Page Summary: Applying the classic definition of a definite integral to a numerical method which we will call the rectangular rule. Introduction of linear systems of equations using a fictional electronics manufacturing example.

Oit Math 451 Session 2 66187 -

Applying the classic definition of a definite integral to a numerical method which we will call the rectangular rule. Introduction of linear systems of equations using a fictional electronics manufacturing example. Introducing the Taylor Series as a consequence of the Mean Value Theorem.

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  • Applying the classic definition of a definite integral to a numerical method which we will call the rectangular rule.
  • Introduction of linear systems of equations using a fictional electronics manufacturing example.
  • Introducing the Taylor Series as a consequence of the Mean Value Theorem.

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OIT Math 451 session 2.0c: Terminology & Notation
OIT Math 451 session 2.0a: Example of  a System of Linear Equations
OIT Math 451 session 0.2: Algorithms as Solutions
OIT Math 451 session 2.1b: Triangularization completed
OIT Math 451 session 2.2d: Linked Lists and Measuring Algorithm "Cost"
OIT Math 451 session 2.1a: Triangularization through column 1
OIT Math 451 session 1.2b: Expressing a Function as a Polynomial Part II
OIT Math 451 session 2.0b: 2 x 2 Example of Gaussian Reduction
OIT Math 451 1.2a: Expressing a Function as a Polynomial Part I
OIT Math 451 session 5.0: The Rectangle Rule
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OIT Math 451 session 2.0c: Terminology & Notation

OIT Math 451 session 2.0c: Terminology & Notation

Read more details and related context about OIT Math 451 session 2.0c: Terminology & Notation.

OIT Math 451 session 2.0a: Example of  a System of Linear Equations

OIT Math 451 session 2.0a: Example of a System of Linear Equations

Introduction of linear systems of equations using a fictional electronics manufacturing example.

OIT Math 451 session 0.2: Algorithms as Solutions

OIT Math 451 session 0.2: Algorithms as Solutions

Read more details and related context about OIT Math 451 session 0.2: Algorithms as Solutions.

OIT Math 451 session 2.1b: Triangularization completed

OIT Math 451 session 2.1b: Triangularization completed

Read more details and related context about OIT Math 451 session 2.1b: Triangularization completed.

OIT Math 451 session 2.2d: Linked Lists and Measuring Algorithm "Cost"

OIT Math 451 session 2.2d: Linked Lists and Measuring Algorithm "Cost"

Reducing the computations needed through the use of linked lists. We will also learn to calculate the cost of algorithms by ...

OIT Math 451 session 2.1a: Triangularization through column 1

OIT Math 451 session 2.1a: Triangularization through column 1

Creating P-code needed to triangularize a matrix. This is a two part series, taking you through the 1st column only.

OIT Math 451 session 1.2b: Expressing a Function as a Polynomial Part II

OIT Math 451 session 1.2b: Expressing a Function as a Polynomial Part II

Read more details and related context about OIT Math 451 session 1.2b: Expressing a Function as a Polynomial Part II.

OIT Math 451 session 2.0b: 2 x 2 Example of Gaussian Reduction

OIT Math 451 session 2.0b: 2 x 2 Example of Gaussian Reduction

Read more details and related context about OIT Math 451 session 2.0b: 2 x 2 Example of Gaussian Reduction.

OIT Math 451 1.2a: Expressing a Function as a Polynomial Part I

OIT Math 451 1.2a: Expressing a Function as a Polynomial Part I

Introducing the Taylor Series as a consequence of the Mean Value Theorem.

OIT Math 451 session 5.0: The Rectangle Rule

OIT Math 451 session 5.0: The Rectangle Rule

Applying the classic definition of a definite integral to a numerical method which we will call the rectangular rule.