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Laura B. Kent; Tammy Skelton – Mathematics Teacher: Learning and Teaching PK-12, 2025
Effective mathematics teaching practices include not only probing student thinking and selecting student strategies to share but also facilitating discourse and encouraging reflection about important mathematical ideas (National Council of Teachers of Mathematics [NCTM], 2014, pp. 36-37). Encouraging students to use precise academic vocabulary to…
Descriptors: Grade 6, Mathematics Education, Multiplication, Language Usage
Quane, Kate; Brown, Leni – Australian Primary Mathematics Classroom, 2022
Mathematics educators and researchers have advocated for the use of manipulatives to teach mathematics for decades. The purpose of this article is to provide illustrative uses of a readily available manipulative rather than a complete list. From an Australian perspective, Pop-it fidget toys can be used across the mathematics curriculum. This paper…
Descriptors: Mathematics Instruction, Toys, Manipulative Materials, Foreign Countries
Edwards, Clayton M.; Robichaux-Davis, Rebecca R.; Townsend, Brian E. – Mathematics Teaching in the Middle School, 2019
Inquiry-based instruction is a student-centered approach to teaching that focuses on active learning (Barron and Darling-Hammond 2008) in which students engage with "tasks that promote reasoning and problem solving" (NCTM 2014). Specifically, such tasks encourage a variety of solution strategies and stimulate use of the NCTM Process…
Descriptors: Mathematics Instruction, Mathematics Teachers, Active Learning, Inquiry
Hurst, Chris; Hurrell, Derek – Australian Primary Mathematics Classroom, 2016
Multiplicative thinking is accepted as a "big idea" of mathematics that underpins important mathematical concepts such as fraction understanding, proportional reasoning, and algebraic thinking. It is characterised by understandings such as the multiplicative relationship between places in the number system, basic and extended number…
Descriptors: Multiplication, Mathematics Instruction, Algebra, Mathematical Logic
Lewis, Robert – Australian Mathematics Teacher, 2016
When dividing one fraction by a second fraction, invert, that is, flip the second fraction, then multiply it by the first fraction. To multiply fractions, simply multiply across the denominators, and multiply across the numerators to get the resultant fraction. So by inverting the division of fractions it is turned into an easy multiplication of…
Descriptors: Fractions, Multiplication, Teaching Methods, Mathematics Instruction
Cavey, Laurie O.; Kinzel, Margaret T. – Teaching Children Mathematics, 2014
Teachers report that engaging students in solving contextual problems is an important part of supporting student understanding of algorithms for fraction division. Meaning for whole-number operations is a crucial part of making sense of contextual problems involving rational numbers. The authors present a developed instructional sequence to…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Secondary School Mathematics, Preservice Teacher Education
Drake, Jill Mizell; Barlow, Angela T. – Teaching Children Mathematics, 2008
When the word problems of forty-five sixth-grade students were examined, multiple levels of understanding and misunderstanding multiplication were exposed. The purpose of this article is to demonstrate the potential of problem writing as a technique for assessing the depths of students' mathematical understandings. Discussions include sample…
Descriptors: Word Problems (Mathematics), Mathematics Instruction, Multiplication, Grade 6
Common Core State Standards Initiative, 2011
For over a decade, research studies of mathematics education in high-performing countries have pointed to the conclusion that the mathematics curriculum in the United States must become substantially more focused and coherent in order to improve mathematics achievement in this country. To deliver on the promise of common standards, the standards…
Descriptors: Mathematics Curriculum, Mathematics Education, State Standards, Mathematics Achievement

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