\displaybreak[1].... \display[4]
don't work, neither does \allowdisplaybreaks[1]....\allowdisplaybreaks[4]
in preamble or inside formula work. My preamble is:Code: Select all
\documentclass[12pt,a4paper,english,fleqn]{article}
\usepackage{mathptmx}
%The next five packages are special mathematical formatting packages used to handle long equations, theorems and proofs.
\usepackage[utf8]{inputenc}
\usepackage[english]{babel}
\usepackage{amsmath}
\usepackage{amsthm}
\usepackage{amssymb}
%Euler cursive script form
\usepackage[mathscr]{euscript}
\newtheorem{theorem}{Theorem}
\usepackage[scaled=0.86]{helvet}
\renewcommand{\familydefault}{\rmdefault}
\usepackage[T1]{fontenc}
\usepackage[utf8]{inputenc}
%\usepackage{fancyhdr}
%\pagestyle{fancy}
\setcounter{secnumdepth}{2}
\usepackage{graphicx}
\usepackage[authoryear]{natbib}
%Define EconEJ colors
\usepackage{xcolor}
\definecolor{EconomicsGray}{RGB}{198,212,225}
\definecolor{EconomicsLightBlue}{RGB}{127,191,192}
\definecolor{EconomicsBlue}{RGB}{0,63,138}
\definecolor{EconomicsDarkBlue}{RGB}{0,63,117}
% You need this for the headers:
\usepackage{graphicx}
\usepackage{lscape}
% Caption formatting
\usepackage[font=footnotesize,labelfont=bf]{caption}
% Reduce font size for section
\makeatletter
\renewcommand\section{\@startsection{section}{1}{\z@}
{-5ex \@plus -1ex \@minus -.2ex}{2.3ex \@plus.2ex}{\normalfont\large\bf}}
%Reduce font size for subsection
\renewcommand\subsection{\@startsection{subsection}{2}
{\z@}{-3.25ex\@plus -1ex \@minus -.2ex}{1.5ex \@plus .2ex}{\normalfont\bf}}
% Enforce proper line breaks and avoid widows and orphans
\tolerance 1414
\hbadness 1414
\emergencystretch 1.5em
\hfuzz 0.3pt
\widowpenalty = 10000
\clubpenalty=10000
\vfuzz \hfuzz
\raggedbottom
% Format footnotes
% Footnote formatting
\usepackage[hang]{footmisc}
\renewcommand{\hangfootparindent}{1em}
\renewcommand{\hangfootparskip}{0em}
\renewcommand{\footnotemargin}{0.00001pt}
\def\footnotelayout{\hspace{1em}}
%Appendix
\usepackage{appendix}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% Place your own additions to the preable HERE, that is, BEFORE the following
% call to hyperref
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%Hyperlink settings for linkcolors and initial view
\usepackage[%
colorlinks=true,%
linkcolor=black,%
citecolor=black,%
urlcolor=EconomicsDarkBlue,%
pdfstartview=FitH,%
pdfview=FitH,%
pdfpagemode=UseNone]{hyperref}
\hypersetup{pdftitle={Economics: The Open Access, Open Assessment E-Journal}}
% Define font for hyperlinks
\def\UrlFont{\normalfont}
% Some fine-tuning of layout
\usepackage{microtype}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% Put your additions to the preable above the call to hyperref, not here, unless you
% want to modify hyperref settings, as is the case with the precvious two commands
\@ifundefined{showcaptionsetup}{}{%
\PassOptionsToPackage{caption=false}{subfig}}
\usepackage{subfig}
\AtBeginDocument{
\def\labelitemi{\tiny\(\bullet\)}
}
\makeindex
\makeatother
\setlength\intextsep{0pt plus 1pt minus 1pt}
\usepackage{babel}
\usepackage{graphicx}
\usepackage{setspace}
My formula is
Code: Select all
\begin{equation}
\begin{split}
\underset{C_t,}{\text{maximize}} \
W = \displaystyle\sum\limits_{t=1}^{T max}\mathscr{S_t}(\tau, \tau_{c,max})(1-\Omega^u_t) \beta^{t-1}U_t\bigg(C_t\Big(\displaystyle\sum_i^N E^c(\dot{m}_{it})\Big), L_t\bigg) \
\text{subject to} \\
\mathscr{S}(\tau, \tau_{c,max})(1-\Omega^Y_t)(1-\wedge_t)A_tF\Big[K_t(\Omega^K_t), H_t(\Omega^H_t), L_t(\Omega^L_t), \displaystyle\sum_i^N E^c(\dot{m}_{it})\Big] = \\
= C_t\Big(\displaystyle\sum_i^N E^y(\dot{m}_{it})\Big) + K_{t+1} + (1-\delta)K_t + H_{t+1} + (1-\delta_h)H_t \\
\dot{M}(T) = \varpi \displaystyle\sum_{i=1}^{T} \dot{m}(i) + (1-\varpi) \displaystyle\sum_{i=0}^{T} (1-\delta_p)^i \dot{m}(T-i) + \\
+(1-\varpi_x)\delta_{xm}\bigg(\displaystyle\sum_{j=1}^{T-1}\displaystyle\sum_{i=1}^{j-1} (1-\delta_{xm})\dot{m^x}_{T-j}\bigg) + \dot{M}^e(1) \\
\tau = b_1\ln\frac{[\dot{M}_t]}{[\dot{M}_1]} + b_2S_t\exp\frac{[\dot{M}_t]}{[\dot{M}_1]} \\
\hat{\Omega}^y=1-(1-S)/(1+\pi^y_1\tau+\pi^y_2\tau^2) \\
\hat{\Omega}^k=1-(1-S)/(1+\pi^k_1\tau+\pi^k_2\tau^2) \\
\hat{\Omega}^h=1-(1-S)/(1+\pi^h_1\tau+\pi^h_2\tau^h) \\
\hat{\Omega}^u=1-(1-S)/(1+\pi^u_1\tau+\pi^u_2\tau^u) \\
\Omega_t = \chi_y\Omega^Y _t + \chi_k \Omega^K_t + \chi_h\Omega^H_t + \chi_l\Omega^L + \chi_u\Omega^u_t
\end{split}
\end{equation}
Any suggestions other than break the formula into two formulas?