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Jennifer M. Tobias; Neet Priya Bajwa – Mathematics Teacher: Learning and Teaching PK-12, 2024
After years of noticing the challenge our students have with fraction operations, we decided to implement a scaffold approach that focuses on using benchmarks to better develop both students' understanding of a fraction as a quantity and their ability to think about fraction operations meaningfully. While we found this approach supported students…
Descriptors: Benchmarking, Fractions, Addition, Mathematics Instruction
Bree Jimenez; Jenny Root; Jordan Shurr; Emily C. Bouck – TEACHING Exceptional Children, 2024
Teaching requires attention to individual student needs by providing both adequate challenge and sufficient support to help students successfully gain academic skills (Shurr et al., 2019). The learning stages framework divides typical learning into four distinct stages: acquisition, fluency, maintenance, and generalization (Collins, 2012; Haring…
Descriptors: Learning Processes, Student Evaluation, Goal Orientation, Mathematics Instruction
Wessman-Enzinger, Nicole M.; Hofer, Kristina M. – Mathematics Teacher: Learning and Teaching PK-12, 2020
This article highlights the importance of re-defining units unconventionally with fractions. We provide three examples of tasks Grade 5 students engaged in; we highlight the creative ways that they flexibly re-defined units and engaged deeply with fractions. We offer suggestions for supporting unconventional units for promoting conceptual…
Descriptors: Fractions, Grade 5, Elementary School Mathematics, Mathematics Instruction
Baker, Katherine; Jessup, Naomi A.; Jacobs, Victoria R.; Empson, Susan B.; Case, Joan – Mathematics Teacher: Learning and Teaching PK-12, 2020
Productive struggle is an essential part of mathematics instruction that promotes learning with deep understanding. A video scenario is used to provide a glimpse of productive struggle in action and to showcase its characteristics for both students and teachers. Suggestions for supporting productive struggle are provided.
Descriptors: Mathematics Instruction, Problem Solving, Teaching Methods, Student Problems
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
Crawford, Lindy; Quebec Fuentes, Sarah; Huscroft-D'Angelo, Jacqueline; Higgins, Kristina N. – Intervention in School and Clinic, 2019
Meaningful inclusion of quantitative reasoning into mathematics instruction requires meaningful ways to evaluate it. Few formative assessments exist to evaluate the strategies students use when reasoning mathematically. The Framework for Evaluating Quantitative Reasoning Strategies presented in this article provides teachers with categories for…
Descriptors: Fractions, Mathematics Instruction, Mathematical Logic, Student Evaluation
Wickstrom, Megan H.; Fulton, Elizabeth; Lackey, Dacia – Mathematics Teaching in the Middle School, 2019
The fifth-grade curriculum presents many opportunities to use students' prior mathematical knowledge as a way to bridge new and more difficult mathematical ideas. In this article, the authors document an area tiling task given to fifth-grade students to connect aspects of area measurement covered in earlier grades to grade-level standards such as:…
Descriptors: Mathematics Instruction, Manipulative Materials, Elementary School Mathematics, Grade 5
Livers, Stefanie D.; Harbour, Kristin E.; Fowler, Lindsey – Teaching Children Mathematics, 2019
In this article, Lindsey Fowler describes how an animal rhyme--that she shared with her fifth-grade students with the intention of assisting them with the concept of metric conversions--made fostering the Standards for Mathematical Practice (SMP) more difficult. The addition of animals, which added an extraneous element that students mistakenly…
Descriptors: Mathematics Instruction, Grade 5, Metric System, Mathematical Concepts
Livy, Sharyn; Muir, Tracey; Sullivan, Peter – Australian Primary Mathematics Classroom, 2018
Productive struggle leads to productive classrooms where students work on complex problems, are encouraged to take risks, can struggle and fail yet still feel good about working on hard problems (Boaler, 2016). Teachers can foster a classroom culture that values and promotes productive struggle by providing students with challenging tasks. These…
Descriptors: Mathematics Instruction, Problem Solving, Mathematics, Professional Personnel
Russo, James – Australian Primary Mathematics Classroom, 2017
Benchmarking is an important strategy for comparing the size of fractions. In addition, knowing whether a given fraction is greater or less than a particular benchmark (e.g., one-half) can support students with accurately locating the fraction on a number line. This article offers a game-based activity that engages students in discussions around…
Descriptors: Mathematics Instruction, Benchmarking, Comparative Analysis, Fractions
Fuentes, Sarah Quebec; Crawford, Lindy; Huscroft-D'Angelo, Jacqueline – Australian Primary Mathematics Classroom, 2017
All students should have opportunities to develop their ability to reason mathematically. Gersten and Chard (1999) support this stance with respect to students with learning disabilities: "Even if students are not automatic with basic facts, they still should be engaged in activities that promote the development of number sense and…
Descriptors: Teaching Models, Mathematics Instruction, Mathematical Logic, Comparative Analysis
Simon, Martin A. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
This paper describes an emerging approach to the design of task sequences to promote reflective abstraction. The approach aims at promoting particular mathematical understandings. Central to this approach is the identification of available student activities from which students can abstract the intended ideas. The approach differs from a…
Descriptors: Mathematics Instruction, Reflection, Abstract Reasoning, Mathematical Concepts