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Brickwedde, James – Teaching Children Mathematics, 2018
This article examines the importance of developing the notion of place value as a rate of ten. In exploring how to nurture this concept, the author looks at the role of the language of value, the problem types of multistep multiplication and addition along with measurement division, each with ten as an organizing unit, as well as strategically…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Multiplication
Russo, James A. – Teaching Children Mathematics, 2018
Three-in-a-Row Lucky Numbers is an engaging, enjoyable, mathematically meaningful, game-based activity involving dice and a hundred chart, which can be used to introduce students to multiplication. The game provides a mechanism for students to explore the structure of multiplication, experiment with the distributive property, and begin to…
Descriptors: Mathematics Instruction, Multiplication, Educational Games, Teaching Methods
Tzur, Ron; Hunt, Jessica – Teaching Children Mathematics, 2015
Often, students who solve fraction tasks respond in ways that indicate inadequate conceptual grounding of unit fractions. Many elementary school curricula use folding, partitioning, shading, and naming parts of various wholes to develop children's understanding of unit and then nonunit fractions (e.g., coloring three of four parts of a pizza and…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Concepts, Concept Formation
Kent, Laura B.; Empson, Susan B.; Nielsen, Lynne – Teaching Children Mathematics, 2015
In this article, the authors discuss a special type of multiplication-and-division-of-fractions problem that elementary school teachers can use to promote children's understanding of fractional quantities and their relationships. These problems are accessible to students working at different levels of fraction understanding, and they can be solved…
Descriptors: Mathematics Instruction, Multiplication, Mathematical Concepts, Problem Solving
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
Witherspoon, Taajah Felder – Teaching Children Mathematics, 2014
Over the course of her teaching career, this author learned to create environments in which both the teacher and learners embrace understanding. She introduced new concepts with a general question or word problem and encouraged students to find solutions with a strategy of their choice. By using this instructional method, she allowed her students…
Descriptors: Mathematics Instruction, Cognitive Processes, Grade 4, Elementary School Students
Kling, Gina; Bay-Williams, Jennifer M. – Teaching Children Mathematics, 2015
"That was the day I decided I was bad at math." Countless times, preservice and in-service teachers make statements such as this after sharing vivid memories of learning multiplication facts. Timed tests; public competitive games, such as Around the World; and visible displays of who has and has not mastered groups of facts still…
Descriptors: Mathematics Instruction, Teaching Methods, Multiplication, Mathematics Skills
Philipp, Randolph A.; Hawthorne, Casey – Teaching Children Mathematics, 2015
Although fraction operations are procedurally straightforward, they are complex, because they require learners to conceptualize different units and view quantities in multiple ways. Prospective secondary school teachers sometimes provide an algebraic explanation for inverting and multiplying when dividing fractions. That authors of this article…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Concepts, Secondary School Teachers
Benson, Christine C.; Wall, Jennifer J.; Malm, Cheryl – Teaching Children Mathematics, 2013
The Common Core State Standards for Mathematics (CCSSM) call for an in depth, integrated look at elementary school mathematical concepts. Some topics have been realigned to support an integration of topics leading to conceptual understanding. For example, the third-grade standards call for relating the concept of area (geometry) to multiplication…
Descriptors: Academic Standards, State Standards, Geometric Concepts, Concept Formation

Fuson, Karen C. – Teaching Children Mathematics, 2003
Provides an alternative to traditional instruction in multiplication and division to develop computational fluency in students. (Author/NB)
Descriptors: Arithmetic, Computation, Concept Formation, Division

Wickett, Maryann S. – Teaching Children Mathematics, 2003
Focuses on children making sense of multiplication. In an activity called "Silent Multiplication," students use what they know about easier multiplication problems to solve increasingly difficult, related problems mentally. (Author/NB)
Descriptors: Arithmetic, Computation, Concept Formation, Elementary Education

Willis, Jody Kenny; Johnson, Aostre N. – Teaching Children Mathematics, 2001
Explores how to use Gardner's Multiple Intelligence theory to help students' master multiplication. Focuses on helping children use their different intelligence strength to attain conceptual understanding of multiplication, develop their own thinking strategies for harder facts, and build mastery through practice and problem solving. (KHR)
Descriptors: Arithmetic, Calculators, Cognitive Style, Concept Formation

Kouba, Vicky L.; Franklin, Kathy – Teaching Children Mathematics, 1995
Discusses mathematics education research on multiplication and division which implies that instruction should emphasize development of a sound conceptual basis for multiplication and division rather than memorization of tables and rules. Presents action research ideas. (10 references) (MKR)
Descriptors: Action Research, Algorithms, Arithmetic, Computation