% Test ausführen
%Anzahl der Schritte oder wenn groeßer als 40 der Elemente
-steps = 15^4;
+steps = 10^4;
%Art der Berechnungen
-type = [1];
-zeta = { [2 2 2] [2 2 2]};
+type = [1 3 2];
+zeta = { [2 2 2] [2 2 2] [2 2 2]};
%% Quad adaptiv anisotrop
%Datei
-file = 'exmpl_3DFichCube';
+% file = 'exmpl_3DFichCube';
% file = 'exmpl_3DCube';
-% file = 'exmpl_2DQuad';
+file = 'exmpl_2DQuad';
%Adaptiv
theta = 0.5;
%Anisotrop
typeN = int2str(type);
steps = size(a,1);
-A_plots({['meshSave/' fileo int2str(steps)]},...
- ['plots/' fileo ...
- int2str(steps)]);
+% A_plots({['meshSave/' fileo int2str(steps)]},...
+% ['plots/' fileo ...
+% int2str(steps)]);
%% Bla bla
% compute('exmpl_2DQuad', steps, zeta, type, 0.5, 0.5, 1, 'tsAAvcon_')