nique name like in your example {0;0},{0;1},{0;2},{0;3} where each path contains 11 elements(curves,points,values,etc)
so if you want to restructure the structure first right click on path mapper and take create null mapping which reads your current path structure into the component
after that you can additional write on the left side to the existing path (i) as variable for the elements and then on the right side type in the structure you want to achieve
maybe {A;i}(B) so after that you have 11 paths where each have 3 elements
hope that helps…
tName_FinalProject_PartD.pdf
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each circle's border, let us say 1.0
3) So, the curve will end up with 5 points, in each point will have a circle, each circle will have a different Radius, but the distance in between the borders of each circle is always the same = 1.0 in this case.
4) The end result list here would be like this to evaluate a curve with these values and find the points on the curve:
List = 1, 5, 11, 19 etc If I use these values to eval a line, I will get the perfect points where I can draw the circles.
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1) to each length. For example you have a length of ten and you create a domain from 9 to 11. later you want to group all lines by as less as possible domains.
If you have a look to the image...you see 6 lines and their red dotted ranges. to group them by the domain of 3 and 5 would be the best result with the less domains. (here 2)
if you would use the domain of line 0,1 or 3 you could not include line 4 and you would have 3 instead of just 2 groups.....
later on it is important for me to group as much as possible lines in less as possible domains.
I hope this is somehow understandable.…
Added by horst Becker at 11:15am on November 2, 2013
here are 11 numbers (0 to 10), and a 'step' of 42 (0 to 42 to 84), and I need to be able to 'cap' the number of times the 11 numbers are added, for example 3 for the list above.
I'm sure this is simple, and I'm kicking myself that I can't figure it out for myself, so any help would be greatly appreciated!…
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(distance from Spine to Profile)
4) Create Circles at each floor
5) Rotate Each Floor by twisted amount
(according to height of floor)
6) Divide each floor by number of Flutes
7) Flip Matrix of Flute Points (version 0.7)
(if using v0.6 then search flip matrix on site for method)
(Rows to Columns)
8) Interpolate Curve through Flute Points
9) Mirror Flute Curves
10) Create display grid
11) Make a vector 2Pt from the floor centre
to the corresponding display point…