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Speiser, Robert; Schneps, Matthew H.; Heffner-Wong, Amanda; Miller, Jaimie L.; Sonnert, Gerhard – Journal of Mathematical Behavior, 2012
In school, at least in the US, we were taught to multiply by hand according to a standard algorithm. Most people find that algorithm difficult to use, and many children fail to learn it. We propose a new way to make sense of this difficulty: to treat explicit computation as perceptually supported physical and mental action. Based on recent work in…
Descriptors: Evidence, Mathematics, Urban Schools, Short Term Memory
Ravenel, Jessica; Lambeth, Dawn T.; Spires, Bob – Journal on School Educational Technology, 2014
The purpose of the research study was to identify the effects of computer-based programs on mathematical achievement, perceptions, and engagement of fourth-grade students. The 31 student participants were divided into two intervention groups, as a hands-on group and a computer-based group. Student achievement was measured by comparing the pretest…
Descriptors: Mathematics Achievement, Grade 4, Pretests Posttests, Comparative Analysis
Developmental Dissociation in the Neural Responses to Simple Multiplication and Subtraction Problems
Prado, Jérôme; Mutreja, Rachna; Booth, James R. – Developmental Science, 2014
Mastering single-digit arithmetic during school years is commonly thought to depend upon an increasing reliance on verbally memorized facts. An alternative model, however, posits that fluency in single-digit arithmetic might also be achieved via the increasing use of efficient calculation procedures. To test between these hypotheses, we used a…
Descriptors: Hypothesis Testing, Numeracy, Arithmetic, Computation
Bliss, Stacy L.; Skinner, Christopher H.; McCallum, Elizabeth; Saecker, Lee B.; Rowland-Bryant, Emily; Brown, Katie S. – Journal of Behavioral Education, 2010
An adapted alternating treatments design was used to compare the effectiveness of a taped-problems (TP) intervention with TP and an additional immediate assessment (TP + AIA) on the multiplication fluency of six fifth-grade students. During TP, the students listened to a tape playing a series of multiplication problems and answers three times.…
Descriptors: Grade 5, Multiplication, Instructional Effectiveness, Intervention
Hackenberg, Amy J. – Cognition and Instruction, 2010
In an 8-month teaching experiment, I investigated how 4 sixth-grade students reasoned with reversible multiplicative relationships. One type of problem involved a known quantity that was a whole number multiple of an unknown quantity, and students were asked to determine the value of the unknown quantity. To solve these problems, students needed…
Descriptors: Mathematics Instruction, Grade 6, Mathematics Achievement, Multiplication
McCrink, Koleen; Spelke, Elizabeth S. – Cognition, 2010
A dedicated, non-symbolic, system yielding imprecise representations of large quantities (approximate number system, or ANS) has been shown to support arithmetic calculations of addition and subtraction. In the present study, 5-7-year-old children without formal schooling in multiplication and division were given a task requiring a scalar…
Descriptors: Number Systems, Arithmetic, Multiplication, Young Children
Strickland, Tricia K.; Maccini, Paula – Remedial and Special Education, 2013
We examined the effects of the Concrete-Representational-Abstract Integration strategy on the ability of secondary students with learning disabilities to multiply linear algebraic expressions embedded within contextualized area problems. A multiple-probe design across three participants was used. Results indicated that the integration of the…
Descriptors: Learning Disabilities, Multiplication, Mathematics Skills, Secondary School Mathematics
Meryansumayeka; Darmawijoyo; Ilma, Ratu; den Hertog, Jaap – Indonesian Mathematical Society Journal on Mathematics Education, 2011
In guiding students to construct a mathematical concept themselves, learning process should be started by a context which is suit with the concept. In this research, we focused on structured arrangement which was believed to be able to support students ages 8-9 years old developing splitting strategy in doing multiplication. This study was a…
Descriptors: Multiplication, Mathematics Instruction, Mathematical Concepts, Relevance (Education)
Zhang, Dake – ProQuest LLC, 2011
The purpose of the present study was to examine the effectiveness of a constructive strategic training program on improving students' performance in solving multiplication problems. The participants were three third graders with math learning difficulties. In this teaching experiment design study, microgenetic approach was employed to analyze…
Descriptors: Learning Problems, Intervention, Problem Solving, Grade 3
Ford, Marilyn Sue; Usnick, Virginia – Investigations in Mathematics Learning, 2011
This project had two major goals: to determine the usefulness of individually-administered interview process to access elementary students' fluency with basic multiplication facts, and to determine whether a developmental sequence found in Australian mathematics education literature applied to elementary students in the United States. Students in…
Descriptors: Foreign Countries, Mathematics Education, Multiplication, Evaluation Methods
Auty, Geoff – School Science Review, 2011
Derivation of the law of radioactive decay is considered without prior knowledge of calculus or the exponential series. Calculus notation and exponential functions are used because ultimately they cannot be avoided, but they are introduced in a simple way and explained as needed. (Contains 10 figures, 1 box, and 1 table.)
Descriptors: Radiation, Calculus, Teaching Methods, Multiplication
Paek, Seungoh – ProQuest LLC, 2012
The purpose of this study is to demonstrate how virtual manipulatives, designed to provide multimodal interactions, support richer perceptual experiences that promote conceptual learning. To study this phenomenon, a virtual manipulative called, "Puzzle Blocks," was developed by the researcher. "Puzzle Blocks" introduces the…
Descriptors: Manipulative Materials, Mathematics Instruction, Computer Simulation, Multiplication
Gervasoni, Ann; Parish, Linda; Hadden, Teresa; Livesey, Carole; Bevan, Kate; Croswell, Melissa; Turkenburg, Kathie – Mathematics Education Research Group of Australasia, 2012
The "Extending Mathematical Understanding" (EMU) Program is a specialised mathematics program that aims to accelerate the learning of Grade 1 students who struggle with learning school mathematics. Forty-two students participated in an EMU Program in 2010 as part of the "Bridging the Numeracy Gap" (BTNG) project. Analysis of…
Descriptors: Elementary School Students, Mathematics Instruction, Learning Problems, Knowledge Level
Johanning, Debra I.; Shockey, Kimberly S. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2012
The data used for the qualitative analysis reported here were generated as part of a larger study to understand and characterize teacher practice related to engaging students in algorithmic thinking associated with the fraction operations of addition, subtraction, multiplication and division. This paper presents ways in which teachers used…
Descriptors: Fractions, Mathematics Instruction, Mathematics, Thinking Skills
Rathouz, Margaret – Issues in the Undergraduate Mathematics Preparation of School Teachers, 2011
This article describes a pilot study in which pre-service elementary teachers (PSTs) used rectangular area models on base-10 grid paper to begin making sense of multiplication of decimal fractions. Although connections were made to multi-digit whole number multiplication and to the distributive property, the PSTs were challenged by interpreting…
Descriptors: Numbers, Number Concepts, Geometric Concepts, Preservice Teachers

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