| ... | ... | @@ -25,10 +25,11 @@ in NIRVANA: | 
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**(I)** User interfaces which demand to add or modify code. These are
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recognized by files ending on `User.c`:
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-   `configUser.c` -- definition of IC
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-   `configUser.c` -- definition of initial conditions (IC)
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-   `bcrhoUser.c`,`bcmUser.c`,`bceUser.c`,`bcetUser.c`,
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    `bcbUser.c`,`bcnXUser.c`,`bcCUser.c`,`bctfUser.c` -- user-defined BC
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    `bcbUser.c`,`bcnXUser.c`,`bcCUser.c`,`bctfUser.c` -- user-defined 
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    boundary conditions (BC)
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-   `viscosityCoeffUser.c`,`conductionCoeffUser.c`,`diffusionCoeffUser.c`
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    -- user-defined dissipation coefficients for fluid viscosity,
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| ... | ... | @@ -495,7 +496,7 @@ possible values or a numeric range. | 
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            numerical technique (equiv. to genuinely 2D-HLL in the
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            current implementation).
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    -   `_C.mhd_courant` (typical value: $\le 0.5$): CFL number in the
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    -   `_C.mhd_courant` (typical value: $<0.5$): CFL number in the
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        MHD timestep.
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-   `02` (`_C.viscosity_solver`, `_C.viscosity_courant`)
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| ... | ... | @@ -533,7 +534,7 @@ possible values or a numeric range. | 
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-   `07` (`_C.reactions_max_changeX`, `_C.reactions_max_changeT`)
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    -   `_C.reactions_max_changeX` (typical value: $\le 0.1$): allowed
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    -   `_C.reactions_max_changeX` (typical value: $<0.1$): allowed
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        maximal relative change of species number densities (or total
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        number density) in the time integration of the chemo-thermal
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        rate equations.
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| ... | ... | @@ -544,7 +545,7 @@ possible values or a numeric range. | 
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        number density (`SXN`=1 uses individual number densities;
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        `SXN`=0 uses the total number density).
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    -   `_C.reactions_max_changeT` (typical value: $\le 0.1$): allowed
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    -   `_C.reactions_max_changeT` (typical value: $<0.1$): allowed
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        maximal relative change in the temperature in the time
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        integration of the chemo-thermal rate equations.
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| ... | ... | @@ -581,7 +582,7 @@ possible values or a numeric range. | 
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        \mathtt{V}\cdot\mathtt{m}^{-1}\cdot\mathtt{A}^{-1}\cdot\mathtt{s}^{-1}$).
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        **Important:** The Gaussian unit system can be mimicked by
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        choosing a value $\mathtt{\_C.permeability\_rel}=10^7$ so that
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        choosing a value ${\tt \_C.permeability\_rel}=10^7$ so that
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        the magnetic permeability is $\mu=4\pi$.
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-   `02` (`_C.viscosity`, `_C.viscosity_coeff`)
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