From 8390f141fdb23cf95a27385143c7149e203eb3ba Mon Sep 17 00:00:00 2001 From: Martin Thoma Date: Tue, 5 Nov 2013 20:10:14 +0100 Subject: [PATCH] Mathe Vorlage Minimal --- documents/mathe-vorlage-minimal/Makefile | 7 ++++ .../mathe-vorlage-minimal.tex | 41 +++++++++++++++++++ 2 files changed, 48 insertions(+) create mode 100644 documents/mathe-vorlage-minimal/Makefile create mode 100644 documents/mathe-vorlage-minimal/mathe-vorlage-minimal.tex diff --git a/documents/mathe-vorlage-minimal/Makefile b/documents/mathe-vorlage-minimal/Makefile new file mode 100644 index 0000000..b2bbbaa --- /dev/null +++ b/documents/mathe-vorlage-minimal/Makefile @@ -0,0 +1,7 @@ +SOURCE = mathe-vorlage-minimal +make: + pdflatex $(SOURCE).tex -output-format=pdf + make clean + +clean: + rm -rf $(TARGET) *.class *.html *.log *.aux *.out diff --git a/documents/mathe-vorlage-minimal/mathe-vorlage-minimal.tex b/documents/mathe-vorlage-minimal/mathe-vorlage-minimal.tex new file mode 100644 index 0000000..373c044 --- /dev/null +++ b/documents/mathe-vorlage-minimal/mathe-vorlage-minimal.tex @@ -0,0 +1,41 @@ +\documentclass[a4paper]{scrartcl} +\usepackage{amssymb, amsmath} % needed for math +\usepackage[utf8]{inputenc} % this is needed for umlauts +\usepackage[ngerman]{babel} % this is needed for umlauts +\usepackage[T1]{fontenc} % this is needed for correct output of umlauts in pdf +\usepackage[margin=2.5cm]{geometry} %layout +\usepackage{hyperref} % links im text +\usepackage{parskip} + +\title{Minimal distance to a cubic function} +\author{Martin Thoma} + +\hypersetup{ + pdfauthor = {Martin Thoma}, + pdfkeywords = {}, + pdftitle = {} +} + +%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% +% Begin document % +%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% +\begin{document} +\maketitle +\begin{abstract} +In this paper I want to discuss how to find the minimal distance of a +point $P = (x_p, y_p)$ to a cubic function $f: \mathbb{R} \rightarrow \mathbb{R}$, +$f(x) = a \cdot x^3 + b \cdot x^2 + c \cdot x + d$. + +So I search for $x \in \mathbb{R}$ such that \dots +\end{abstract} + +\section{Minimal distance constant function} +Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nulla +quam elit, vestibulum nec facilisis at, condimentum id enim. Sed +iaculis lacinia quam, vel accumsan eros tempor in. Integer ipsum +metus, accumsan sit amet commodo a, egestas vitae sem. Mauris ut +orci ut dolor viverra convallis nec a erat. Aenean consequat elit +vel eros fermentum vestibulum id at ipsum. In vitae orci mauris, et +rhoncus odio. Pellentesque habitant morbi tristique senectus et netus +et malesuada fames ac turpis egestas. +\end{document}