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Deze leraar antwoordt snel. Dit getuigt van een goede dienstverlening naar haar of zijn leerlingen toe.
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Sinds maart 2017
Leraar sinds maart 2017
Grasshopper: Interface and Basic Workflow Concepts
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Van 43.1 $ /h
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OBJECTIVES
* Learn the Grasshopper work environment
* Interface and basic workflow concepts
* Easy to follow grasshopper definition

TARGETED SKILLS
At the end of this training, trainees will be able to understand the work environment in grasshopper, the logic behind a grasshopper definition and to build a parametric volume.

PEDAGOGICAL METHODS
Theory - covering all the commands used.
Exercises - a step by step evolution of a Grasshopper script from basic commands to a parametric volume.
PDF handout with the commands used.

ABOUT GRASSHOPPER
It is a visual programming software, runs under Rhinoceros 3d as a plugin but requires little experience in Rhinoceros.


ABOUT ME
This class is inspired from my experience as a guest lecturer at Timisoara Architecture Faculty
Extra informatie
-bring laptop
- have Rhinocerso 3d v5 and Grasshopper installed.
Locatie
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Online vanuit Roemenië
Over
I have studied Architecture and slightly out of context motorcycle mechanics. Currently my field of interest is new media art with experience in parametric and computational design, motion graphics and visual programming.
Opleiding
Universitatea „Politehnica” din Timișoara - Architecture (FAT)
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IELTS Academic level
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Leservaring
Guest lecturer - Digital Tools in Architecture @FAT

Arhitectura 4/5 2015 - Digitalism
Curating the content of Arhitectura 4/5 2015 with the title: Digitalism. - a special number of the magazine, covering all the fields of digital architecture.

Winner of BETA (bienala timişoreană de arhitectură) 2016 competition | Category: Public Space with Hidden Nest - a parametric wood structure

Autodesk Autocad Certified Trainer
Leeftijd
Tieners (13-17 jaar oud)
Volwassenen (18-64 jaar oud)
Senioren (65+ jaar oud)
Niveau van de leerling
Beginner
Duur
120 minuten
De les wordt gegeven in
Engels
Hongaars
Roemeens
Beschikbaarheid typische week
(GMT -05:00)
New York
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Online via webcam
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
OBJECTIVES
* Learn the Rhinceros work enviroment
* Key 2d drawing comands
* Organic shapes using surfaces
* Modifying NURBS surfaces

TARGETED SKILLS
At the end of this training, trainees will be able to build a 3d model of an organic shape, similar to a sea shell.

PEDAGOGICAL METHODS
Theory - covering all the commands used
Exercises - a step by step evolution from basic shapes to the final project.

ABOUT RHINOCEROS 3D
Rhino is a computer modeling software with an easy to grasp interface and a rapid learning curve. Best used to generate free forms in architecture of industrial design.

ABOUT ME
This class is inspired from my experience as a guest lecturer at Timisoara Architecture Faculty
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Cyril
Course description:

This comprehensive course is designed for architects, designers, engineers, and creatives who are passionate about 3D modeling and parametrics. You will learn to master Rhino 3D, a powerful 3D modeling software, as well as Grasshopper, a parametric plugin that allows you to generate complex shapes using visual programming.

Course objectives:

Learn how to use Rhino's basic and advanced tools to create accurate and detailed 3D models.
Master the concepts of parametric modeling using Grasshopper to generate dynamic and adaptive shapes.
Understand how Rhino and Grasshopper integrate to automate design processes and improve efficiency.
Create real-world projects ranging from designing simple geometric shapes to complex, custom structures.
Course content :

Introduction to Rhino 3D: Interface, basic commands, and navigation in the 3D workspace.
Advanced modeling techniques: Creation of surfaces, solids and networks of curves.
Introduction to Grasshopper: Understanding the logic of visual programming and its applications in parametric design.
Parametric Design: Using Grasshopper to create complex shapes based on variables and constraints.
Practical application: Completing a complete project by combining Rhino and Grasshopper, from design to completion.
Prerequisites: No specific prerequisites are necessary for this course. However, a basic knowledge of 3D design or modeling software is a plus.

Target audience :

Architects and designers wishing to deepen their skills in 3D modeling and parametric design.
Engineers and technicians interested in design automation and the integration of digital solutions into their creative process.
Methodology: The course combines theoretical explanations with practical exercises and case studies. Question-and-answer sessions and workshops will allow participants to work on personal projects throughout the training.
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arrow icon previousarrow icon next
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Cyril
Course description:

This comprehensive course is designed for architects, designers, engineers, and creatives who are passionate about 3D modeling and parametrics. You will learn to master Rhino 3D, a powerful 3D modeling software, as well as Grasshopper, a parametric plugin that allows you to generate complex shapes using visual programming.

Course objectives:

Learn how to use Rhino's basic and advanced tools to create accurate and detailed 3D models.
Master the concepts of parametric modeling using Grasshopper to generate dynamic and adaptive shapes.
Understand how Rhino and Grasshopper integrate to automate design processes and improve efficiency.
Create real-world projects ranging from designing simple geometric shapes to complex, custom structures.
Course content :

Introduction to Rhino 3D: Interface, basic commands, and navigation in the 3D workspace.
Advanced modeling techniques: Creation of surfaces, solids and networks of curves.
Introduction to Grasshopper: Understanding the logic of visual programming and its applications in parametric design.
Parametric Design: Using Grasshopper to create complex shapes based on variables and constraints.
Practical application: Completing a complete project by combining Rhino and Grasshopper, from design to completion.
Prerequisites: No specific prerequisites are necessary for this course. However, a basic knowledge of 3D design or modeling software is a plus.

Target audience :

Architects and designers wishing to deepen their skills in 3D modeling and parametric design.
Engineers and technicians interested in design automation and the integration of digital solutions into their creative process.
Methodology: The course combines theoretical explanations with practical exercises and case studies. Question-and-answer sessions and workshops will allow participants to work on personal projects throughout the training.
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