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Qian Wang; Shiwang Hou; Sixian Wan; Xin Feng; Hao Feng – European Journal of Education, 2025
To prepare undergraduates for complex careers, interdisciplinary higher education is gaining popularity. However, implementing interdisciplinary learning in engineering management is challenging due to the complex and intertwined knowledge structures. While smart education platforms provide access to extensive knowledge bases, the intricate web of…
Descriptors: Undergraduate Students, Higher Education, Interdisciplinary Approach, Engineering Education
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Camilo Andrés Rodríguez-Nieto; Flor Monserrat Rodríguez-Vásquez; Vicenç Font Moll; Sudirman Sudirman; Benilda María Cantillo-Rudas – Educational Process: International Journal, 2025
Background/purpose. One of the current problems facing mathematics students, graduates in mathematics, and engineering is the disconnection between the meanings, symbolic representations, and graphics of derivatives when solving problems, which hinders their understanding. This article analyzes engineering students' understanding activated by…
Descriptors: Knowledge Level, Problem Solving, Graphs, Mathematics Instruction
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Hussein Sabra; Theresia Tabchi – ZDM: Mathematics Education, 2024
This contribution explores the teaching of graph theory in the context of engineering education. We examine how teachers use collectively designed resources in terms of their backgrounds. After a literature review, we justify the choice to develop an analytical framework for studying the materials in terms of connections to be established in the…
Descriptors: Foreign Countries, Graphs, Engineering Education, Computer Science
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Maria Al Dehaybes; Johan Deprez; Paul van Kampen; Mieke De Cock – Physical Review Physics Education Research, 2025
This study investigated how students reason about the partial derivative and the directional derivative of a multivariable function at a given point, using different graphical representations for the function in the problem statement. Questions were formulated to be as isomorphic as possible in both mathematics and physics contexts and were given…
Descriptors: Physics, Calculus, Graphs, Abstract Reasoning
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Tolga Gök – Journal of Science Learning, 2023
Graphic interpretation is as critical in physics education as problem-solving. However, we know that today's classes focus more on problem-solving. This study uses a survey to determine college students' graphic interpretation skills. The study consists of two phases. The first phase includes the development and statistical analysis of the survey.…
Descriptors: College Students, Graphs, Data Interpretation, Interpretive Skills
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David P. Reid; Timothy D. Drysdale – IEEE Transactions on Learning Technologies, 2024
The designs of many student-facing learning analytics (SFLA) dashboards are insufficiently informed by educational research and lack rigorous evaluation in authentic learning contexts, including during remote laboratory practical work. In this article, we present and evaluate an SFLA dashboard designed using the principles of formative assessment…
Descriptors: Learning Analytics, Laboratory Experiments, Electronic Learning, Feedback (Response)
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Maria Al Dehaybes; Johan Deprez; Paul van Kampen; Mieke De Cock – Physical Review Physics Education Research, 2025
When learning physics, students need more than just an understanding of mathematical and physical concepts. Integrating the two fields is crucial, as research indicates that students often struggle even when they have a strong grasp of both. In this paper, we use the heat equation as an example from higher education. Given the importance of the…
Descriptors: Calculus, Physics, Science Instruction, Mathematical Concepts
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Varagnolo, Damiano; Knorn, Steffi; Staffas, Kjell; Fjällström, Eva; Wrigstad, Tobias – European Journal of Engineering Education, 2021
In this paper, we propose a method to analyse the coherence of existing curricula at higher education institution. We focus our attention to engineering programmes at universities but the proposed method is by no means restricted to those cases. In contrast to other known methods, our approach is quantitative, decentralised, and asynchronous and…
Descriptors: Curriculum Evaluation, Evaluation Methods, College Curriculum, Engineering Education
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Bale, Shivkumar; Singh, Ramesh – Interactive Learning Environments, 2023
This paper introduces a novel virtual method to conduct continuous distillation experiment in an undergraduate unit operation laboratory with the help of SPM 700 Distillation Column, one of the modules available in Simtronics, a commercial process operation simulator. Simtronics simulator is a powerful tool to teach process industry skills and it…
Descriptors: Engineering Education, Teaching Methods, Undergraduate Students, Laboratory Experiments
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Gavilán-Izquierdo, José María; Gallego-Sánchez, Inés; González, Antonio; Puertas, María Luz – Mathematics Teaching Research Journal, 2022
In this exploratory work, the discourse of first-year computer engineering undergraduate students of graph theory was analyzed with the aim of improving the teaching of this branch of mathematics. The theoretical framework used is the theory of commognition, specifically, we focus on commognitive conflicts because they are learning opportunities…
Descriptors: Undergraduate Students, Engineering Education, Computer Science Education, Graphs
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Marginingsih; Moh. Muhtarom; Sundari – Educational Process: International Journal, 2025
Background/purpose: Academic reading presents significant challenges for English for Specific Purposes (ESP) learners, especially when processing structurally dense expository texts in STEM disciplines. This study aims to assess the impact of text-structure-aligned goals on students' reading comprehension and written summarization, while exploring…
Descriptors: Foreign Countries, Higher Education, English for Special Purposes, Reading Comprehension
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Jeffrey A. Anderson; Bryan B. Nguyen – PRIMUS, 2024
Many students who enroll in a first course in linear algebra major in STEM disciplines other than mathematics. Teachers who serve such students may find it difficult to provide authentic problems from these broader areas that ignite students' interest in linear algebra. In this paper, we highlight an interdisciplinary learning activity that…
Descriptors: Mathematics Instruction, Algebra, Graphs, Majors (Students)
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Paoletti, Teo; Lee, Hwa Young; Rahman, Zareen; Vishnubhotla, Madhavi; Basu, Debasmita – International Journal of Mathematical Education in Science and Technology, 2022
In this study, we examined graphical representations in several mathematics, science, and engineering textbooks and practitioner journals with the goal of identifying similarities and differences across these sources. To do this, we drew from the extant research on students interpreting graphs and reasoning covariationally to develop a framework…
Descriptors: Mathematics Education, Science Education, Engineering Education, Textbooks
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Roman, Claudia; Delgado, Miguel A.; Garcia-Morales, Moises – Chemical Engineering Education, 2021
The benefits of using Microsoft Excel built-in functions in an undergraduate Multistage Separations course are analyzed based on 15 years of experience teaching mass transfer in Chemical Engineering programs at both the Bachelor's and Master's levels. Eight reasons for using spreadsheets in a Mass Transfer virtual course are given. Through the…
Descriptors: Computation, Spreadsheets, Undergraduate Students, Engineering Education
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Molontay, Roland; Horvath, Noemi; Bergmann, Julia; Szekrenyes, Dora; Szabo, Mihaly – IEEE Transactions on Learning Technologies, 2020
Curriculum prerequisite networks have a central role in shaping the course of university programs. The analysis of prerequisite networks has attracted a lot of research interest recently since designing an appropriate network is of great importance both academically and economically. It determines the learning goals of the program and also has a…
Descriptors: College Curriculum, Prerequisites, Networks, Time to Degree
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