From a4bb17af2993794d132d313fc378476f0e997fb9 Mon Sep 17 00:00:00 2001 From: mhjensen Date: Sun, 23 Aug 2020 22:35:43 +0200 Subject: [PATCH] typo in regression --- .../Regression/html/._Regression-bs012.html | 4 ++-- .../Regression/html/Regression-reveal.html | 4 ++-- .../Regression/html/Regression-solarized.html | 4 ++-- doc/pub/Regression/html/Regression.html | 4 ++-- .../ipynb/ipynb-Regression-src.tar.gz | Bin 193 -> 193 bytes doc/pub/Regression/pdf/Regression-minted.pdf | Bin 573631 -> 573535 bytes doc/src/Regression/Regression.do.txt | 4 ++-- 7 files changed, 10 insertions(+), 10 deletions(-) diff --git a/doc/pub/Regression/html/._Regression-bs012.html b/doc/pub/Regression/html/._Regression-bs012.html index deedadf21..f1c140bab 100644 --- a/doc/pub/Regression/html/._Regression-bs012.html +++ b/doc/pub/Regression/html/._Regression-bs012.html @@ -422,14 +422,14 @@ $$ or using the matrix \( \boldsymbol{X} \) and in a more compact matrix-vector notation as $$ -C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)\right\}. +C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)\right\}. $$ This function is one possible way to define the so-called cost function.

It is also common to define -the function \( Q \) as +the function \( C \) as $$ C(\boldsymbol{\beta})=\frac{1}{2n}\sum_{i=0}^{n-1}\left(y_i-\tilde{y}_i\right)^2, diff --git a/doc/pub/Regression/html/Regression-reveal.html b/doc/pub/Regression/html/Regression-reveal.html index b4bf50816..c22a8b69f 100644 --- a/doc/pub/Regression/html/Regression-reveal.html +++ b/doc/pub/Regression/html/Regression-reveal.html @@ -567,7 +567,7 @@ $$ or using the matrix \( \boldsymbol{X} \) and in a more compact matrix-vector notation as

 
$$ -C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)\right\}. +C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)\right\}. $$

 
@@ -575,7 +575,7 @@ This function is one possible way to define the so-called cost function.

It is also common to define -the function \( Q \) as +the function \( C \) as

 
$$ diff --git a/doc/pub/Regression/html/Regression-solarized.html b/doc/pub/Regression/html/Regression-solarized.html index 4731a1cfd..ba7c4eff6 100644 --- a/doc/pub/Regression/html/Regression-solarized.html +++ b/doc/pub/Regression/html/Regression-solarized.html @@ -700,14 +700,14 @@ $$ or using the matrix \( \boldsymbol{X} \) and in a more compact matrix-vector notation as $$ -C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)\right\}. +C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)\right\}. $$ This function is one possible way to define the so-called cost function.

It is also common to define -the function \( Q \) as +the function \( C \) as $$ C(\boldsymbol{\beta})=\frac{1}{2n}\sum_{i=0}^{n-1}\left(y_i-\tilde{y}_i\right)^2, diff --git a/doc/pub/Regression/html/Regression.html b/doc/pub/Regression/html/Regression.html index 7257ab358..3050dfd3b 100644 --- a/doc/pub/Regression/html/Regression.html +++ b/doc/pub/Regression/html/Regression.html @@ -705,14 +705,14 @@ $$ or using the matrix \( \boldsymbol{X} \) and in a more compact matrix-vector notation as $$ -C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}^T\boldsymbol{\beta}\right)\right\}. +C(\boldsymbol{\beta})=\frac{1}{n}\left\{\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)^T\left(\boldsymbol{y}-\boldsymbol{X}\boldsymbol{\beta}\right)\right\}. $$ This function is one possible way to define the so-called cost function.

It is also common to define -the function \( Q \) as +the function \( C \) as $$ C(\boldsymbol{\beta})=\frac{1}{2n}\sum_{i=0}^{n-1}\left(y_i-\tilde{y}_i\right)^2, diff --git a/doc/pub/Regression/ipynb/ipynb-Regression-src.tar.gz b/doc/pub/Regression/ipynb/ipynb-Regression-src.tar.gz index 4141d4592a9a553ef0149fa565cd535789c1ff23..5cbbcd30edf182d20f543b9999033450c00aaf22 100644 GIT binary patch delta 64 zcmV-G0Kfmi0l@(oABzY81JgoZ00ZsMOA3Q95C&k^o?=cQiIEvK62!}UMq>(;Wid$- W$_WEP8RIOGU|9%Q;Lc_M2mk=D&J_y) delta 64 zcmV-G0Kfmi0l@(oABzY8o2Wux00ZsMOA3Q95C&k^o?=cQF_9TH642#6i)joo%P2`G Wr;GuK8RI;WU|9&=0xIwT2mk=ef)%F# diff --git a/doc/pub/Regression/pdf/Regression-minted.pdf b/doc/pub/Regression/pdf/Regression-minted.pdf index 34cd2e15e32272593e1f5d9fae85d93173d16f90..879237ba18af55f4941443126974178c6207f0ef 100644 GIT binary patch delta 4367 zcmaiyc{CL6yTE6LF=Hfy!4$GDW6!<}S;sooP%(BkmlJ~2QtfSw|w^| zTBLnT2{&;zw4p1GCyRmxQdq(sA(!GIzr7g7Rmsx$;Z!k4ywvs-31c!pSo;;9^z^vL zth2kb`g9O4vl>|cdfLl%=jls9lvM9&dI{U0s=3owdmASizN#;m4t`RW3pWe)Q5OAo zV0;HtE7HGfSi9e{d^m=0l59tOKd#N?X@#cl*jm({n}0uOktJj5YU2_Y^>n_%QDbQ(#JY`2Et~ z=;WNphk_-LlG%H2{%Ma!UE*v>4aX*_a-Jj+s9e^mdG}MIfN^gK#0KXhQMY2S9Sn7l zVPx}jJY@C7+-&(OZdsVYr?!#%@nQ9hQh4&QYoWTN+~s%t@rn8-D8uj0GZmAFHqOt? zYmaCSV1}9Ueq}Xe#rt4(N>l%=_oJ}uR&@c+@|$b!=LW%69VkqEx;tK{!>Ok!G$Sfc zcE0Q4X3&P7T&og+J+$1bnUiNIJt0++d)v1qfYf1C@#k-w1*&Z8M>ymX`zAt`ZV}FM zH9EKvCZR53$$#R z7uYPm-Hdh!fAE&~tq(4`u81$uUC25&F)K=cdMWu`Zm9(b5%kSmJXwNzE<*b}b%1j0 zp4li1_apFqj0{psy>lsE93RLx(R};IL!Q>zisX{1s!(S?*t`)nFjFdVrC!_oc37&I zd%Qw{*1}==tTHB$+mV$E&JzH|NXBKNH&VuAioW%5z4|>(>{wP)+4{9*vnLWS$h>(8 z-jZbKdlK{YE$O^w0%d_5YCS6}|MUI6TV`xP#iXpI1USzykSKR)q@%}! 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It is also common to define -the function $Q$ as +the function $C$ as !bt \[