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Klikovac, Ida; Riedinger, Michael – Mathematics and Computer Education, 2011
The method of "Double False Position" is an arithmetic approach to solving linear equations that pre-dates current algebraic methods by more than 3,000 years. The method applies to problems that, in algebraic notation, would be expressed as y = L(x), where L(x) is a linear function of x. Double False Position works by evaluating the described…
Descriptors: Equations (Mathematics), Algebra, Problem Solving, Mathematics Instruction
Khazanov, Leonid – Mathematics and Computer Education, 2011
A peer mentoring program has been implemented to support a group of at-risk students enrolled in two sections of an elementary algebra course at an urban community college. Peer mentors were recruited from advanced mathematics classes and trained to provide individualized tutoring and mentoring support to at-risk students. The results show that…
Descriptors: Mentors, At Risk Students, Algebra, Remedial Mathematics
Ahmad, Faiz – Mathematics and Computer Education, 2011
It is a routine matter for undergraduates to find eigenvalues and eigenvectors of a given matrix. But the converse problem of finding a matrix with prescribed eigenvalues and eigenvectors is rarely discussed in elementary texts on linear algebra. This problem is related to the "spectral" decomposition of a matrix and has important technical…
Descriptors: Textbooks, Matrices, Mathematics Instruction, College Mathematics
Tassa, Tamir – Mathematics and Computer Education, 2007
A novel approach for teaching interpolation in the introductory course in numerical analysis is presented. The interpolation problem is viewed as a problem in linear algebra, whence the various forms of interpolating polynomial are seen as different choices of a basis to the subspace of polynomials of the corresponding degree. This approach…
Descriptors: Teaching Methods, Introductory Courses, Algebra, Equations (Mathematics)
Cupillari, Antonella; DeThomas, Elizabeth – Mathematics and Computer Education, 2007
It is in the field of numerical analysis that this "easy-looking" function, also known as the Runge function, exhibits a behavior so idiosyncratic that it is mentioned even in most undergraduate textbooks. In spite of the fact that the function is infinitely differentiable, the common procedure of (uniformly) interpolating it with polynomials that…
Descriptors: Undergraduate Students, Textbooks, Intervals, Exhibits
Farag, Mark – Mathematics and Computer Education, 2007
Hill ciphers are linear codes that use as input a "plaintext" vector [p-right arrow above] of size n, which is encrypted with an invertible n x n matrix E to produce a "ciphertext" vector [c-right arrow above] = E [middle dot] [p-right arrow above]. Informally, a near-field is a triple [left angle bracket]N; +, *[right angle bracket] that…
Descriptors: Mathematics Instruction, Coding, Algebra, Geometric Concepts
Flesher, Tatyana; Holder, Eleanor – Mathematics and Computer Education, 2007
One of the main problems in undergraduate research in pure mathematics is that of determining a problem that is, at once, interesting to and capable of solution by a student who has completed only the calculus sequence. It is also desirable that the problem should present something new, since novelty and originality greatly increase the enthusiasm…
Descriptors: Computer Software, Graphs, Calculus, Algebra
Kulkarni, Raghavendra G. – Mathematics and Computer Education, 2006
In this paper we present a versatile technique to solve several types of solvable quintic equations. In the technique described here, the given quintic is first converted to a sextic equation by adding a root, and the resulting sextic equation is decomposed into two cubic polynomials as factors in a novel fashion. The resultant cubic equations are…
Descriptors: Equations (Mathematics), Algebra, Problem Solving, Mathematics Education

Kennedy, Paul A. – Mathematics and Computer Education, 1990
Outlines an instructional plan working within the existing structure of most colleges that produces higher levels of student achievement through the manipulation of time. Described are the objective-based unit design, group instruction, initial test, corrective procedures, and retest. Lists 10 references. (YP)
Descriptors: Academic Achievement, Algebra, College Mathematics, Higher Education

Ayoub, Ayoub B. – Mathematics and Computer Education, 2001
Explores an unexpected connection between a function, its inverse, and the arithmetic mean, algebraically and graphically. (MM)
Descriptors: Algebra, Functions (Mathematics), Graphs, Higher Education

Kennedy, Paul A.; And Others – Mathematics and Computer Education, 1991
Presented is a method for factoring quadratic equations that helps the teacher demonstrate how to eliminate guessing through establishment of the connection between multiplication and factoring. Included are examples that allow the student to understand the link between the algebraic and the pictorial representations of quadratic equations. (JJK)
Descriptors: Algebra, Equations (Mathematics), Mathematical Formulas, Mathematical Models
Weinstein, Gideon L. – Mathematics and Computer Education, 2004
Not too many years ago the author started out to study the students' own perspectives on their experience with the intent to answer the question, "How do college remedial math students define success, and what are they striving for in their math classes?" The author did not quite manage to answer such a grand question, but did gain some very…
Descriptors: College Mathematics, Algebra, Mathematics Instruction, Student Attitudes

Mathematics and Computer Education, 1988
Presents reviews of six software packages. Includes (1) "Plain Vanilla Statistics"; (2) "MathCAD 2.0"; (3) "GrFx"; (4) "Trigonometry"; (5) "Algebra II"; (6) "Algebra Drill and Practice I, II, and III." (PK)
Descriptors: Algebra, College Mathematics, Computer Assisted Instruction, Computer Oriented Programs
Shore, Mark; Shore, JoAnna; Boggs, Stacey – Mathematics and Computer Education, 2004
For over a decade mathematics instructors have been using graphing calculators in courses ranging from developmental mathematics (Beginning and Intermediate Algebra) to Calculus and Statistics. One of the key functions that make them so powerful in the teaching and learning process is their ability to find curves of best fit. Instructors may use…
Descriptors: Teaching Methods, Calculus, Algebra, Remedial Mathematics

McMillan, Robert D. – Mathematics and Computer Education, 1988
Shows how, with little or no electrical background, students can apply Boolean algebra concepts to design and build integrated electrical circuits in the classroom that will reinforce important ideas in mathematics. (PK)
Descriptors: Algebra, College Mathematics, Computer Science Education, Electric Circuits