{{C_2}{H_5} - C - CH - C{H_3}} \\
{||\,\,\,\,\,\,\,\,\,|\,\,\,\,} \\
{C{H_2}\,\,\,\,C{H_2}}
\end{array}$ is :-
- A$3-$methyl$-2-$ethyl butene$-1$
- ✓$2-$ethyl$-3-$methyl butene$-1$
- C$3-$ethyl$-3-$methyl butene$-1$
- DEthyl isopropyl ethane
Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.
$NH_3{_{(g)}}\ \rightleftharpoons \ \frac {1}{2} {N_2}_{(g)} + \frac {3}{2} {H_2}_{(g)}$ ; $K_P$
The degree of dissociation $(\alpha )$ of $NH_3$ is related to total equilibrium pressure $(P^o )$ as
$\left.\left. K _3\left[ Fe ( CN )_6\right]( K ),\left[ Co \left( NH _3\right)_6\right] Cl _3( L ), Na _3[ Co \text { (oxalate })_3\right]( M ),\left[ Ni _2 H _2 O \right)_6\right] Cl _2( N ) \text {, }$ $K _2\left[ Pt ( CN )_4\right]( O ) \text { and }\left[ Zn \left( H _2 O \right)_6\right]\left( NO _3\right)_2( P ) $ the diamagnetic complexes are
$(A)$ $\Delta G$ is positive $(B)$ $\Delta S _{\text {system }}$ is positive
$(C)$ $\Delta S _{\text {surroundings }}=0$ $(D)$ $\Delta H =0$
$(I)\, H_2S_2O_6$ $(II)\, H_2S_2O_3$ $(III)\,H_2S_2O_5$