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Dynamic Systems Analysis

Stage I, Course 1 · 3 credits · 14 weeks · Observation and component identification

Course CodeDSA
StageI (Representation)
SequenceCourse 1 of 17
Credits3
PrerequisitesNone
StatusCore Required

Course Purpose

Students learn to observe and analyze systems. This is where systems thinking begins: learning to see the components of any system, the relationships between them, the feedback loops that govern behavior, and how structure determines outcome.

By end: Students can take any complex real-world system and identify its key components, the relationships between them, the feedback loops that drive behavior, and predict qualitatively how the system will respond to disturbances.

Learning Outcomes

Upon completion, students will be able to:

  1. Define a system and its boundary — what's inside, what's outside, why the boundary matters
  2. Identify components and relationships — what are the parts, how do they interact?
  3. Recognize feedback loops — positive and negative, and their effect on behavior
  4. Distinguish stocks and flows — what accumulates, what moves through
  5. Predict system behavior from structure — qualitatively, before running numbers
  6. Draw and interpret causal diagrams — the visual language of systems thinking
  7. Identify delays and non-linearities — why intuition about systems fails
  8. Apply systems thinking to diverse domains — biological, organizational, technical, social

Core Concepts

Students learn the vocabulary of systems thinking:

system, boundary, component, relationship, feedback, positive-feedback, negative-feedback, stock, flow, delay, non-linearity, causality, causal-diagram, equilibrium, stability, perturbation, resilience, adaptation

Course Structure (14 weeks)

WeekTopicMajor Assignment
1-2What is a system? Boundaries and componentsIdentify a system and its boundary
3-4Stocks, flows, and accumulationMap stocks and flows in your system
5-6Positive and negative feedbackIdentify feedback loops
7-8Delays and non-linearitiesAnalyze delays in your system
9-11Resilience and stabilityPredict behavior under disturbance
12-13Adaptation and evolutionAnalyze long-term adaptation
14Integration and synthesisCapstone: complete system analysis

Pedagogical Approach

This course teaches systems thinking primarily through observation of real systems, not through abstract theory. Every concept is grounded in concrete examples students can see or study.

Example systems studied include: thermostats, populations, bank accounts, organizations, ecosystems, markets, and social networks.

Prerequisites for Subsequent Courses

Students completing this course have the foundation needed for all other Stage I courses, especially Course 2 (Mathematics for Dynamic Systems) and Course 3 (Introduction to NCFCA).

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