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知道如何减少桌子的高度吗?

\documentclass[aspectratio=169, hyperref={pdfpagelabels=false}]{beamer} %\documentclass[handout, hyperref={pdfpagelabels=false}]{beamer} \usetheme{Madrid} \let\Tiny=\tiny \usepackage{multimedia} %\usepackage[backend=bibtex,style=authoryear]{biblatex} \usecolortheme{whale} \usepackage[utf8]{inputenc} \usepackage[T1]{fontenc} \usepackage[spanish]{babel} \usefonttheme{professionalfonts} \usenavigationsymbolstemplate{} \setbeamertemplate{footline}[frame number] \setbeamertemplate{frametitle}[default][center] \setbeamersize{text margin left=2em,text margin right=2em} \usepackage{adjustbox} \usepackage{multirow} \usepackage{booktabs} \usepackage{float} \usepackage[flushleft]{threeparttable} \floatstyle{plaintop} \usepackage{siunitx} \begin{document} \begin{frame}{Resultados} \begin{table}[H] \centering \begin{adjustbox}{max height=0.3\textheight , max width=0.8\textwidth} \begin{threeparttable} \caption{Estimación de p$K_\text{a}$ para ácidos y alcoholes}\label{table:estimacion_pka_RM1} \begin{tabular}{lccccc} \toprule & \textbf{} & \multicolumn{4}{c}{RM1} \\ \cmidrule(lr){3-6} & & \multicolumn{2}{c}{COSMO} & \multicolumn{2}{c}{SS-COSMO} \\ \cmidrule(lr){3-4}\cmidrule(lr){5-6} & p$K\text{a}_{\text{exp}}$\SI{298}{K} & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ \\ \midrule \textbf{Ácidos}& & & & & \\ acético & 4.75 & 2.1 & 2.6 & 4.2 & 0.6 \\ fluoroacético & 2.59 & -0.8 & 3.3 & -0.8 & 3.4 \\ fórmico & 3.75 & ref & - & ref & - \\ pirúvico & 2.39 & -3.0 & 5.4 & 0.7 & 1.7 \\ glioxílico & 3.18 & -2.3 & 5.5 & 0.4 & 2.8 \\ propanoico & 4.86 & 2.3 & 2.5 & 3.9 & 0.9 \\ butanoico & 4.83 & 2.6 & 2.3 & 4.2 & 0.7 \\ acrílico & 4.25 & 2.0 & 2.3 & 1.0 & 3.3 \\ láctico & 3.86 & 0.7 & 3.2 & 5.0 & -1.2 \\ benzoico & 4.2 & 1.1 & 3.1 & 1.6 & 2.6 \\ MAE & & & 3.1 & & 1.8 \\ \bottomrule \end{tabular} \begin{tablenotes} \footnotesize \item {Comparación de p$K\text{a}$ calculados con RM1 y dos estrategias de solvatación: implícita (COSMO) y explícita-implícita(SS-COSMO). $\Delta$p$K\text{a}$ =p$K\text{a}_{\text{exp}}$-p$K\text{a}_{\text{calc}}$.} \end{tablenotes} \end{threeparttable} \end{adjustbox} \end{table} \end{frame} \end{document}
最新回答
  • 2019-12-5
    1 #

    首先来自投影机用户指南的引用:

    Never use a smaller font size to “fit more on a frame.” Never ever use the evil option shrink.

    因此,请使用以下解决方案,风险自负!

