Numeralytics: A Computation Approach for Engineering Practitioners

Author:

Sandler Ben Zion1

Affiliation:

1. Ben Gurion University of the Negev, Department of Mechanical Engineering, Beer-Sheva 84105, P.O.B. 653, Israel

Abstract

Much of the time spent on engineering calculations and that devoted to teaching mathematics-associated disciplines can be considerably reduced, since the application of mathematics to engineering needs is well defined: computations in engineering must be completed within certain time restrictions and the required computation accuracy is limited in the domain of reality. The use of combined analytical and numerical techniques—numeralytics—when applied without vulgarization, may be very effective in saving time in both teaching and computation for engineering purposes. This work describes application of the technique by demonstrating some examples of engineering computations in dynamics.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference4 articles.

1. Eisinger, C., and Sandler, B. Z., 1996, “Nonlinear Oscillations by Mathematica,” EUROMECH-2nd European Nonlinear Oscillation Conference, Prague, September 9–13.

2. Sandler, B. Z., 1977, “The Use of a Random Algorithm for Dynamic Optimization of Mechanisms,” ASME Transactions 99, No. 1.

3. Sandler, B. Z., 1984, Probabilistic Approach to Mechanisms, Elsevier Science Publishers B. V., Amsterdam.

4. Aoki, M., 1968, Techniques of Nonlinear Programming, Macmillan, New York.

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1. Elastic in tube propelling device (innovative design);International Journal of Mechanics and Materials in Design;2009-03-12

2. Investigation of a spatial double pendulum: an engineering approach;Discrete Dynamics in Nature and Society;2006

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