IF the platform is "unsuitable" (or there's others more suitable) then disproportional amount of effort is obviously required for the same sort of result (or "similar"). And well ... er ... if the design goal is solid modelling ... chances are that a surface modeller MAY classify as unsuitable (but may not depending on the case).
Given the opportunity: Personal data: strictly AEC sector, AECOSim/Microstation (25 years, main BIM/General CAD purpose app) + various vertical Bentley Systems AEC apps + Generative Components (~10 years, main Parametric app) + CATIA/NX (20 years, main MCAD app) + Quest3D (~10 years, main VR app) + ... + you name it.
UGLY news: I run a practice > this means that I'm used in evaluating/addressing problems having TEAMS in mind, budget, alternatives, deadlines, clients, study guarantees, claims, clauses ... > this means that I'm often very bad/off-topic if an one man show task requires some opinion/solution/workflow.
Anyway ...
... with regard your issue I'll provide an indicative approach after this w/e ... but chances are that would be carried over exclusively without native components.
best, Peter
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Or if this doesn't work the the lines who's end points Y value doesn't match
5) join all remaining curves. this gives you polylines for each row.
6) From these you can extract control points that will be on differrent branches
i would demonstrate this but i'm stuck watching the wedding at a friend's and until mcneel makes a rhinoid with gh app you'll have to wait 'til later…
ions - essentially Shape Changing. Pufferfish mainly uses parameters and factors for inputs for more custom control over operations like tweens and grids as opposed to grasshoppers usual division count inputs. These components are accompanied by support components which are useful methods for tween / blend / morph / lattice operations such as making curves compatible, a custom curve graph mapper, and a multi-threaded morph to twisted box. In addition, there are extra components which simplify some common grasshopper operations such as testing for equality within a tolerance and rounding to nearest numbers. Please email me if you find any bugs. Works with Grasshopper for Rhino 5, Rhino 6, Rhino 7 WIP, and Rhino Mac.
Instagrams: @ekimroyrp & @designmorphine
Download:www.food4rhino.com/app/pufferfish…
Added by Michael Pryor at 2:23am on October 17, 2017
glass panel).
2. This actually means that the parts on duty they don't differ that much. Meaning that we can use an "average" size (and "local" topology) acting as the Jack for all trades.
3. Meaning that we can effectively solve the abstract topology with an abstract app the likes of GH and then place in properly defined coordinate systems all the real-life bits and nuts ... closely "emulating" a pro solution (that could "adjust" the parts as well).
4. This means that one particular C# needs more lines of code since as it is it defines cable axis on a per nod to node basis ... but in fact these are defined as the min segment between curves (circles to be exact).
5. Additionally the end part of each strut differs depending on how many pairs of stabilizing cables are used (either 2 or 1). Meaning some lines of code more for defining the proper coordinate systems for the instance definitions.
6. This is the reason that I've postponed mailing to you the 4 horsemen (because PRIOR finishing the whole you MUST define what parts to use: the classic bottom-top design approach).
But in order to receive the Salvation (aka: Apocalypse) you MUST answer correctly to a simple puzzle:
Provided that money is no object, pick your car:
1. Ferrari 245 (Less is more)
2. Lancia Stratos (Lethal).
3. Cobra 427 (Men only)
4. Ford GT40 (Mama mia)
5. Ariel Atom (Mental)
6. Aston Zagato GTB4 (Sweet Jesus)
7. Fulvia HF Fanalone (THE racer)
8. Lambo Miura (Enough said)
9. Lotus Elise (Just add lightness)
10. Alfa Romeo 8C Competizione (In red)…
Rhino, similar to Attribute User Text tab in Rhino 6 but with some enhanced features. Any bug or error report would be appreciated.
http://www.food4rhino.com/app/elefront…