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Liu, Allison S.; Kallai, Arava Y.; Schunn, Christian D.; Fiez, Julie A. – Instructional Science: An International Journal of the Learning Sciences, 2015
Mathematical fluency is important for academic and mathematical success. Fluency training programs have typically focused on fostering retrieval, which leads to math performance that does not reliably transfer to non-trained problems. More recent studies have focused on training number understanding and representational precision, but few have…
Descriptors: Mental Computation, Mathematics Achievement, Mathematics Instruction, Transfer of Training
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Whitacre, Ian; Rumsey, Chepina – Cognition and Instruction, 2018
This article contributes to the research literature concerning prospective elementary teachers' mathematical thinking and learning with a focus on flexibility. We present a case study of a prospective elementary teachers' development of flexibility in mental addition and subtraction during a Number and Operations course. Building upon the…
Descriptors: Mathematics Instruction, Social Influences, Preservice Teachers, Elementary Education
Thomsen, Brian M. – ProQuest LLC, 2017
Too many students are entering post-secondary education lacking foundational mathematics skills that are critical to performance on placement examinations. As a result, students are forced to take remedial courses that are often non-credit bearing and hinder their progress toward graduation. Research suggests that a lack of number sense may…
Descriptors: Computation, Mathematics Achievement, High School Students, Disabilities
SanGiovanni, John J.; Milou, Eric – Corwin, 2018
Do your students need more opportunities do develop number sense and reasoning? Are you looking to get your students energized and talking about mathematics? Have you wondered how practical, replicable, and engaging activities would complement your mathematics instruction? This guide answers the question "What could I do differently?" by…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Middle School Students, Grade 6
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Torbeyns, Joke; Verschaffel, Lieven – European Journal of Psychology of Education, 2016
This study analyzed children's use of mental computation strategies and the standard algorithm on multi-digit subtractions. Fifty-eight Flemish 4th graders of varying mathematical achievement level were individually offered subtractions that either stimulated the use of mental computation strategies or the standard algorithm in one choice and two…
Descriptors: Mental Computation, Mathematical Logic, Subtraction, Grade 4
Dole, Shelley; Carmichael, Peter; Thiele, Catherine; Simpson, Jenny; O'Toole, Christine – Mathematics Education Research Group of Australasia, 2018
This paper reports on results of a targeted and extended (two school terms) program for building Grade 3 and Grade 4 students' facility with number facts and application for mental computation. As part of a larger project, this paper reports results from two schools. Results indicated strong gains in number fact recall and mental computation for…
Descriptors: Elementary School Students, Elementary School Mathematics, Mathematics Skills, Skill Development
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Olsen, James R. – Mathematics Teacher, 2015
After studying the Common Core State Standards for Mathematics (CCSSM) and brain-based learning research, James Olsen believes mental math instruction in secondary school mathematics (grades 7-12) and in teacher education programs needs increased attention. The purpose of this article is to share some keys for teaching mental math. Olsen also…
Descriptors: Mental Computation, Teaching Methods, Mathematics Instruction, Secondary School Mathematics
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Liu, Ru-De; Ding, Yi; Xu, Le; Wang, Jia – Journal of Educational Research, 2017
The authors' aim was to examine the relation between two-digit mental multiplication and working memory. In Study 1, involving 30 fifth-grade students, we used digit span backward as an abbreviated measure of working memory. In Study 2, involving 41 fourth-grade students, working memory comprised measures of phonological loop, visuospatial…
Descriptors: Short Term Memory, Mental Computation, Multiplication, Elementary School Students
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Proulx, Jérôme – North American Chapter of the International Group for the Psychology of Mathematics Education, 2015
This study on the mental solving of systems of linear equations is part of a larger research program, aimed to gain a better understanding of the potential of mental mathematics activities with topics/objects other than numbers. Through outlining the study details and the activities engaged with, the paper reports on the variety of strategies…
Descriptors: Mental Computation, Mathematics Activities, Learning Strategies, Equations (Mathematics)
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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
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Barner, David; Alvarez, George; Sullivan, Jessica; Brooks, Neon; Srinivasan, Mahesh; Frank, Michael C. – Child Development, 2016
Mental abacus (MA) is a technique of performing fast, accurate arithmetic using a mental image of an abacus; experts exhibit astonishing calculation abilities. Over 3 years, 204 elementary school students (age range at outset: 5-7 years old) participated in a randomized, controlled trial to test whether MA expertise (a) can be acquired in standard…
Descriptors: Mathematics Education, Randomized Controlled Trials, Spatial Ability, Mental Computation
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Selter, Christoph; Prediger, Susanne; Nuhrenborger, Marcus; Hussmann, Stephan – Educational Studies in Mathematics, 2012
Subtraction can be understood by two basic models--taking away (ta) and determining the difference (dd)--and by its inverse relation to addition. Epistemological analyses and empirical examples show that the two models are not relevant only in single-digit arithmetic. As curricula should be developed in a longitudinal perspective on mathematics…
Descriptors: Equations (Mathematics), Mathematics Instruction, Learning Processes, Subtraction
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Fisher, Elaine Cerrato; Roy, George; Reeves, Charles – Teaching Children Mathematics, 2013
Mrs. Fisher's class was learning about arithmetic functions by pretending to operate real-world "function machines" (Reeves 2006). Functions are a unifying mathematics topic, and a great deal of emphasis is placed on understanding them in prekindergarten through grade 12 (Kilpatrick and Izsák 2008). In its Algebra Content Standard, the…
Descriptors: Arithmetic, Mathematics Instruction, Mathematical Concepts, Tables (Data)
Pepper, Mark – Mathematics Teaching, 2011
This author agrees with the sentiments of John Hibbs' article "Was there ever any point to the three-part lesson?" (MT219). In particular the author fully supports a flexible approach to the structure of lessons. There are two interesting questions that arise from Hibbs' article: (1) Are there reasons for the large-scale adherence of teachers to…
Descriptors: Lesson Plans, Mathematics Instruction, Mental Computation, Primary Education
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Ku, Oskar; Chen, Sherry Y.; Wu, Denise H.; Lao, Andrew C. C.; Chan, Tak-Wai – Educational Technology & Society, 2014
Many students possess low confidence toward learning mathematics, which, in turn, may lead them to give up pursuing more mathematics knowledge. Recently, game-based learning (GBL) is regarded as a potential means in improving students' confidence. Thus, this study tried to promote students' confidence toward mathematics by using GBL. In addition,…
Descriptors: Self Esteem, Mathematics Instruction, Mathematics Skills, Educational Games
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