30 hours of practical, hands-on learning
4 comprehensive modules taught by industry professionals
Flexible learning options with high-quality resources
Receive a completion certificate
Engage in real-world projects for hands-on experience
What we’re going to teach you
Upcoming sessions
Introduction to Rhino
Explaining Rhino User Interface
Navigation shortcuts (Pan, Zoom, Orbit, etc)
Geometry Types (Nurbs Vs Mesh)
Understanding how Command-Line works
Handling Viewports in Rhino
Understanding the process of Saving and different File Types
Insert & Modify Background Image
Line Command & Options
Creating Polylines
Understanding Control Point Curve
Points On Tool
Curve Modification Techniques
Mirror Command
Measuring Tool
Understanding Extrude Curve Command & Types
Loft Command & Options
Creating Planar Surface
Creating Surface by Points
Creating Primitive Objects
Types of Offset command & Options
Understanding of Blend tool & types
Solid Editing using Boolean Operations
Extrude Surface
Trim & Split command
Make 2D
Sections
Quick Print
Creating & Modify Materials
Understanding Rendering Options
Introduction to parametric design
Understanding the user interface of Grasshopper and visual programming theory
Understand the components and types of networking
Linking and importing and exporting geometry from Rhino Rhino geometry results back
Knowledge of the main data types (numbers, fields, vectors, points, curves, surfaces, prep)
Manage lists and trees of data: simple tasks lists, extracting data in lists and trees
Operations with vectors and points
Using colored gradient according to the parameters
Strategies of planar space subdivision: Voronoi
Working with curves and create surfaces: loft, surface from points, attractors
Surface subdivision with Lunchbox: triangular, hex, diagrid
Number Sequences (Series, Range, Random)
Mathematical Expressions
Data Dynamic Remapping (graph mapper)
Curves, surfaces, and points and their properties (domain, parameters)
Data Tree, Path, Items, Index, and Matrix
Proximity Based Transformation (attractors)
Grids, Image Sampling
Introduction to Panelling for Surfaces
Surface Mapping, Isotrim and box morph
Mesh Modelling and Topology
Data Visualization (Tags, Gradient Colours)
Communicating with Excel through CSV file
Introduction to Galapagos (genetic algorithm)
Successful completion of the Rhino Grasshopper course will help you to:
1
Acquire a solid foundation in Rhino 3D and Grasshopper basics
2
Build expertise in essential modeling techniques using Rhino Grasshopper
3
Master Rhino functions and implement them in practical situations
4
Design intricate patterns and structures
5
Create 3D models using Rhino Grasshopper
Overall ratings by our students
Learn now, pay later
Dive into your course now and pay in installments


Our Rhino Grasshopper course in Bahrain guides professionals through navigating the interface, understanding key components, and performing basic operations. Professionals will gain the skills to work with data lists and tree structures, allowing them to create intricate, parametric designs using adaptable algorithms.
Grasshopper is a visual programming language and plugin for Rhino 3D, used for creating complex parametric designs through algorithms. It allows designers to automate and customize their design processes, enabling them to create intricate models, patterns, and structures that are difficult to achieve with traditional modeling techniques.
Our Grasshopper course is designed to accommodate beginners, including those without prior experience in Rhino. You will receive a comprehensive introduction to Rhino 3D and its interface, allowing you to build the necessary foundation before diving into Grasshopper.
By completing the Rhino Grasshopper course, you’ll gain advanced 3D modeling and parametric design skills that are highly valued across various industries like architecture, industrial design, and jewelry design. These skills will give you a competitive edge in the job market and open up opportunities to work on complex design projects.
Throughout the course, you’ll work on real-world projects that involve creating intricate, parametric designs using Grasshopper and Rhino 3D. You can apply techniques such as working with data trees, designing complex patterns, and automating design processes, ensuring you are well-prepared to handle professional design challenges.