MCQ
Acetone is mixed with bleaching powder to give
- ✓Chloroform
- BAcetaldehyde
- CEthanol
- DPhosgene
$CaOC{l_2} + {H_2}O \to Ca{(OH)_2} + C{l_2}$
$C{H_3}COC{H_3} + 3C{l_2} \to CC{l_3}COC{H_3} + 3HCl$
$2CC{l_3}COC{H_3} + Ca{(OH)_2} \to \mathop {2CHC{l_3}}\limits_{{\rm{chloroform}}} + {(C{H_3}COO)_2}Ca$
Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.
| Column $-I$ Catalyst | Column $-II$ >Product |
| $(a)$ $V_2O_5$ | $(i)$ Polyethylene |
| $(b)$ $TiCl_4/Al(Me)_3$ | $(ii)$ Ethanal |
| $(c)$ $PdCl_2$ | $(iii)$ $H_2SO_4$ |
| $(d)$ Iron oxide | $(iv)$ $NH_3$ |

| List $I$ (Compound) | List $II$ (Shape/geometry) |
| $A$. $\mathrm{NH}_3$ | $I$. Trigonal Pyramidal |
| $B$. $\mathrm{BrF}_5$ | $II$. Square Planar |
| $C$. $\mathrm{XeF}_4$ | $III$. Octahedral |
| $D$. $\mathrm{SF}_6$ | $IV$. Square Pyramidal |
Choose the correct answer from the options given below:
$C(s) + {O_2}(g) \to C{O_2}(g),\Delta H = - 394\,kJ$
$2{H_2}(g) + {O_2}(g) \to 2{H_2}O(l),\,\Delta H = 568\,kJ$
$C{H_4}(g) + 2{O_2}(g)\,\, \to \,\,C{O_2}(g) + 2{H_2}O(l)$ $\Delta H = - 892\,kJ$ Heat of formation of $C{H_4}$ is.....$kJ$
Scheme $1$ : (image)
Scheme $2$ :(image)
Scheme $3$ :(image)