If A = 1011, then An + nI is equal to from Mathem

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401.

If A = 1011, then An + nI is equal to

  • I

  • nA

  • I + nA

  • I - nA


C.

I + nA

We have,       A = 1011 A2 = A. A = 10111011 = 1021    A3 = A2 . A = 10211011 = 1031 An = 10n1Now, An + nI = 10n1 + n1001                      = 10n1 + n00n                      = 1 +n0n1 + nAgain, I + nA = 1001 + n1011                      = 1001 + n0nn                      = 1 + n0n1 + n    An + nI = I + nA


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402.

If A = 1111, then A2017 is equal to

  • 22015A

  • 22016A

  • 22014A

  • 22017A


403.

Value of the determinant 1 +a1a111 + b1111 +c is :

  • 1 + abc + ab + bc + ca

  • abc

  • 4abc

  • abc1 + 1a + 1b + 1c


404.

If the value of the determinant x + 1112x + 2233x + 3 is equal to zero, then x is :

  • 0 and - 6

  • 0 and 6

  • 6

  • - 6


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405.

If I is the unit matrix of order 10, then the determinant of I is equal to :

  • 10

  • 1

  • 110

  • 9


406.

x - 22x - 33x - 4x - 42x - 93x - 16x - 82x - 273x - 64 = 0, then x is equal to :

  • - 2

  • 3

  • - 4

  • 4


407.

Let A be a square matrix of order 3. If A = - 2, then the value of determinant of A adj A is :

  • 8

  • - 8

  • - 1

  • 32


408.

If f(x) = x - 32x2 - 183x3 - 81x - 52x2 - 504x3 - 500123, then f(1) . f(3) + f(3) . f(5) + f(5) . f(1) is equal to

  • f(1)

  • f(3)

  • f(1) + f(3)

  • f(1) + f(5)


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409.

If A = 1- 1102- 3210 and B = (adj A), and C = 5A, then adj BC is equal to :

  • 5

  • 25

  • - 1

  • 1


410.

If Aiaibibiai and, if a < 1, b < 1, then i = 1detAi is equa to :

  • a21 - a2 - b21 - b2

  • a2 - b21 - a21 - b2

  • a21 - a2 + b21 - b2

  • a21 + a2 - b21 + b2


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