File: chui.strings

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illuminator 0.10.0-4
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/*
 * Translatable strings file generated by Glade.
 * Add this file to your project's POTFILES.in.
 * DO NOT compile it as part of your application.
 */

gchar *s = N_("Cahn-Hilliard User Interface");
gchar *s = N_("Simulation options");
gchar *s = N_("Simulation output");
gchar *s = N_("Open File");
gchar *s = N_("Save File");
gchar *s = N_("Save File");
gchar *s = N_("Run Simulation");
gchar *s = N_("Open/close simulation options window");
gchar *s = N_("Simulation Options");
gchar *s = N_("Open/close simulation output window");
gchar *s = N_("Simulation Output");
gchar *s = N_("Surface energy:");
gchar *s = N_("Interface thickness/dx:");
gchar *s = N_("Mobility:");
gchar *s = N_("Enter the surface energy");
gchar *s = N_("1.0");
gchar *s = N_("*");
gchar *s = N_("Enter the ratio of interface thickness to dx");
gchar *s = N_("1.0");
gchar *s = N_("*");
gchar *s = N_("Enter the mobility (diffusivity surrogate)");
gchar *s = N_("1.0");
gchar *s = N_("*");
gchar *s = N_("Model Parameters");
gchar *s = N_("Dimensionality:");
gchar *s = N_("Size:");
gchar *s = N_("Resolution:");
gchar *s = N_("2-D");
gchar *s = N_("3-D");
gchar *s = N_("Enter the edge length of the cube/square");
gchar *s = N_("1.0");
gchar *s = N_("*");
gchar *s = N_("Enter the number of grid points in each dimension");
gchar *s = N_("Discretization Options");
gchar *s = N_("Initial timestep size:");
gchar *s = N_("Time multiplier:");
gchar *s = N_("Maximum timestep size:");
gchar *s = N_("Number of timesteps:");
gchar *s = N_("Size of the first timestep");
gchar *s = N_("1.0E-3");
gchar *s = N_("*");
gchar *s = N_("The initial timestep will be multiplied by this each timestep until it reaches the maximum timestep size");
gchar *s = N_("1.0");
gchar *s = N_("*");
gchar *s = N_("Largest value the timestep can grow to");
gchar *s = N_("1.0E-3");
gchar *s = N_("*");
gchar *s = N_("Timestep number after which we're done");
gchar *s = N_("Time Stepping Options");
gchar *s = N_("Model Options");
gchar *s = N_("PETSc Options");
gchar *s = N_("Neat, but takes lots of screen space (and bandwidth if remote)");
gchar *s = N_("X Windows/Geomview");
gchar *s = N_("Adam's cool text (appears in simulation output, 2-D only)");
gchar *s = N_("Output text");
gchar *s = N_("Display Options");
gchar *s = N_("Transport:");
gchar *s = N_("Remote host name:");
gchar *s = N_("Enter the name of the remote host which will run the calcutations");
gchar *s = N_("zither");
gchar *s = N_("*");
gchar *s = N_("Check this to run the calculations on a different computer");
gchar *s = N_("Run on remote host");
gchar *s = N_("ssh");
gchar *s = N_("rsh");
gchar *s = N_("MPIrun command:");
gchar *s = N_("Enter the name of the mpirun command to use");
gchar *s = N_("mpirun");
gchar *s = N_("*");
gchar *s = N_("Number of processors:");
gchar *s = N_("Enter the number of processes to run with mpirun");
gchar *s = N_("Remote/Parallel Run Options");
gchar *s = N_("Misc. Options");
gchar *s = N_("Copyright 2002, 2003, 2004 Adam Powell");
gchar *s = N_("Cahn-Hilliard User Interface, or CHUI, was written by Adam Powell as a front end to the Phase Field Illuminator demo chts (Cahn-Hilliard timestepper).  It also serves as an example of how to write Glade front-ends for PETSc programs in general.\n"
              "\n"
              "CHUI is very much a work in progress, and many of the features don't quite work.  Feel free to file bug reports against the illuminator-demo package at http://bugs.debian.org/ .\n"
              "\n"
              "Click \"Run\" to start running the simulation.\n"
              "\n"
              "If you need further help, contact Adam Powell at hazelsct@mit.edu .");
gchar *s = N_("translator_credits");
gchar *s = N_("Load CHUI Options File");
gchar *s = N_("Save CHUI Options File");
gchar *s = N_("Simulation Output");
gchar *s = N_("0");
gchar *s = N_("Time Step:");
gchar *s = N_("Start: ");
gchar *s = N_("Final: ");
gchar *s = N_("0");
gchar *s = N_("0.0000E+00");
gchar *s = N_("0.0000E+0");
gchar *s = N_("Start: ");
gchar *s = N_("Start: ");
gchar *s = N_("Tolerance: ");
gchar *s = N_("Tolerance: ");
gchar *s = N_("0");
gchar *s = N_("Newton Residual:");
gchar *s = N_("KSP Residual:");
gchar *s = N_("Approx. progress to the end of the simulation");
gchar *s = N_("0.0000E+00");
gchar *s = N_("Approx. progress to finish timestep");
gchar *s = N_("5.0000E-04");
gchar *s = N_("0.0000E+00");
gchar *s = N_("5.0000E-04");
gchar *s = N_("Approx. progress to finish Newton iteration");