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Samuel Cuthbertson; Mark Ian Nelson – International Journal of Mathematical Education in Science and Technology, 2025
We adapt the Lanchester combat model to represent conflict between vampires and humans. It is assumed that vampires attack humans during the hours of darkness whilst humans attack vampires during the hours of light. The right-hand side of the differential equation model therefore depends upon the hour of the day. A key insight is that to answer…
Descriptors: War, Mathematical Models, Calculus, Problem Solving
Nurfirzanah Muhamad Fadzil; Sharifah Osman – International Electronic Journal of Mathematics Education, 2025
Collaborative learning is a group learning paradigm in which individuals or students work together to solve problems or complete tasks, exemplifying the essence of collective educational efforts. There are a lot of collaborative learning methods available; however, finding one that is suitable for the complex nature of mathematical problem-solving…
Descriptors: Mathematics Instruction, Cooperative Learning, Problem Solving, Metacognition
Jinfa Cai; Benjamin Rott – ZDM: Mathematics Education, 2024
Problem posing engages students in generating new problems based on given situations (including mathematical expressions or diagrams) or changing (i.e., reformulating) existing problems. Problem posing has been at the forefront of discussion over the past few decades. One of the important topics studied is the process of problem posing as…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Models
Morten Munthe; Margrethe Naalsund – Digital Experiences in Mathematics Education, 2024
The growing use of programming in mathematics classrooms presents a challenge linked to implementation in general and task design in particular. This article presents design ideas for mathematical problems incorporating programming in which the focus remains mainly on learning mathematics and less on learning programming. The article starts by…
Descriptors: Programming, Mathematics Instruction, Task Analysis, Design
Pier Luigi Ferrari – For the Learning of Mathematics, 2024
The main aim of this paper is to propose a critical view of the application of Toulmin's model of argument to mathematics education, focusing on aspects that have strong teaching implications. It is claimed that Toulmin's description of arguments in mathematics, in particular as regards the relations between form and meaning, is misleading and out…
Descriptors: Persuasive Discourse, Mathematics Instruction, Teaching Methods, Language Usage
Tugrul Kar; Ferhat Öztürk; Mehmet Fatih Öçal; Merve Özkaya – International Journal of Science and Mathematics Education, 2025
The present study aimed to describe teachers' instructional flows when implementing a mathematical problem-posing task using scriptwriting technique. With matchsticks, a growing pattern that increases by a constant unit was created and presented to the teachers as a problem-posing situation. We analyzed the instructional flows in 50 scripts,…
Descriptors: Problem Solving, Scripts, Writing (Composition), Mathematics Instruction
Sarah Erickson; Elise Lockwood – International Journal of Mathematical Education in Science and Technology, 2024
Combinatorial proofs of binomial identities involve establishing an identity by arguing that each side enumerates a certain set of outcomes. In this paper, we share results from interviews with experienced provers (mathematicians and upper-division undergraduate mathematics students) and examine one particular aspect of combinatorial proof, namely…
Descriptors: Mathematics Instruction, Validity, Mathematical Logic, Advanced Courses
Sarah K. Cox; Matthew K. Burns; Elizabeth M. Hughes; Taryn Wade; Michelle Brown – Elementary School Journal, 2024
Mathematical flexibility is thought to be a critical component of mathematical proficiency, and the term "mathematical flexibility" has been used by teachers, researchers, and policy makers for more than 2 decades. Although there seems to be consensus on the importance of mathematical flexibility as a construct, the way it is defined and…
Descriptors: Mathematics Skills, Problem Solving, Mathematical Concepts, Definitions
Traci Shizu Kutaka; Pavel Chernyavskiy; Menglong Cong; Kayla McCreadie; Julie Sarama; Douglas Clements – Grantee Submission, 2024
Background: The sophistication of young children's arithmetic problem-solving strategies can be influenced through experience and instructional intervention. One potential pathway is through encountering story problems where the location of the unknown quantity varies. Aims: The goal of the present study is to characterize how arithmetic…
Descriptors: Arithmetic, Problem Solving, Mathematics Instruction, Kindergarten
Tamisha Thompson; Jennifer St. John; Siddhartha Pradhan; Erin Ottmar – Journal of Computer Assisted Learning, 2025
Background: Educational technologies typically provide teachers with analytics regarding student proficiency, but few digital tools provide teachers with process-based information about students' variable problem-solving strategies as they solve problems. Utilising design thinking and co-designing with teachers can provide insight to researchers…
Descriptors: Mathematics Instruction, Educational Technology, Problem Solving, Instructional Design
María Burgos; Nicolás Tizón-Escamilla; Jorhan Chaverri – Mathematics Education Research Journal, 2025
The invention of problems is a fundamental competence that enhances the didactic-mathematical knowledge of mathematics teachers and therefore should be an objective in teacher training plans. In this paper, we revise different proposals for categorizing problem-creation activities and propose a theoretical model for problem posing that, based on…
Descriptors: Mathematics Instruction, Problem Solving, Models, Preservice Teachers
Luis E. Hernández-Zavala; Claudia Acuña-Soto; Vicente Liern – International Electronic Journal of Mathematics Education, 2025
Students often instrumentally use variables and unknowns without considering the variational thinking behind them. Using parameters to modify the coefficients or unknowns in equations or systems of linear equations (without altering their structure) involves consciously incorporating variational thinking into problem-solving. We will test the…
Descriptors: Equations (Mathematics), Mathematical Applications, Undergraduate Students, Problem Solving
Yasin Memis – Journal of Pedagogical Research, 2025
The integration of artificial intelligence (AI) into mathematical problem-solving has shown significant potential to enhance student learning and performance. However, while AI tools offer numerous benefits, they are prone to occasional conceptual and arithmetic errors that can mislead users and obscure understanding. This research examines such…
Descriptors: Artificial Intelligence, Mathematics Instruction, Problem Solving, Error Patterns
Katherine Baker; Madison Clark; Danielle Moloney Gallagher – Electronic Journal for Research in Science & Mathematics Education, 2024
This article features a fifth grade mathematics exploration planned to facilitate students' productive struggle. The exploration was a catalyst for a team of educators to unpack the teacher's experience when facilitating students' productive struggle. The team called this "teacher productive struggle" and shares about the construct…
Descriptors: Grade 5, Mathematics Instruction, Problem Solving, Productive Thinking
Tiffany Berman; Casey Hord – Insights into Learning Disabilities, 2024
Research has shown the importance of helping students, especially those with mild-to-moderate learning disabilities, to offload information during problem-solving. When students can get their thoughts onto paper, number line strategies can help them develop a firm foundation in mathematical problem-solving while understanding the relationships…
Descriptors: Mathematics Instruction, Visual Aids, Problem Solving, Arithmetic