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Published: 2014-04-11 15:59:06 +0000 UTC; Views: 689; Favourites: 22; Downloads: 10
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Description
The very same motive as the as but with another color map and somewhat other coloring method (Continuous Potential). For more info read the Artist's Comments under the thumbnailed motive
Software: Ultra Fractal.
Formula:Cubic Parameterspace3 in the sp3-module written by my dear friend Greenseng here at DeviantART. All his modules, as well as mine can be downloaded from here.
Below the parameter file, play and have fun
CubicBorders {
fractal:
title="Cubic Borders" width=800 height=600 layers=1
credits="Ingvar Kullberg;4/9/2014"
layer:
caption="CCL+SetBorders" opacity=100 mergemode=hardlight
method=multipass
mapping:
center=0.5919140625/0.1530078125 magn=8.86273152155097802
formula:
maxiter=10000 filename="sp3.ufm" entry="CubicParameterspace3"
p_PlottedPlane="4.(a-imag,b-real)" p_M=CCL p_SetBorders=yes
p_hide=yes p_areal=0.1 p_aimag=0.0 p_breal=0.0 p_bimag=0.1
p_xrot=0.0 p_yrot=0.0 p_xrott=0.0 p_yrott=0.0 p_zrot=0.0
p_LocalRot=no p_diff=no p_bailout=100.0 p_dbailout=1E-6
inside:
transfer=none
outside:
transfer=linear filename="spr.ucl" entry="ContinousPotential"
p_auto=yes p_auton=2.0 p_n=2.0 p_numfact=3.0 p_scale=1.0 p_smooth=no
p_epsilon=0.5 p_illustr=no p_limiton=no p_limit=0.1 p_index3=0.0
p_index1=0.99 p_index2=0.0 p_speed=0.5 p_acc=1.0 p_clog=yes
p_power=3.0 p_reversed=no p_test=no p_testvalue=0.7 p_index4=0.29
gradient:
smooth=yes rotation=-34 index=35 color=3158085 index=135
color=16769274 index=253 color=20735 index=-34 color=9043968
opacity:
smooth=no index=0 opacity=255
}
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Comments: 9
scootnoodles [2014-04-30 06:10:01 +0000 UTC]
You always make me smile with your wonderful fractals...
👍: 0 ⏩: 1
FractalMonster In reply to Greenseng [2014-04-20 16:47:24 +0000 UTC]
Yeah, a little bit deformed Mandelbrot structures
👍: 0 ⏩: 1
Greenseng In reply to FractalMonster [2014-04-21 20:05:55 +0000 UTC]
It is the structures away from the Mandelbrots that I see as interesting.
Take the Mandelbrot down to the right. Follow the antenna upwards.
You will pass some minibrots and then it ends with a big black blob.
That is interesting. A sort of Julialike structure, maybe?
👍: 0 ⏩: 1
FractalMonster In reply to Greenseng [2014-04-21 20:14:37 +0000 UTC]
Yeas, the blobs have the shape of (1-periodic) quadratic Julia sets as they are situated inside the cardioid of the other subset See especially the illustrations in article 18 in my chaotic series
Thank you so much
👍: 0 ⏩: 0