p - block Elements
The shape of $$ClF_{3}$$ molecule is:
The hybridization of Chlorine atom in $$ClF_{3}$$ molecule is:
Hybridisation formula =surrounding atoms + $$\frac{valen\ of\ (O-F)ce\ electrons}{2}$$
$$3+\frac{7-3}{2}=3+2$$ bond lone pair pairs
Since there are 5 high electrons density region around central Cl atom, it shows $$sp^3d$$ hybridisation
The shape of $$ClF_{3}$$ molecule is:
The hybridization of iodine in $$\mathrm{IF}_{5}$$ is :
Shapes of certain interhalogen compounds are stated below. Which one of them is not correctly stated?
Which of the following pairs of compounds is isoelectronic and isostructural?
Match the interhalogen compounds of column I with the geometry in column II and assign the correct code. Column I Column II (a) $$XX'$$ (i) T-shape (b) $$XX_{3}'$$ (ii) Pentagonal bipyramidal (c) $$XX_{5}'$$ (iii) Linear (d) $$XX_{7}'$$ (iv) Square - pyramidal (v) Tetrahedral
Answer the following question: $$ClF_{3}$$ exists but $$FCl_{3}$$ does not. Explain.
Which bond do you expect to be stronger in each of the following cases and why ? (i) $$H - H, Cl - Cl$$ (ii) $$O_{2}, N_{2}$$ (iii) $$F - F, Cl - Cl$$
Out of $$P-F, F-F, S-F$$ and $$Cl-F$$ bonds, which bond is the least ionic ?
In which of the following molecules, central atom involve expansion of octet?
The species which is not tetrahedral in structure :