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The standard Newton-Raphson's method has been extended for under and overdetermined systems or in more general, for situations when the Jacobian is not regular, has deficient ...
Students will use their knowledge about solving and graphing logarithmic and exponential functions to explore, analyze, and solve problems involving real-life applications. ...
Brownian Motion Calculus presents the basics of Stochastic Calculus with a focus on the valuation of financial derivatives, while using several examples of Mathematica. It is ...
This solves the equation of motion of a spring of mass m/unit length, fixed at one end and containing a mass M at its free end. The mass M is initially at rest and is ...
Calculus III is the third and final volume of the three-volume calculus sequence by Tunc Geveci. The series is designed for the usual three-semester calculus sequence that ...
Our daily universe is rough and infinitely diverse. The fractal approach clarifies and orders these disparities. It helps us to envisage new explanations of geographical ...
A new systematic procedure for calculating the electromagnetic fields in anisotropic planar multilayer structures is presented. Working in the Fourier domain and utilizing ...
Marinca et al. [1] made some comments on our paper [2] and pointed out ‘‘some fundamental mistakes and misinterpretations along with a false conclusion”. Unfortunately, ...
The Tukey family of g-and-h distributions is often used to model univariate reat-world data. There is a paucity of research demonstrating appropriate multivariate data ...
We present the Mathematica application DoFun1 which allows to derive Dyson–Schwinger equations and renormalization group flow equations for n-point functions in a simple ...
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