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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 74 results
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Drake, Corey; Land, Tonia J.; Bartell, Tonya Gau; Aguirre, Julia M.; Foote, Mary Q.; McDuffie, Amy Roth; Turner, Erin E. – Teaching Children Mathematics, 2015
Many teachers experience the tension between using published curriculum materials and teaching in ways that are responsive to children. Teachers are often expected to use a particular mathematics curriculum series, but they still want to be able to build on and connect to children's multiple mathematical knowledge bases (MMKB).…
Descriptors: Mathematics Curriculum, Mathematics Instruction, Relevance (Education), Problem Solving
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Dause, Emily – Teaching Children Mathematics, 2014
Fourth graders in Miss Dause's and Mrs. Hicks's mathematics classes at South Mountain Elementary School in Dillsburg, Pennsylvania, worked with the data from the Inauagural Address problem that was previously published published in the February 2013 issue of "Teaching Children Mathematics". This activity allowed students to…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Teaching Methods, Grade 4
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James, Julie; Steimle, Alice – Teaching Children Mathematics, 2014
Persevering in problem solving and constructing and critiquing mathematical arguments are some of the mathematical practices included in the Common Core State Standards for Mathematics (CCSSI 2010). To solve unfamiliar problems, students must make sense of the situation and apply current knowledge. Teachers can present such opportunities by…
Descriptors: Mathematics Instruction, Problem Solving, Academic Standards, Mathematical Concepts
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Jacobs, Victoria R.; Martin, Heather A.; Ambrose, Rebecca C.; Philipp, Randolph A. – Teaching Children Mathematics, 2014
In this article the authors explain that when engaging in a problem-solving conversation with a child, their goal goes beyond helping the child reach a correct answer. They want to learn about the child's mathematical thinking, support that thinking, and extend it as far as possible. This exploration of children's thinking is central to…
Descriptors: Problem Solving, Mathematics Instruction, Mathematical Logic, Cognitive Processes
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Cavazos, Rebecca R. – Teaching Children Mathematics, 2014
This article details how certain mathematical "discoveries" that Cavazos' fourth graders made were recorded throughout the year. Cavazos invited a math professor, a biologist, a literacy professor, a chemist, a statistician, and an engineering student, as well as their school principal and computer lab technician, both of whom are…
Descriptors: Mathematics Education, Investigations, Mathematics Instruction, Mathematics Activities
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Legnard, Danielle; Austin, Susan – Teaching Children Mathematics, 2014
The Math Promise is a contract that family members make with one another. They commit to spending mathematical time together; getting to know each other's mathematical thinking and understanding; and finding time to play math games, solve problems, and notice mathematics in their daily lives. Whether parents and children are cooking in the…
Descriptors: Mathematical Logic, Thinking Skills, Communities of Practice, Mathematics Activities
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Cross Francis, Dionne I.; Hudson, Rick A.; Lee, Mi Yeon; Rapacki, Lauren; Vesperman, Crystal Marie – Teaching Children Mathematics, 2014
Statistical literacy is essential in everyone's personal lives as consumers, citizens, and professionals. To make informed life and professional decisions, students are required to read, understand, and interpret vast amounts of information, much of which is quantitative. To develop statistical literacy so students are able to make sense of…
Descriptors: Mathematics Instruction, Statistics, Mathematical Logic, Problem Solving
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Whitin, David J.; Whitin, Phyllis – Teaching Children Mathematics, 2014
The Common Core State Standards for Mathematics (CCSSM) (CCSSI 2010) define what children should understand and be able to do in K-grade 12. This document also includes a description of key mathematical processes and proficiencies, the Standards for Mathematical Practice (SMPs), which provide an important overview for the kind of robust thinking…
Descriptors: Mathematics Instruction, State Standards, Core Curriculum, Mathematics Skills
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Trocki, Aaron; Taylor, Christine; Starling, Tina; Sztajn, Paola; Heck, Daniel – Teaching Children Mathematics, 2014
The idea of elementary school students working together on mathematical tasks is not new, but recent attention to creating purposeful discourse in mathematics classrooms prompts teachers to revisit discourse-promoting strategies for mathematics lessons. The Common Core's Standards for Mathematical Practice (CCSSI 2010) encourage teachers to…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Teaching Methods, Discussion (Teaching Technique)
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Howse, Tashana D.; Howse, Mark E. – Teaching Children Mathematics, 2014
Geometry is the branch of mathematics that addresses spatial sense and geometric reasoning. Students begin to understand geometry through direct interaction with their physical world. Because it is the study of the physical attributes of the environment, geometry has relevance for every student; the world becomes a big classroom. As students see,…
Descriptors: Mathematics Instruction, Geometry, Geometric Concepts, Mathematics Activities
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Thomas, Jonathan N.; Eisenhardt, Sara; Fisher, Molly H.; Schack, Edna O.; Tassell, Janet; Yoder, Margaret – Teaching Children Mathematics, 2014
Thoughtful implementation of the Common Core State Standards for Mathematics (CCSSM) (CCSSI 2010) presents an opportunity for increased emphasis on the development of mathematical understanding among students. Granted, ascertaining the mathematical understanding of an individual student is highly complex work and often exceedingly difficult.…
Descriptors: Academic Standards, Mathematics Education, Mathematical Concepts, Concept Formation
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McGatha, Maggie B.; Bay-Williams, Jennifer M. – Teaching Children Mathematics, 2013
The Leading for Mathematical Proficiency (LMP) Framework (Bay-Williams et al.) has three components: (1) The Standards for Mathematical Practice; (2) Shifts in classroom practice; and (3) Teaching skills. This article briefly describes each component of the LMP framework and then focuses more in depth on the second component, the shifts in…
Descriptors: Mathematics Instruction, Teacher Competencies, Teaching Skills, Teaching Methods
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Bell, Clare V. – Teaching Children Mathematics, 2013
Teachers and researchers have known for decades that the use of storybooks can have a positive impact on students' experiences with mathematics. This article describes how first graders in an urban public school actively engage with mathematics by using the story "Bean Thirteen" as a context for developing number sense. This…
Descriptors: Grade 1, Elementary School Mathematics, Mathematics Instruction, Urban Schools
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McGarvey, Lynn M. – Teaching Children Mathematics, 2013
This article describes how in early mathematics learning, young children are often asked to recognize and describe visual patterns in their environment--perhaps on their clothing, a toy, or the carpet; around a picture frame; or in the playground equipment. Exploring patterns in the early years is seen as an important introduction to algebraic…
Descriptors: Mathematics Instruction, Pattern Recognition, Mathematical Concepts, Preschool Children
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Tobias, Jennifer M.; Andreasen, Janet B. – Teaching Children Mathematics, 2013
As students progress through elementary school, they encounter mathematics concepts that shift from additive to multiplicative situations (NCTM 2000). When they encounter fraction problems that require multiplicative thinking, they tend to incorrectly extend additive properties from whole numbers (Post et al. 1985). As a result, topics such as …
Descriptors: Mathematics Instruction, Elementary School Mathematics, Mathematical Concepts, Multiplication
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