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Short Activity: Using Computational Thinking to Foster Deeper Understanding of Mathematical Concepts
Ben Zunica – Australian Mathematics Education Journal, 2023
Ben Zunica describes a lesson in which computational thinking has been successful in assisting students to understand the process of simplifying surds. The strengths and limitations of this approach are discussed. The author concludes that computational thinking can assist in solidifying understanding of a range of mathematical processes for…
Descriptors: Computation, Thinking Skills, Mathematical Concepts, Mathematics Instruction
Ratni Purwasih; Turmudi; Jarnawi Afgani Dahlan – Journal on Mathematics Education, 2024
Some countries, including Indonesia, have a framework for understanding how students receive and process math concepts as new knowledge through learning styles. Learning style, particularly Kolb's model, is one of the learning styles that contribute to students' success in learning. Experts have explored the characteristics of Kolb's learning…
Descriptors: Thinking Skills, Computation, Mathematical Concepts, Cognitive Style
Angela Roccograndi; Michelle Hodara – Education Northwest, 2024
Louisiana State University (LSU) received an Education Innovation and Research (EIR) grant to implement its Introduction to Computational Thinking (ICT) course from fall 2019 through spring 2023. ICT is a yearlong course that builds skills in problem solving, programming, and mathematics (algebra and geometry) and is intended to improve…
Descriptors: Mental Computation, Curriculum Development, Introductory Courses, Mathematics Education
Ernesto Sánchez; Victor Nozair García-Ríos; Francisco Sepúlveda – Educational Studies in Mathematics, 2024
Sampling distributions are fundamental for statistical inference, yet their abstract nature poses challenges for students. This research investigates the development of high school students' conceptions of sampling distribution through informal significance tests with the aid of digital technology. The study focuses on how technological tools…
Descriptors: High School Students, Concept Formation, Thinking Skills, Skill Development
Dennis, Minyi Shih; Gratton-Fisher, Emma – Learning Disabilities Research & Practice, 2020
Secondary students with persistent mathematics difficulties need the most intensive intervention in order to improve their mathematics outcomes. One approach to intensifying and individualizing intervention is through data-based individualization (DBI). The present study used a single-subject, multiple-baseline-across-participants,…
Descriptors: High School Students, Mathematics Skills, Computation, Mathematical Concepts
Nguyen-Dang Minh Phuc; Huynh Tan Thanh Tam – International Journal for Technology in Mathematics Education, 2024
Mathematics education often grapples with the challenge of teaching abstract mathematical concepts, particularly those existing in 3D space. Visualizing, manipulating, and comprehending these abstract objects can be a formidable task for learners. While 3D printing technology has found applications in various fields, its utilization in mathematics…
Descriptors: High Schools, Technology Uses in Education, Computation, Measurement
Plangg, Simon; Fuchs, Karl Josef – International Journal for Technology in Mathematics Education, 2022
Using robot programming activities for learning in the classroom is one way to drive interest and engagement in the STEM field among students, especially girls. And this is afield that is particularly characterized by an underrepresentation of women. Accordingly, many countries are increasingly integrating activities related to computer science…
Descriptors: Robotics, Programming, STEM Education, Computer Science Education
Ekol, George; Mlotshwa, Simphiwe – Pythagoras, 2022
This case study carried out during the 2020 coronavirus disease of 2019 (COVID-19) lockdown used online data collection means to investigate the distribution of cognitive demand levels of probability and counting principles (PCP) learning tasks in a popular online Grade 12 mathematics textbook, based on the PCP teachers' rating. The teachers'…
Descriptors: Cognitive Processes, Difficulty Level, Probability, Computation
Watson, Lucy A.; Bonnesen, Christopher T.; Strayer, Jeremy F. – Mathematics Teacher: Learning and Teaching PK-12, 2021
In this article, the authors present a brief description of the different views of the "nature of mathematics" (NOM), share a five-point view of NOM that undergirds the teaching profession's guiding documents, and describe ways of providing opportunities for teachers and students to have conversations in the classroom that build…
Descriptors: Mathematics Education, Foundations of Education, Teaching Methods, Learning Strategies
Ferrando, Irene; Albarracín, Lluís – Mathematics Education Research Journal, 2021
One hundred four students aged 8 to 16 worked on one Fermi problem involving estimating the number of people that can fit in their school playground. We present a qualitative analysis of the different mathematical models developed by the students. The analysis of the students' written productions is based on the identification of the model of…
Descriptors: Mathematics Instruction, Problem Solving, Computation, Mathematical Models
Mills, Terrence – Australian Senior Mathematics Journal, 2018
The sudden perception of a connection between ideas is exhilarating. We might call these moments 'Aha!' moments. The purpose of this paper is to demonstrate how several different ideas can come together in Year 12 mathematics. The subject Further Mathematics in the Victorian Certificate of Education (VCE) is the Victorian adaptation of General…
Descriptors: Grade 12, Secondary School Mathematics, Mathematics Instruction, Foreign Countries
Neilson, Drew; Campbell, Todd – Science Teacher, 2018
Science students should use mathematical and computational thinking to explain phenomena, but few examples of teachers engaging students in this important scientific practice have been found. This article describes a strategy for enhancing a lesson in which students use a mechanistic model to explain friction by adding mathematical and…
Descriptors: Science Instruction, Mathematics, Mathematical Concepts, Computation
Bundock, Kaitlin; Hawken, Leanne S.; Kiuhara, Sharlene A.; O'Keeffe, Breda V.; O'Neill, Robert E.; Cummings, Margarita B. – Learning Disability Quarterly, 2021
Implementing an integrated sequence of concrete-representational-abstract depictions of mathematics concepts (CRA-I) can improve the mathematics achievement of students with disabilities, and explicit instructional strategies involving problem-solving heuristics and student verbalizations can help facilitate students' conceptual understanding of…
Descriptors: High School Students, Students with Disabilities, Problem Solving, Mathematics Instruction
Byerley, Cameron; Thompson, Patrick W. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
This paper explores the usefulness of understanding quotients as measures of relative size in mathematics. The paper characterizes the types of thinking displayed by high school mathematics teachers on two novel tasks designed to reveal teachers' meanings in contexts where making comparisons of relative size is productive. [For the complete…
Descriptors: Mathematical Concepts, High School Teachers, Mathematics Teachers, Measurement
Foster, Colin – Canadian Journal of Science, Mathematics and Technology Education, 2014
The frequent misinterpretation of the nature of confidence intervals by students has been well documented. This article examines the problem as an aspect of the learning of mathematical definitions and considers the tension between parroting mathematically rigorous, but essentially uninternalized, statements on the one hand and expressing…
Descriptors: Mathematics Instruction, Mathematical Concepts, Misconceptions, Computation