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Fay, Temple H. – International Journal of Mathematical Education in Science & Technology, 2005
Finding a periodic solution to a nonlinear ordinary differential equation is in general a difficult task. Only in a very few cases can direct methods be applied to an equation to find initial values leading to a solution of the corresponding initial value problem that is periodic. Oscillatory periodic solutions have such practical importance that…
Descriptors: Equations (Mathematics), Student Research, Research Problems, Calculus
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Chen, J. T.; Wu, C. S. – International Journal of Mathematical Education in Science & Technology, 2006
Poisson integral formula is revisited. The kernel in the Poisson integral formula can be derived in a series form through the direct BEM free of the concept of image point by using the null-field integral equation in conjunction with the degenerate kernels. The degenerate kernels for the closed-form Green's function and the series form of Poisson…
Descriptors: Mathematics Education, Mathematical Formulas, Equations (Mathematics), Problem Solving
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Deakin, Michael A. B. – International Journal of Mathematical Education in Science & Technology, 2006
This classroom note presents a final solution for the functional equation: f(xy)=xf(y) + yf(x). The functional equation if formally similar to the familiar product rule of elementary calculus and this similarity prompted its study by Ren et al., who derived some results concerning it. The purpose of this present note is to extend these results and…
Descriptors: Mathematics Education, Equations (Mathematics), Mathematical Concepts, Problem Solving
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Xu, Junqin; Zhao, Likuan – International Journal of Mathematical Education in Science & Technology, 2006
Eigenvalue is an important concept in Linear Algebra. It is well known that the eigenvectors corresponding to different eigenvalues of a square matrix are linear independent. In most of the existing textbooks, this result is proven using mathematical induction. In this note, a new proof using Vandermonde determinant is given. It is shown that this…
Descriptors: Mathematical Concepts, Algebra, Mathematical Logic, Mathematics Education
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Smith, H. V. – International Journal of Mathematical Education in Science & Technology, 2006
A method for the numerical evaluation of the error term in Gaussian quadrature rules is derived by means of Chebyshev polynomials of the first kind.
Descriptors: Mathematics Education, Problem Solving, Equations (Mathematics), Computation
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Osler, T. J.; Chandrupatla, T. R. – International Journal of Mathematical Education in Science & Technology, 2006
The analysis of tautochrone problems involves the solution of integral equations. The paper shows how a reasonable assumption, based on experience with simple harmonic motion, allows one to greatly simplify such problems. Proposed solutions involve only mathematics available to students from first year calculus.
Descriptors: Motion, Calculus, Physics, Equations (Mathematics)
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Poon, K.-K.; Yeung, K.-W.; Shiu, W.-C. – International Journal of Mathematical Education in Science & Technology, 2005
This paper focuses on the representation of a proper fraction "a"/"b" by a decimal number base "n" where "n" is any integer greater than 1. The scope is narrowed to look at only fractions where "a","b" are positive integers with "a" less than "b" and "b" not equal to 0 nor equal to 1. Some relationships were found between "b" and "n", which…
Descriptors: Arithmetic, Mathematics Education, Mathematical Logic, Problem Solving
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Kim, T.; Ryoo, C. S.; Jang, L. C.; Rim, S. H. – International Journal of Mathematical Education in Science & Technology, 2005
The Bernoulli numbers are among the most interesting and important number sequences in mathematics. They first appeared in the posthumous work "Ars Conjectandi" (1713) by Jacob Bernoulli (1654-1705) in connection with sums of powers of consecutive integers (Bernoulli, 1713; or Smith, 1959). Bernoulli numbers are particularly important in number…
Descriptors: Numbers, Mathematics Education, Mathematical Concepts, Equations (Mathematics)
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McCartney, M. – International Journal of Mathematical Education in Science & Technology, 2005
A simple problem relating to birds chasing each other gives rise to a homogeneous differential equation. The solution draws on student skills in differential equations and basic co-ordinate geometry.
Descriptors: Geometry, Geometric Concepts, Equations (Mathematics), Mathematics Education
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Ghusayni, B. – International Journal of Mathematical Education in Science & Technology, 2005
Some examples from different areas of mathematics are explored to give a working knowledge of the computer algebra system Maple. Perfect numbers and Mersenne primes, which have fascinated people for a very long time and continue to do so, are studied using Maple and some questions are posed that still await answers.
Descriptors: Algebra, Mathematics Instruction, Computer Assisted Instruction, Computation
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Mei, W. N.; Holloway, A. – International Journal of Mathematical Education in Science & Technology, 2005
In this work, the authors present a commonly used example in electrostatics that could be solved exactly in a conventional manner, yet expressed in a compact form, and simultaneously work out special cases using the method of images. Then, by plotting the potentials and electric fields obtained from these two methods, the authors demonstrate that…
Descriptors: Higher Education, College Mathematics, Equations (Mathematics), Problem Solving
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Kowalski, K. – International Journal of Mathematical Education in Science & Technology, 2005
This work extends the theory of the fixed charge transportation problem (FCTP), currently based mostly on a forty-year-old publication by Hirsch and Danzig. This paper presents novel properties that need to be considered by those using existing, or those developing new methods for optimizing FCTP. It also defines the problem in an easier way,…
Descriptors: Mathematical Concepts, Mathematical Applications, Programming, Information Networks
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Abu-Saymeh, S.; Hajja, M. – International Journal of Mathematical Education in Science & Technology, 2005
A point "E" inside a triangle "ABC" can be coordinatized by the areas of the triangles "EBC," "ECA," and "EAB." These are called the barycentric coordinates of "E." It can also be coordinatized using the six segments into which the cevians through "E" divide the sides of "ABC," or the six angles into which the cevians through "E" divide the angles…
Descriptors: Geometry, Geometric Concepts, Mathematics Education, Class Activities