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Paul Scovazzo – Chemical Engineering Education, 2025
Simplifying equations via assumptions is integral to the "engineering method." Algebraic scaling helps in teaching the engineering skill of making good assumptions. Algebraic scaling is more than a pedagogical tool. It can create a solution where one was not possible before scaling. Scaling helps in engineering proper design…
Descriptors: Algebra, Scaling, Engineering Education, Mathematics Skills
Rafi' Safadi; Nadera Hawa – Mathematics Teacher: Learning and Teaching PK-12, 2025
Graded Troubleshooting (GTS) is a powerful routine that teachers can use easily to engender students' metacognitive thinking and boost their understanding of mathematics concepts and procedures. This article describes a new GTS activity designed to prompt students to efficiently exploit worked examples when asked to diagnose erroneous examples…
Descriptors: Mathematics Education, Mathematics Instruction, Problem Solving, Troubleshooting
Eddie Woo – Australian Mathematics Education Journal, 2023
Eddie Woo discusses the importance of problem solving in mathematics education. He points to the need for teachers to carefully consider the approaches they use to best support the growth of problem-solving abilities in students.
Descriptors: Mathematics Education, Problem Solving, Mathematics Instruction, Mathematics Skills
Kandel, Matthew – Mathematics Teacher: Learning and Teaching PK-12, 2023
The mathematical modeling process is also a powerful way to teach students the meaning of data. In mathematical modeling, students are collecting data to answer a question. Data collection is the means to an end and not the end in itself. The author was looking for an engaging way to introduce his third-grade mathematics class to the skill of…
Descriptors: Mathematical Models, Mathematics Instruction, Elementary School Mathematics, Grade 3
Holton, D. A.; Thomas, M. O. J. – International Journal of Mathematical Education in Science and Technology, 2023
In this paper we follow a hypothetical mathematician who is working on a problem that is eventually solved. We treat this problem as if it were difficult for the mathematician. In following the mathematician's work, we note both what she does and what she doesn't do in the process. By the latter, we consider the times when progress is not being…
Descriptors: Mathematics Education, Professional Personnel, Discovery Learning, Mathematics Skills
Rott, Benjamin; Specht, Birte; Knipping, Christine – ZDM: Mathematics Education, 2021
Complementary to existing "normative" models, in this paper we suggest a descriptive phase model of problem solving. Real, not ideal, problem-solving processes contain errors, detours, and cycles, and they do not follow a predetermined sequence, as is presumed in normative models. To represent and emphasize the non-linearity of empirical…
Descriptors: Mathematics Skills, Problem Solving, Models, Cognitive Processes
Vesife Hatisaru – Australian Mathematics Education Journal, 2023
'Mathematical sophistication' behaviours are often exercised by mathematicians in their work. In this article, the importance of mathematical sophistication will be discussed and three mathematics problems that activate mathematical sophistication behaviours will be presented.
Descriptors: Mathematics, Mathematics Instruction, Problem Solving, Mathematics Skills
O'Dell, Jenna R.; Langrall, Cynthia W.; Cullen, Amanda L. – Mathematics Teacher: Learning and Teaching PK-12, 2022
In typical school mathematics, students experience problem solving in different ways. Sometimes students learn about problem solving by being introduced to different strategies, such as making a table or drawing a picture. Other times, problem solving is presented as a context for applying previously learned mathematics skills and concepts.…
Descriptors: Mathematics Skills, Problem Solving, Mathematics Instruction, Teaching Methods
Voigt, Matthew; Wynn, Lynda; Bjorkman, Katie; Lo, Stanley M. – PRIMUS, 2023
In this paper, we briefly introduce three theoretical frameworks for mathematical identity and why they matter to practitioners teaching undergraduate mathematics courses. These frameworks are narrative identities, communities of practice, and figured worlds. After briefly describing each theory, we provide examples of how each framework can be…
Descriptors: Undergraduate Students, Self Concept, Mathematics Education, College Mathematics
Glassmeyer, David – PRIMUS, 2023
This article presents a task providing college students opportunities to build on their high school knowledge of trigonometry to explore parametric equations and inverse trigonometric relationships within a contextual learning ladder problem.
Descriptors: Trigonometry, Equations (Mathematics), College Students, High Schools
Taylor Lesner; Marah Sutherland; Cayla Lussier; Ben Clarke – Intervention in School and Clinic, 2024
Building proficiency with fraction arithmetic poses a consistent challenge for students with learning difficulties or disabilities in mathematics. This article illustrates how teachers can use the number line model to support struggling learners in making sense of fraction arithmetic. Number lines are a powerful tool that can be used to help…
Descriptors: Number Concepts, Fractions, Arithmetic, Mathematics Skills
Pamela Burdman – Numeracy, 2024
This keynote address explores the history and role of college math requirements with a focus on ensuring math courses serve to expand students' horizons, rather than serve as gatekeepers. It discusses the advent of general education math courses, which brought more students into math departments, which ultimately contributed to broadening the…
Descriptors: College Mathematics, Mathematics Instruction, College Students, Problem Solving
Papadopoulos, Ioannis; Patsiala, Nafsika; Baumanns, Lukas; Rott, Benjamin – Center for Educational Policy Studies Journal, 2022
The importance of mathematical problem posing has been acknowledged by many researchers. In this theoretical paper, we want to capture different meanings and aspects of problem posing by approaching it from three different levels: (1) by comparing definitions, (2) by relating it to other constructs, and (3) by referring to research and teaching…
Descriptors: Problem Solving, Definitions, Word Problems (Mathematics), Mathematics Skills
Csíkos, Csaba – Journal of Intelligence, 2022
The nature of the development of arithmetic performance has long been intensively studied, and available scientific evidence can be evaluated and synthesized in light of Nelson and Narens' model of metacognition. According to the Nelson-Narens model, human cognition can be split into two or more interrelated levels. Obviously, in the case of more…
Descriptors: Metacognition, Mathematics Skills, Arithmetic, Cognitive Development
Camille Lund – Mathematics Teacher: Learning and Teaching PK-12, 2024
Every educator knows the sinking feeling of a lesson gone wrong. As teachers look around the room and realize that many of their students are just not getting it, they often feel like failures. However, the struggle students experience as they persevere through high-quality challenging tasks is not a sign of failure, but rather a key aspect of…
Descriptors: Mathematics Instruction, Difficulty Level, Mathematics Skills, Teaching Methods

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