state exposion estimation
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@ -112,7 +112,7 @@ $$
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%\end{equation}
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%\end{equation}
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$$
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$$
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Thud for FMMD we needed to examine 720 failure mode scenarios, and for traditional FMEA
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Thus for FMMD we needed to examine 720 failure mode scenarios, and for traditional FMEA
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type analysis methods 19440.
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type analysis methods 19440.
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% In practical example followed through, no more than 9 components have ever been required for a functional
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% In practical example followed through, no more than 9 components have ever been required for a functional
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% group and the largest known number of failure modes has been 6.
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% group and the largest known number of failure modes has been 6.
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@ -123,7 +123,7 @@ type analysis methods 19440.
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\clearpage
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\clearpage
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Note that for double simultaneous failures the equation~\ref{eqn:fmea_state_exp} becomes
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Note that for double simultaneous failures the equation~\ref{eqn:fmea_state_exp} becomes
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equation~\ref{eqn:fmea_state_exp2} essentially making the order $N^3$.
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equation~\ref{eqn:fmea_state_exp2} essentially making the order $N^3$.
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The FMMD case is cubic within the functional groups only, not all the components in the system.
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The FMMD case (equation~\ref{eqn:anscen2}), is cubic within the functional groups only, not all the components in the system.
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\begin{equation}
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\begin{equation}
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@ -132,6 +132,10 @@ The FMMD case is cubic within the functional groups only, not all the components
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%(N^2 - N).cfm
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%(N^2 - N).cfm
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\end{equation}
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\end{equation}
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\begin{equation}
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\label{eqn:anscen2}
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\sum_{n=0}^{L} {fgn}^{n}.fgn.cfm.(fgn-1).(fgn-2)
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\end{equation}
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\end{document}
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\end{document}
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