The number of real zeros of $y = p(x)$ is $\ldots \ldots \ldots$ in the given figure.

  • A
    $2$
  • B
    $1$
  • C
    $4$
  • D
    $3$

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Divide $x^{2}+8x+12$ by $x+2$.

State the degree of the given polynomial: $p(x) = x^{2} - \sqrt{3}x^{3} + 4x^{7} + 9$.

Divide $x^{4}+4 x^{3}-2 x^{2}-12 x+9$ by $x^{2}-2 x+1$.

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$A$ dealer bought $x^{2}+2x+3$ pieces of mobiles for Rs. $x^{3}+6x^{2}+11x+12$. Find the price of one mobile.

The graph of $\ldots \ldots \ldots$ is a curve open upwards.

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