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Norton, Douglas E. – PRIMUS, 2022
This paper introduces a course design for a post-Calculus undergraduate course on mathematical modeling for the life sciences. The course includes differential equations, discrete, and cellular automata approaches (among others) to modeling questions in the life sciences, as well as a variety of biological topics. The course focuses on model…
Descriptors: Undergraduate Study, College Mathematics, Mathematical Models, Biological Sciences
Ludwig, Patrice; Tongen, Anthony; Walton, Brian – PRIMUS, 2018
James Madison University faculty team-teach an interdisciplinary mathematical modeling course for mathematics and biology students. We have used two different project-based approaches to emphasize the mathematical concepts taught in class, while also exposing students to new areas of mathematics not formally covered in class. The first method…
Descriptors: Mathematics Instruction, Science Instruction, Case Studies, Interdisciplinary Approach
Reese, Margaret – PRIMUS, 2012
This article describes a multi-class project that employs statistical computing and writing in a statistics class. Three courses, General Ecology, Meteorology, and Introductory Statistics, cooperated on a project for the EPA's Student Design Competition. The continuing investigation has also spawned several undergraduate research projects in…
Descriptors: Class Activities, Ecology, Statistics, Meteorology
Reid, Thomas F.; King, Stephen C. – PRIMUS, 2009
A common example of real-world motion that can be modeled by a differential equation, and one easily understood by the student, is the simple pendulum. Simplifying assumptions are necessary for closed-form solutions to exist, and frequently there is little discussion of the impact if those assumptions are not met. This article presents a…
Descriptors: Mathematical Models, Motion, Calculus, Science Instruction