• Contact us / Support
  • GIS220
  • Introduction
  • 1. Orientation
    • 1.1. Overview
    • 1.2. Checklist
    • 1.3. Course Text
    • 1.4. Roles and Responsabilites
    • 1.5. Assignments and Exams
    • 1.6. Communication
    • 1.7. Three Habits of Successful Learners
    • 1.8. Summary
  • 2. Functions, Variables, and Polynomials
    • 2.1. Overview
    • 2.2. Checklist
    • 2.3. Variables
    • 2.4. Functions
    • 2.5. Function Evaluation
    • 2.6. Monomials and Polynomials
    • 2.7. Factoring
    • 2.8. Summary
  • 3. Summation and Notation
    • 3.1. Overview
    • 3.2. Checklist
    • 3.3. Notation
    • 3.4. Sigma Notation
    • 3.5. Pi Notation
    • 3.6. Uses of Sigma and Pi Notation
    • 3.7. Summary
  • 4. Probability
    • 4.1. Overview
    • 4.2. Checklist
    • 4.3. Introduction
    • 4.4. Notation
    • 4.5. Basics of Probability
    • 4.6. Permutations
    • 4.7. Combinations
    • 4.8. Uses of Probability
    • 4.9. Summary
  • 5. Distributions and Sampling
    • 5.1. Overview
    • 5.2. Checklist
    • 5.3. Introduction
    • 5.4. Normal Distribution
    • 5.5. Other Distributions
    • 5.6. Sampling Distributions
    • 5.7. Uses of Distributions
    • 5.8. Summary
  • 6. Computational Geometry I
    • 6.1. Overview
    • 6.2. Checklist
    • 6.3. Introduction
    • 6.4. Points
    • 6.5. Distances
    • 6.6. Line Simplification
    • 6.7. Convex Hulls
    • 6.8. Simulation
    • 6.9. Summary
  • 7. Computational Geometry II
    • 7.1. Overview
    • 7.2. Checklist
    • 7.3. Introduction
    • 7.4. Line Intersection
    • 7.5. Area
    • 7.6. Trees
    • 7.7. Summary
  • 8. Matrices I
    • 8.1. Overview
    • 8.2. Checklist
    • 8.3. Introduction
    • 8.4. Addition and Subtraction
    • 8.5. Multiplication
    • 8.6. Matrix Transposition
    • 8.7. Diagonal and Identity Matrices
    • 8.8. Graphical Representation
    • 8.9. Summary
  • 9. Matrices II
    • 9.1. Overview
    • 9.2. Checklist
    • 9.3. Introduction
    • 9.4. Determinant & Trace
    • 9.5. Augmented Matrix & Row Reduction
    • 9.6. Inversion
    • 9.7. Line Intersection (Redux)
    • 9.8. Summary
  • 10. Matrices III
    • 10.1. Overview
    • 10.2. Checklist
    • 10.3. Introduction
    • 10.4. Eigen Values and Vectors
    • 10.5. Spatial Weights
    • 10.6. Spatial Lags
    • 10.7. Moran's I
    • 10.8. Summary
  • 11. Systems of Linear Equations I
    • 11.1. Overview
    • 11.2. Checklist
    • 11.3. Introduction
    • 11.4. Systems of Linear Equations
    • 11.5. Optimization
    • 11.6. Model Forumulation
    • 11.7. Location and Transportation
    • 11.8. Summary
  • 12. Systems of Linear Equations II
    • 12.1. Overview
    • 12.2. Checklist
    • 12.3. Introduction
    • 12.4. Simplex Method (Intro)
    • 12.5. Simplex Method (Example)
    • 12.6. Integer Programming (Intro)
    • 12.7. Integer Programming (Example)
    • 12.8. Summary
  • 13. Graphs and Networks I
    • 13.1. Overview
    • 13.2. Checklist
    • 13.3. Introduction
    • 13.4. Measures
    • 13.5. Network Distances
    • 13.6. Routing
    • 13.7. Summary
  • 14. Graphs and Networks II
    • 14.1. Overview
    • 14.2. Checklist
    • 14.3. Introduction
    • 14.4. Interaction Models
    • 14.5. Point Processes
    • 14.6. Huff Model and Distance Decay Functions
    • 14.7. Summary
  • 15. Syllabus
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GIS220

Normal Distribution

Please read:

  • Introduction to Normal Distributions
  • Areas of Normal Distributions
  • Standard Normal Distribution