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Let A=[a("ij")] be 3xx3 matrix and B=[b(...

Let `A=[a_("ij")]` be `3xx3` matrix and `B=[b_("ij")]` be `3xx3` matrix such that `b_("ij")` is the sum of the elements of `i^(th)` row of A except `a_("ij")`. If det, `(A)=19`, then the value of det. (B) is ________ .

A

`|A|`

B

`|A|//2`

C

`2|A|`

D

none of these

Text Solution

Verified by Experts

The correct Answer is:
C

`A=[(a_(11),a_(12),a_(13)),(a_(21),a_(22),a_(23)),(a_(31),a_(32),a_(33))]`
`implies B=[(a_(12)+a_(13),a(11)+a_(13),a_(11)+a_(12)),(a_(22)+a_(23),a_(21)+a_(23),a_(21)+a_(22)),(a_(32)+a_(33),a_(31)+a_(33),a_(31)+a_(32))]`
`implies X=A^(-1) B`
`=1/(|A|)[(C_(11),C_(21),C_(31)),(C_(12),C_(22),C_(32)),(C_(13),C_(23),C_(33))]`
`[(a_(12)+a_(13),a_(11)+a_(13),a_(11)+a_(12)),(a_(22)+a_(23),a_(21)+a_(23),a_(21)+a_(22)),(a_(32)+a_(33),a_(31)+a_(33),a_(31)+a_(32))]`
`=1/(|A|) [(0,|A|,|A|),(|A|,0,|A|),(|A|,|A|,0)]=[(0,1,1),(1,0,1),(1,1,0)]`
`implies |A^(-1)B|=2`
or `|A^(-1)||B|=2`
or `|B|=2|A|`
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CENGAGE-MATRICES-Exercise (Comprehension)
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  4. If A and B are two square matrices of order 3xx3 which satify AB=A and...

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  5. if A and B are two matrices of order 3xx3 so that AB=A and BA=B then (...

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  6. If A and B are two square matrices of order 3xx3 which satify AB=A and...

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  7. Consider an arbitarary 3xx3 non-singular matrix A[a("ij")]. A maxtrix ...

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  8. Let A=[a("ij")] be 3xx3 matrix and B=[b("ij")] be 3xx3 matrix such tha...

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  9. Let A=[(1,0,0),(1,0,1),(0,1,0)] satisfies A^(n)=A^(n-1)+A^(2)-I for n ...

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  10. Let A=[(1,0,0),(1,0,1),(0,1,0)] satisfies A^(n)=A^(n-1)+A^(2)-I for n ...

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  11. Let A=[(1,0,0),(1,0,1),(0,1,0)] satisfies A^(n)=A^(n-1)+A^(2)-I for n ...

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  12. Let for A=[(1,0,0),(2,1,0),(3,2,1)], there be three row matrices R(1),...

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  13. Let for A=[(1,0,0),(2,1,0),(3,2,1)], there be three row matrices R(1),...

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  14. A and B are square matrices such that det. (A)=1, B B^(T)=I, det (B) g...

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  15. A and B are square matrices such that det. (A)=1, B B^(T)=I, det (B) g...

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  17. Let A be an mxxn matrix. If there exists a matrix L of type nxxm such ...

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