Match List-$I$ with List-$II$ and select the correct answer using the codes given below the lists:
List-$I$ List-$II$
$(A) \ XeF_4$ $(1) \ \text{Distorted octahedral}$
$(B) \ XeF_6$ $(2) \ \text{Tetrahedral}$
$(C) \ XeO_3$ $(3) \ \text{Square planar}$
$(D) \ XeO_4$ $(4) \ \text{Pyramidal}$

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

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Similar Questions

Which of the following reactions does not involve the liberation of oxygen?

The incorrect statement regarding the following reactions is:
$XeF_6 + \text{Excess } H_2O \rightarrow 'X' + HF$
$XeF_6 + 2 H_2O \rightarrow 'Y' + HF$

Why does the following reaction occur?
$XeO_{6(aq)}^{4-} + 2F_{(aq)}^{-} + 6H_{(aq)}^{+} \to XeO_{3(g)} + F_{2(g)} + 3H_2O_{(l)}$
What conclusion about the compound $Na_4XeO_6$ (of which $XeO_6^{4-}$ is a part) can be drawn from the reaction?

Difficult
View Solution

$XeF_6$ hydrolyses to give an oxide. The structures of $XeF_6$ and the oxide,respectively are

$XeF_4$ reacts with $SbF_5$ to form $[XeF_m]^{n+}[SbF_y]^{z-}$. Calculate $m + n + y + z = .......$.

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