[pstricks] pstThreeDSquare and transparent colors

Thomas Söll Thomas.Soell at lehrer.uka.de
Sun Oct 16 17:24:42 CEST 2005


Hallo Herber Voss,

after installing the pstricks-add file from your link, nothing changed.
Sorry I forgot a full example last time. Latex runs without error message, but
picture and all after it cant displayed in gostview or acrobat.

Thanks

Thomas Söll

\documentclass[a4paper,12pt]{article}
\usepackage[T1]{fontenc}
\usepackage[latin1]{inputenc}
\usepackage{tabularx}
\usepackage{fancyhdr}
\usepackage{ngerman}
\usepackage{amsmath}
\usepackage{amsthm}
\usepackage{amssymb}
\usepackage{amsfonts}
\renewcommand{\familydefault}{\sfdefault}
\usepackage{mathpazo}
\usepackage[scaled=.95]{helvet}
\usepackage{courier}
%\linespread{1.05}     % Zeilenabstand um 5% erhöhen
\usepackage{upgreek}
\usepackage{enumerate}
\usepackage{floatflt}
\usepackage{caption}%[2004/07/16]%[margin=10pt,font=small,labelfont=bf] Parameter verändert die Unterschrift
\usepackage{multicol}%[1999/05/25]
\usepackage{dcolumn}  %
\usepackage{booktabs} % Für bessere Abstände in Tabellen
% \usepackage{makeidx}  % Zur Indexerzeugung
\usepackage{index}  % Zur Indexerzeugung Variante für weitere Verzeichnisse z.B. Namensverz. usw.
\usepackage{wrapfig}
\usepackage{lastpage}
\usepackage{polynom}  % Polynomdivision
\usepackage{gauss}    % Verwendung bei Gauss-Elimination siehe auch gauss.pdf
\usepackage{exscale} % Zum Skalieren von Formelzeichen mit big ...
\usepackage{cancel} % Zum Kürzen
%\usepackage{statex} % Für TI83 und Statistik-Funktionen
%\usepackage{wasysym}
%\usepackage{marvosym}
%\usepackage{ulsy}
\usepackage{dsfont}
% \usepackage{bbding,pifont,dingbat}
\usepackage[clock,weather,misc,geometry,electronic]{ifsym}
\usepackage{array}
%\usepackage{textcomp}
\usepackage[raggedright,nooneline]{subfigure}    % From CTAN/macros/latex/contrib/supported/subfigure
\usepackage{mathrsfs}
\usepackage{srcltx}
%\usepackage{xkeyval}
\usepackage{ifthen}       % From LaTeX distribution
\usepackage{calc}         % From LaTeX distribution
\input{random.tex}        % From CTAN/macros/generic
%\usepackage[dvips]{graphics}
\usepackage[dvips]{graphicx}
\usepackage[dvips]{changebar}
\usepackage[dvips,usenames,dvipsnames]{xcolor} %% Farben sind im Dokument xcolor.pdf definiert
\usepackage{lscape}
\usepackage{multicol}
\usepackage{pstricks}
\usepackage{multido}      % From PSTricks
\usepackage{pst-grad}
\usepackage{pst-plot}
\usepackage{pst-coil}
\usepackage{pst-node}
\usepackage{pst-eps}
\usepackage[tiling]{pst-fill}
\usepackage{pst-tree}
%\usepackage{pst-all}
\usepackage{pst-osci}
\usepackage[baw,pstricks]{fvrb-ex}
\usepackage{pst-poly}     % From pstricks/contrib/pst-poly
%\usepackage{pstcol}
\usepackage{pst-3d}
\usepackage{pst-optic}
\usepackage{pst-text}
\usepackage{pst-ghsb}
\usepackage{pst-blur}
\usepackage{pst-char}
\usepackage{pst-slpe}
\usepackage{pst-text}
\usepackage{pst-eucl}
\usepackage{pst-plot}
\usepackage{pst-math}
\usepackage{pst-func}
\usepackage{pst-3dplot}
\usepackage{pstricks-add}


\usepackage[ps2pdf,pagebackref,pdfpagelabels,colorlinks,linktocpage,extension=pdf]{hyperref}
\usepackage{url}
%\usepackage[ps2pdf]{thumbpdf}
%\usepackage{hypbmsec}



%\usepackage[user=donald,owner=Thomas Söll,print=false,copy=false, edit=false, annotate=false]{pdfcrypt}

%thumbpdf --modes=ps2pdf Energietransport.pdf

\hypersetup{%
%pdfpagemode = {None}, % Verhindert die automatische Anzeige der Lesezeichen
colorlinks=true, % Einfärbung von Verknüpfungen
%pdfpagemode=UseThumbs, % Anzeige der Piktogramme
%\pdfbookmark[1]{\contentsname}{toc},
pagecolor=blue, menucolor=blue, linkcolor=blue,
bookmarksopen=true, % Anzeige aller Ebenen
bookmarksnumbered=true, % Anzeige der Abschnittsnummern
pdfstartpage={1}, % Startseite
%pdfstartview={FitH}, % Legt die Anzeigegröße fest
 pdftitle = {Mathematik in Klasse 12}, pdfsubject = {Unterrichtsmaterial},
pdfauthor = {Söll, Thomas} }


