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correction.lyx
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#LyX file created by tex2lyx 2.3
\lyxformat 544
\begin_document
\begin_header
\save_transient_properties true
\origin C:/Users/Yu-Tsung/eclipse-workspace/Erratum-Geometry-of-discrete-quantum-computing/
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% Textclass specific LaTeX commands.
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\newlength{\lyxlabelwidth} % auxiliary length
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% User specified LaTeX commands.
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%%% Definitions for theorem-like environments. Don't change them, and don't make new ones.
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\end_header
\begin_body
\begin_layout Itemize
3 lines after equation (40) replace this:
\end_layout
\begin_deeper
\begin_layout Quote
We can verify explicitly that unit-norm product states for
\begin_inset Formula $n=2$
\end_inset
,
\begin_inset Formula $p=\{3,7,11,19,\ldots\}$
\end_inset
occur with frequency
\end_layout
\end_deeper
\begin_deeper
\begin_layout Standard
\noindent
by this:
\end_layout
\begin_layout Quote
We can verify explicitly that the numbers of unit-norm product states for
\begin_inset Formula $n=2$
\end_inset
,
\begin_inset Formula $p=\{3,7,11,19,\ldots\}$
\end_inset
are
\end_layout
\end_deeper
\begin_layout Itemize
11 lines after equation (40) replace this:
\end_layout
\begin_deeper
\begin_layout Quote
Performing the computation using equation (40), we find maximally entangled states with frequencies for two qubits of
\end_layout
\end_deeper
\begin_deeper
\begin_layout Standard
\noindent
by this:
\end_layout
\begin_layout Quote
Performing the computation using equation (40), we find the numbers of maximally entangled states for two qubits to be
\end_layout
\end_deeper
\end_body
\end_document