I am looking for a way to change the papersize (normally A4 to A3 for one page) in my document. I need this, because I want to explicitly write out a big matrix in the appendix (I know, I could use things like
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\vdots
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\ddots
I have found several approaches, like:
- here
- or here
But they don't match my needs: they change the paper size, but the area for the text on the new page doesn't really change.
In my case I get an A3-page in landscape format - ok, that is good.
BUT:
- The text seems to be aligned to the text on the A4-page in portrait format, so I can't even use the new gained place
- The page number appears in the middle of the page (I guess at the same position, where it used to be on the former A4-page) thus messing up my matrix, because one could think that it is an element of the matrix.
Another "problem": the approach uses Koma-Script, and it seems that it doesn't get along with the
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\usepackage{fancyhdr}
I try to show you a working minimal example (but I'm not shure, if I'm using the correct command - please excuse me, I'm completely new to this forum and LaTeX):
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\documentclass{article}\usepackage[ngerman]{babel} % für deutsche Namen (Zusammenfassung statt Abstract z.B.)\usepackage[T1]{fontenc} % ermöglicht Umlaute\usepackage[utf8]{inputenc} % 5 ermöglicht Umlaute\usepackage{color} % ermöglicht farbigen Text\usepackage{setspace} \onehalfspacing % generelle Einstellung für Abstände zwischen Zeilen\usepackage[a4paper]{typearea} % für Einstellungen von Rändern\usepackage{hyperref} % für klickbare Verweise\usepackage{amsmath, amssymb}%\geometry{left=3cm,right=3.5cm,top=3cm,bottom=3cm}\setlength{\parindent}{0pt}\setcounter{MaxMatrixCols}{20}\begin{document}\section{Hello World}Some text .......On the following side comes the big matrix:\newpage% I even have to use A2 to make it fit on the paper% if it was possible to correctly use the available place% a A3-page would suffice\KOMAoptions{paper=A2,paper=landscape}\recalctypearea\begin{equation}\begin{pmatrix}Z_1 & Z_1 + Z_2 & Z_1 + Z_2 + Z_3 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\1 & 1 & 1 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 \\u_{1,1} & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\0 & u_{1,2} & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\0 & 0 & u_{1,3} & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\u_{1,1} \cdot \Delta t & 0 & 0 & 1 & 0 & 0 & 0 & 0 & 0 & -1 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 \\0 & u_{1,2} \cdot \Delta t & 0 & 0 & 1 & 0 & 0 & 0 & 0 & 0 & -1 & 0 & 0 & 0 & 0 & 0 & 0 & 0 \\0 & 0 & u_{1,3} \cdot \Delta t & 0 & 0 & 1 & 0 & 0 & 0 & 0 & 0 & -1 & 0 & 0 & 0 & 0 & 0 & 0 \\%0 & 0 & 0 & 0 & 0 & 0 & Z_1 & Z_1 + Z_2 & Z_1 + Z_2 + Z_3 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 \\0 & 0 & 0 & 0 & 0 & 0 & 1 & 1 & 1 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\0 & 0 & 0 & 0 & 0 & 0 & u_{2,1} & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\0 & 0 & 0 & 0 & 0 & 0 & 0 & u_{2,2} & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0 & 0\\