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

%\special{  pdf: pagesize  width 8.35truein height 11.74truein}
%\special{  pdf:  docview <</PageMode /a4>>}

\input dokdef0


%\pagestyle{empty}
%------------------------------------------
 \addtolength{\headsep}{-.25cm}
 \addtolength{\topmargin}{-.55cm}
 \addtolength{\topmargin}{-2.1cm}
 \addtolength{\oddsidemargin}{-1.2cm}
 \addtolength{\evensidemargin}{-2.6cm}
%------------------------------------------
 \textheight26cm
 \textwidth16.5cm
%------------------------------------------
 %\sloppy \nonfrenchspacing
%\parindent0ex
\setlength{\parindent}{0pt} %\setlength{\parskip}{\baselineskip}


\begin{document}

\subsubsection*{\Aufgabe}% Aufgabe 8

Trägt man von einem Punkt P alle Vielfachen zweier linear unabhängigen Vektoren $\vec{a}$ und $\vec{b}$ an,
so erhält man nur Punkte die in einer Ebene liegen.

{\begin{pspicture}*(-7.5,-2.8)(7.5,5.3)%
\psset{xMin=0,yMin=0,zMin=0,Alpha=50, Beta=15,Dx=1,Dy=1,Dz=1,subticks=7,arrowsize=.2}%
\pstThreeDSquare[style=TGreen](4.8,-5.1,3)(-8,6,0)(0,6,-4)%
\pstThreeDLine[arrows=->,linewidth=1.5pt,linecolor=red](0,0,0)(7,0,0)%
\pstThreeDLine[arrows=->,linewidth=1.5pt,linecolor=red](0,0,0)(0,7,0)%
\pstThreeDLine[arrows=->,linewidth=1.5pt,linecolor=red](0,0,0)(0,0,5)%
  \pstThreeDPut(6.8,0,-0.3){\color{red}$x_{1}\runter$}%
  \pstThreeDPut(0,6.8,-0.3){\color{red}$x_{2}\runter$}%
  \pstThreeDPut(0.6,0,4.8){\color{red}$x_{3}\runter$}%
\pstThreeDPlaneGrid[planeGrid=xy,linewidth=0.1pt,linecolor=gray!70](0,0)(7,7)%
\pstThreeDPlaneGrid[planeGrid=xz,linewidth=0.1pt,linecolor=gray!70,planeGridOffset=0,ysubticks=4](0,0)(7,4)%
\pstThreeDPlaneGrid[planeGrid=yz,linewidth=0.1pt,linecolor=gray,planeGridOffset=0,ysubticks=4](0,0)(7,4)%
%\pstThreeDPut(0,0,3){\pstThreeDPlaneGrid[planeGrid=xy,linewidth=0.1pt,linecolor=lightgray](0,0)(10,10)}%
  \pstThreeDPut(0,0,0){\pnode{O}}%
  \pstThreeDPut(2,0,1){\pnode{P}}%
  \pstThreeDPut(-2,1.5,0){\pnode{Q}}%
  \pstThreeDPut(0,-3,2){\pnode{R}}%
  \setLCNode(P){1}(Q){1.5}{Q1}%
  \setLCNode(P){1}(R){.75}{R1}%
  \setLCNode(Q){1.4}(R){0.8}{QR1}%
  \setLCNode(Q){1}(R){.75}{QR2}%
  \pcline[linecolor=Dandelion]{->}(O)(P)%
  \naput[npos=0.6]{\color{Dandelion}$\vec{p}$}%
  \pcline[linecolor=blue!80]{->}(P)(Q1)%
  \nbput[nrot=:U,npos=0.7]{\color{blue!80}$\vec{a}$}%
  \pcline[linecolor=blue!80]{->}(P)(R1)%
  \nbput[npos=0.6]{\color{blue!80}$\vec{b}$}%
  \pcline[linecolor=Purple]{->}(O)(QR1)%
  \naput[npos=0.7]{\color{Purple}$\vec{x}$}%
\end{pspicture}}

Jeder Punkt {\color{Violet}  X} der Ebene lässt sich als Linearkombination der Spannvektoren $\vec{a}$ und
$\vec{b}$ darstellen. Für ein beliebiges {\color{Violet}  X} erhält man mit den Parametern $s$ und $t$ :
\begin{equation*}
   \kast{ E: \vec{x} = \vec{p} + s\cdot \vec{a} + t\cdot \vec{b} \qquad s;t\in \RR }
\end{equation*}

\end{document}
 
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