For a first-order process, the data in the table below indicate that the reaction rate _1_ and the ½-life time _2_. Fill in blank 1 and then blank 2 with the correct terms.
For A -> products [A] mol/L t min
0.200 0.0
0.100 10.0
0.050 20.0
0.025 30.0
| a. |
1 decreases; 2 remains the same |
|
| b. |
1 increases; 2 increases |
|
| c. |
1 remains the same; 2 remains the same |
|
| d. |
1 increases; 2 remains the same |
|
| e. |
1 decreases; 2 decreases |

For a first-order process, the data in the table below indicate that the reaction rate _1_...
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(A). For the hypothetical reaction A+B → C the following rate data (with and without catalyst) were obtained: Rate, M/s Rate, M/s (A), M [B, M (uncatalyzed) (catalyzed) 0.100 0.200 3.51 x 10 4 7.14 x 10-2 0.100 0.100 1.75 x 104 7.14 x 10-2 0.0500 0.200 1.76 x 104 3.57 x 10-2 0.0500 0.100 8.80 x 10-5 3.57 x 10-2 Based on these data: a. Determine the uncatalyzed and catalyzed rate laws for this reaction,...
1. Initial rate data at 25.0 °C are listed below for the reaction: 2 HgCl2 (aq) C2O (aq)2 C (aq)+ 2 CO:(g)+ Hg Cl(s) (COP)0 Expt. HgClalo Initial rate/ 3.1 x 10 1 0.100 0.20 1.2x 10 0.100 0.40 6.2x 10S 0.050 0.40 Use the data to determine the rate law for the reaction. 2. At 500 °C, cyclopropane (CsH6) rearranges to propene (CH3CH-CH2): CH CH=CH2 (g) CaHs (g) The reaction is first order and the rate constant is 6.7...
1. Initial rate data at 25.0 °C are listed below for the reaction: 2 HgCl2 (aq) + C,042 (aq) → 2 (aq) + 2 CO2(g) + HgCl(s) Expt. [HgCl2]0 [C:02) Initial rate/Ms? 0.100 0.20 0.100 0.40 3.1 x 105 1.2 x 104 6.2 x 10-5 0.050 0.40 Use the data to determine the rate law for the reaction. 2. At 500 °C, cyclopropane (C3H.) rearranges to propene (CH:CH-CH2): CH. (g) → CH,CH=CH2 (8) The reaction is first order and the...
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The reactions in the table are all zero order and follow the same general reaction process of A→products. Half‑life, t1/2 (s) Rate constant, k (M⋅s−1) Initial concentration, [A]0 (M) Reaction 1 5.31 0.0731 ? Reaction 2 ? 0.0391 0.571 Reaction 3 5.91 ? 0.491 Reaction 4 3.31 0.0371 ? Reaction 5 6.31 ? 0.351 Calculate the missing values for half‑life (t1/2 ), rate constant (k), and initial concentration, [A]0. reaction 1 initial concentration, [A]0: M reaction 2 half‑life, t1/2: s...
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2. Consider the reactions 1 and 2 shown below. Indicate how the reaction rate for each of the reactions will change your options are: increase, decrease, does NOT change) when the following modifications to the reactions and conditions are introduced: reaction 1 reaction 2 Br CH30 Na CH3OH CH OH as solvent CH3OH is also solvent A. The reaction temperature for both reactions is increased. B. The concentration of the reagent shown above the arrow is increased. C. The concentration...
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How do I calculate the Rate of Reaction and the Relative Rate of
Reaction?
0.04M 0.1M Initial I Concentration Initial S2082- Concentration Show a calculation of how you calculated the rate of reaction Rate of Reaction Use M/s to represent (mol/L)/s Show a calculation of how you calculated the relative rate of reaction Relative Rate of Reaction Reaction 1 Save&Continue Time to Colour Change 948 Numeric answers include a number followed by units. Nothing else. Pay attention to precision. Use...