Create a user-defined MatLab function that implements the Gauss elimination method called Gauss_alt. The input arguments would matrix [a] and [b] from linear algebra ([a]*[x]=[b]) and the output [x]. If the input argument [b] is a row vector, the function should be able to transform it to a column vector. Use the augmented matrix for [ab] for all operations in the function. Solve the following set of equations by hand (explain the steps you are following): x₁ + 2x₂ - 2x₂ = 9 2x₁ + 3x₂ + x3 = 23 3x₁ + 2x₂ - 4x3 = 11 Use the function Gauss_alt to validate your hand-calculated solution.

Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
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Create a user-defined MatLab function that implements the Gauss elimination method called
Gauss_alt. The input arguments would matrix [a] and [b] from linear algebra ([a]*[x]=[b]) and
the output [x]. If the input argument [b] is a row vector, the function should be able to transform
it to a column vector. Use the augmented matrix for [ab] for all operations in the function.
Solve the following set of equations by hand (explain the steps you are following):
x₁ + 2x₂ −2x₂ = 9
2x₁ + 3x₂ + x3 = 23
3x₁ + 2x₂ - 4x3 = 11
Use the function Gauss_alt to validate your hand-calculated solution.
Transcribed Image Text:Create a user-defined MatLab function that implements the Gauss elimination method called Gauss_alt. The input arguments would matrix [a] and [b] from linear algebra ([a]*[x]=[b]) and the output [x]. If the input argument [b] is a row vector, the function should be able to transform it to a column vector. Use the augmented matrix for [ab] for all operations in the function. Solve the following set of equations by hand (explain the steps you are following): x₁ + 2x₂ −2x₂ = 9 2x₁ + 3x₂ + x3 = 23 3x₁ + 2x₂ - 4x3 = 11 Use the function Gauss_alt to validate your hand-calculated solution.
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