherin; Way, Jennifer – Mathematics Education Research Group of Australasia, 2023
Conceptual body movement in education is an external representation mode that research suggests can support children's learning about mathematical phenomena. Children's learning and understanding of mathematical concepts and processes, such as number structure and relationships, number sequencing, position, or geometric properties, may be…
Descriptors: Human Body, Motion, Mathematics Education, Mathematical Concepts
Barros, Pedro Henrique Alves; da Silva, Patrícia Nunes – International Journal of Mathematical Education in Science and Technology, 2022
The Tchokwe people lived on the African continent, in Mozambique and Angola. The sona belong to their cultural tradition. The sona are drawings made in the sand by older members of the tribe to tell stories, essential in the youngests' formation. In this article, we show a relationship between the sona and the greatest common divisor (GCD) of two…
Descriptors: African Culture, Mathematics Instruction, Numbers, Concept Formation
Yan, Xiaoheng; Zazkis, Rina – International Journal of Mathematical Education in Science and Technology, 2022
Windmill images and shapes have a long history in geometry and can be found in problems in different mathematical contexts. In this paper, we share and discuss various problems involving windmill shapes and solutions from geometry, algebra, to elementary number theory. These problems can be used, separately or together, for students to explore…
Descriptors: Mathematics Instruction, Teaching Methods, Geometry, Algebra
Yousif, Sami R.; Alexandrov, Emma; Bennette, Elizabeth; Aslin, Richard N.; Keil, Frank C. – Developmental Science, 2022
A large and growing body of work has documented robust illusions of area perception in adults. To date, however, there has been surprisingly little in-depth investigation into children's area perception, despite the importance of this topic to the study of quantity perception more broadly (and to the many studies that have been devoted to studying…
Descriptors: Computation, Decision Making, Task Analysis, Heuristics
Izsák, Andrew; Beckmann, Sybilla – Educational Studies in Mathematics, 2019
We examine opportunities and challenges of applying a single, explicit definition of multiplication when modeling situations across an important swathe of school mathematics. In so doing, we review two interrelated conversations within multiplication research. The first has to do with identifying and classifying situations that can be modeled by…
Descriptors: Multiplication, Mathematics Instruction, Measurement, Numbers
Katzin, Naama; Salti, Moti; Henik, Avishai – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
At the early stages of concept acquisition, physical properties are inseparable of the concepts they form. With development, the concept seems to depart from the physical entities from which it emerged and seems to exist beyond its physical attributes. Numerosity is an abstract concept; however, physical properties such as diameter, area, and…
Descriptors: Numbers, Holistic Approach, Concept Formation, Geometric Concepts
Yeo, Joseph – Australian Mathematics Teacher, 2017
In many countries, teachers often have to set their own questions for tests and examinations: some of them even set their own questions for assignments for students. These teachers do not usually select questions from textbooks used by the students because the latter would have seen the questions. If the teachers take the questions from other…
Descriptors: Mathematics Instruction, Geometry, Geometric Concepts, Numbers
Alves, Francisco Regis Vieira; Vieira, Renata Passos Machado; Catarino, Paula Maria Machado Cruz – International Electronic Journal of Mathematics Education, 2020
In this work, recurrent and linear sequences are studied, exploring the teaching of these numbers with the aid of a computational resource, known as Google Colab. Initially, a brief historical exploration inherent to these sequences is carried out, as well as the construction of the characteristic equation of each one. Thus, their respective roots…
Descriptors: Educational Technology, Technology Uses in Education, Geometric Concepts, Numbers
Morano, Stephanie; Riccomini, Paul J.; Lee, Joo-Young – Learning Disabilities Research & Practice, 2019
Abstract Assessment results are used to investigate relations between performance on a fraction number line estimation task and a circular area model estimation task for students with LD in Grades 6-8. Results indicate that students' abilities to represent fractions on number lines and on circular area models are distinct skills. In addition,…
Descriptors: Fractions, Learning Disabilities, Students with Disabilities, Numbers
Zahn, Maurício – International Journal of Mathematical Education in Science and Technology, 2017
This paper presents an interesting deduction of the Golden Spiral equation in a suitable polar coordinate system. For this purpose, the concepts of Golden Ratio and Golden Rectangle, and a significant result for the calculation of powers of the Golden Ratio ? using terms of the Fibonacci sequence are mentioned. Finally, various geometrical…
Descriptors: Mathematics Instruction, Mathematical Concepts, Equations (Mathematics), Geometric Concepts
Kelly, Anthony E. – Journal of Learning Analytics, 2017
In this short thought-piece, I attempt to capture the type of freewheeling discussions I had with our late colleague, Mika Seppälä, a research mathematician from Helsinki. Mika, not being a psychometrician or learning scientist, was blissfully free from the design constraints that experts sometimes ingest, unwittingly. I also draw on delightful…
Descriptors: Data, Learning, Data Analysis, Numbers
Smith, Emily M.; Zwolak, Justyna P.; Manogue, Corinne A. – Physical Review Physics Education Research, 2019
Mathematical reasoning with algebraic and geometric representations is essential for success in upperdivision and graduate-level physics courses. Complex algebra requires student to fluently move between algebraic and geometric representations. By designing a task for middle-division physics students to translate a geometric representation to…
Descriptors: College Students, Physics, Science Instruction, Algebra
Wheeler, Ann; Champion, Joe – Mathematics Teaching in the Middle School, 2016
Students are faced with many transitions in their middle school mathematics classes. To build knowledge, skills, and confidence in the key areas of algebra and geometry, students often need to practice using numbers and polygons in a variety of contexts. Teachers also want students to explore ideas from probability and statistics. Teachers know…
Descriptors: Probability, Middle School Students, Mathematics, Mathematics Instruction
Sparavigna, Amelia Carolina; Baldi, Mauro Maria – International Journal of Mathematical Education in Science and Technology, 2017
The regular pentagon had a symbolic meaning in the Pythagorean and Platonic philosophies and a subsequent important role in Western thought, appearing also in arts and architecture. A property of regular pentagons, which was probably discovered by the Pythagoreans, is that the ratio between the diagonal and the side of these pentagons is equal to…
Descriptors: Geometric Concepts, Geometry, Mathematical Concepts, Problem Solving