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We will describe how we are using Mathematica to supplement both the in-class and out-of-class experiences of students enrolled in a flipped format multivariable calculus ...
This book will revolutionize the way physical chemistry is taught by bridging the gap between the traditional and the solve-a-bunch-of-equations-for-a-very- simple-model ...
The broad categories of computational biophysics are Simulation, Visualisation and Modelling. At a finer scale, it embraces a wide range of areas including numerical methods, ...
QuCalc is a library of Mathematica functions whose purpose is to simulate quantum circuits and solve problems of quantum computation. The package has been developed by Paul ...
A method is presented for reducing general two-loop self-energies to standard scalar integrals in massive gauge theories with special emphasis on the electroweak Standard ...
In diffusion-induced recrystallization (DIR), diffusion of a misfitting solute produces coherency strains in a solid and can lead to nucleation of new grains. The local ...
Sensitive absorption measurements can expose irregularly shaped vibrational overtone bands from the near-IR well into the visible region for stretching modes involving light ...
Many modern physics problems can be reduced to carrying out calculations, both numerical and symbolical ones. Over the last 16 years, Mathematica has acquired a large body ...
In the present paper, we show a new approach, based on the utilization of Mathematica, to solve liquid-liquid extraction problems. Since liquid-liquid equilibrium data are ...
Mathematica graphics are used to study space structures assembled from modular components. Relationships are explored among various subjects, such as fractals, Penrose ...
