morning edit
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@ -54,7 +54,7 @@ build hierarchical bottom-up models of failure mode behaviour.
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%for a given type of part can be obtained from standard literature~\cite{mil1991}
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%for a given type of part can be obtained from standard literature~\cite{mil1991}
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%\cite{mech}. %The failure modes for a given component $K$ form a set $F$.
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%\cite{mech}. %The failure modes for a given component $K$ form a set $F$.
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\label{defs}
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%%
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%%
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%% Paragraph component and its relationship to its failure modes
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%% Paragraph component and its relationship to its failure modes
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%%
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%%
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@ -1190,16 +1190,14 @@ chosing {\fg}s and working bottom-up this hierarchical trait will occur as a nat
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The UML models thus far in this
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The UML models thus far in this
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\ifthenelse {\boolean{paper}}
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\ifthenelse {\boolean{paper}}
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{
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{
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paper
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%paper
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}
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{
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chapter
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}
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have been used to develop the data relationships required to perform FMMD analysis.
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have been used to develop the data relationships required to perform FMMD analysis.
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This section re-organises and rationalises the UML model.
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This section re-organises and rationalises the UML model.
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We want to be able to use {\dcs} in functional groups.
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It therefore makes sense for {\dc} to inherit {\em component}.
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The re-factored UML diagram is shown in figure \ref{fig:refactored_uml}.
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GO THROUGH INHERITANCE RELATIONSHIPS ETC
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\begin{figure}[h]
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\begin{figure}[h]
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\centering
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\centering
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@ -1209,6 +1207,12 @@ GO THROUGH INHERITANCE RELATIONSHIPS ETC
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\label{fig:refactored_uml}
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\label{fig:refactored_uml}
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\end{figure}
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\end{figure}
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}
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{
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% chapter
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The terms used in FMMD and the UML data model are refined in the
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chapter \ref{defs}.
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}
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\section{Conclusion}
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\section{Conclusion}
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