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Imad Abou-Hayt; Bettina Dahl – IEEE Transactions on Education, 2024
Contribution: This article presents a new look at teaching the Laplace transform for engineering students by emphasizing the obsolescence of the current method of finding the inverse Laplace transform when solving differential equations, and by recognizing the important role of a computer-assisted environment in helping the students understand the…
Descriptors: Engineering Education, Problem Solving, Equations (Mathematics), Computation
Kathryn Lavin Brave; Izzy Berman; Debita Basu; Alexis Szkotak – TEACHING Exceptional Children, 2025
Manipulative-based instructional sequences have proven to be successful with students with disabilities. However, instruction must not only support the acquisition of conceptual and procedural knowledge but also build on students' strengths. This article describes how teachers can use manipulative-based instructional sequences to support the…
Descriptors: Teaching Methods, Manipulative Materials, Fractions, Mathematical Concepts
Rajiv Satsangi; Soyoung Park; Alexandra R. Raines – Learning Disabilities Research & Practice, 2025
Providing multiple representations of mathematical ideas is an established strategy for supporting students in making connections between high-level conceptual ideas. One form of assistive technology that provides students with such representations is mathematics manipulatives. Virtual manipulatives, in particular, are backed by a growing research…
Descriptors: Fractions, Computation, Mathematics Instruction, Visual Aids
Yu, Shuyuan; Kim, Dan; Fitzsimmons, Charles J.; Mielicki, Marta K.; Thompson, Clarissa A.; Opfer, John E. – Developmental Psychology, 2022
Children display an early sensitivity to implicit proportions (e.g., 1 of 5 apples vs. 3 of 4 apples), but have considerable difficulty in learning the explicit, symbolic proportions denoted by fractions (e.g., "1/5" vs. "3/4"). Theoretically, reducing the gap between representations of implicit versus explicit proportions…
Descriptors: Elementary School Students, Mathematics Skills, Fractions, Number Concepts
Tzu-Hsing Lin; Paul J. Riccomini; Zhigao Liang – Learning Disability Quarterly, 2025
This study reviews the literature on error patterns in mathematics among students with mathematics difficulty. We analyzed and synthesized the findings from 17 studies, focusing on the characteristics of error analysis studies, the mathematics topics examined, and the specific error patterns identified. The results revealed the following: (a) the…
Descriptors: Mathematics, Mathematics Education, Mathematics Instruction, Mathematical Concepts
Yuan, Yuan; Chen, Kuolong – International Journal of Science and Mathematics Education, 2023
This study used fraction number line estimation tasks to evaluate students' developmental patterns, and the relationship of such tasks with whole number bias was explored. In total, 189 fourth-grade students in a northern Taiwan elementary school were followed over 2 years. The results demonstrated that the students' fraction learning development…
Descriptors: Fractions, Numbers, Computation, Grade 4
Kirkland, Patrick K.; Guang, Claire; Cheng, Ying; Trinter, Christine; Kumar, Saachi; Nakfoor, Sofia; Sullivan, Tiana; McNeil, Nicole M. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2022
Students exhibiting mature number sense make sense of numbers and operations, use reasoning to notice patterns, and flexibly select the most effective and efficient problem-solving strategies (McIntosh et al., 1997; Reys et al., 1999; Yang, 2005). Despite being highlighted in national standards and policy documents (CCSS, 2010; NCTM, 2000, 2014),…
Descriptors: Middle School Students, Number Concepts, Fractions, Arithmetic
Zehra E. Ünal; Züleyha Terzi; Beyzanur Yalvaç; David C. Geary – Developmental Science, 2024
Understanding the magnitudes represented by numerals is a core component of early mathematical development and is often assessed by accuracy in situating numerals and fractions on a number line. Performance on these measures is consistently related to performance in other mathematics domains, but the strength of these relations may be…
Descriptors: Number Concepts, Mathematics Achievement, Mathematics Education, Meta Analysis
Rich, Kathryn M. – Digital Experiences in Mathematics Education, 2023
Incorporating visual representations, rather than strictly relying on symbolic representations, is a research-based strategy for supporting fraction learning. However, students must also make transitions between visual and symbolic fraction representations to apply the conceptual understanding they gained from visual representations to symbolic…
Descriptors: Elementary School Teachers, Elementary School Mathematics, Mathematics Instruction, Teaching Methods
Laurie Ann Gentry-Goodale – ProQuest LLC, 2024
There is a strong need for fifth-grade students to become proficient in mathematical problem-solving using fractional computations because it will have a lasting impact on student achievement. Traditionally, mathematics is taught inside a brick-and-mortar classroom, grounded in rote memorization of facts, rules, and formulas. In recent years, more…
Descriptors: Grade 5, Problem Solving, Fractions, Computation
Tupouniua, John Griffith – International Journal of Mathematical Education in Science and Technology, 2022
A growing emphasis on computational thinking worldwide necessitates student proficiency in creating algorithms. Focusing on the use of counterexamples for developing student-invented algorithms, I reanalyze two pieces of data from previously published research, pertaining to two different cases of students' algorithmatizing activity. In both…
Descriptors: Computation, Thinking Skills, Mathematics, Logical Thinking
Satsangi, Rajiv; Raines, Alexandra R. – Journal of Learning Disabilities, 2023
As digital technology use increases in K-12 education, greater numbers of strategies become available to support students in mathematics. One technology that provides students diverse representations of mathematical concepts is virtual manipulatives. Although instruction featuring representations with physical manipulatives possesses a large body…
Descriptors: Educational Technology, Manipulative Materials, Computation, Fractions
Boby Ho-Hong Ching; Xiang Yu Li; Tiffany Ting Chen – British Journal of Educational Psychology, 2024
Background: Recent research showed that cross-notation magnitude knowledge of fractions and decimals was related to better performance in fraction arithmetic, but it remains unclear whether it made an independent contribution to fraction arithmetic longitudinally when other cognitive variables are considered. Aims: To examine the extent to which…
Descriptors: Number Concepts, Fractions, Arithmetic, Young Children
Dogan, Adem; Sir, Havva Kevser Yildirim – Journal of Education and Learning (EduLearn), 2022
One of the most fundamental subjects of primary school mathematics, the concept of fraction plays a key role in students' educational background. Students experience difficulties and misconceptions regarding this concept. Therefore, it is of great importance to understand this subject well and to use different teaching methods and techniques.…
Descriptors: Elementary School Students, Grade 4, Fractions, Computation
Clarissa A. Thompson; Pooja G. Sidney; Charles J. Fitzsimmons; Marta Mielicki; Lauren Schiller; Daniel A. Scheibe; John E. Opfer; Robert S. Siegler – Grantee Submission, 2022
In the target article, Xing and colleagues (2021) claimed that 6- to 8-year-olds who spontaneously referenced the midpoint of 0-100 number lines made more accurate magnitude estimates and scored higher on a standardized math achievement test than other children. Unlike previous studies, however, the authors found no relation between accuracy on…
Descriptors: Mathematics Skills, Young Children, Number Concepts, Accuracy

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