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" (i) "2x^(2)+kx+3=0...

" (i) "2x^(2)+kx+3=0

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Find the values of k for each of the following quadratic equations, so that they have two equal roots : (1) 2x^(2)+kx+3=0 (2) kx(x-2)+6=0

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Find the value(s) of k for which the given quadratic equations has real and distinct roots : (i) 2x^(2)+kx+4=0 (ii) 4x^(2)-3kx+1=0 (iii) kx^(2)+6x+1=0 (iv) x^(2)-kx+9=0

Find the value(s) of k for which the given quadratic equations has real and distinct roots : (i) 2x^(2)+kx+4=0 (ii) 4x^(2)-3kx+1=0 (iii) kx^(2)+6x+1=0 (iv) x^(2)-kx+9=0

Find the values of k for which the given quadratic equation has real and distinct roots: (i) kx^(2)+6x+1=0" "(ii)" "x^(2)-kx+9=0 (iii) 9x^(2)+3kx+4=0" "(iv)" "5x^(2)-kx+1=0

In the following,determine the set of values of k for which the given quadratic equation has real roots: 3x^(2)+2x+k=0 (ii) 4x^(2)-3kx+1=0 (iii) 2x^(2)+kx-4=0

Find the values of k for each of the following quadratic equations so that they have two equal roots. 2x^(2) + kx + 3 = 0

Find the value of k for each of the following quadratic equations , so that they have two equal roots. 2x^(2) +kx+ 3=0

Find the values of k for which the given equation has real roots: (i) kx^(2)-6x-2=0" "(ii)" "3x^(2)+2x+k=0" "(iii)" "2x^(2)+kx+2=0

If the equation 2x^2 + kx +3= 0 has two equal roots, then the value of k is