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-rw-r--r--README.md5
-rw-r--r--format.tex8
-rw-r--r--progreport/document.tex10
3 files changed, 19 insertions, 4 deletions
diff --git a/README.md b/README.md
index 30b9e3e..f14a628 100644
--- a/README.md
+++ b/README.md
@@ -2,3 +2,8 @@
Differential Equations Project (Spring 2020, Mayer)
Based on the [Mystery Circuit](https://simiode.org/resources/3187/download/4-23-S-MysteryCircuit-StudentVersion.pdf) Modelling Scenario from [SIMIODE](https://simiode.org), by Nithya Jayakumar and Holden Rohrer.
+
+## Building
+Run `make -j8` on the toplevel directory and everything should be
+properly built within their containing folders (e.g.
+`progreport/document.pdf`).
diff --git a/format.tex b/format.tex
index 373cdd3..67f362e 100644
--- a/format.tex
+++ b/format.tex
@@ -39,14 +39,14 @@ Mayer
%% Sectioning
\def\titlesub#1#2{\centerline{\fourteenbf #1}\centerline{#2}\bigskip}
\newcount\sections \newcount\subsections
-\def\section#1\par{\advance\sections by 1\thesection{#1}}
+\def\section#1{\advance\sections by 1\thesection{#1}}
\def\thesection#1{\vskip .3\hsize\goodbreak\vskip -.3\hsize\bigskip\noindent{\fourteenrm\the\sections\ #1\bigskip}}
-\def\subsection#1\par{\advance\subsections by 1\thesubsection{#1}}
+\def\subsection#1{\advance\subsections by 1\thesubsection{#1}}
\def\thesubsection#1{\vskip .15\hsize\goodbreak\vskip -.15\hsize\medskip\noindent{\twelverm\the\sections.\the\subsections\ #1\medskip}}
%% Modular Sections
-\def\include#1:#2\par{\section #1\par\par\input #2\relax}
-\def\sinclude#1:#2\par{\subsection #1\par\par\input #2\relax}
+\def\include#1:#2\par{\section{#1}\par\input #2\relax}
+\def\sinclude#1:#2\par{\subsection{#1}\par\input #2\relax}
%% Bullet Points and Numbering
\def\pre#1{\par\leavevmode\llap{\hbox to \parindent{\hfil #1 \hfil}}}
diff --git a/progreport/document.tex b/progreport/document.tex
index dc6dcd5..fc0bcad 100644
--- a/progreport/document.tex
+++ b/progreport/document.tex
@@ -1,4 +1,14 @@
\input ../format
\titlesub{Part 2: Progress Report}{Mystery Circuit}
+\section{Project Topic}
+
+Our group will be working on the Mystery Circuit Modelling Scenario
+from SIMIODE. This entails applying both Kirchhoff's Voltage Law and
+Kirchhoff's Current Law to the given two loop RLC circuit and imposing
+intitial conditions in order to form intial value problems to
+mathematically model the mystery circuit.
+
+\section{Further Exploration}
+
\bye