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Jérôme Proulx – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Research studies are abundant in pointing at how the transition from additive to multiplicative thinking acts as a core challenge for students' understanding of proportionality. This said, we have yet to understand how this transition can be supported, and there remains significant questions to address about how students experience it. Recent work…
Descriptors: Mathematics Skills, Thinking Skills, Abstract Reasoning, Arithmetic
Identifying and Assessing Students' Transition Barriers between Additive and Multiplicative Thinking
Bao, Lei – Mathematics Education Research Group of Australasia, 2023
This paper reports on 73 Grades 3 to 6 students' written responses to equal groups, arrays, multiplicative comparison and Cartesian product word problems. It is part of a larger study relating to students' development of multiplicative thinking (MT). The potential of using multiplicative word problems as a diagnostic assessment to reveal students'…
Descriptors: Addition, Multiplication, Learning Processes, Mathematics Instruction
Michelle Cheung; Bronwyn Reid O’Connor; Ben Zunica – Mathematics Education Research Group of Australasia, 2024
Progressing from additive to multiplicative thinking is a key outcome of school mathematics, making ratios an essential topic of study in junior secondary. In this study, 15 Australian Year 8 students were administered a ratio test followed by semi-structured interviews to explore their conceptions of ratio prior to formal instruction. In this…
Descriptors: Secondary School Students, Mathematics Instruction, Foreign Countries, Multiplication
Malola, Mayamiko; Symons, Duncan; Stephens, Max – Australian Primary Mathematics Classroom, 2020
In this article, the authors argue that teachers need to possess appropriate understanding and diverse pedagogies to successfully move learners from additive to multiplicative thinking. Herein, they offer five pedagogical strategies that teachers can use to help students make this transition. Some of the challenges of learning multiplicative…
Descriptors: Mathematics Instruction, Teaching Methods, Multiplication, Thinking Skills
Nugraha, Yandika; Sa'dijah, Cholis; Susiswo; Chandra, Tjang Daniel – International Journal of Educational Methodology, 2023
Teacher knowledge is one of the main factors in the quality of mathematics learning. Many mathematics teachers have difficulty using proportional reasoning. Proportional reasoning is one of the essential aspects of the middle school mathematics curriculum to develop students' mathematical thinking. Teachers should realize that developing…
Descriptors: Pedagogical Content Knowledge, Mathematics Teachers, Mathematics Instruction, Thinking Skills
Siemon, Dianne – Mathematics Education Research Group of Australasia, 2022
This paper draws on numerous data sources to better understand the shift from additive to multiplicative thinking in years 4 to 9. Research studies that have used the Scaffolding Numeracy in the Middle Years assessment tasks have found that while students can be supported to move through the early and upper zones of the Learning and Assessment…
Descriptors: Mathematics Skills, Thinking Skills, Middle School Students, Multiplication
Günes, Canan – Digital Experiences in Mathematics Education, 2021
When two third-graders collaboratively manipulated a multi-modal, digital learning device called TouchTimes (hereafter, TT), that introduces multiplication through visual, tangible and symbolic means, their thinking about quantity shifted from being additive to being multiplicative. In this study, I examine the children's interactions around/with…
Descriptors: Multiplication, Thinking Skills, Mathematics Instruction, Teaching Methods
Degrande, Tine; Verschaffel, Lieven; Van Dooren, Wim – Educational Studies in Mathematics, 2020
Previous research demonstrated that some children inappropriately solve multiplicative missing-value word problems additively, while others inappropriately solve additive missing-value word problems multiplicatively. Besides lacking skills, children's preference for additive or multiplicative relations has been shown to contribute to those errors.…
Descriptors: Elementary School Students, Mathematics Skills, Problem Solving, Multiplication
Ziegler, Esther; Edelsbrunner, Peter A.; Stern, Elsbeth – European Journal of Psychology of Education, 2021
Teacher-directed and self-directed learning have been compared across various contexts. Depending on the settings and the presentation of material, mixed benefits are found; the specific circumstances under which either condition is advantageous are unclear. We combined and reanalyzed data from two experimental studies investigating the effects of…
Descriptors: Elementary School Mathematics, Mathematics Instruction, Elementary School Teachers, Elementary School Students
Yavuzsoy Kose, Nilufer; Kiziltoprak, Ayhan – Eurasian Journal of Educational Research, 2020
Purpose: Since there are a limited number of studies on how to develop relational thinking in secondary school students in mathematics education literature, this study will contribute to the field both in theoretical terms and concerning the implications for in-class applications. In this respect, this study aims to examine how to develop the…
Descriptors: Secondary School Students, Thinking Skills, Skill Development, Video Technology
Kaufman, Odd Tore – European Journal of Science and Mathematics Education, 2018
This article investigates how students in third grade learn to reason on multiplication when they first encounter that concept in the classroom context. By analysing the data from 24 classrooms focused on teaching and learning multiplication, the article aims at contributing to the research and conceptualisations about how students learn to…
Descriptors: Addition, Multiplication, Thinking Skills, Elementary School Mathematics
Ebby, Caroline B.; Petit, Marjorie – Mathematics Teaching in the Middle School, 2017
A learning trajectory describes the progression of student thinking and strategies over time in terms of sophistication of both conceptual understanding and procedural fluency. Currently, learning trajectories exist in the research literature for many mathematical domains, including counting, addition and subtraction, multiplicative thinking,…
Descriptors: Formative Evaluation, Mathematics Instruction, Mathematics Teachers, Mathematical Concepts
Nunes, Terezinha; Bryant, Peter; Evans, Deborah; Barros, Rossana – Mathematical Thinking and Learning: An International Journal, 2015
Before starting school, many children reason logically about concepts that are basic to their later mathematical learning. We describe a measure of quantitative reasoning that was administered to children at school entry (mean age 5.8 years) and accounted for more variance in a mathematical attainment test than general cognitive ability 16 months…
Descriptors: Young Children, Thinking Skills, Logical Thinking, Concept Formation
Hilton, Annette; Hilton, Geoff; Dole, Shelley; Goos, Merrilyn – Mathematics Education Research Journal, 2013
Proportional reasoning involves the use of ratios in the comparison of quantities. While it is a key aspect of numeracy, particularly in the middle years of schooling, students do not always develop proportional reasoning naturally. Research suggests that many students do not apply proportional methods appropriately and that they often erroneously…
Descriptors: Diagnostic Tests, Thinking Skills, Psychometrics, Skill Analysis
Lee, Jae Ki; Licwinko, Susan; Taylor-Buckner, Nicole – Journal of Mathematics Education at Teachers College, 2013
PEMDAS is a mnemonic device to memorize the order in which to calculate an expression that contains more than one operation. However, students frequently make calculation errors with expressions, which have either multiplication and division or addition and subtraction next to each other. This article explores the mathematical reasoning of the…
Descriptors: Case Studies, Mathematics, Mathematics Instruction, Mathematical Logic
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