       \documentclass[aspectratio=169, hyperref={pdfpagelabels=false}]{beamer}
    %\documentclass[handout, hyperref={pdfpagelabels=false}]{beamer}
    \usetheme{Madrid} 
    \let\Tiny=\tiny
    \usepackage{multimedia}
    %\usepackage[backend=bibtex,style=authoryear]{biblatex}
    \usecolortheme{whale} 
    \usepackage[utf8]{inputenc}
    \usepackage[T1]{fontenc}
    \usepackage[spanish]{babel}
    \usefonttheme{professionalfonts}  
    \usenavigationsymbolstemplate{} 
    \setbeamertemplate{footline}[frame number]
    \setbeamertemplate{frametitle}[default][center]
    \setbeamersize{text margin left=2em,text margin right=2em}
    \usepackage{multirow}
    \usepackage{booktabs}
    \usepackage[flushleft]{threeparttable}
    \usepackage{siunitx}
    \begin{document}
    \begin{frame}[shrink=25]{Resultados}
        \centering
        \begin{threeparttable}
            \caption{Estimación de p$K_\text{a}$ para ácidos y alcoholes}\label{table:estimacion_pka_RM1}
            \begin{tabular}{lccccc}
                \toprule
                 & \textbf{} & \multicolumn{4}{c}{RM1} \\  \cmidrule(lr){3-6}
                 &  & \multicolumn{2}{c}{COSMO} & \multicolumn{2}{c}{SS-COSMO} \\  \cmidrule(lr){3-4}\cmidrule(lr){5-6}
                 & p$K\text{a}_{\text{exp}}$\SI{298}{K} & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ \\  \midrule
                \textbf{Ácidos}&  &  &  &  &  \\  
                acético & 4.75 & 2.1 & 2.6 & 4.2 & 0.6 \\  
                fluoroacético & 2.59 & -0.8 & 3.3 & -0.8 & 3.4 \\  
                fórmico & 3.75 & ref & - & ref & - \\  
                pirúvico & 2.39 & -3.0 & 5.4 & 0.7 & 1.7 \\  
                glioxílico & 3.18 & -2.3 & 5.5 & 0.4 & 2.8 \\  
                propanoico & 4.86 & 2.3 & 2.5 & 3.9 & 0.9 \\  
                butanoico & 4.83 & 2.6 & 2.3 & 4.2 & 0.7 \\  
                acrílico & 4.25 & 2.0 & 2.3 & 1.0 & 3.3 \\  
                láctico & 3.86 & 0.7 & 3.2 & 5.0 & -1.2 \\  
                benzoico & 4.2 & 1.1 & 3.1 & 1.6 & 2.6 \\  
                MAE &  &  & 3.1 &  & 1.8 \\  \bottomrule
            \end{tabular}
            \begin{tablenotes}
                \footnotesize
                \item {Comparación de p$K\text{a}$ calculados con RM1 y dos estrategias de solvatación: implícita (COSMO) y explícita-implícita(SS-COSMO). $\Delta$p$K\text{a}$ =p$K\text{a}_{\text{exp}}$-p$K\text{a}_{\text{calc}}$.}
            \end{tablenotes}
        \end{threeparttable}
    \end{frame}
    \end{document}
    

    如果字体变得太小,可以选择转置表格.基于https://tex.stackexchange.com/a/32690/36296快速测试:

