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x^(2)+7x+12...

x^(2)+7x+12

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Solution set of (x^(2)-7 x+12)/(2 x^(2)+4 x+5) gt 0

If [x] denotes the greatest integer le x , then domain of f(x) = 1/sqrt([x]^(2) -7[x] + 12) is

The domain of f(x)=sqrt([x]^(2)-7[x]+12)

The number of real roots of |x|^(2)-7|x|+12=0 is :

If [x] denotes the greatest integer not exceeding x, then the values of x satisfying [x]^(2)-7[x]+12le0 are

The domain of f(x)=sqrt([x]^(2)-7[x]+12) (where [.] denotes greatest integer function) is

Write the polynomial p(x)=x^2+7 x+12 as the product of first degree polynomials.

The number of real solution x^2-7 |x|+12 =0 is