10 Tuloksia löytyi "Tiedosto:Area_under_function.png".

Tiedosto:Area under function.png

copyright holder of this work, hereby publish it under the following license: This file is licensed under the Creative Commons Attribution-Share Alike 4...


Tiedosto:Integral-area-under-curve.png

Area under the curve of a function as its integral Files has GFDL. Made from XFIG sources. Taken form w:en:Image:Integral-area-under-curve.png English...


Tiedosto:Convolution of spiky function with box2.gif

on legend('Area under f(\tau)g(t-\tau)', 'f(\tau)', 'g(t-\tau)', '(f\astg)(t)'); print('-dpng','-r72',sprintf('tmp/conv_box_spike_%06d.png', offset_i));...


Tiedosto:NumInt-MC.png

A, B)%~~% AREA,list(A=a,B=b,AREA=format(area,digits=3))),cex=1.5,col=cs[4],pos=4) } png(filename = "NumInt-MC.png", width=1200, height=900...


Tiedosto:Hyperbolic and Circular Conic Sections Combined.png

images: File:Hyperbolic_functions-2.svg licensed with PD-user-w 2009-12-22T13:50:21Z CiaPan 520x420 (5393 Bytes) Red figure area description corrected –...


Tiedosto:Summation of area of Wigner distribution function on time-frequency analysis.png

0CC BY-SA 4.0 Creative Commons Attribution-Share Alike 4.0 truetrue English summation of area of Wigner distribution function on time-frequency analysis...


Tiedosto:Area under function approx.png

copyright holder of this work, hereby publish it under the following license: This file is licensed under the Creative Commons Attribution-Share Alike 4...


Tiedosto:Standard Normal Distribution.png

geom_line(stat = "function", fun = dnorm) + geom_area(stat = "function", fun = dnorm, fill = scales::muted("blue"), xlim=c(-1,1), alpha=1/4) + geom_area(stat = "function"...


Tiedosto:Convolution of spiky function with box.gif

with MATLAB. %% Create folding of two rectangular impulses with spiky function X=-2.3:0.0005:3.8; F1=exp(-X); F1(X<=0) = 0; F2=zeros(size(X)); F2(abs(X)<=0...


Tiedosto:Illustration CRPS.png

represent the area between the two functions for i in range(len(x_low_res) - 1): bar_height = abs(sigmoid_function(x_low_res[i]) - step_function(x_low_res[i]))...