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Shelton, Therese; Laurent, Theresa; Agyemang-Barimah, Beulah – PRIMUS, 2019
We present adaptable activities for models of drug movement in the human body -- pharmacokinetics -- that motivate the learning of ordinary differential equations with an interdisciplinary topic. Specifically, we model aspirin, caffeine, and digoxin. We discuss the pedagogy of guiding students to understand, develop, and analyze models,…
Descriptors: Equations (Mathematics), Active Learning, Calculus, Pharmacology
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Sherman, Tom – Primus, 1993
To build understanding of, and the ability to use, first-year science and engineering calculus, students were introduced to differential equations and asked to carry out research on differential equation modeling projects. Describes a model for the research paper; appendices provide a copy of the student handout and five examples of student…
Descriptors: Calculus, College Freshmen, Differential Equations, Engineering Education
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Hilbert, Stephen; And Others – Primus, 1993
Discusses a pedagogical approach to calculus based on the question: What kinds of problems should students be able to solve? Includes a discussion of types of problems and curriculum threads for such a course. Describes a projects-based calculus with examples of projects and classroom activities. (Author/MDH)
Descriptors: Calculus, Class Activities, College Mathematics, Higher Education
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Shulman, Bonnie – Primus, 1998
Discusses the importance of history and original sources in motivating students to learn content. Describes how a simple question led to a fascinating quest through primary sources. Claims that once collected, these sources proved to be a treasure trove of material illuminating mathematics and mathematicians in an historical context. Contains 18…
Descriptors: College Mathematics, Equations (Mathematics), Higher Education, Mathematical Models
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Berry, John; Nyman, Melvin A. – Primus, 1998
Describes the outcomes of an intensive one-month mathematical modeling course and the use of posters in peer assessment of student work. (Author/ASK)
Descriptors: Cooperative Learning, Course Descriptions, Higher Education, Mathematical Models
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Claus-McGahan, Elly – Primus, 1998
Discusses the value of student-designed, in-depth, modeling projects in a differential equations course and how to prepare students. Provides excerpts from worksheets, a list of computer software for Macintosh that can be used in teaching differential equations, and an annotated bibliography. (Author/ASK)
Descriptors: Annotated Bibliographies, Computer Software, Cooperative Learning, Differential Equations
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Ashline, George; Ellis-Monaghan, Joanna – Primus, 1999
Discusses how applications from microbiology and sociology can be used to involve students. Presents a physical context for critical concepts in a first-semester calculus course. (Author/ASK)
Descriptors: Calculus, Computer Uses in Education, Educational Technology, Graphing Calculators
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Beckmann, Charlene E.; Schlicker, Steven J. – Primus, 1999
Describes a rich, investigative approach to multivariable calculus. Introduces a project in which students construct physical models of surfaces that represent real-life applications of their choice. The models, along with student-selected datasets, serve as vehicles to study most of the concepts of the course from both continuous and discrete…
Descriptors: Calculus, College Mathematics, Higher Education, Mathematical Applications
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Levine, Alan; Shanfelder, Benjamin – Primus, 2000
A major cause of the difficulty undergraduate mathematics majors have with the transition from elementary to advanced mathematics courses is that advanced courses require students to understand how mathematics is created. Describes a course whose main purpose is to introduce students to the creative process in mathematics. The course consists of…
Descriptors: Course Descriptions, Epistemology, Experiments, Higher Education
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Kenyon, Paula L.; Bardzell, Michael J. – Primus, 2001
Summarizes an interdisciplinary undergraduate research project involving experimental physics and calculus and illustrates how mathematics was used to finesse incomplete experimental information and maximize physical quantity known as jerk. Describes how calculus can be applied in the "real world" where functions are not always given by nice…
Descriptors: Calculus, Higher Education, Integrated Activities, Interdisciplinary Approach
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Kerley, Lyndell; Knisley, Jeff – Primus, 2001
Although data is often used to estimate parameters for models in calculus and differential equations, the models themselves are seldom justified. Uses the data itself to motivate mathematical models in introductory mathematics courses. Illustrates various regression and optimization techniques. (Author/ASK)
Descriptors: College Mathematics, Higher Education, Mathematical Models, Mathematics Instruction
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Dancis, Jerome – Primus, 2001
Students in a freshmen calculus course should become fluent in modeling physical phenomena represented by integrals, in particular geometric formulas for volumes and arc length and physical formulas for work. Describes how to train students to became fluent in such modeling and derivation of standard integral formulas. Indicates that these lessons…
Descriptors: Calculus, College Mathematics, Higher Education, Mathematical Models
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Fox, William P.; West, Richard D. – Primus, 2001
Describes an experiment using applications and projects to motivate students in college algebra. Provides a few illustrative examples of the applications/projects used and shares some student comments. (Author/ASK)
Descriptors: Algebra, Educational Change, Higher Education, Mathematical Applications
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McDonald, Michael A.; And Others – Primus, 1996
Discusses a precalculus project in which students create a model United Nations to present and discuss the long-term prognosis for individual countries given data on population growth and food production. Students compare exponential and linear functions to determine whether starvation will occur and prepare oral and written presentations of their…
Descriptors: Calculus, Functions (Mathematics), High Schools, Higher Education
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Arney, David C. – Primus, 1998
Presents the historical development of required undergraduate core mathematics courses. Suggests that a new core course--discrete dynamical modeling--is needed to prepare students for success in the information age. Contains 17 references. (Author/ASK)
Descriptors: Course Content, Course Descriptions, Higher Education, Mathematical Models