\ProvidesPackage{primeshead}[2018/04/26 Primes macros] \newif\ifslidesafe\slidesafefalse \DeclareOption{slidesafe}{\slidesafetrue} \ProcessOptions\relax \usepackage[boxsize=1.1em,aligntableaux=bottom]{ytableau} \newskip\@ytabspace \@ytabspace=0ex plus 0.3ex \def\ytab{\@ifstar\@@ytab\@ytab} \newcommand{\@ytab}[1][]{\@@ytab[nobaseline,#1]} \newcommand{\@@ytab}[1][]{\globaldefs=-1\ytableausetup{#1}\globaldefs=0\hspace{\@ytabspace}\@ytab@i} \newcommand{\@ytab@i}[2][]{\ytableaushort[#1]{#2}\hspace{\@ytabspace}} \newcommand{\ydiag}[1][]{\globaldefs=-1\ytableausetup{#1}\globaldefs=0\hspace{\@ytabspace}\@ydiag@i} \newcommand{\@ydiag@i}[1]{\ydiagram{#1}\hspace{\@ytabspace}} \ifslidesafe\else \newenvironment{solution}{\begin{proof}[Solution]}{\end{proof}} \declaretheorem[style=md,sibling=thm,name=Conjecture]{bconj} \usepackage{subcaption} \fi \newcommand{\clmn}{\ensuremath{c^\lambda_{\mu\nu}}} \newcommand{\cllm}{\ensuremath{c^\lambda_{\lambda\mu}}} \newcommand{\fs}{\mathfrak{S}} \newcommand{\lm}{\ensuremath{{\lambda/\mu}}} \DeclareMathOperator{\SSYT}{SSYT} \DeclareMathOperator{\OOT}{OOT} \DeclareMathOperator{\RPP}{RPP} \DeclareMathOperator{\rpp}{rpp} \newcommand{\rppq}[1]{\ensuremath{{\rpp_{#1}(q)}}} \newcommand{\rpplq}{\rppq{\lambda}} \newcommand{\rpplmq}{\rppq{\lm}} \newcommand{\rppratio}{\ensuremath{{\frac{\rpplmq}{\rpplq}}}} \DeclareMathOperator{\qexp}{qexp} \renewcommand{\vec}{\mathbf} \newcommand{\vx}{\vec{x}} \newcommand{\vy}{\vec{y}} \newcommand{\vz}{\vec{z}} \newcommand{\vd}{\vec{d}} \newcommand{\va}{\vec{a}} \DeclarePairedDelimiterX\mpar[2]{(}{)}{#1\;\delimsize\vert\;#2} \newcommand{\eval}[1]{\left. #1\right\rvert} \newcommand{\cale}{\mathcal{E}} \newcommand{\calr}{\mathcal{R}} \newcommand{\calp}{\mathcal{P}} \newcommand{\ssf}{\mathsf{f}} \newcommand{\hash}{\mathbin{\#}} \endinput