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Peter Cumber – International Journal of Mathematical Education in Science and Technology, 2024
A Slinky is a loose helical coil spring and is a well-known educational toy. In this paper a model for a Slinky is presented. The Slinky is represented as a sequence of rigid half coils connected by torsional springs. A range of Slinky configurations in static equilibrium are calculated. Where possible the torsion spring model is compared with the…
Descriptors: Toys, Mechanics (Physics), Motion, Scientific Concepts
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Adamopoulos, Anastasios; Adamopoulos, Nikolaos – International Journal of Mathematical Education in Science and Technology, 2022
The cases of constant and quadratic damping of free oscillations are missing from standard textbooks, even at college and university level. The case most examined is that of linear damping, the reason being that the student can work out a closed form which describes all stages of motion. The case of constant damping is straightforward to be…
Descriptors: Scientific Concepts, Mechanics (Physics), Problem Solving, Calculus
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Cumber, Peter – International Journal of Mathematical Education in Science and Technology, 2021
Mechanical engineering students often find the formulation and analysis of dynamical systems difficult. The response of some mechanical engineering undergraduates is that as much as possible courses on mechanics are best avoided. The aim of this paper is to produce some interesting dynamical systems that may help to change the opinions of the…
Descriptors: Engineering, Mechanics (Physics), Scientific Concepts, Equipment
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Mukhtar, Faisal M.; Al-Gahtani, Husain J. – International Journal of Mathematical Education in Science and Technology, 2021
Use of three-force member concept for rigid bodies whenever possible, to circumvent the more taxing use of equilibrium equations has been long-established. However, most students fail to reap its benefits due to a number of reasons, including the fact that its importance is hardly emphasized to them; skills and details needed for the concept are…
Descriptors: Mathematics Instruction, Teaching Methods, Undergraduate Students, Textbooks
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Bertacchini, Francesca; Bilotta, Eleonora; Caldarola, Fabio; Pantano, Pietro – International Journal of Mathematical Education in Science and Technology, 2019
We present the results of an experimental project, made at the University of Calabria, which uses computer simulations and scientific computational systems in teaching and learning the fundamentals of analytic mechanics, in particular the classical Lagrangian and Hamiltonian formulation of the matter. Starting with examples of classical dynamical…
Descriptors: Role, Computer Simulation, Foreign Countries, Experimental Groups
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Cumber, Peter S. – International Journal of Mathematical Education in Science and Technology, 2017
It is well known that mechanical engineering students often find mechanics a difficult area to grasp. This article describes a system of equations describing the motion of a balanced and an unbalanced roller constrained by a pivot arm. A wide range of dynamics can be simulated with the model. The equations of motion are embedded in a graphical…
Descriptors: Visualization, Mechanics (Physics), Engineering Education, Equations (Mathematics)
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Fay, Temple H. – International Journal of Mathematical Education in Science and Technology, 2012
Viscous damping is commonly discussed in beginning differential equations and physics texts but dry friction or Coulomb friction is not despite dry friction being encountered in many physical applications. One reason for avoiding this topic is that the equations involve a jump discontinuity in the damping term. In this article, we adopt an energy…
Descriptors: Advanced Courses, Equations (Mathematics), Calculus, Mechanics (Physics)
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Debnath, L. – International Journal of Mathematical Education in Science and Technology, 2014
This paper deals with the modern development of matrices, linear transformations, quadratic forms and their applications to geometry and mechanics, eigenvalues, eigenvectors and characteristic equations with applications. Included are the representations of real and complex numbers, and quaternions by matrices, and isomorphism in order to show…
Descriptors: Matrices, Mathematics Instruction, Mathematical Concepts, Geometry
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Man, Y.-K. – International Journal of Mathematical Education in Science and Technology, 2007
In this note, a simple proof of the Generalized Ceva Theorem in plane geometry is presented. The approach is based on the principle of equilibrium in mechanics. (Contains 2 figures.)
Descriptors: Plane Geometry, Validity, Mathematical Logic, Geometric Concepts
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Boyajian, David M. – International Journal of Mathematical Education in Science and Technology, 2007
A gamut of mathematical subjects and concepts are taught within a handful of courses formally required of the typical engineering student who so often questions the relevancy of being bound to certain lower-division prerequisites. Basic classes at the undergraduate level, in this context, include: Integral and Differential Calculus, Differential…
Descriptors: Engineering Education, Calculus, Mathematics Instruction, Mathematical Concepts
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de Oliveira, E. Capelas; Chiacchio, Ary O. – International Journal of Mathematical Education in Science and Technology, 2004
This note presents and discusses a class of real integrals involving a hyperbolic function by means of complex integration. An integral representation is obtained which appears in several fields of physics, including statistical mechanics, condensed matter and quantum optics and more in the so called dispersion relations.
Descriptors: Mechanics (Physics), Optics
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Gauthier, N. – International Journal of Mathematical Education in Science and Technology, 2005
The equation of motion for a mass that moves under the influence of a central, inverse-square force is formulated and solved as a problem in complex variables. To find the solution, the constancy of angular momentum is first established using complex variables. Next, the complex position coordinate and complex velocity of the particle are assumed…
Descriptors: Motion, Scientific Concepts, Kinetics, Mechanics (Physics)
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Fava, N. A.; Molter, U. – International Journal of Mathematical Education in Science and Technology, 2002
It is shown that the symbols for the fundamental units of mechanics, namely length, time and mass, are capable of a meaningful interpretation as positive real parameters. Then a suitable parameter domain allows one to take the derived units into account. The formal manipulations usually carried out with symbols of physical quantities, involving…
Descriptors: Measurement, Mechanics (Physics), Symbols (Mathematics), Algebra
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Astin, J. – International Journal of Mathematical Education in Science and Technology, 1974
A systematic approach to general orthogonal co-ordinates, suitable for use near the end of a beginning vector analysis course, is presented. It introduces students to tensor quantities and shows how equations and quantities needed in classical problems can be determined. (Author/LS)
Descriptors: Calculus, College Mathematics, Geometric Concepts, Instruction
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Rowlands, Stuart; Graham, Ted; Berry, John – International Journal of Mathematical Education in Science and Technology, 1998
Reports on a small-scale investigation of student understanding of moments of forces to provide some indication as to the nature of intuitive ideas in this area. Results of the investigation suggest three stumbling blocks in the conceptual understanding of moment of forces. (Author/ASK)
Descriptors: Concept Formation, Force, Mechanics (Physics), Misconceptions
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