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Robert J. Fisher – Chemical Engineering Education, 2025
Strategies are proposed that promote use of an Integrated Applied Mathematics (IAM) approach to enhance teaching of advanced problem-solving and analysis skills. Three scenarios of 1-dimensional transport processes are presented that support using Error Function analyses when considering short time/small penetration depths in finite geometries.…
Descriptors: Chemical Engineering, Mathematics, Problem Solving, Skill Development
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Tian Li; Gaomin Sun; Xinlin Zhou; Tengfei Wang – Educational Psychology, 2023
The close relationship between working memory and maths problem solving is generally accepted, but the specifics of how working memory and its subcomponents contribute to maths problem solving remain poorly understood. Tests of working memory, maths problem problem solving, calculation, and intelligence were administered to 246 university…
Descriptors: Mathematics, Short Term Memory, Problem Solving, Computation
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Ngiwas, Fleur De Cory Apasen; Mariano, Daisy Lyn F.; Barsana, Jayson G.; Cruz, Michelle P.; Elipane, Levi – International Journal of Evaluation and Research in Education, 2022
This study investigated the utilization of example-conclusion map (ECM), a tool in teaching simple interest to senior high school in a university in the Philippines. With the purpose of presenting the topic in a more relevant way to learners under the Accountancy and Business Management strand, the researchers engaged in a lesson study. The…
Descriptors: Foreign Countries, Learner Engagement, College Students, Business Education
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Stephen Hackler; Emily Elliott; Mark Eichenlaub; Alison M. Sweeney – Physical Review Physics Education Research, 2023
The increasing and diversifying student enrollments in introductory physics courses make reliable, valid, and usable instruments for measuring student skills and gains ever more important. In introductory physics, in addition to teaching facts about mechanics, we also seek to teach our students the skills of "thinking like a physicist,"…
Descriptors: Physics, Science Instruction, Thinking Skills, Test Construction
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Tupouniua, John Griffith – International Journal of Mathematical Education in Science and Technology, 2022
A growing emphasis on computational thinking worldwide necessitates student proficiency in creating algorithms. Focusing on the use of counterexamples for developing student-invented algorithms, I reanalyze two pieces of data from previously published research, pertaining to two different cases of students' algorithmatizing activity. In both…
Descriptors: Computation, Thinking Skills, Mathematics, Logical Thinking
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Rodic, Dušica; Horvat, Saša; Roncevic, Tamara; Babic-Kekez, Snežana – International Baltic Symposium on Science and Technology Education, 2021
Examining students' inclinations to use algorithms and rules to solve a task was a fruitful area of research in chemical education in the last four decades. This research aimed to examine whether students read the task request carefully, considering its meaningfulness, or they approach it mechanically, applying a set of algorithms by default. The…
Descriptors: Mathematics, Problem Solving, Chemistry, Science Education
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Bajracharya, Rabindra R.; Emigh, Paul J.; Manogue, Corinne A. – Physical Review Physics Education Research, 2019
We present an empirical analysis of students' use of partial derivatives in the context of problem solving in upper-division thermodynamics. Task-based individual interviews were conducted with eight middle-division physics students. The interviews involved finding a partial derivative from information presented in a table and a contour plot.…
Descriptors: Thermodynamics, Problem Solving, Mathematics, College Students
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Maciejewski, Wes; Star, Jon R. – Educational Studies in Mathematics, 2019
In any procedural mathematical situation, there are multiple ways of achieving the same answer. Given this observation, we ask, why choose one procedural solution over another? We address this question here with data drawn from interviews conducted with university students engaged in row-reducing matrices. During their tasks, the students voiced a…
Descriptors: Mathematics, Problem Solving, College Students, Decision Making
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Suwarto Suwarto; Isti Hidayah; Rochmad Rochmad; Masrukan Masrukan – Cogent Education, 2023
The ability to solve mathematical problems has been an interesting research topic for several decades. Intuition is considered a part of higher-level thinking that can help improve mathematical problem-solving abilities. Although many studies have been conducted on mathematical problem-solving, research on intuition as a bridge in mathematical…
Descriptors: Mathematics, Numbers, Geometry, Algebra
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Fyfe, Emily R.; Matthews, Percival G.; Amsel, Eric – Educational Studies in Mathematics, 2020
Decades of research have documented young students' misinterpretations of the equal sign and the impediments these present for children's mathematical development. Much less is known about individual differences in adults' knowledge of the equal sign. We assessed 182 college students from developmental math courses and present analyses from a…
Descriptors: Symbols (Mathematics), Mathematics, College Students, Developmental Studies Programs
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Lafuente-Lechuga, Matilde; Cifuentes-Faura, Javier; Faura-Martínez, Úrsula – Education Sciences, 2020
Higher education must include training in sustainability to make all actors aware of the serious problems our planet is facing. Mathematics plays an important role in the achievement of the Sustainable Development Goals (SDG) and at the same time these allow working with real situations in the subject of mathematics, providing the student with…
Descriptors: Sustainable Development, Problem Solving, Economics Education, Mathematics
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Wilcox, Bethany R.; Corsiglia, Giaco – Physical Review Physics Education Research, 2019
We investigate upper-division student difficulties with direct integration in multiple contexts involving the calculation of a potential from a continuous distribution (e.g., mass, charge, or current). Integration is a tool that has been historically studied at several different points in the curriculum including introductory and upper-division…
Descriptors: Physics, Science Instruction, Mathematics, Computation
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Sakibayev, Razakh; Sakibayev, Spartak; Sakibayeva, Bela – International Journal of Information and Communication Technology Education, 2019
This article is dedicated to the topic of discovering effective ways of developing students' programming abilities with the means of non-programming disciplines and activities. The authors argue that the process of educating students in programming becomes effective if students participates not only in programming lessons themselves, but also…
Descriptors: Programming, Extracurricular Activities, Mathematics Skills, College Students
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Biju, Soly Mathew – Athens Journal of Education, 2019
The purpose of this study is to examine the impact of peer tutoring program as compared to classroom tutoring on problem solving and algorithm development skills of higher education students in Computer Sciences. Peer tutoring has emerged as one of the most effective mechanisms of enabling learning and improving academic performance of students at…
Descriptors: Peer Teaching, Teaching Methods, Problem Solving, College Students
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Aragoneses, Andrés; Messer, Rebecca – Physics Teacher, 2020
Introductory physics courses can be a challenge for some college students, especially those that have not taken Advanced Placement (AP) physics courses in high school. Even some classical mechanics concepts, such as energy, power, or the laws of Newton, can be non-intuitive and hard to grasp. When it comes to evaluating the learning outcome of our…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
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