reaction written as A 28 C+2D is muled snd ye the wig [A]o (Blo Initial A(CyA 0.150 M 0.150 M 8.00 x 10 mol/Ls 0.150 M 0.300 M 1.60 x 10 mo/L's 0.150 M 3.20 x 10-2 mol/L's 0.300 M etermine the initial rate of C production (A[C/Ar) if [A] = 0.200 M and [B]-0.500 M.

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### Reaction Rate Data and Calculation

The general reaction studied is given by:

\[ A + 2B \rightarrow C + 2D \]

The table below shows the initial concentrations of reactants and the corresponding initial rates of formation of product C:

| \([A]_0\) (M) | \([B]_0\) (M) | Initial Rate (\(\Delta[C]/\Delta t\)) (mol/L·s) |
|---------------|---------------|-------------------------------------------------|
| 0.150         | 0.150         | \(8.00 \times 10^{-3}\)                        |
| 0.150         | 0.300         | \(1.60 \times 10^{-2}\)                        |
| 0.300         | 0.150         | \(3.20 \times 10^{-2}\)                        |

**Problem Statement:**

Determine the initial rate of C production \((\Delta[C]/\Delta t)\) if \([A] = 0.200 \, M\) and \([B] = 0.500 \, M\).
Transcribed Image Text:### Reaction Rate Data and Calculation The general reaction studied is given by: \[ A + 2B \rightarrow C + 2D \] The table below shows the initial concentrations of reactants and the corresponding initial rates of formation of product C: | \([A]_0\) (M) | \([B]_0\) (M) | Initial Rate (\(\Delta[C]/\Delta t\)) (mol/L·s) | |---------------|---------------|-------------------------------------------------| | 0.150 | 0.150 | \(8.00 \times 10^{-3}\) | | 0.150 | 0.300 | \(1.60 \times 10^{-2}\) | | 0.300 | 0.150 | \(3.20 \times 10^{-2}\) | **Problem Statement:** Determine the initial rate of C production \((\Delta[C]/\Delta t)\) if \([A] = 0.200 \, M\) and \([B] = 0.500 \, M\).
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