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Design and development of complex system and game, design thinking along with game theory for game designers
⏱️ Length: 8.8 total hours
⭐ 4.63/5 rating
πŸ‘₯ 15,352 students
πŸ”„ January 2025 update

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  • Course Title: Master in Systems Thinking
  • Course Caption: Design and development of complex systems and games, leveraging design thinking and game theory for game designers.
  • Course Length: 8.8 total hours
  • Average Rating: 4.63/5
  • Number of Students: 15,352
  • Last Updated: January 2025
  • Course Overview
    • Embark on a transformative journey into the intricate world of complex systems, moving beyond linear cause-and-effect to understand the interconnectedness and emergent behaviors that define our reality. This program is meticulously crafted for individuals seeking to architect, analyze, and innovate within multifaceted environments, particularly those involved in game design and development.
    • Discover the power of a holistic perspective, unraveling the dynamic interplay of components, feedback loops, and leverage points that shape the trajectory of any system, be it a digital game world or a real-world organizational structure.
    • Acquire the essential mental models and analytical frameworks to deconstruct complexity, identify underlying patterns, and anticipate unintended consequences, fostering a proactive and insightful approach to challenges.
    • Explore the symbiotic relationship between robust systems design and engaging game mechanics, learning how to build immersive and responsive experiences that resonate with players on a deeper level.
    • Gain a profound understanding of how to strategically influence system dynamics to achieve desired outcomes, whether optimizing player engagement, managing resource allocation, or shaping narrative arcs.
    • This course transcends theoretical concepts, providing practical strategies and actionable insights applicable to a wide spectrum of complex problem domains.
  • Skills Covered / Tools Used
    • System Mapping & Visualization: Proficiency in creating causal loop diagrams, stock and flow models, and rich pictures to visually represent system dynamics and identify key relationships.
    • Behavior Over Time Graphs: Developing the ability to predict and analyze how systems change and evolve over time by plotting key variables.
    • Leverage Point Identification: Mastering the art of pinpointing strategic intervention points within a system where small changes can yield significant, cascading effects.
    • Feedback Loop Analysis: Deconstructing reinforcing and balancing feedback loops to understand their impact on system stability and growth.
    • Root Cause Analysis: Moving beyond symptomatic solutions to uncover the fundamental drivers of observed system behaviors.
    • Mental Model Shifting: Cultivating the capacity to challenge and refine personal assumptions and biases that influence perception and decision-making within complex scenarios.
    • Scenario Planning: Employing techniques to explore potential future states of a system based on varying assumptions and influencing factors.
    • Emergent Behavior Prediction: Developing an intuition for how simple rules and interactions can lead to complex, unpredictable outcomes in a system.
    • Interdisciplinary Integration: Learning to synthesize insights from various fields, including psychology, economics, sociology, and computer science, to inform systems understanding.
  • Benefits / Outcomes
    • Enhanced Problem-Solving Acumen: Develop the capacity to tackle intricate, wicked problems with greater clarity and effectiveness, moving beyond superficial fixes.
    • Strategic Foresight & Planning: Equip yourself with the ability to anticipate future trends, identify strategic opportunities, and navigate uncertainty with confidence.
    • Improved Decision-Making: Make more informed and robust decisions by considering the broader system implications and potential unintended consequences.
    • Innovation & Design Excellence: Foster a creative approach to designing and developing novel solutions and experiences that are resilient and adaptable.
    • Leadership & Influence: Become a more influential leader capable of guiding teams and organizations through complex change by understanding system dynamics.
    • Deeper Understanding of Game Design: Unlock new levels of insight into player psychology, emergent gameplay, and the intricate architecture of virtual worlds.
    • Career Advancement: Position yourself as a valuable asset in a wide range of industries and roles that demand sophisticated analytical and strategic thinking.
    • Personal Growth: Cultivate a more nuanced and insightful perspective on the world, leading to a richer understanding of personal and societal complexities.
  • Requirements / Prerequisites
    • A foundational understanding of basic logic and reasoning.
    • An open mind and a willingness to challenge conventional thinking.
    • Curiosity about how things work and why they behave the way they do.
    • Familiarity with digital interfaces for course material access.
    • No prior formal training in systems theory is required, though an interest in abstract thinking is beneficial.
  • PROS
    • Highly practical application for game designers, bridging theory with actionable design principles.
    • Comprehensive exploration of systems thinking concepts, applicable beyond game development.
    • Significant student engagement and positive feedback indicate high-quality content and delivery.
    • Regular updates suggest the course remains current and relevant.
  • CONS
    • The depth of exploration into game theory within the context of systems thinking might be introductory for seasoned game theorists.
Learning Tracks: English,Business,Management
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