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Commit 4cfd210e authored by Michael Kohlhase's avatar Michael Kohlhase
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changing_the_optional_value_of_\defi_and_friends_from_the_name_to_a_keyval_argument

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\begin{mhmodnl}{BandstructureParameters}{en} \begin{mhmodnl}{BandstructureParameters}{en}
\begin{definition} \begin{definition}
The \defiii[conduction-band-DOS]{effective}{density}{of state The \defiii[name=conduction-band-DOS]{effective}{density}{of state
conduction bands} usually denoted by $\DOSConductionBand$ is a parameter of the conduction bands} usually denoted by $\DOSConductionBand$ is a parameter of the
electronic band structure of a semiconductor which describes the dispersion of the electronic band structure of a semiconductor which describes the dispersion of the
energy in the conduction band with the wave vector assuming parabolic energy bands. It energy in the conduction band with the wave vector assuming parabolic energy bands. It
...@@ -8,7 +8,7 @@ ...@@ -8,7 +8,7 @@
\end{definition} \end{definition}
\begin{definition} \begin{definition}
The \defiii[valence-band-DOS]{effective}{density}{of state valence bands} usually The \defiii[name=valence-band-DOS]{effective}{density}{of state valence bands} usually
denoted by $\DOSValenceBand$ is a parameter of the electronic band structure of a denoted by $\DOSValenceBand$ is a parameter of the electronic band structure of a
semiconductor which describes the dispersion of the energy in the valence band with the semiconductor which describes the dispersion of the energy in the valence band with the
wave vector assuming parabolic energy bands. It can be defined by the corresponding wave vector assuming parabolic energy bands. It can be defined by the corresponding
......
...@@ -19,9 +19,9 @@ ...@@ -19,9 +19,9 @@
\begin{definition} \begin{definition}
The \defii{gas}{constant} $\GasConst$ (or $\GasConst[bar]$; also known as the The \defii{gas}{constant} $\GasConst$ (or $\GasConst[bar]$; also known as the
\adefii[gas-constant]{molar}{molar}{constant}, \adefii[name=gas-constant]{molar}{molar}{constant},
\adefii[gas-constant]{universal}{universal}{constant}, or \adefii[name=gas-constant]{universal}{universal}{constant}, or
\defiii[gas-constant]{ideal}{gas}{constant}) is the constant of proportionality that \defiii[name=gas-constant]{ideal}{gas}{constant}) is the constant of proportionality that
happens to relate the energy scale in physics to the temperature scale, when a mole of happens to relate the energy scale in physics to the temperature scale, when a mole of
particles at the stated temperature is being considered. particles at the stated temperature is being considered.
......
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