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Many problems in plasma physics involve substantial amounts of analytical vector calculation. The complexity usually originates from both the vector operations themselves and ...
We have generalized the Mathematica function Apart from 1 to N dimensions: the generalized function $Apart can decompose any linear dependent elements in V∗ x to ...
Linear differential systems with isolated singular points may be solved in the vicinity of the singularity in terms of an asymptotic power series expansion of the solution. ...
The symbolic implementation of the generalized transform in Mathematica is presented. This enables the computation of both the direct and the inverse transformation in a ...
The powerful new mathematics application Mathemaica evokes a challenge to develop applications to chemically significant problems. One of the common topics discussed in ...
Methods for the computation of invariants and symmetries of nonlinear evolution, wave, and lattice equations are presented. The algorithms are based on dimensional analysis, ...
This article, the second of two parts, describes a package designed to supplement Mathematica's linear programming facility. Building on the foundation laid in the first ...
CUGatesDensity is an extension of the original quantum circuit analyser CUGates (Loke and Wang, 2011) [7] to provide explicit support for the use of density matrices. The new ...
This article describes three Mathematica packages for the automatic calculation of one-loop Feynman diagrams: the diagrams are generated with FeynArts, algebraically ...
Reliability analysts are typically forced to choose between using an "algorithmic programming language" or a "reliability package" for analyzing their models and lifetime ...
