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Behroozi, Fred – Physics Teacher, 2022
The Young-Laplace (Y-L) equation relates the pressure difference across the interface of two fluids (such as air and water) to the curvature of the interface. The pressure rises on crossing a convex interface such as a rain drop and falls on crossing a concave interface such as the meniscus of water in a glass capillary. The relation between…
Descriptors: Science Instruction, Physics, Equations (Mathematics), Water
Milici, Pietro; Plantevin, Frédérique; Salvi, Massimo – International Journal of Mathematical Education in Science and Technology, 2022
We propose an original machine that traces conics and some transcendental curves (oblique trajectories of confocal conics) by the solution of inverse tangent problems. For such a machine, we also provide the 3D-printable model to be used as an intriguing supplement for geometry, calculus, or ordinary differential equations classes.
Descriptors: Computer Peripherals, Printing, Geometry, Geometric Concepts
Stewart, Seán M. – International Journal of Mathematical Education in Science and Technology, 2022
For integrals consisting of rational functions of sine and cosine a set of little known rules known as the Bioche rules are considered. The rules, which consist of testing the differential form of the integral for invariance under one of three simple substitutions x [right arrow] -- x, [pi] -- x, and [pi] + x, allow one to decide which of the…
Descriptors: Mathematics Instruction, Trigonometry, Mathematical Concepts, Equations (Mathematics)
Glenn Ledder; Stefano Manzoni – International Journal of Mathematical Education in Science and Technology, 2024
Decomposition of organic matter controls the flow of carbon and nutrients in terrestrial and aquatic ecosystems. Several kinetic laws have been proposed to describe decomposition rates, but they neglect adaptation of the microbial decomposer to environmental conditions. Here we formalise decomposition as an optimal control problem by assuming that…
Descriptors: Microbiology, Calculus, Undergraduate Students, Barriers
George Ashline; Bret Findley; Mitchell Andrea; Dylan Wawruck – PRIMUS, 2024
We describe the components and implementation of an activity for multivariable calculus featuring applications to the field of chemistry. This activity focuses on the isobaric thermal expansion coefficient found using partial differentiation of the volume of an ideal gas with respect to temperature as pressure is held constant. Broader goals of…
Descriptors: Learning Activities, Mathematics Instruction, Calculus, Chemistry
Merav Weingarden; Giulia Lisarelli; Anna Baccaglini-Frank – Digital Experiences in Mathematics Education, 2024
This article investigates the potential mathematical learning opportunities arising from a digital activity designed to enhance students' comprehension of equations. Employing a commognitive-oriented lens, the analysis explores the potential mathematical discourses that could emerge from students' interactions with a digital scale inspired by the…
Descriptors: Mathematics Education, Mathematics Achievement, Equations (Mathematics), Computer Assisted Instruction
XinXiu Yang – International Journal of Information and Communication Technology Education, 2024
The objective of this work is to predict the employment rate of students based on the information in the SSM (student status management) in colleges and universities. Firstly, the relevant content of SSM is introduced. Secondly, the BP (Back Propagation) neural network, the LM (Levenberg Marquardt) algorithm, and the BR (Bayesian Regularization)…
Descriptors: Prediction, Employment Patterns, College Students, Algorithms
Thembinkosi Peter Mkhatshwa – International Journal of Mathematical Education in Science and Technology, 2024
This article reports on a qualitative investigation into students' thinking about a differential equations problem posing task; i.e. an initial value problem. Analysis of written and verbal responses to the task indicate that only four of the 34 students who participated in the study were successful in posing problems. Furthermore, only one of the…
Descriptors: Mathematics Skills, Equations (Mathematics), Abstract Reasoning, Thinking Skills
Justin L. Kern – Journal of Educational and Behavioral Statistics, 2024
Given the frequent presence of slipping and guessing in item responses, models for the inclusion of their effects are highly important. Unfortunately, the most common model for their inclusion, the four-parameter item response theory model, potentially has severe deficiencies related to its possible unidentifiability. With this issue in mind, the…
Descriptors: Item Response Theory, Models, Bayesian Statistics, Generalization
Thembinkosi Peter Mkhatshwa – International Journal of Mathematical Education in Science and Technology, 2024
Contributing to research on undergraduate students' thinking about problem solving tasks, the present study reports on students' reasoning about two initial-value problems i.e. first-order linear ordinary differential equations with initial conditions. A qualitative analysis of task-based interviews and work written by 34 students revealed that…
Descriptors: Problem Solving, Undergraduate Students, Thinking Skills, Student Attitudes
Filip Moons; Alexander Holvoet; Katrin Klingbeil; Ellen Vandervieren – British Journal of Educational Technology, 2024
In this crossover experiment, we investigated the impact of a statement bank, enabling the reuse of previously written feedback (SA condition), on 45 math teachers' feedback for 60 completed linear equation tests, compared to traditional pen-and-paper feedback (PP condition). In the SA condition, teachers were encouraged to use atomic feedback, a…
Descriptors: Feedback (Response), Equations (Mathematics), Written Language, Mathematics Teachers
Kaldaras, Leonora; Wieman, Carl – International Journal of STEM Education, 2023
Background: Blended mathematical sensemaking in science ("Math-Sci sensemaking") involves deep conceptual understanding of quantitative relationships describing scientific phenomena and has been studied in various disciplines. However, no unified characterization of blended Math-Sci sensemaking exists. Results: We developed a theoretical…
Descriptors: Cognitive Processes, Models, Equations (Mathematics), Science Instruction
Lee, Jiyoung; Pang, JeongSuk – International Journal of Science and Mathematics Education, 2023
It is important for students to develop a relational understanding of the equal sign, but students often have simultaneous operational and relational conceptions (i.e., SOR conceptions). This case study carefully explored how a student's conception of the equal sign changed during a classroom teaching experiment and analyzed the possibilities and…
Descriptors: Students, Mathematical Concepts, Symbols (Mathematics), Concept Formation
Richard F. Melka; Hashim A. Yousif – International Journal of Mathematical Education in Science and Technology, 2023
In application-oriented mathematics, particularly in the context of nonlinear system analysis, phase plane analysis through SageMath offers a visual display of the qualitative behaviour of solutions to differential equations without inundating students with cumbersome calculations of the plane-phase. A variety of examples is usually given to…
Descriptors: Mathematical Concepts, Mathematical Applications, Problem Solving, Computation
Sindura Subanemy Kularajan; Elizabeth Roan; Jennifer A. Czocher – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
In this report, we present cases where students constructed new quantities through operating on quantities that does not fit the definitions of existing theories on quantitative operations. As a result, we identified five quantitative operators--operators that can be used on single qualities in order to transform the quantity to a new…
Descriptors: Mathematical Models, Mathematics Skills, Thinking Skills, Mathematical Concepts