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Elder, Cristyn L.; Champine, Karen – Across the Disciplines, 2016
The body of literature on a Writing-to-Learn (WTL) approach in math courses offers up a variety of assignment types from which to choose. However, few of these articles provide empirical evidence on the ways these writing assignments contribute to students' learning. This mixed-methods study, conducted at the University of New Mexico, a…
Descriptors: Content Area Writing, Mathematics Instruction, Writing Assignments, Evidence

Nelson, Robert – Two-Year College Mathematics Journal, 1979
Examples are given of problems which can be solved pictorially, thus aiding in the general development of geometric intuition and in developing some of the basic ideas of probability. (MP)
Descriptors: Calculus, College Mathematics, Geometry, Higher Education

Pomeranz, Janet Bellcourt – Mathematics and Computer Education, 1983
The problem "Given three planar points, find a point such that the sum of the distances from that point to the three points is a minimum" is discussed from several points of view. A solution that uses only calculus and geometry is examined in detail. (MNS)
Descriptors: Calculus, College Mathematics, Geometry, Higher Education

Nichols, Joe D. – Mathematics Teacher, 1996
Presents a mathematics problem involving speed of a walking student versus speed of light reflection in a high school hallway. (MKR)
Descriptors: Calculus, High Schools, Mathematical Applications, Mathematics Instruction

Williams, Kenneth M. – Mathematics Teacher, 2003
Concludes that writing about the executive processes of problem solving, difficulties encountered, alternative strategies that might have been used, and the problem solving process in general helped students in the treatment group learn to use executive processes more quickly and more effectively than students in the control group. (Author/NB)
Descriptors: Calculus, Mathematics Education, Problem Solving, Secondary Education

Sherfinski, John – Mathematics Teacher, 2002
What initially appears to be a standard maximum-minimum problem presents, with a particular independent variable, a wealth of calculus and algebraic subplots. Uses graphing calculator technology to reinforce the "pencil and paper" solution and open the problem to lower level mathematics courses. (Author/NB)
Descriptors: Calculus, Graphing Calculators, Mathematics Activities, Mathematics Instruction

Allen, David – Primus, 2001
Shares a series of problems designed to provide students with opportunities to develop an understanding of applications of the definite integral. Discourages Template solutions, solutions in which students mimic a rehearsed strategy without understanding as the variety of problems helps prevent the construction of a template. (Author/ASK)
Descriptors: Calculus, College Mathematics, Higher Education, Mathematics Instruction

Hess, Alice – Mathematics Teacher, 1996
A project is described where the ultimate goal is to teach students methods of problem solving through an industrial engineering environment. Students practice sharing responsibility, understanding group dynamics, using resources efficiently, meeting deadlines, using mathematics in oral and written form, and applying the appropriate mathematics.…
Descriptors: Calculus, Engineering, Mathematics Curriculum, Mathematics Instruction

Foehl, Henry C. – Primus, 1993
Proposes a calculus curriculum combining formative knowledge, mathematical foundations, and instrumental knowledge in mathematics. Discusses each of these components, the organization of a core calculus course, and the use of problem solving in calculus instruction. (10 references) (MKR)
Descriptors: Calculus, Higher Education, Mathematics Curriculum, Mathematics Education
Roberts, Charles E. – International Journal of Mathematical Education in Science and Technology, 2003
This note contains material to be presented to students in a first course in differential equations immediately after they have completed studying first-order differential equations and their applications. The purpose of presenting this material is four-fold: to review definitions studied previously; to provide a historical context which cites the…
Descriptors: Equations (Mathematics), Calculus, Problem Solving, Mathematics Instruction

Collingwood, David H.; Stor, Marilyn – Mathematics Teacher, 2001
Presents activities designed to engage students in an experiential and theoretical application of problems in precalculus and to study geometry, coordinate systems, rates, linear applications, and the concept of function. Illustrates problem situations and includes student worksheets and a teacher's guide. (KHR)
Descriptors: Calculus, Mathematical Applications, Mathematical Models, Mathematics Activities

Norris, A. C. – International Journal of Mathematical Education in Science and Technology, 1980
Considered are the main elements of computational chemistry problems and how these elements can be used to formulate the problems mathematically. Techniques that are useful in devising an appropriate solution are also considered. (Author/TG)
Descriptors: Calculus, Chemistry, College Mathematics, Higher Education

Eisenberg, Theodore – Teaching Mathematics and Its Applications, 2000
Lists several problems that have proven to be successful in getting students to think about topics and notions they thought they knew. Indicates that students have not only solved the conundrums (often with help), but also developed them further into research projects. (Author/ASK)
Descriptors: Calculus, Higher Education, Mathematics Instruction, Problem Solving

Maruszewski, Richard F., Jr. – Mathematics and Computer Education, 1987
Timing stoplights and trying to determine the best way to allocate cycle time to the two directions is discussed. The simple case and improving the model are both considered. (MNS)
Descriptors: Calculus, College Mathematics, Higher Education, Learning Activities

Medhekar, Sarang – Physics Education, 1991
Using a physical picture, an expression for the maximum possible transverse velocity and orientation required for that by a linear emitter in special theory of relativity has been derived. A differential calculus method is also used to derive the expression. (Author/KR)
Descriptors: Calculus, Computation, Higher Education, Motion