Entrer un problème...
Algèbre linéaire Exemples
[123456789]
Étape 1
Write as an augmented matrix for Ax=0.
[123045607890]
Étape 2
Étape 2.1
Perform the row operation R2=R2-4R1 to make the entry at 2,1 a 0.
Étape 2.1.1
Perform the row operation R2=R2-4R1 to make the entry at 2,1 a 0.
[12304-4⋅15-4⋅26-4⋅30-4⋅07890]
Étape 2.1.2
Simplifiez R2.
[12300-3-607890]
[12300-3-607890]
Étape 2.2
Perform the row operation R3=R3-7R1 to make the entry at 3,1 a 0.
Étape 2.2.1
Perform the row operation R3=R3-7R1 to make the entry at 3,1 a 0.
[12300-3-607-7⋅18-7⋅29-7⋅30-7⋅0]
Étape 2.2.2
Simplifiez R3.
[12300-3-600-6-120]
[12300-3-600-6-120]
Étape 2.3
Multiply each element of R2 by -13 to make the entry at 2,2 a 1.
Étape 2.3.1
Multiply each element of R2 by -13 to make the entry at 2,2 a 1.
[1230-13⋅0-13⋅-3-13⋅-6-13⋅00-6-120]
Étape 2.3.2
Simplifiez R2.
[123001200-6-120]
[123001200-6-120]
Étape 2.4
Perform the row operation R3=R3+6R2 to make the entry at 3,2 a 0.
Étape 2.4.1
Perform the row operation R3=R3+6R2 to make the entry at 3,2 a 0.
[123001200+6⋅0-6+6⋅1-12+6⋅20+6⋅0]
Étape 2.4.2
Simplifiez R3.
[123001200000]
[123001200000]
Étape 2.5
Perform the row operation R1=R1-2R2 to make the entry at 1,2 a 0.
Étape 2.5.1
Perform the row operation R1=R1-2R2 to make the entry at 1,2 a 0.
[1-2⋅02-2⋅13-2⋅20-2⋅001200000]
Étape 2.5.2
Simplifiez R1.
[10-1001200000]
[10-1001200000]
[10-1001200000]
Étape 3
Use the result matrix to declare the final solution to the system of equations.
x-z=0
y+2z=0
0=0
Étape 4
Write a solution vector by solving in terms of the free variables in each row.
[xyz]=[z-2zz]
Étape 5
Write the solution as a linear combination of vectors.
[xyz]=z[1-21]
Étape 6
Write as a solution set.
{z[1-21]|z∈R}