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Lepola, Janne; Hannula-Sormunen, Minna – Educational Studies in Mathematics, 2019
In this 3-year longitudinal study, we examined the interplay of children's motivational orientations, spontaneous focusing on numerosity (SFON) and number sequence and arithmetical skills from kindergarten (at age 6) to grade 1 (at age 7). We also examined the direct and indirect contributions of motivation and SFON to the acquisition of…
Descriptors: Arithmetic, Correlation, Predictor Variables, Mathematics Achievement
Ertle, Barbrina B. – Journal of Early Childhood Teacher Education, 2017
This article reports on the findings of manipulative analyses performed by preservice and in-service teachers in an early childhood teacher education program mathematics methods course. The activities are intended to model and promote mathematical analyses for better discrimination between mathematics manipulatives by early childhood teachers.…
Descriptors: Teaching Methods, Manipulative Materials, Mathematics Instruction, Preschool Teachers
Piselli, Katherine D. – ProQuest LLC, 2017
Math fluency, which refers to the ability to solve single digit arithmetic problems quickly and accurately, is a foundational mathematical skill. Recent research has examined the role of phonological processing, executive control, and number sense in explaining differences in math fluency performance in school-aged children. Identifying the links…
Descriptors: Cognitive Ability, Mathematics Achievement, Intelligence, Mathematics Instruction
Boote, Stacy K. – Teaching Children Mathematics, 2016
Students' success with fourth-grade content standards builds on mathematical knowledge learned in third grade and creates a conceptual foundation for division standards in subsequent grades that focus on the division algorithm. The division standards in fourth and fifth grade are similar; but in fourth grade, division problem divisors are only one…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Grade 4, Grade 5
Pace, Michelle H.; Ortiz, Enrique – Teaching Children Mathematics, 2016
When a second-grade class struggled to make sense of the algorithms for multidigit addition and subtraction, attitude and morale were down, and student discourse was at an all-time low. When daily mathematics class started, the teacher was hearing an overall class moan. The instructed needed to turn it around, to find a way to help excite and…
Descriptors: Mathematics Instruction, Grade 2, Elementary School Mathematics, Teaching Methods
Baroody, Arthur J. – PNA, 2016
Six widely used US Grade 1 curricula do not adequately address the following three developmental prerequisites identified by a proposed learning trajectory for the meaningful learning of the subtraction-as-addition strategy (e.g., for 13-8 think "what + 8 = 13?"): (a) reverse operations (adding 8 is undone by subtracting 8); (b) common…
Descriptors: Grade 1, Elementary School Mathematics, Arithmetic, Addition
Monks, Lisa; Chick, Helen – Australian Primary Mathematics Classroom, 2018
Fitness trackers can provide primary students with exciting opportunities to calculate, measure time and distance, graph, make sense of data, and improve their activity levels. This article suggests ways to use fitness trackers in the classroom.
Descriptors: Physical Fitness, Measurement Equipment, Elementary School Mathematics, Elementary School Students
Taylor, Matthew S. – Journal of Special Education, 2018
Researchers suggest students in early elementary grade levels are active learners and creators and need to be exposed to science, technology, engineering, and mathematics (STEM) curriculum. The need for student understanding in STEM curriculum is well-documented, and positive results in robotics and computer programming are leading researchers and…
Descriptors: Programming, Primary Education, Preschool Children, Elementary School Students
Kibbe, Melissa M.; Feigenson, Lisa – Developmental Science, 2015
The Approximate Number System (ANS) supports basic arithmetic computation in early childhood, but it is unclear whether the ANS also supports the more complex computations introduced later in formal education. "Solving for x" in addend-unknown problems is notoriously difficult for children, who often struggle with these types of problems…
Descriptors: Young Children, Problem Solving, Numbers, Mathematics Skills
Braithwaite, David W.; Pyke, Aryn A.; Siegler, Robert S. – Grantee Submission, 2017
Many children fail to master fraction arithmetic even after years of instruction, a failure that hinders their learning of more advanced mathematics as well as their occupational success. To test hypotheses about why children have so many difficulties in this area, we created a computational model of fraction arithmetic learning and presented it…
Descriptors: Arithmetic, Computation, Models, Mathematics Instruction
Buchholz, Lisa M. – Teaching Children Mathematics, 2016
Several detours prompted me to find time in an overcrowded school day to incorporate important, powerful, daily, whole-class application of fact strategies. A few years ago, I embarked on a journey with my second graders, a journey through the strategies for mental computation of addition and subtraction facts. The focus of that journey was to…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Grade 2, Computation
Barnett, Janet Heine; Lodder, Jerry; Pengelley, David – PRIMUS, 2016
Why would anyone think of teaching and learning mathematics directly from primary historical sources? We aim to answer this question while sharing our own experiences, and those of our students across several decades. We will first describe the evolution of our motivation for teaching with primary sources, and our current view of the advantages…
Descriptors: Mathematics Instruction, Teaching Methods, Primary Sources, Case Studies
West, John – Australian Primary Mathematics Classroom, 2016
This article takes the position that teachers can use simple manipulative materials to model relatively complex situations and in doing so scaffold the development of students' number sense and early algebra skills. While students' early experiences are usually dominated by the cardinal aspect of number (i.e., counting the number of items in a…
Descriptors: Manipulative Materials, Numbers, Numeracy, Algebra
Flores, Margaret M.; Hinton, Vanessa M.; Taylor, Ja'Lia J. – Preventing School Failure, 2018
Students must leave elementary school with a firm understanding of fractions and decimals in order to make satisfactory progress in advanced mathematics. Firm understanding includes manipulation of rational numbers using different models of representation such as area and length. Research has demonstrated that a graduated sequence such as…
Descriptors: Elementary School Mathematics, Elementary School Students, Grade 5, Fractions
Lucangeli, Daniela; Fastame, Maria Chiara; Pedron, Martina; Porru, Annamaria; Duca, Valeria; Hitchcott, Paul Kenneth; Penna, Maria Pietronilla – ZDM: The International Journal on Mathematics Education, 2019
Even in primary school, mathematics achievement depends upon the efficiency of cognitive, metacognitive and self-regulatory processes. Thus, for pupils to carry out a computation, such as a written calculation, metacognitive mechanisms play a crucial role, since children must employ self-regulation to assess the precision of their own thinking and…
Descriptors: Elementary School Students, Mathematics Instruction, Mathematics Achievement, Efficiency

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