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Patrick L. Sullivan – Solution Tree, 2024
Reimagining elementary mathematics pedagogy using a three-step process--See It, Say It, Symbolize It--author Patrick L. Sullivan provides a guide for developing a dynamic and flexible understanding of numbers and operations. By helping students develop a language that is consistent across concepts and connecting it to what is seen and symbolized,…
Descriptors: Elementary School Students, Mathematics Instruction, Numbers, Mathematical Concepts
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McDowell, Eric L. – Mathematics Teacher, 2016
By the time they reach middle school, all students have been taught to add fractions. However, not all have "learned" to add fractions. The common mistake in adding fractions is to report that a/b + c/d is equal to (a + c)/(b + d). It is certainly necessary to correct this mistake when a student makes it. However, this occasion also…
Descriptors: Fractions, Number Systems, Number Concepts, Numbers
Bird, Ronit – SAGE Publications Ltd (UK), 2021
This practical book draws on Ronit Bird's teaching experience to create detailed strategies and teaching plans for students aged 9-16 who have difficulties with number. Activities and games are used to teach numeracy skills in these key areas: number components, bridging, multiplication, division and reasoning strategies. New to this edition: (1)…
Descriptors: Learning Disabilities, Numeracy, Mathematics Instruction, Teaching Methods
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Sullivan, Peter; Russo, James – Australian Primary Mathematics Classroom, 2017
It is frequently surprising to new teachers (and even those with experience) when they find that not only do some children need to recount the group they have just counted to be assured of the total but also that this need seems to be resistant to intervention. Although moving from "counting-all" to "count-on" is sometimes…
Descriptors: Number Concepts, Computation, Teaching Methods, Mathematics Instruction
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Bofferding, Laura – Teaching Children Mathematics, 2014
As students progress from working with whole numbers to working with integers, they must wrestle with the big ideas of number values and order. Using objects to show positive quantities is easy, but no physical negative quantities exist. Therefore, when talking about integers, the author refers to number values instead of number quantities. The…
Descriptors: Mathematics Instruction, Teaching Methods, Grade 1, Elementary School Mathematics
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Starling, Courtney; Whitacre, Ian – Mathematics Teaching in the Middle School, 2016
Mathematics is a language that is characterized by words and symbols that have precise definitions. Many opportunities exist for miscommunication in mathematics if the words and symbols are interpreted incorrectly or used in imprecise ways. In fact, it is found that imprecision is a common source of mathematical disagreements and misunderstandings…
Descriptors: Mathematics Education, Equations (Mathematics), Class Activities, Demonstrations (Educational)
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Jacob, Lorraine; Mulligan, Joanne – Australian Primary Mathematics Classroom, 2014
In this article, Lorraine Jacob and Joanne Mulligan discuss how arrays can be used to promote students' early learning in relation to multiplication and division. They provide examples of activities that can be used from Foundation to Year 5.
Descriptors: Young Children, Elementary School Students, Elementary School Mathematics, Mathematics Instruction
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Norton, Anderson; Wilkins, Jesse L. M.; Evans, Michael A.; Deater-Deckard, Kirby; Balci, Osman; Chang, Mido – Mathematics Teaching in the Middle School, 2014
The authors introduce an educational video game (application, or "app"), "CandyFactory Educational Game," designed to promote students' development of partitive understanding of fractions while demonstrating the critical need to promote that development. The app includes essential game features of immediate feedback,…
Descriptors: Video Games, Educational Games, Mathematics Curriculum, Mathematics Activities
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Weber, Eric; Ellis, Amy; Kulow, Torrey; Ozgur, Zekiye – Mathematics Teacher, 2014
Encouraging students to reason with quantitative relationships can help them develop, understand, and explore mathematical models of real-world phenomena. Through two examples--modeling the motion of a speeding car and the growth of a Jactus plant--this article describes how teachers can use six practical tips to help students develop quantitative…
Descriptors: Mathematical Aptitude, Mathematical Models, Problem Based Learning, Motion
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Patterson, Lynn G.; Patterson, Kadie L. – Mathematics Teaching in the Middle School, 2014
Motivating middle school students to learn can be challenging. One proven method for doing so is through an integrated curriculum. Educational philosophers and curriculum theorists have long noted the benefits of an integrated curriculum, which recognizes that the subject areas within the curriculum are connected to one another and to the real…
Descriptors: Middle School Students, Problem Solving, Integrated Curriculum, Interdisciplinary Approach
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Frye, Douglas; Baroody, Arthur J.; Burchinal, Margaret; Carver, Sharon M.; Jordan, Nancy C.; McDowell, Judy – What Works Clearinghouse, 2013
The goal of this practice guide is to offer educators specific, evidence-based recommendations that address the challenge of teaching early math to children ages 3 to 6. The guide provides practical, clear information on critical topics related to teaching early math and is based on the best available evidence as judged by the authors. The guide…
Descriptors: Mathematics Instruction, Young Children, Number Concepts, Developmentally Appropriate Practices
Clarke, Carne; Fisher, William; Marks, Rick; Ross, Sharon; Zbiek, Rose Mary – National Council of Teachers of Mathematics, 2010
This book focuses on essential knowledge for teachers about rational numbers. It is organized around four big ideas, supported by multiple smaller, interconnected ideas--essential understandings. Taking teachers beyond a simple introduction to rational numbers, the book will broaden and deepen their mathematical understanding of one of the most…
Descriptors: Mathematics Curriculum, Numbers, Elementary School Teachers, Misconceptions
Dacey, Linda; Collins, Anne – Stenhouse Publishers, 2010
"The Zeroing in on Number and Operations" series, which aligns with the Common Core State Standards and the NCTM Standards on Focal Points, features easy-to-use tools for teaching key concepts in number and operations and for addressing common misconceptions. Sharing the insights they've gained through decades of mathematics teaching and research,…
Descriptors: Grade 2, Grade 1, Misconceptions, Academic Standards
Muschla, Judith A.; Muschla, Gary Robert; Muschla, Erin – Jossey-Bass, An Imprint of Wiley, 2012
The new Common Core State Standards for Mathematics have been formulated to provide students with instruction that will help them acquire a thorough knowledge of math at their grade level, which will in turn enable them to move on to higher mathematics with competence and confidence. "Hands-on Activities for Teaching the Common Core Math…
Descriptors: State Standards, Mathematics Instruction, Academic Standards, Experiential Learning
Scott, Paul – Australian Mathematics Teacher, 2008
The number Pi (approximately 3.14159) is defined to be the ratio C/d of the circumference (C) to the diameter (d) of any given circle. In particular, Pi measures the circumference of a circle of diameter d = 1. Historically, the Greek mathematician Archimedes found good approximations for Pi by inscribing and circumscribing many-sided polygons…
Descriptors: Arithmetic, Numbers, Mathematics Instruction, Equations (Mathematics)
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