in <span class="searchmatch">the</span> book : "How To Write A Book About <span class="searchmatch">The</span> <span class="searchmatch">Mandelbrot</span> <span class="searchmatch">Set</span>" by Claude Heiland-Allen Wolf Jung descibes <span class="searchmatch">the</span> test for drawing <span class="searchmatch">external</span> <span class="searchmatch">parameter</span> <span class="searchmatch">rays</span> :...
An algorithm to draw <span class="searchmatch">external</span> <span class="searchmatch">rays</span> <span class="searchmatch">of</span> <span class="searchmatch">the</span> <span class="searchmatch">Mandelbrot</span> <span class="searchmatch">set</span> by Tomoki KAWAHIRA. Archived from <span class="searchmatch">the</span> original <span class="searchmatch">on</span> 2011-07-17. Retrieved <span class="searchmatch">on</span> 2014-10-14. Interior...
sh # angle or <span class="searchmatch">external</span> <span class="searchmatch">parameter</span> <span class="searchmatch">ray</span> angle=63/33554432 # info from program Mandel by Wolf Jung http://mndynamics.com/indexp.html # <span class="searchmatch">The</span> angle 63/33554432...
<span class="searchmatch">The</span> corresponding <span class="searchmatch">parameter</span> <span class="searchmatch">rays</span> are <span class="searchmatch">landing</span> at <span class="searchmatch">the</span> root <span class="searchmatch">of</span> a satellite component <span class="searchmatch">of</span> period 8. It is bifurcating from period 4. draw_<span class="searchmatch">external</span>_<span class="searchmatch">ray</span>(image...
13/13 <span class="searchmatch">of</span> main cardioid <span class="searchmatch">landing</span> point <span class="searchmatch">of</span> above <span class="searchmatch">ray</span> = bifurcation point = root point <span class="searchmatch">of</span> component <span class="searchmatch">with</span> period 34 pair <span class="searchmatch">of</span> <span class="searchmatch">external</span> <span class="searchmatch">rays</span> landin <span class="searchmatch">on</span> <span class="searchmatch">the</span> root...
aproximated by <span class="searchmatch">external</span> <span class="searchmatch">rays</span> that land <span class="searchmatch">on</span> alfa fixed point. In <span class="searchmatch">Rays</span>Array there are description <span class="searchmatch">of</span> these <span class="searchmatch">rays</span>. // array <span class="searchmatch">of</span> turns Fill<span class="searchmatch">Rays</span>Array(iterMax);...
compute and draw <span class="searchmatch">external</span> <span class="searchmatch">rays</span> <span class="searchmatch">landing</span> <span class="searchmatch">on</span> <span class="searchmatch">the</span> fixed point alfa \n"); Compute<span class="searchmatch">Rays</span>( <span class="searchmatch">rays</span>, iPeriodChild, iterMax); SaveArray2PGMFile( <span class="searchmatch">rays</span>,...
sector is it. Color = number <span class="searchmatch">of</span> sector Interior target <span class="searchmatch">set</span> should be all inside Julia <span class="searchmatch">set</span> ( <span class="searchmatch">of</span> course not counting <span class="searchmatch">external</span> <span class="searchmatch">rays</span> that cross it and exterior...
z^2 + c <span class="searchmatch">parameter</span> c = 0.2606874359562527 , 0.0022716846399296 c is a root point between hyperbolic components <span class="searchmatch">of</span> period 1 and 30 <span class="searchmatch">of</span> <span class="searchmatch">Mandelbrot</span> <span class="searchmatch">set</span> combinatorial...
z^2 + c <span class="searchmatch">parameter</span> c = 0.2606874359562527 , 0.0022716846399296 c is a root point between hyperbolic components <span class="searchmatch">of</span> period 1 and 30 <span class="searchmatch">of</span> <span class="searchmatch">Mandelbrot</span> <span class="searchmatch">set</span> combinatorial...