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Ramírez-Sánchez, Camilo Andrés; Romo-Vázquez, Avenilde; Romo-Vázquez, Rebeca; Velásquez-Rojas, Diana – Educational Studies in Mathematics, 2023
The training of non-specialists, particularly engineers, in mathematics requires designing specific didactic proposals that make the importance of mathematics evident. One approach to creating such proposals consists in analyzing the mathematics used in authentic contexts of engineering research and then effectuating a didactic transposition to…
Descriptors: Undergraduate Students, Mathematics Instruction, Engineering, Teaching Methods
Domínguez-García, S.; García-Planas, M. I.; Taberna, J. – International Journal of Mathematical Education in Science and Technology, 2016
Technological advances require that basic science courses for engineering, including Linear Algebra, emphasize the development of mathematical strengths associated with modelling and interpretation of results, which are not limited only to calculus abilities. Based on this consideration, we have proposed a project-based learning, giving a dynamic…
Descriptors: Algebra, Mathematics Instruction, Mathematical Models, Engineering
Kartal, Ozgul; Dunya, Beyza Aksu; Diefes-Dux, Heidi A.; Zawojewski, Judith S. – International Journal of Research in Education and Science, 2016
Critical to many science, technology, engineering, and mathematics (STEM) career paths is mathematical modeling--specifically, the creation and adaptation of mathematical models to solve problems in complex settings. Conventional standardized measures of mathematics achievement are not structured to directly assess this type of mathematical…
Descriptors: Mathematical Models, STEM Education, Standardized Tests, Mathematics Achievement
Bryan, Kurt – PRIMUS, 2011
This article presents an application of standard undergraduate ODE techniques to a modern engineering problem, that of using a tuned mass damper to control the vibration of a skyscraper. This material can be used in any ODE course in which the students have been familiarized with basic spring-mass models, resonance, and linear systems of ODEs.…
Descriptors: Mathematical Models, Geometry, Undergraduate Study, Engineering
Laumakis, Paul J. – PRIMUS, 2008
This article details the application of an economic theory to the fiscal operation of a small engineering consulting firm. Nobel Prize-winning economist Wassily Leontief developed his general input-output economic theory in the mid-twentieth century to describe the flow of goods and services in the U.S. economy. We use one mathematical model that…
Descriptors: Mathematical Models, Algebra, Engineering, Economic Factors
Crouch, Rosalind; Haines, Christopher – International Journal of Mathematical Education in Science and Technology, 2004
Applications in engineering, science and technology within undergraduate programmes can be difficult for students to understand. In this paper, new results are presented which go some way to demonstrate and explain the problems faced by students in linking mathematical models to real-world applications. The study is based on student responses to…
Descriptors: Mathematical Models, Mathematics Instruction, Questionnaires, Student Attitudes
Kuehner, Joel P.; Mauch, Elizabeth K. – Teaching Mathematics and Its Applications: An International Journal of the IMA, 2006
A method for teaching problem-solving skills to mathematics students is presented. By subtly incorporating engineering applications, the students are simultaneously exposed to an effective outreach programme. The process includes offering a complex problem that challenges students' abilities. Before allowing the students to become frustrated, the…
Descriptors: Teaching Methods, Mathematical Models, Problem Solving, Engineering
Pollock, Stephen M. – Engineering Education, 1976
Described is a "studio" procedure utilized at The University of Michigan for teaching mathematical modeling. (SL)
Descriptors: Educational Environment, Engineering, Engineering Education, Higher Education

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