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EMSolution Hyperbolic short 3.0
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hyperbolic, inverse and combinatorial functions. Special complex functions: Gamma function, Lower Incomplete Gamma function, Upper Incomplete Gamma function, Lower Regularized Gamma function, Upper Regularized Gamma function, Sinc function, Normalized sinc function, Beta function, Incomplete Beta function, Regularized Incomplete Beta function, Sine Integral function, Lower Sine Integral function. The calculator has backward compatibility with College
inverse functions, complex number calculator, gamma function, beta function, hyperbolic functions, complex functions, trigonometric functions
functions. Special numbers NaN, Uncertainty, and Infinity. The calculator follows classical approach when uncertainty of f(x) calculation is estimated by formula max|(derivative(f))|*|x*uncertainty(x)|, where maximum of function derivative is considered on interval [x-uncertainty(x),|x+uncertainty(x)], and uncertainty(x)=|x|*10^(-precision). Gamma function, Lower Incomplete Gamma function, Upper Incomplete Gamma function, Beta function, Incomplete
inverse functions, upper, function, incomplete beta function, beta function, hyperbolic functions, trigonometric functions, gamma, incomplete, sine integral function, scientific calculator, gamma function, lower
hyperbolic, inverse and combinatorial functions. Special numbers NaN, Uncertainty, and Infinity. The calculator follows classical approach when uncertainty of f(x) calculation is estimated by formula max|(derivative(f))|*|x*uncertainty(x)|, where maximum of function derivative is considered on interval [x-uncertainty(x),|x+uncertainty(x)], and uncertainty(x)=|x|*10^(-precision). Gamma function, Lower Incomplete Gamma function, Upper Incomplete Gamma
inverse functions, upper, function, hyperbolic functions, trigonometric functions, gamma, incomplete, scientific calculator, gamma function, lower
hyperbolic, inverse and combinatorial functions. Special numbers NaN, Uncertainty, and Infinity. The calculator follows classical approach when uncertainty of f(x) calculation is estimated by formula max|(derivative(f))|*|x*uncertainty(x)|, where maximum of function derivative is considered on interval [x-uncertainty(x),|x+uncertainty(x)], and uncertainty(x)=|x|*10^(-precision). Gamma function, Lower Incomplete Gamma function, Upper Incomplete Gamma
inverse functions, upper, function, hyperbolic functions, trigonometric functions, gamma, incomplete, scientific calculator, gamma function, lower
hyperbolic or logarithmic functions. The entered expressions and functions are saved into formula lists. The program has a handy, easy-to-use formula editor for these lists. Within the plotter mode, you can plot 2D graphs a few ways: using tabular data, importing the data from files, pasting data from Windows clipboard or assigning Cartesian (y = f(x)), polar (r = f(u)) or parametric (x = f(u); y = f(u)) functions. It is possible to save, print and
trigonometrical function, mathematical calculator, mathematical function, chart, function, diagram, mathcalc, graph plotting, hyperbolic function, graph plotter, formula, logarithmic function, scientific calculator
Complex Number Calculator Precision 18 for scientists, engineers, teachers, and students. Calculates mathematical formulas of any length and complexity. Calculation history can be stored into text file or printed. There are ten variables or constants available for storing often used numbers. Common Constants and User Constants lists. Precision of calculations is 18 digits. Trigonometric, hyperbolic and inverse functions.
inverse functions, complex number calculator, hyperbolic functions, complex functions, trigonometric functions