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3. VECTOR ANALYSIS

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Page 1: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

3. VECTOR ANALYSIS

Page 2: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Chapter 3: Vector Analysis

Page 3: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Laws of Vector Algebra

Page 4: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Properties of Vector Operations

Equality of Two Vectors

Commutative property

Equal Vectors!

Page 5: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Vector Multiplication: Scalar Product or ”Dot Product”

Hence:

Page 6: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Vector Multiplication: Vector Product or ”Cross Product”

Page 7: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Example

Page 8: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Notes!

Page 9: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Example:

Page 10: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Example

Use

Example

Page 11: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Coordinate Systems

Page 12: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Cartesian Coordinate System

Differential length vector

Differential area vectors

Page 13: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed
Page 14: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Cylindrical Coordinate System

Page 15: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Independent of φ. q

Page 16: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Independent of φ. q

We assume A is all around the

circle independent of φ

Page 17: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Note that the interested area is on the φ-z surface dsr

Notes!

Page 18: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Note that we use dsr = r dφ dz

Page 19: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Spherical Coordinate System

Page 20: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Notes!

Page 21: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed
Page 22: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Coordinate Transformations: Coordinates

To solve a problem, we select the coordinate system that best fits its geometry

Sometimes we need to transform between coordinate systems Transforming a point Transforming a vector coordinates

Page 23: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed
Page 24: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

We have a point and a vector!

Example

Page 25: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed
Page 26: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Example

Page 27: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Another example:

Convert from cylindrical to spherical

Page 28: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Next….

Page 29: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Gradient of A Scalar Field

Page 30: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Gradient ( cont.)

Page 31: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Gradient ( cont.)

Page 32: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Divergence of a Vector Field

Page 33: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Divergence Theorem

Useful tool for converting integration over a volume to one over the surface enclosing that volume, and vice versa

Page 34: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Curl of a Vector Field

Page 35: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Stokes’s Theorem

Page 36: 3. VECTOR ANALYSISweb.sonoma.edu/users/f/farahman/sonoma/courses/es... · In Cartesian coordinates, vector A points from the origin to point PI = (2, 3, 3), and vector B is directed

Laplacian Operator

Laplacian of a Scalar Field

Laplacian of a Vector Field

Useful Relation