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MATH 200

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9.1 - 3D Coordinate System
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9.2 - Vectors
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9.2 - Tension Application Example

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9.3 - Dot Product And Projections
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9.3 - Work Application

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9.4 - Cross Product
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9.5 - Equations Of Planes
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9.5 - Equations Of Lines
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9.6 - Functions And Surfaces

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9.7 - Cylindrical And Spherical Coordinates

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10.1 - Vector Functions And Space Curves

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10.2 - Derivatives And Integrals Of Vector Functions
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10.4 - Motion In Space: Velocity And Acceleration
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10.4 - Projectile Application
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11.1 - Functions Of Several Variables
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11.2 - Limits And Continuity
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11.3 - Partial Derivatives

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11.4 - Tangent Planes And Linear Approximations
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11.5 - The Chain Rule
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11.6 - Directional Derivatives And The Gradient Vector
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11.6 - An Important Example
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11.7 - Maximum And Minimum Values
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11.7 - Maximization Application Example
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12.1 - Double Integrals Over Rectangles
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12.2 - Iterated Integrals
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12.3 - Double Integrals Over General Regions
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12.4 - Double Integrals In Polar Coordinates
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12.7 - Triple Integrals
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12.8 - Triple Integrals In Cylindrical And Spherical Coordinates
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13.1 - Vector Fields
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13.2 - Line Integrals
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Course:
Calculus Of Several Variables

Code:
MATH 200

School:
Malaspina University-College

Teacher:
Valerie Watts

Semester:
Fall 2006

Textbook:
Multivariable Calculus: Concepts & Contexts by James Stewart