Arts, Audio/Video Technology and Communications cluster
Game Development Pathway
Level 2. Intermidiate
Unity Game Design
Explore computer science fundamentals, from how computers work to programming in Scratch and Python.
About Course
Master Unity for game development
In “Unity: Game Design” students enhance their game development skills, using the Unity engine and C# programming. They interact with key tools — including physics engines, UI elements, 3D assets, and animations.
The course focuses on fundamental skills in game design and 3D modeling, readying students to build compelling, complex games. Practical experience in developing games equips them with a strong skill set for future creativity in the gaming field.
Skills
Skill-up approach
Unity game engine
Game design
Creating game animations
Programming in C#
3D modeling
Presenting games and sharing feedback
Developing game physics
Creating UI design
Syllabus
Step-by-step to the Result
1
Introduction to Unity development
Unity engine interface
Asset Store
Camera and prefabs
Project: creating a prefab
2
Working with UI
Designing adaptive and interactive interfaces
Project: visual Novel
3
Animations
Using animation toolbar
Managing the frame rate and curve mode
Project: animation with curves
4
Introduction to C# development
Basics of C# syntax
Project: prototype of a survival game
5
Animator. Create transitions in animation
Transitions between object’s animations
Project: prototype of a survival game
6
Physics in Unity
Rigidbody properties
Physic-based environment
Project: flying bird machine with obstacles
7
Skybox & Particle system
Adding effects and Skybox to the game
Project: a trebuchet with effects
8
3D modeling
Blender objects and geometry
Project: creating a set of models and export to Unity
9
Game Design
Game Design concept and principles
Project: “Roll and Move” game
Hands-on Projects
Case-based Portfolio
"Unity Game Design" final project
A “Maze Runner” puzzle platform game with multiple levels, simple character controls, enemies and power ups, animations and physics, according to the technical requirements.
Testimonials
What Our Students Think
Student learning with YaizY is more dynamic, engaging, and applicable to the real world! See what our students say about it!
Tech Requirements
Fully web-based learning for a seamless implementation
Hardware & Software & Internet Speed
PC/Laptop or Chromebook;
Web camera and Headset;
Stable Internet connection from 30 Mbit/s/
Web tools only
Unity Web tool;
Google Workspace
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