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Lineare Algebra Beispiele
[878569][878569]
Schritt 1
Schritt 1.1
Multiply each element of R1R1 by 1818 to make the entry at 1,11,1 a 11.
Schritt 1.1.1
Multiply each element of R1R1 by 1818 to make the entry at 1,11,1 a 11.
[887888569][887888569]
Schritt 1.1.2
Vereinfache R1R1.
[1781569][1781569]
[1781569][1781569]
Schritt 1.2
Perform the row operation R2=R2-5R1R2=R2−5R1 to make the entry at 2,12,1 a 00.
Schritt 1.2.1
Perform the row operation R2=R2-5R1R2=R2−5R1 to make the entry at 2,12,1 a 00.
[17815-5⋅16-5(78)9-5⋅1]⎡⎢⎣17815−5⋅16−5(78)9−5⋅1⎤⎥⎦
Schritt 1.2.2
Vereinfache R2R2.
[178101384][178101384]
[178101384][178101384]
Schritt 1.3
Multiply each element of R2R2 by 813813 to make the entry at 2,22,2 a 11.
Schritt 1.3.1
Multiply each element of R2R2 by 813813 to make the entry at 2,22,2 a 11.
[1781813⋅0813⋅138813⋅4][1781813⋅0813⋅138813⋅4]
Schritt 1.3.2
Vereinfache R2R2.
[1781013213][1781013213]
[1781013213][1781013213]
Schritt 1.4
Perform the row operation R1=R1-78R2R1=R1−78R2 to make the entry at 1,21,2 a 00.
Schritt 1.4.1
Perform the row operation R1=R1-78R2R1=R1−78R2 to make the entry at 1,21,2 a 00.
[1-78⋅078-78⋅11-78⋅3213013213][1−78⋅078−78⋅11−78⋅3213013213]
Schritt 1.4.2
Vereinfache R1R1.
[10-1513013213][10−1513013213]
[10-1513013213][10−1513013213]
[10-1513013213][10−1513013213]
Schritt 2
The pivot positions are the locations with the leading 11 in each row. The pivot columns are the columns that have a pivot position.
Pivot Positions: a11a11 and a22a22
Pivot Columns: 11 and 22