4
If x, y, z are distinct real numbers then

= 0, then xyz=
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Solution
3
The system of equations x+2y+2z=5, x+2y+3z=6, x+2y+λz=μ has
infinitely many solutions if
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Solution
Given System of Equations:
- x+2y+2z=5
- x+2y+3z=6
- x+2y+λz=μ
Goal: Find values of λ and μ such that the system has infinitely many solutions
Step 1: Write Augmented Matrix
[A|B]=[1225123612λμ]
Step 2: Row operations: Subtract R1 from R2 and R3
⇒[1225001100λ−2μ−5]
Step 3: For infinitely many solutions, rank of coefficient matrix = rank of augmented matrix < number of variables (3)
This happens when the third row becomes all zeros:
λ−2=0andμ−5=0
⇒λ=2,μ=5
✅ Final Answer: λ=2, μ=5
4
For an invertible matrix A, which of the following is not always true:
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Solution
3
If D=|11112+x1112+y|forx≠0,y≠0 then D is
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Solution
4
If a, b, c are the roots of the equation

, then the value of

is
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Solution
1
If the system of equations 3x−y+4z=3 , x+2y−3z=−2 , 6x+5y+λz=-3 has atleast one solution, then λ=
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Solution
1
If a+b+c=\pi , then the value of \begin{vmatrix} sin(A+B+C) &sinB &cosC \\ -sinB & 0 &tanA \\ cos(A+B)&-tanA &0 \end{vmatrix} is
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Solution
3
Suppose, the system of linear equations
-2x + y + z = l
x - 2y + z = m
x + y - 2z = n
is such that l + m + n = 0, then the system has:
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Solution
1
The number of values of k for which the linear
equations
4x + ky + z = 0
kx + 4y + z = 0
2x + 2y + z = 0
posses a non-zero solution is
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Solution
Since, equation has non-zero solution.
Δ = 0

3
Let A = (aij) and B = (bij) be two square matricesof order n and det(A) denotes the determinant of A.
Then, which of the following is not correct.
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Solution
[{"qus_id":"3777","year":"2018"},{"qus_id":"3937","year":"2019"},{"qus_id":"9443","year":"2020"},{"qus_id":"9444","year":"2020"},{"qus_id":"10693","year":"2021"},{"qus_id":"11133","year":"2022"},{"qus_id":"11632","year":"2024"},{"qus_id":"11642","year":"2024"},{"qus_id":"10199","year":"2015"},{"qus_id":"10455","year":"2014"}]