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Jain, Sonal; Leung, Ho-Hon; Kamalov, Firuz – Mathematics Teaching Research Journal, 2022
Understanding the concept of area requires an understanding of the relationship between geometry and multiplication. The multiplicative reasoning required to find the areas of regular figures is used in many courses in elementary mathematical education. This paper explores various methods in which multiplicative reasoning is incorporated into the…
Descriptors: Mathematics Instruction, Mathematical Logic, Geometry, Multiplication
Panorkou, Nicole – Cognition and Instruction, 2021
This study presents the results of a series of design experiments that aimed to engage twelve fourth-grade students in mathematical activity exploring the volume of right prisms and cylinders as a dynamic sweep of a surface through a height, an approach that is referred to as Dynamic Measurement for Volume (DYME-V). This article describes this…
Descriptors: Thinking Skills, Measurement, Grade 4, Elementary School Students
Tisdell, Christopher C. – International Journal of Mathematical Education in Science and Technology, 2021
The purpose of this work is to explore alternative geometric pedagogical perspectives concerning justifications to 'fast' multiplication algorithms in a way that fosters opportunities for skill and understanding within younger, or less algebraically inclined, learners. Drawing on a visual strategy to justify these algorithms creates pedagogical…
Descriptors: Teaching Methods, Mathematics Instruction, Multiplication, Geometric Concepts
Lorraine Day; Dianne Siemon; Rosemary Callingham; Rebecca Seah – Research in Mathematics Education, 2024
Making connections within and between different aspects of mathematics is recognised as fundamental to learning mathematics with understanding. However, exactly what these connections are and how they serve the goal of learning mathematics is rarely made explicit in curriculum documents with the result that mathematics tends to be presented as a…
Descriptors: Mathematics Instruction, Evidence Based Practice, Multiplication, Mathematical Logic
Alyson E. Lischka; D. Christopher Stephens – Mathematics Teacher: Learning and Teaching PK-12, 2020
By using high-leverage models to connect student learning experiences to overarching concepts in mathematics, teachers can anchor learning in ways that allow students to make sense of content on the basis of their own prior experiences. A rectangular area model can be used as a tool for understanding problems that involve multiplicative reasoning.…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematics Curriculum, Learning Experience
Dimmel, Justin K.; Pandiscio, Eric A.; Bock, Camden; Reedman, Emma – North American Chapter of the International Group for the Psychology of Mathematics Education, 2021
We report the design of an analog technology, what we refer to as a SunRule, that uses sunlight to model multiplication. Physical models that explore multiplication are fixtures in elementary mathematics classrooms. Our interest in physical models of multiplication was driven by an overarching design problem: How could a physical tool realize a…
Descriptors: Geometry, Mathematics Instruction, Multiplication, Light
Quane, Kate; Brown, Leni – Australian Primary Mathematics Classroom, 2022
Mathematics educators and researchers have advocated for the use of manipulatives to teach mathematics for decades. The purpose of this article is to provide illustrative uses of a readily available manipulative rather than a complete list. From an Australian perspective, Pop-it fidget toys can be used across the mathematics curriculum. This paper…
Descriptors: Mathematics Instruction, Toys, Manipulative Materials, Foreign Countries
Siemon, Dianne; Callingham, Rosemary; Day, Lorraine – Mathematics Education Research Group of Australasia, 2021
The capacity to recognise, represent, and reason about relationships between different quantities, that is, to think multiplicatively, has long been recognised as critical to success in school mathematics in the middle years and beyond. Building on recent research that found a strong link between multiplicative thinking and algebraic, geometrical,…
Descriptors: Multiplication, Thinking Skills, Mathematics Achievement, Correlation
Aparicio Landa, Eddie; Sosa Moguel, Landy; Cabañas-Sánchez, Guadalupe – International Journal of Education in Mathematics, Science and Technology, 2021
This article examines the development of professional knowledge in pre-service mathematics teachers. From the discussion of a task associated with the multiplication of consecutive integer numbers, generalization is recognized as a process that allows to explore, to explain, and to validate mathematical results, and as an essential ability to…
Descriptors: Mathematical Concepts, Mathematics Instruction, Geometry, Algebra
Basu, Debasmita; Panorkou, Nicole – North American Chapter of the International Group for the Psychology of Mathematics Education, 2018
This study is part of a larger project exploring students' thinking of Dynamic Measurement (DYME), an approach to area measurement that engages students in dynamic digital experiences of measuring rectangular surfaces through sweeping lengths. The goal of this study was to evaluate the extent to which students could bridge the mathematical…
Descriptors: Measurement, Mathematics Instruction, Grade 3, Elementary School Students
Kinzer, Cathy J.; Stanford, Ted – Teaching Children Mathematics, 2013
This article presents a sequence of learning activities that lead to using the area model of multiplication to understand the distributive property (DP). The connection between area and multiplication is an important one, both for algebraic thinking and for geometry, as indicated in two of the critical areas for the third grade in the Common Core…
Descriptors: Mathematics Instruction, Multiplication, Learning Activities, Mathematical Concepts
Eames, Cheryl L.; Miller, Amanda L.; Kara, Melike; Cullen, Craig J.; Barrett, Jeffrey E. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2013
This report describes the longitudinal development of one student, Drew, in terms of his unit concepts in area and volume measurement situations across Grades 2 through 5. Data were collected during individual interviews and an open-response assessment within the context of a four-year longitudinal teaching experiment. Results indicate that Drew's…
Descriptors: Longitudinal Studies, Concept Formation, Elementary School Students, Interviews
Orrill, Chandra Hawley; Burke, James P. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2013
In this study, we considered how four teachers reasoned about proportional situations involving geometry. We used pilot interviews conducted with in-service middle grades teachers around a set of proportional tasks. Analysis relied on a knowledge in pieces lens to uncover the resources that each teacher used in solving the tasks and which…
Descriptors: Mathematics Instruction, Mathematical Concepts, Geometry, Interviews
Rathouz, Margaret M. – Mathematics Teaching in the Middle School, 2011
In the elementary grades, students learn procedures to compute the four arithmetic operations on multidigit whole numbers, often by being shown a series of steps and rules. In the middle grades, students are then expected to perform these same procedures, with further twists. The Reasoning and Proof Process Standard suggests that students need to…
Descriptors: Arithmetic, Mathematics Instruction, Multiplication, Mathematical Logic
Gibson, David – Mathematics Teaching, 2011
In the September 2010 issue of "Mathematics Teaching," Tom O'Brien offered practical advice about how to teach addition, subtraction, multiplication, and division and contrasted his point of view with that of H.H. Wu. In this article, the author revisits Tom's examples, drawing on his methodology while, hopefully, simplifying it and giving it…
Descriptors: Opinions, Number Systems, Methods, Teaching Methods
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