
In this reaction, a hydroxymethyl group (\(-{CH2OH}\)) reacts with thionyl chloride (\({SOCl2}\)) to form the corresponding chloro derivative.
The product is benzyl chloride, and the reaction proceeds via the conversion of the hydroxyl group into a good leaving group, followed by substitution with chlorine.
Product structure:
\[ {C6H5CH2Cl} \]
Quick Tip:
Thionyl chloride (\({SOCl2}\)) is widely used to convert alcohols into alkyl chlorides with high efficiency.
In this reaction, styrene (\({C6H5CH=CH2}\)) reacts with \({HBr}\) in the presence of a peroxide.
Due to the peroxide effect (Kharasch effect), the reaction follows a free radical mechanism, giving the anti-Markovnikov product. This means that the bromine atom attaches to the less substituted carbon of the double bond.
Major Product: 1-bromo-2-phenylethane
\[ {C6H5CH2CH2Br} \]
This reaction is a classic example of free radical addition to alkenes influenced by the presence of peroxides.
Identify A in the following reaction. 
A racing track is built around an elliptical ground whose equation is given by \[ 9x^2 + 16y^2 = 144 \] The width of the track is \(3\) m as shown. Based on the given information answer the following: 
(i) Express \(y\) as a function of \(x\) from the given equation of ellipse.
(ii) Integrate the function obtained in (i) with respect to \(x\).
(iii)(a) Find the area of the region enclosed within the elliptical ground excluding the track using integration.
OR
(iii)(b) Write the coordinates of the points \(P\) and \(Q\) where the outer edge of the track cuts \(x\)-axis and \(y\)-axis in first quadrant and find the area of triangle formed by points \(P,O,Q\).