The number of products obtained in the following reaction is: Reaction: 
The given reaction involves the base-catalyzed (NaOH) decomposition of 1-phenylethanol (Ph-CH(OH)-CH$_3$) under heating ($\Delta$). This leads to two main products through different pathways:
Product 1: Acetophenone (Ph-CO-CH$_3$)
- Formed via oxidation of the alcohol
- The base abstracts a proton from the -OH group
- Resulting in formation of a carbonyl group
Product 2: Styrene (Ph-CH=CH$_2$)
- Formed via elimination reaction
- NaOH abstracts a proton from the β-carbon
- Leads to formation of a double bond Mechanistic pathways:
1. Oxidation pathway:
\[ \text{Ph-CH(OH)-CH}_3 \rightarrow \text{Ph-CO-CH}_3 \]
2. Elimination pathway:
\[ \text{Ph-CH(OH)-CH}_3 \rightarrow \text{Ph-CH=CH}_2 \]
Why not other options?
- Only these two major products form under these conditions
- No significant side products are expected
- The reaction doesn't proceed to complete decomposition
Given below are two statements:
Statement I: D-(+)-glucose + D-(+)-fructose $\xrightarrow{H_2O}$ sucrose sucrose $\xrightarrow{\text{Hydrolysis}}$ D-(+)-glucose + D-(+)-fructose
Statement II: Invert sugar is formed during sucrose hydrolysis.
In the light of the above statements, choose the correct answer from the options given below -
