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 3. `example_3p_ffs_monolithic` shows the implementation of the Cahn-Hilliard Navier-Stokes equations for two fluid phases and a solid phase. The solid phase can grow and shrink due to precipitation and dissolution of ions in fluid phase 1. In contrast to the second example this example is solved monolithically to showcase the different options that dune-phasefield provides. In the example a solid nucleus grows due to precipitation while an attached second fluid phase moves due to a lid-driven cavity flow.
 
 Each example consists of a `.ini` file that specifies options, a `.cc` file that handles grid generation and loads the options file, and a `driver.hh` file that runs the main loop after creating the function spaces and grid operators with appropriate initial and boundary conditions.
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+Repository
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+The current version of dune-phasefield can be found at https://gitlab.mathematik.uni-stuttgart.de/vonwolls/dune-phasefield