MCQ
$d_{xy}$ orbital can form a $\pi $ bond with another $d_{xy}$ orbital along
- A$x$ axis only
- B$y$ axis only
- ✓Both $x$ and $y$ axis
- D$z-$ axis
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|
Electrolyte : |
$KCl$ |
$KNO_3$ |
$HCl$ |
$NaOAc$ |
$NaCl$ |
|
$\Lambda ^\infty (Scm^2mol^{-1}) $: |
$149.9$ |
$145.0$ |
$426.2$ |
$91.0$ |
$126.5$ |
$NO(g) + Br_2 (g) \rightleftharpoons NOBr_2 (g)$
$NOBr_2(g)+ NO(g) \longrightarrow 2NOBr(g)$
If the second step is the rate determining step, the order of the reaction with respect to $NO(g)$ is