    \documentclass[aspectratio=169, hyperref={pdfpagelabels=false}]{beamer}
    %\documentclass[handout, hyperref={pdfpagelabels=false}]{beamer}
    \usetheme{Madrid} 
    \let\Tiny=\tiny
    \usepackage{multimedia}
    %\usepackage[backend=bibtex,style=authoryear]{biblatex}
    \usecolortheme{whale} 
    \usepackage[utf8]{inputenc}
    \usepackage[T1]{fontenc}
    \usepackage[spanish]{babel}
    \usefonttheme{professionalfonts}  
    \usenavigationsymbolstemplate{} 
    \setbeamertemplate{footline}[frame number]
    \setbeamertemplate{frametitle}[default][center]
    \setbeamersize{text margin left=2em,text margin right=2em}
    \usepackage{multirow}
    \usepackage{booktabs}
    \usepackage[flushleft]{threeparttable}
    \usepackage{siunitx}
    \usepackage{adjustbox}
    \usepackage{array}
    \newcolumntype{R}[2]{%
        >{\adjustbox{angle=#1,lap=\width-(#2)}\bgroup}%
        l%
        <{\egroup}%
    }
    \newcommand*\rot{\multicolumn{1}{R{45}{0.1em}}}% no optional argument here, please!
    \begin{document}
    \begin{frame}[shrink=25]{Resultados}
        \centering
        \begin{threeparttable}
            \caption{Estimación de p$K_\text{a}$ para ácidos y alcoholes}\label{table:estimacion_pka_RM1}
            \begin{tabular}{lccccc}
                \toprule
                 & \textbf{} & \multicolumn{4}{c}{RM1} \\  \cmidrule(lr){3-6}
                 &  & \multicolumn{2}{c}{COSMO} & \multicolumn{2}{c}{SS-COSMO} \\  \cmidrule(lr){3-4}\cmidrule(lr){5-6}
                 & p$K\text{a}_{\text{exp}}$\SI{298}{K} & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ & p$K\text{a}_{\text{calc}}$ & $\Delta$p$K\text{a}$ \\  \midrule
                \textbf{Ácidos}&  &  &  &  &  \\  
                acético & 4.75 & 2.1 & 2.6 & 4.2 & 0.6 \\  
                fluoroacético & 2.59 & -0.8 & 3.3 & -0.8 & 3.4 \\  
                fórmico & 3.75 & ref & - & ref & - \\  
                pirúvico & 2.39 & -3.0 & 5.4 & 0.7 & 1.7 \\  
                glioxílico & 3.18 & -2.3 & 5.5 & 0.4 & 2.8 \\  
                propanoico & 4.86 & 2.3 & 2.5 & 3.9 & 0.9 \\  
                butanoico & 4.83 & 2.6 & 2.3 & 4.2 & 0.7 \\  
                acrílico & 4.25 & 2.0 & 2.3 & 1.0 & 3.3 \\  
                láctico & 3.86 & 0.7 & 3.2 & 5.0 & -1.2 \\  
                benzoico & 4.2 & 1.1 & 3.1 & 1.6 & 2.6 \\  
                MAE &  &  & 3.1 &  & 1.8 \\  \bottomrule
            \end{tabular}
            \begin{tablenotes}
                \footnotesize
                \item {Comparación de p$K\text{a}$ calculados con RM1 y dos estrategias de solvatación: implícita (COSMO) y explícita-implícita(SS-COSMO). $\Delta$p$K\text{a}$ =p$K\text{a}_{\text{exp}}$-p$K\text{a}_{\text{calc}}$.}
            \end{tablenotes}
        \end{threeparttable}
    \end{frame}
    \begin{frame}
        \frametitle{{Resultados}}
        \centering
        \renewcommand{\tabcolsep}{0.15cm}
        \renewcommand{\arraystretch}{1.2}
        \begin{threeparttable}
            \caption{Estimación de p$K_\text{a}$ para ácidos y alcoholes}
            \begin{tabular}{lll*{11}S}
                & & & \rot{acético} & \rot{fluoroacético} & \rot{fórmico} & \rot{pirúvico} & \rot{glioxílico} & \rot{propanoico} & \rot{butanoico} & \rot{acrílico} & \rot{láctico} & \rot{benzoico} &  \rot{MAE}\\
                \toprule
                && p$K\text{a}_{\text{exp}}$\SI{298}{K} & 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2\\[1em]
                \multirow[c]{4}{*}{RM1} & \multirow[c]{2}{*}{COSMOS} & p$K\text{a}_{\text{calc}}$  & 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2\\
                && $\Delta$p$K\text{a}$  & 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2\\[1em]
                & \multirow[c]{2}{*}{SS-COSMOS} & p$K\text{a}_{\text{calc}}$  & 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2\\
                && $\Delta$p$K\text{a}$  & 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2& 4.2\\
                \bottomrule
            \end{tabular}
            \begin{tablenotes}
                \footnotesize
                \item {Comparación de p$K\text{a}$ calculados con RM1 y dos estrategias de solvatación: implícita (COSMO) y explícita-implícita(SS-COSMO). $\Delta$p$K\text{a}$ =p$K\text{a}_{\text{exp}}$-p$K\text{a}_{\text{calc}}$.}
            \end{tablenotes}
        \end{threeparttable}
    \end{frame}
    \end{document}
    

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