MCQ
Gibb’s free enrgy $(G)$ is defined as
- ✓$\Delta G = \Delta H - T\Delta S$
- B$\Delta G = \Delta H + \frac{T}{{\Delta S}}$
- C$\Delta H = \Delta G - T\Delta S$
- D$\Delta G = \Delta H + T.{C_p}$
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$A : 1s^2\, 2s^2\, 2p^6$
$B : 1s^2\, 2s^2\, 2p^6\, 3s^2\, 3p^3$
$C : 1s^2\, 2s^2\, 2p^6\, 3s^2\, 3p^5$
To make it chiral compound the attack should be on which carbon atom