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What is Linear Algebra?Linear algebra is the branch of mathematics concerning linear
equations.
2π₯ + 3π¦ = 13
π1π₯1 + π2π₯2 +β―+ πππ₯π = π
π π₯1, π₯2, β― , π₯π = π1π₯1 + π2π₯2 +β―+ πππ₯π
Linear algebra also concerns linear functions.
Linear algebra also study the representations of linear equations
and linear functions through matrices and vector spaces.
π π₯ = 4π₯
π π₯, π¦ = 2π₯ + 3π¦
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Chapter 1 Linear Equations in
Linear Algebra
A linear equation in the variables π₯1, π₯2, β― , π₯π is an equation that
can be written in the form
π1π₯1 + π2π₯2 +β―+ πππ₯π = π
1.1 Systems of Linear Equations
where π and the coefficients π1, π2, β― , ππ are real or complex
numbers, usually known in advance.
The subscript π may be any positive integer.
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4π₯1 β 5π₯2 + 2 = π₯1
βrearranged
β3π₯1 β 5π₯2 = β2
βrearranged
β
2π₯1 + π₯2 β π₯3 = 2 6
4π₯1 β 6π₯2 = π₯1π₯2
π₯2 = 2 6 β π₯1 + π₯3
not linear
π₯2 = 2 π₯1 β 7
not linear
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A system of linear equations (or a linear system) is a collection of
one or more linear equations involving the same set of variables,
say, π₯1, π₯2, β― , π₯π.
A solution of a linear system is a list of numbers π 1, π 2, β― , π π that
makes each equation in the linear system true when the values
π 1, π 2, β― , π π are substituted for π₯1, π₯2, β― , π₯π, respectively.
2
For instance, 5, 6.5, 3 is a solution of linear system 2 because,
when these values are substituted in 2 for π₯1, π₯2, π₯3, respectively,
the equations simplify to 8 = 8 and β7 = β7.
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The set of all possible solutions is called the solution set of the
linear system.
Two linear systems are called equivalent if they have the same
solution set.
That is, each solution of the first system is a solution of the second
system, and each solution of the second system is a solution of the
first.
Finding the solution set of a system of two linear equations in two
variables is easy because it amounts to finding the intersection of
two lines.
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π₯1 β 2π₯2 = β1βπ₯1 + 3π₯2 = 3
unique solution
The graphs of these equations are lines, which we denote by β1and β2.
A pair of numbers π₯1, π₯2 satisfies both equations in the system
if and only if the point π₯1, π₯2 lies on both β1 and β2.
3,2
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π₯1 β 2π₯2 = β1βπ₯1 + 2π₯2 = 3
no solution
π₯1 β 2π₯2 = β1βπ₯1 + 2π₯2 = 1
infinitely many solutions
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BASIC FACT: A system of linear equations has either
1. exactly one solution, or
2. infinitely many solutions, or
3. no solution.
A system of linear equations is said to be consistent if it has either
one solution or infinitely many solutions.
A system is inconsistent if it has no solution.
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Matrix Notation
coefficient matrix (or matrix of coefficients)
of this system
The essential information of a linear system can be recorded
compactly in a rectangular array called a matrix.
augmented matrix of this system
0 β π₯1 + 2π₯2 β 8π₯3 = 8
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The size of a matrix tells how many rows and columns it has.
The augmented matrix above has 3 rows and 4 columns and is
called a 3 Γ 4 matrix.
If π and π are positive integers, an π Γ π matrix is a rectangular
array of numbers with π rows and π columns.
The number of rows always comes first.
Matrix notation will simplify the calculations in the examples that
follow.
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STRATEGY FOR SOLVING LINEAR SYSTEMS:
Replace one system with an equivalent system that is easier to
solve.
Use the π₯1 term in the first equation of a system to eliminate the π₯1terms in the other equations.
Then use the π₯2 term in the second equation to eliminate the π₯2terms in the other equations, and so on, until you finally obtain a
very simple equivalent system of equations.
Three basic operations are used to simplify a linear system:
1. replace one equation by the sum of itself and a multiple of
another equation;
2. interchange two equations;
3. multiply all the terms in an equation by a nonzero constant.
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EXAMPLE
Keep π₯1 in the first equation and eliminate it from the other equations.
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