Add some more stuff
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@ -61,6 +61,11 @@ Nevertheless we include some microscopic properties.
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\todo{What is viscoelasticity? Show some graphs and \enquote{oral} explanation}
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\todo{What is viscoelasticity? Show some graphs and \enquote{oral} explanation}
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\begin{itemize}
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\item \textbf{Creep}:
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\item \textbf{Stress relexation}:
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\end{itemize}
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Generally modeled using differential equations involving the elastic modulus $E$, viscosity $\eta$, stress $\sigma$ and strain $\epsilon$.
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Generally modeled using differential equations involving the elastic modulus $E$, viscosity $\eta$, stress $\sigma$ and strain $\epsilon$.
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\cite{roylance2001} mentions these constitutive models:
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\cite{roylance2001} mentions these constitutive models:
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@ -123,7 +128,9 @@ Since viscoelastic behavior is inherently time-dependent, it will be a challenge
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\item \acrfull{cis} is an implementation of the \acrshort{cpm} in \acrshort{nastja} \cite{berghoff2020, herold2023}.
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\item \acrfull{cis} is an implementation of the \acrshort{cpm} in \acrshort{nastja} \cite{berghoff2020, herold2023}.
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\end{itemize}
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\end{itemize}
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\section{Lattice Models of Viscoelastic Materials}
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\section{Models of Viscoelastic Materials}
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\subsection{Chopard (Cellular Automaton)}
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\subsection{\acrfull{lbm}}
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\subsection{\acrfull{lbm}}
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