代码搜索:Q-Function
找到约 143 项符合「Q-Function」的源代码
代码结果 143
www.eeworm.com/read/323831/13314810
h cdynamicprogramming.h
// Copyright (C) 2003
// Gerhard Neumann (gerhard@igi.tu-graz.ac.at)
//
// This file is part of RL Toolbox.
// http://www.igi.tugraz.at/ril_toolbox
//
// All rights reserved.
www.eeworm.com/read/431631/8664450
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/287843/8665691
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/424063/10499119
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/423536/10552765
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/467324/7009715
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/463748/7176062
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/462321/7202814
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/456354/7351390
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));
www.eeworm.com/read/439811/7701538
m q.m
function [y]=Q(x)
% [y]=Q(x)
% Q evaluates the Q-function.
% y = 1/sqrt(2*pi) * integral from x to inf of exp(-t^2/2) dt.
% y = (1/2) * erfc(x/sqrt(2)).
y=(1/2)*erfc(x/sqrt(2));