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Adi Perry-Kates; Anat Cohen – Journal of Computer Assisted Learning, 2025
Background: In light of the growing need to understand interactive learning effectivity and especially post-COVID 19 pandemic constraints, the key question is how to develop interactive videos in order to get the most effective results. Objectives: This research aims to explore the pedagogical benefits of interactive video with branching…
Descriptors: Video Technology, Interaction, Instructional Effectiveness, Teaching Methods
Grayson Rice; Luke Flyer; Ann Saterbak – Biomedical Engineering Education, 2025
Purpose: The purpose of the study is to determine when students deepen their conceptual understanding of mathematical modeling during a one-semester course in biomedical engineering that uses the constructivist problem-based learning (PBL) framework. The study hypothesizes that concept maps, as a form of assessment, would show increased complexity…
Descriptors: Problem Based Learning, Student Developed Materials, Concept Mapping, Mathematical Models
Marcia Nichols; Andrew M. Petzold; Robert L. Dunbar – Sage Research Methods Cases, 2025
This Case Study reviews a quasi-experimental research project in the field of the scholarship of teaching and learning. Researching the effects of pedagogic interventions poses a number of methodologic challenges. Our original research goal was to create an assignment that would ameliorate the problem of content knowledge loss. Teaching and…
Descriptors: Quasiexperimental Design, Educational Research, Mixed Methods Research, Teaching Methods
A Strategy to Engage Students in Inquiry-Based Learning of Mathematics: Predict, Observe and Explain
Gokhan Karakoc; Cengiz Alacaci; Alipasa Ayas – Instructional Science: An International Journal of the Learning Sciences, 2025
The current research implemented the Predict Observe and Explain (POE) instructional approach in mathematics and examined its efficacy in enhancing students' understanding of functions in terms of their ability to connect algebraic and graphical representations in optimization problems. Two grade 11 classes (40 students in total) and two grade 10…
Descriptors: Inquiry, Active Learning, Mathematics Instruction, Grade 10
Lynn S. Fuchs; Douglas Fuchs; Sonya K. Sterba; Marcia A. Barnes; Pamela M. Seethaler; Paul Changas – Grantee Submission, 2022
This study's purpose was to investigate effects of 3 intervention approaches for building working memory (WM) and improving word-problem solving (WPS). Children with mathematics difficulties (n = 240; 7.51 years [SD = 0.33]) were randomized to 4 conditions: a control group, general WM training with contiguous math practice, WPS intervention…
Descriptors: Problem Solving, Short Term Memory, Intervention, Mathematics Instruction
Lehtonen, Miikka J. – Design and Technology Education, 2023
Since the beginning of the 21st century, design education has been gaining momentum across disciplines as a means to equip students with skills relevant in the job market as well as to tackle wicked problems. One of the core assumptions behind integrating design education to other disciplines focuses on the need for hands-on and experiential…
Descriptors: Blended Learning, Design, Thinking Skills, Cooperative Learning
The Problem in Math Word Problems: Factors Affecting Students' Perceptions toward Math Word Problems
Sean Kalel C. Garcia; Maricris D. Chuang – Journal of Science and Mathematics Education in Southeast Asia, 2023
This study aimed to examine Grade 7 students' perceptions toward Math word problems to help improve their problem-solving skills since the said skill is important and essential for all students to possess. This study used a descriptive survey made by the researchers and consisted of 15 statements of feelings regarding Math word problems; the…
Descriptors: Word Problems (Mathematics), Mathematics Instruction, Difficulty Level, Grade 7
Gros, Hippolyte; Thibaut, Jean-Pierre; Sander, Emmanuel – Educational Psychologist, 2020
Arithmetic problem solving is a crucial part of mathematics education. However, existing problem solving theories do not fully account for the semantic constraints partaking in the encoding and recoding of arithmetic word problems. In this respect, the limitations of the main existing models in the literature are discussed. We then introduce the…
Descriptors: Semantics, Arithmetic, Models, Word Problems (Mathematics)
Hopkins, Sarah; Russo, James; Siegler, Robert – Mathematical Thinking and Learning: An International Journal, 2022
There is a growing awareness that many children are not developing fast and accurate retrieval-based strategies for solving single-digit addition problems. In this study we individually assessed 166 third and fourth grade children to identify a group of children (called accurate-min-counters) who frequently solved simple single-digit addition…
Descriptors: Addition, Grade 3, Grade 4, Elementary School Students
Hansen, Ragnhild – Mathematics Education Research Journal, 2022
In this study, we aim to explain choices that groups of preservice teachers made to implement modelling tasks in primary school. We found that the preservice teachers decided to facilitate everyday-inspired contexts for the tasks and that this could be explained by their reasoning that modelling is supposed to be an activity close to reality.…
Descriptors: Decision Making, Preservice Teachers, Mathematical Models, Mathematics Instruction
Moleko, Matshidiso M.; Mosimege, Mogege D. – Pythagoras, 2021
Flexible teaching of mathematics word problems is essential to improve learning. Flexible teaching is vital in terms of providing meaningful learning, creating inclusive learning spaces and making content accessible. As such, teachers need to strive to provide flexible teaching of mathematics word problems in order to optimise and maximise…
Descriptors: Mathematics Instruction, Word Problems (Mathematics), Teaching Methods, High School Teachers
Burgos, María; Bueno, Seydel; Godino, Juan D.; Pérez, Olga – REDIMAT - Journal of Research in Mathematics Education, 2021
Teaching and learning Calculus concepts and procedures, particularly the definite integral concept, is a challenge for teachers and students in their academic careers. In this research, we supplement the analysis made by different authors, applying the theoretical and methodological tools of the Onto-Semiotic Approach to mathematical knowledge and…
Descriptors: Semiotics, Mathematics Instruction, Teaching Methods, Decision Making
Nancy C. Jordan; Nancy Dyson; Taylor-Paige Guba; Megan Botello; Heather Suchanec-Cooper; Henry May – Grantee Submission, 2024
A solid understanding of fractions is the cornerstone for acquiring proficiency with rational numbers and paves the way for learning advanced mathematical concepts, such as algebra. Fraction difficulties limit not only students' educational and vocational opportunities but also their ability to solve everyday problems. Students who exit 6th grade…
Descriptors: Fractions, Mathematics Instruction, Grade 6, Intervention
Sarah Ferguson; Denise L. Polojac-Chenoweth – Teachers College Press, 2024
Problem-based instruction (PBI) is a research-based, student-centered instructional strategy that uses rich mathematical tasks to connect students' previously acquired math knowledge to new mathematical concepts. Unlike traditional teaching and learning strategies, PBI facilitates learning by making connections between mathematical concepts and…
Descriptors: Problem Based Learning, Mathematics Education, Secondary School Students, Teaching Methods
Anna Beinke; Lisa O’Keeffe; Amie Albrecht; Bruce White – Australian Mathematics Education Journal, 2024
With the aim of engaging more students in meaningful thinking in mathematics, a cohort of Year 7 students were introduced to a 'Building Thinking Classrooms' framework for learning in mathematics. In this paper, the authors outline the key features of the implemented framework and share reflections on challenges and benefits.
Descriptors: Mathematics Instruction, Grade 7, Thinking Skills, Teaching Methods

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