At time π‘ = 0, [π] = π΄0 and [π]=[π]=0. At a later time π‘, the value of \(\frac{[B]}{[C]}\) is ______. (round off to the nearest integer)Consider the reaction: CβAβB with rate constants \( k_1 \) and \( k_2 \), where \( k_1 = 2k_2 \).
Initially at \( t = 0 \), \([A] = A_0\) and \([B] = [C] = 0\).
Assumptions: The reaction reaches an equilibrium state at a later time \( t \), with concentrations \([A]\), \([B]\), and \([C]\).
As the system reaches equilibrium, apply the steady-state approximation for \( \text{[A]} \), and use the given relation \( k_1 = 2k_2 \).
At equilibrium:
The final ratio of \(\frac{[B]}{[C]}\) is 2, confirming it is within the given range (2,2).
(i) Write any two differences between order and molecularity.
(ii) What do you mean by pseudo order reaction?