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The 16 dimensional Nonic parameter space.

*a_real = #pixel (horizontal before being rotated 90 degrees counter clockwise)
*a_imag = 0
*b_real = 0
*b_imag = 0.7
*c_real = 0
*c_imag = -0.7
*d_real = 0
*d_imag = 0.7
*e_real = 0
*e_imag = -0.7
*f_real = 0.7
*f_imag = 0
*g_real = -0.7
*g_imag = 0
*h_real = 0
*h_imag = #pixel (vertical before being rotated 90 degrees counter clockwise )

The motive is drawn with respect to Nonic Connectedness Locus (NCL), that is the set which is common to all the subsets, M1 - M8. Taken parameter seeds from the black areas using Switch Julia, five rise to connected (disk-like) Julia sets. Hence the name ( Nonic Connectedness Locus).

Software: Ultra Fractal.
Color routine: Continuous Potential Method (CPM).
Formula: Nonic 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 :)

GoldenPathAcrossTheRedSea {
fractal:
title="Golden Path across the Red Sea" width=640 height=480 layers=1
credits="Ingvar Kullberg;9/8/2012;Stig Pettersson;3/13/2011"
layer:
caption="Layer 1" opacity=100 mergemode=difference method=multipass
mapping:
center=1.16728714765/0 magn=11.591443 angle=270
formula:
maxiter=1000 filename="sp3.ufm" entry="NonicParameterspace3"
p_PlottedPlane="15.(a-real,h-imag)" p_M=NCL p_SetBorders=no
p_hide=yes p_areal=0.0 p_aimag=0.0 p_breal=0 p_bimag=0.7 p_creal=0
p_cimag=-0.7 p_dreal=0 p_dimag=0.7 p_ereal=0 p_eimag=-0.7
p_freal=0.7 p_fimag=0.0 p_greal=-0.7 p_gimag=0.0 p_hreal=0.0
p_himag=0.0 p_xrot=0.0 p_yrot=0.0 p_xrott=0.0 p_yrott=0.0
p_xrotu=0.0 p_yrotu=0.0 p_xrotv=0.0 p_yrotv=0.0 p_xrotr=0.0
p_yrotr=0.0 p_xrots=0.0 p_yrots=0.0 p_xrota=0.0 p_yrota=0.0
p_xrotb=0.0 p_yrotb=0.0 p_xrotc=0.0 p_yrotc=0.0 p_xrotd=0.0
p_yrotd=0.0 p_xrote=0.0 p_yrote=0.0 p_xrotf=0.0 p_yrotf=0.0
p_xrotg=0.0 p_yrotg=0.0 p_xroth=0.0 p_yroth=0.0 p_zrot=0.0
p_LocalRot=no p_diff=no p_bailout=1000.0 p_dbailout=1E-6
inside:
transfer=none
outside:
transfer=sqrt filename="spr.ucl" entry="ContinousPotential"
p_auto=yes p_auton=2.0 p_n=1.0 p_numfact=1.0 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=9.0 p_reversed=no p_test=no p_testvalue=0.7 p_index4=0.29
gradient:
smooth=yes rotation=43 index=56 color=393395 index=83 color=15794175
index=95 color=1907744 index=150 color=16769274 index=194
color=2445567 index=-1 color=976127
opacity:
smooth=no index=0 opacity=255
}

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September 9, 2012
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:iconteddybearcholla:
=teddybearcholla Sep 14, 2012  Hobbyist General Artist
Kool!!! :D
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:iconfractalmonster:
Thanks again, Barbara :hug:
Reply
:icongreenseng:
Interesting almost rectangular shapes in the surrounding.

:ekud:
Reply
:iconfractalmonster:
That may be due to the influences of the other subsets, although SetBorders is not enabled. Here [link] is another example of that from Quartics ;)

.. and you, as maybe often, prefer the less popular of two images, the other being the grand finale ;)
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