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Patrick K. Kirkland; Claire Guang; Nicole M. McNeil – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Students with mature number sense make sense of numbers and operations, use reasoning to notice patterns, and flexibly select the most effective and efficient problem-solving strategies (McIntosh et al., 1997; Yang, 2005). Despite being highlighted in national standards and policy documents (CCSS, 2010; NCTM, 2000), the association between…
Descriptors: Elementary School Students, Grade 3, Grade 4, Grade 5
Cheng- Yao Lin; Kuan- Chun Chen; Jie Shi Liew; Ho-Feng Chueh – Mathematics Teacher: Learning and Teaching PK-12, 2024
Understanding negative numbers can be challenging for many students, as these concepts may seem less tangible than counting objects, which are commonly represented by positive numbers. In addition, the multiplication of two negative numbers resulting in a positive might appear inconsistent and puzzling to young learners who are used to seeing the…
Descriptors: Mathematics Education, Mathematics Skills, Number Concepts, Multiplication
Zetriuslita Zetriuslita; Sitti Fithriani Saleh; Baharullah Baharullah; Laelasari Laelasari – Research in Social Sciences and Technology, 2024
Online learning affects students' curiosity, so it is important to develop students' curiosity during the pandemic. The purpose of this study is to describe and analyze students' curiosity about online learning. This study was conducted in the Department of Mathematics Education during the odd semester 2021/2022 with 106 students in three…
Descriptors: Mathematics, Personality Traits, Student Characteristics, Electronic Learning
Haman, Maciej; Lipowska, Katarzyna – Developmental Science, 2021
People tend to underestimate subtraction and overestimate addition outcomes and to associate subtraction with the left side and addition with the right side. These two phenomena are collectively labeled 'operational momentum' (OM) and thought to have their origins in the same mechanism of 'moving attention along the mental number line'. OM in…
Descriptors: Preschool Children, Arithmetic, Attention, Spatial Ability
Soury-Lavergne, Sophie – Digital Experiences in Mathematics Education, 2021
The duo of artefacts is a simplified model of the complex systems of various manipulatives (either tangible or virtual) that mathematics teachers and their students use in classrooms. It offers a means to study the complexity of the interweaving of the tangible and of the digital worlds in the teaching and learning processes. A duo of artefacts is…
Descriptors: Manipulative Materials, Mathematics Instruction, Teaching Methods, Educational Technology
Sekeris, Elke; Verschaffel, Lieven; Luwel, Koen – European Journal of Psychology of Education, 2022
Computational estimation is seen as an important mathematical competence. Little is known, however, about the mathematical skills that are predictive of early computational estimation development. The current study longitudinally followed a group of about 350 children at four time points: second (K2, 4-year-olds) and third grades of kindergarten…
Descriptors: Mathematics Skills, Computation, Predictor Variables, Kindergarten
Yuan, Lei; Prather, Richard; Mix, Kelly S.; Smith, Linda B. – Child Development, 2020
The number-line task has been extensively used to study the mental representation of numbers in children. However, studies suggest that proportional reasoning provides a better account of children's performance. Ninety 4- to 6-year-olds were given a number-line task with symbolic numbers, with clustered dot arrays that resembled a perceptual…
Descriptors: Number Concepts, Numbers, Young Children, Visual Stimuli
Sella, Francesco; Lucangeli, Daniela; Cohen Kadosh, Roi; Zorzi, Marco – Child Development, 2020
The ability to choose the larger between two numbers reflects a mature understanding of the magnitude associated with numerical symbols. The present study explores how the knowledge of the number sequence and memory capacity (verbal and visuospatial) relate to number comparison skills while controlling for cardinal knowledge. Preschool children's…
Descriptors: Number Concepts, Symbols (Mathematics), Memory, Mathematics Skills
Chu, Junyi; Cheung, Pierina; Schneider, Rose M.; Sullivan, Jessica; Barner, David – Cognitive Science, 2020
By around the age of 5½, many children in the United States judge that numbers never end, and that it is always possible to add 1 to a set. These same children also generally perform well when asked to label the quantity of a set after one object is added (e.g., judging that a set labeled "five" should now be "six"). These…
Descriptors: Preschool Children, Numeracy, Number Concepts, Knowledge Level
Jungic, Veselin; Yan, Xiaoheng – For the Learning of Mathematics, 2020
The aim of this article is to advise readers that natural numbers may be introduced as ordinal numbers or cardinal numbers and that there is an ongoing discussion about which come first. In addition, through several examples, the authors demonstrate that in the process of answering the question "How many?" one may, if convenient, use…
Descriptors: Number Concepts, Mathematics Instruction, Cognitive Processes, Numbers
Fitzsimmons, Charles J.; Morehead, Kayla; Thompson, Clarissa A.; Buerke, Morgan; Dunlosky, John – Journal of Experimental Education, 2023
We investigated whether three interventions -- studying incorrect worked examples, studying correct worked examples, or receiving feedback -- improved children's 0-1,000 (Experiment 1) and adults' 1 thousand--1 billion (Experiment 2) number-line estimation precision relative to a no intervention control group. At pretest, participants estimated…
Descriptors: Feedback (Response), Problem Solving, Accuracy, Number Concepts
Bruce, Catherine D.; Flynn, Tara; Yearley, Shelley; Hawes, Zachary – Canadian Journal of Science, Mathematics and Technology Education, 2023
Fractions remain a challenging area of school mathematics at every stage of education, with impacts that extend far beyond the school years. For this study, researchers engaged in classroom-based design research over a 6-year period to investigate effective strategies for teaching fractions with Canadian students. Participants included 86 teachers…
Descriptors: Fractions, Number Concepts, Spatial Ability, Thinking Skills
Huencho, Anahí; Chandía, Eugenio – ZDM: Mathematics Education, 2023
Dehumanized and globalized mathematics education in the last centuries has led to established learning processes disconnected from indigenous knowledge. The effect of cognitive imperialism, given the systematic negation of the language and the culture, has as a disastrous consequence of the gradual and systematic loss of knowledge and indigenous…
Descriptors: Humanization, Mathematics Education, Indigenous Populations, Indigenous Knowledge
Cui, Zhihao; Ng, Oi-lam; Jong, Morris Siu-Yung – Educational Technology & Society, 2023
Grounded in problem-based learning and with respect to four mathematics domains (arithmetic, random events and counting, number theory, and geometry), we designed a series of programming-based learning tasks for middle school students to co-develop computational thinking (CT) and corresponding mathematical thinking. Various CT concepts and…
Descriptors: Computation, Thinking Skills, Mathematics Education, Problem Based Learning
First Graders Coordination of Counting and Movements on a Grid When Programming with Tangible Blocks
Abigail Erskine; Laura Bofferding; Sezai Kocabos; Haoran Tang – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
As elementary students begin to program using tangible blocks, they must coordinate their use of counting with the movements, directions, and numbers they use to move a character. In our study, we analyzed 13 first graders' first attempts at coordinating these elements when playing a programming game on the iPad that used tangible programming…
Descriptors: Elementary School Students, Elementary School Mathematics, Grade 1, Computation

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