Consider the following six changes<br>(i) <br>(ii) <br>(iii) <br>(iv) <br>(v) <br>(vi) <br>Then calc — Chemical Bonding Chemistry Question
Question
Consider the following six changes<br>(i) $NO \longrightarrow NO^+$<br>(ii) $O_2^- \longrightarrow O_2^{2-}$<br>(iii) $O_2 \longrightarrow O_2^+$<br>(iv) $NO^+ \longrightarrow NO^-$<br>(v) $NO^+ \longrightarrow NO^{2+}$<br>(vi) $CO \longrightarrow CO^+$<br>Then calculate value of "$c^3 - b^2 - a$", where $a, b$ and $c$ are total number of transformations in which magnetic property will be changed, bond order increases and bond order decreases respectively.
💡 Solution & Explanation
Step 1: Identify the chemical formulas and geometries: nitrite is NO2^- and nitrile (e.g. organic nitriles R-C≡N or nitryl/nitrile cation NO2^+). Step 2: In NO2^-, Nitrogen has 2 bond pairs and 1 lone pair, leading to a bent (angular) shape. For a nitrile group (R-C≡N) or the nitryl/nitrile cation (NO2^+), the hybridization is sp, giving a linear geometry. Step 3: Consequently, the shapes are angular (bent) and linear respectively, corresponding to option (b).