MCQ
Which doesn’t follow Markownikoff’s rule
- A$C{H_3} - CH = C{H_2}$
- ✓$C{H_3}CH = CHC{H_3}$
- C$C{H_3} - \mathop {\mathop {CH - }\limits_{|\,\,\,\,\,\,\,\,} }\limits_{C{H_3}\,\,} CH = C{H_2}$
- D$C{H_3} - C{H_2} - CH = C{H_2}$
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$3p_x,\,2s,\,4d_{xy},\,3s,\,4p_z,\,3p_y,\,4s$
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$A \rightarrow B$ is an adiabatic process. If the total heat absorbed in the entire process ( $A \rightarrow B$ and $B \rightarrow C$ ) is $R T_2 \ln 10$, the value of $2 \log V_3$ is . . . . . [Use, molar heat capacity of the gas at constant pressure, $\mathrm{C}_{\mathrm{p}, \mathrm{m}}=\frac{5}{2} \mathrm{R}$ ]

$NH_4HS(s) \rightleftharpoons NH_3 (g) + H_2S(g)$
If more $NH_4HS$ is added to the equilibrium