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Showing 1 to 15 of 20 results Save | Export
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Roman, Claudia; Lazar, Liliana; García-Morales, Moisés – Journal of Chemical Education, 2020
Mass transfer separations are of extreme importance to professionals working in the chemical industry. For this reason, chemical engineering and industrial chemistry students are both taught these unit operations at the final years of their study programs. The traditional way of carrying out their design is based on the use of deterministic…
Descriptors: Chemistry, Monte Carlo Methods, Science Instruction, Chemical Engineering
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Sigal, Matthew J.; Chalmers, R. Philip – Journal of Statistics Education, 2016
Monte Carlo simulations (MCSs) provide important information about statistical phenomena that would be impossible to assess otherwise. This article introduces MCS methods and their applications to research and statistical pedagogy using a novel software package for the R Project for Statistical Computing constructed to lessen the often steep…
Descriptors: Mathematics Instruction, Statistics, Monte Carlo Methods, Demonstrations (Educational)
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Lambic, Dragan; Lazovic, Bojana; Djenic, Aleksandar; Maric, Miroslav – Journal of Computer Assisted Learning, 2018
In this paper, a new approach for the formation of four-member collaborative learning groups is presented. Group formation is presented by the mathematical optimization problem. Based on the proposed approach and the variable neighbourhood search (VNS) algorithm, the application that solves the presented problem and provides the appropriate…
Descriptors: Heuristics, Cooperative Learning, Group Dynamics, Interpersonal Relationship
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Tully, Shane P.; Stitt, Thomas M.; Caldwell, Robert D.; Hardock, Brian J.; Hanson, Robert M.; Maslak, Przemyslaw – Journal of Chemical Education, 2013
A Monte Carlo method is used to generate interactive pointillist displays of electron density in hydrogenic orbitals. The Web applet incorporating Jmol viewer allows for clear and accurate presentation of three-dimensional shapes and sizes of orbitals up to "n" = 5, where "n" is the principle quantum number. The obtained radial…
Descriptors: Visual Aids, Monte Carlo Methods, Interactive Video, Computer Uses in Education
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Sosnowski, Stanislaw – Journal of Chemical Education, 2013
Free software for the demonstration of the features of homo- and copolymerization processes (free radical, controlled radical, and living) is described. The software is based on the Monte Carlo algorithms and offers insight into the kinetics, molecular weight distribution, and microstructure of the macromolecules formed in those processes. It also…
Descriptors: Computer Software, Computer Uses in Education, Educational Technology, Science Instruction
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Gardenier, George H.; Gui, Feng; Demas, James N. – Journal of Chemical Education, 2011
Complex error propagation is reduced to formula and data entry into a Mathcad worksheet or an Excel spreadsheet. The Mathcad routine uses both symbolic calculus analysis and Monte Carlo methods to propagate errors in a formula of up to four variables. Graphical output is used to clarify the contributions to the final error of each of the…
Descriptors: Monte Carlo Methods, Computer Software, Calculus, Mathematics Education
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Beddard, Godfrey S. – Journal of Chemical Education, 2011
Thermodynamic quantities such as the average energy, heat capacity, and entropy are calculated using a Monte Carlo method based on the Metropolis algorithm. This method is illustrated with reference to the harmonic oscillator but is particularly useful when the partition function cannot be evaluated; an example using a one-dimensional spin system…
Descriptors: Thermodynamics, Scientific Concepts, Calculus, Computation
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Solanas, Antonio; Manolov, Rumen; Onghena, Patrick – Behavior Modification, 2010
The current study proposes a new procedure for separately estimating slope change and level change between two adjacent phases in single-case designs. The procedure eliminates baseline trend from the whole data series before assessing treatment effectiveness. The steps necessary to obtain the estimates are presented in detail, explained, and…
Descriptors: Simulation, Computation, Models, Behavioral Science Research
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Serrano, Agostinho; Santos, Flavia M. T.; Greca, Ileana M. – Journal of Chemical Education, 2004
The use of molecular dynamics and Monte Carlo methods has provided efficient means to stimulate the behavior of molecular liquids and solutions. A Monte Carlo simulation program is used to compute the structure of liquid water and of water as a solvent to Na(super +), Cl(super -), and Ar on a personal computer to show that it is easily feasible to…
Descriptors: Monte Carlo Methods, Molecular Structure, Chemistry, Water
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Kalkanis, G.; Sarris, M. M. – Journal of Computers in Mathematics and Science Teaching, 1999
Describes an educational software program for the study of and detection methods for the cosmic ray muons passing through several light transparent materials (i.e., water, air, etc.). Simulates muons and Cherenkov photons' paths and interactions and visualizes/animates them on the computer screen using Monte Carlo methods/techniques which employ…
Descriptors: Computer Software, Computer Uses in Education, Educational Technology, Higher Education
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Laumakis, P. J.; Harlow, G. – International Journal of Mathematical Education in Science and Technology, 2002
Analyzes a simple boom structure and assesses its reliability using elementary engineering mechanics. Demonstrates the power and utility of Monte-Carlo simulation by showing that such a simulation can be implemented more readily with results that compare favorably to the theoretical calculations. (Author/MM)
Descriptors: Computer Uses in Education, Engineering Education, Higher Education, Mathematical Applications
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Olson, Donald; And Others – Physics Teacher, 1990
Discusses making a computer-simulated rainbow using principles of physics, such as reflection and refraction. Provides BASIC program for the simulation. Appends a program illustrating the effects of dispersion of the colors. (YP)
Descriptors: College Science, Computer Simulation, Computer Uses in Education, Higher Education
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Feinberg, William E. – Social Science Computer Review, 1988
This article describes a monte carlo computer simulation of affirmative action employment policies. The counterintuitive results of the model are explained through a thought device involving urns and marbles. States that such model simulations have implications for social policy. (BSR)
Descriptors: Affirmative Action, Computer Simulation, Computer Uses in Education, Higher Education
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Kolpas, Sid – Mathematics and Computer Education, 1998
The Monte Carlo method provides approximate solutions to a variety of mathematical problems by performing random sampling simulations with a computer. Presents a program written in Quick BASIC simulating the steps of the Monte Carlo method. (ASK)
Descriptors: Calculus, Computer Uses in Education, Educational Technology, Elementary Secondary Education
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Murray, Michael P. – Journal of Economic Education, 1999
Discusses the impact of teaching econometrics, particularly the theoretical aspects, in a computer classroom focusing on the hands-on and discovery learning approaches that computers encourage. Explores the problems that occur when teaching in a computer classroom, such as the increase in course preparation time. Includes reactions by Jeffrey…
Descriptors: Computer Uses in Education, Cooperative Learning, Discovery Learning, Econometrics
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