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The Uncertainties of Numerical ...   (Mathematica Tutorial)
Mathematica does operations like numerical integration very differently from the way it does their symbolic counterparts. When you do a symbolic integral, Mathematica takes ...
Working with Cells   (Mathematica Tutorial)
Mathematica notebooks consist of sequences of cells. The hierarchy of cells serves as a structure for organizing the information in a notebook, as well as specifying the ...
MannWhitneyTest   (Built-in Mathematica Symbol)
MannWhitneyTest[{data_1, data_2}] tests whether the medians of data_1 and data_2 are equal.MannWhitneyTest[dspec, \[Mu]_0] tests the median difference against ...
PiecewiseExpand   (Built-in Mathematica Symbol)
PiecewiseExpand[expr] expands nested piecewise functions in expr to give a single piecewise function. PiecewiseExpand[expr, assum] expands piecewise functions using ...
SlideView   (Built-in Mathematica Symbol)
SlideView[{expr_1, expr_2, ...}] represents an object in which the expr_i are set up to be displayed on successive slides. SlideView[{expr_1, expr_2, ...}, i] makes the ...
Arbitrary-Precision Numbers   (Mathematica Tutorial)
When you do calculations with arbitrary-precision numbers, Mathematica keeps track of precision at all points. In general, Mathematica tries to give you results which have ...
Customize My Graphics   (Mathematica How To)
Mathematica allows you to customize your 2D and 3D graphics through a variety of options.
Fit Models with Measurement Errors   (Mathematica How To)
Particularly in the physical sciences, it is common to use measurement errors as weights to incorporate measured variation into the fitting. Weights have a relative effect on ...
EventHandler   (Built-in Mathematica Symbol)
EventHandler[expr, {"event_1" :> action_1, "event_2" :> action_2, ...}] displays as expr, evaluating action_i whenever "event_i" occurs in connection with expr.
FourierTransform   (Built-in Mathematica Symbol)
FourierTransform[expr, t, \[Omega]] gives the symbolic Fourier transform of expr. FourierTransform[expr, {t_1, t_2, ...}, {\[Omega]_1, \[Omega]_2, ...}] gives the ...
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