Given the reaction of N,N-dimethylaniline ('A') with NaNO2 and HX to form 'B', the correct statements are:
(1) The electrophile involved in the reaction is NO+.
(3) The reaction occurs at low temperature.
(4) The product 'B' formed in the above reaction is p-nitroso compound at low temperature.
Explanation:
* The reaction is a diazotization reaction specific to tertiary aromatic amines.
* NaNO2 and HX generate the nitrosonium ion (NO+), which is the electrophile.
* Diazotization reactions are performed at low temperatures to prevent decomposition of intermediates.
* The product formed is a p-nitroso compound due to electrophilic aromatic substitution at the para position.
Statement (2) is incorrect because the product is a p-nitroso compound, not an N-nitroso ammonium compound.
If the CFSE of $\left[ Ti \left( H _2 O \right)_6\right]^{3+}$ is $-960 kJ / mol$, this complex will absorb maximum at wavelength ___$nm$ (nearest integer) Assume Planck's constant $( h )=64 \times 10^{-34} Js$, Speed of light $( c )=30 \times 10^8 m / s$ and Avogadro's Constant $\left( N _{ A }\right)=6 \times 10^{23} / mol$
Match the following List-I with List-II and choose the correct option: List-I (Compounds) | List-II (Shape and Hybridisation) (A) PF\(_{3}\) (I) Tetrahedral and sp\(^3\) (B) SF\(_{6}\) (III) Octahedral and sp\(^3\)d\(^2\) (C) Ni(CO)\(_{4}\) (I) Tetrahedral and sp\(^3\) (D) [PtCl\(_{4}\)]\(^{2-}\) (II) Square planar and dsp\(^2\)
Let A be a 3 × 3 matrix such that \(\text{det}(A) = 5\). If \(\text{det}(3 \, \text{adj}(2A)) = 2^{\alpha \cdot 3^{\beta} \cdot 5^{\gamma}}\), then \( (\alpha + \beta + \gamma) \) is equal to: