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| author | mjkwiatkowski <mati.rewa@gmail.com> | 2026-06-09 10:27:27 +0200 |
|---|---|---|
| committer | mjkwiatkowski <mati.rewa@gmail.com> | 2026-06-09 10:27:27 +0200 |
| commit | 6478e924af94f1bd2fba62a8a24d2d0935470fe5 (patch) | |
| tree | cd8ee1681f392801c609d6f19a77992f63df57fb /content | |
| parent | 311bec27e2c55cb789b584b5350a95270db94d8d (diff) | |
style: removed an unnecessary extra page
Diffstat (limited to 'content')
| -rw-r--r-- | content/intro.tex | 5 |
1 files changed, 2 insertions, 3 deletions
diff --git a/content/intro.tex b/content/intro.tex index edf2915..57d3003 100644 --- a/content/intro.tex +++ b/content/intro.tex @@ -80,7 +80,7 @@ We propose that digital twinning can be enhanced by integrating predictive analy \section{Research Questions}\label{s:research-questions} -\emph{Main Research Question:} How to define, design and evaluate a predictive \gls{dcdt}?\\ +\emph{Main Research Question:} How to enable predictive analytics in datacenters through digital twinning?\\ \noindent We divide the problem of designing a predictive \gls{dcdt} into three research questions: \begin{enumerate}[label=\emph{RQ\textsubscript{\arabic*}}, align=left, itemsep=0pt] @@ -190,8 +190,7 @@ In Chapter \ref{s:background}, we describe the relevant background information. In Chapter \ref{s:design}, we present the design of \gls{dcdt}. In Chapter \ref{s:evaluation} we evaluate a prototype of the system and validate it against the set of functional and non-functional requirements. In Chapter \ref{s:conclusion} we conclude the thesis with a summary of contributions and potential future work. -\newpage -\begin{figure} +\begin{figure}[b!] \centering \includegraphics[width=\linewidth]{images/thesis_structure.pdf} \caption{Structure of this thesis, with suggested reading flows.} |
