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GAME DEV - PYTHON AI EDITION

STAR WARS - CHANNEL THE FORCE - Python AI Edition

Ages 13 - 17

The Force isn’t magic - it’s intelligence in action. 


The galaxy is on the brink of chaos. Jedi, Sith, and battle droids don’t just fight; they analyze, predict, and adapt. Teens design intelligent characters whose decisions are guided by the Force itself. Players channel the Force by programming AI-driven behaviour systems that control combat strategy, awareness, and response. Every choice influences the balance between light and dark.

Aug 24th - Aug 28th, 2026

9:00 am – 4:00 pm

WEEK 9

$660.00 + HST

Ages 13 - 17

EARLY BIRD DISCOUNT

ENDS MARCH 31st

$580.00 + HST

SIBLING DISCOUNT

$25.00 OFF

Extended Care (OPTIONAL)

8:00 AM – 9:00 AM

4:00 PM – 5:00 PM

$120.00 HST

GAME DEV - PYTHON AI EDITION

STAR WARS - CHANNEL THE FORCE - Python AI Edition

In Star Wars: Channel the Force, teens in AI become game developers and system designers, building a Star Wars–inspired game using Python while learning how intelligent behaviour is designed in modern games. 

Students design AI-driven systems that react, adapt, and make decisions just like Jedi, Sith, and battle droids responding to the Force. Teens program character behaviour, combat logic, and strategic decision-making that evolves based on game state and player actions.

Ai-teen-camps-python-Starwars

This camp blends storytelling, game development, and foundational AI concepts, giving teens a deeper understanding of how intelligence is designed in interactive systems.

Solution Topic

Through immersive storytelling and hands-on coding, your teen learns how AI-driven systems power modern games. 


Your teen will explore: 

  • What exciting characters/obstacles will be infused in your game? 

  • Will you power up and gain special powers, or will you lose it all together?.

Design, Experiment, Build

Kids will: 

  • Learn the game design process 

  • Research, ideate and brainstorm Star Wars game ideas 

  • Learn the fundamentals of coding using Python 

  • Understand how AI controls enemy behaviour and difficulty.

AI in This Camp This camp 


In the Python Game Development AI Edition camp, Teens are introduced to foundational AI systems used in games, focusing on

  • Decision trees and rule-based logic 

  • State machines for character behaviour 

  • Player-aware decision-making 

  • Adaptive gameplay systems 

Teens learn how intelligence in games emerges from logic, data, and structured decision-making, not just animation or randomness.

Camp Learning Journey

Day 1: The Galaxy Awaits  - Python & Game Architecture:


Teens set up their Star Wars–inspired game framework, learning Python fundamentals, game loops, player input, and rendering. Students design the core structure that will support AI-driven behaviour.

Day 2: Characters & States - From Scripts to Systems 


Students program characters and explore state-based behaviour (idle, patrol, attack, retreat). Teens learn how AI systems shift behaviour based on game conditions.

Day 3: Channelling the Force  - AI Decision-Making 


Teens dive into AI decision frameworks, including Conditional logic, Decision trees, and Rule-Based behaviour. Characters begin responding intelligently to proximity, health, and player choices.

Day 4: Adaptive Combat & Strategy 


Students enhance AI behaviour with adaptive systems, such as: Smarter enemy targeting, Strategic retreat or aggression, and Dynamic difficulty adjustments. Teens see how AI creates challenge and realism in gameplay.

Day 5: Polish, Balance & Jedi Showcase 


Students refine gameplay, balance AI behaviour, and debug systems. Camp concludes with a Jedi Game Showcase, where teens present their games and explain how their AI systems work.

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What will you learn?

Python programming for games 


Game loops and architecture 


AI behaviour systems 


Decision trees and state machines 


Adaptive difficulty and strategy 


Debugging and optimization

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What will you make?

A Star Wars–inspired Python game, with Intelligent characters that react and adapt


 Combat and strategy systems driven by AI logic


 A complete game project tthat eens can extend

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What will you take?

Full access to your Python game and source code 


Experience designing AI-driven systems 


Strong foundations in AI for interactive applications 


Increased confidence in coding complex projects

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Friday Fun Day

Camp wraps with a Jedi Game Showcase, where teens demo their games, explain how their AI systems make decisions, and celebrate their growth as AI game developers.

Skills gained

I'm a paragraph. Click here to add your own text and edit me. It's easy.

I'm a paragraph. Click here to add your own text and edit me. It's easy.

I'm a paragraph. Click here to add your own text and edit me. It's easy.

AI & Computer Science 

  • AI decision-making frameworks 

  • Systems and strategic thinking 

Programming & Engineering 

  • Coding fundamentals using Python

  • Game system architecture 

  • Debugging complex logic 

Future-Ready Skills 

  • Problem-solving 

  • Logical reasoning 

  • Technical communication`

SKILLS GAINED

Why does this camp matter?

Artificial Intelligence plays an increasingly important role in the design of modern games, simulations, and interactive systems. From adaptive difficulty in games to training simulations and autonomous systems, AI logic determines how systems respond, learn, and challenge users. Understanding these foundations gives teens a meaningful entry point into both game development and broader AI applications. 


This camp helps teens: 

  • Learn how intelligent behaviour is designed using logic, probability, and decision systems 

  • Understand how AI-driven systems adapt to user input in real time 

  • Strengthen Python programming skills through complex, interactive projects 

  • Explore pathways into computer science, game development, engineering, and AI-related fields 



For teens who enjoy games and want to understand how intelligence is built behind the scenes, this camp transforms gameplay into a powerful learning experience and builds confidence in designing systems that think, adapt, and respond.

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