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Given the following data, determine the order of the reaction with respect to Cl2.
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- Reaction of interest : S2O82-(aq) + 3I- (aq)→ 2SO42-(aq) + I3-(aq). rate= k[S2O82-]1[I-]1.I have my graph made but need to do the following but do not remember how. "Use graph paper in lab book to plot moles S2O82- consumed versus time in seconds and fit with a line of best fit.""To determine the slope of your line do not use any of the data points from your data, use 2 points on your straight line.""Units of rate are M/s so you must calculate rate from the slope of your line (mol/s)" The first picture is the graph, using the seconds and moles from the second picture.If Δ[Br2]ΔtΔ[Br2]Δ� = 4.7×10−6 M/sM/s , what is the value of Δ[ClO−2]ΔtΔ[ClO2−]Δ� during the same time interval? Express your answer to two significant figures and include the appropriate units. What is the average rate of consumption of Br−Br− during the same time interval? Express your answer to two significant figures and include the appropriate units.
- Consider the following data on the natural decomposition of a new molecule, TfO2, discovered in the sap of the Truffula tree in the land of the Lorax. What is the average rate of decomposition (mol/L•min) over the period of time from time point 1 and time point 2? Report your answer to the thousandths place and do not include units. Timepoint Time (min) concentration of TfO2 (mol/L) 1 0 2.341 2 5 1.417 3 16 0.727 4 27 0.38 5 37 0.08What is the average rate from t1= 50 s to t2= 100 sCalculate the full rate law using the information below: 2 NACHOS (g) → 12 CHIPS (g) + 3 CHEESE (g) [NACHOS]0 (M) Initial Rate (M–1s–1) 0.101 0.00484 0.0910 0.00437 Group of answer choices Rate = 5.61 × 10–2 M–1 s–1 [NACHOS]2 Rate = 6.03 × 10–1 M–2 s–1 [NACHOS]3 Rate = 4.79 × 10–2 s–1 [NACHOS] Rate = 1.66 × 10–3 M1/2 s–1 [NACHOS]2/3 Rate = 1.78 × 10–2 M–1/2 s–1 [NACHOS]3/2
- Number 1 in this lab. Using the data table sheet how do you find the initial rate in M/sThe enzyme urease is widely used for determining urea concentration in blood. The Michaelis constant for urease at room temperature is 2.0 mM and k2 = 2.5 × 10^3 s^-1 at pH = 7.5. Based on the kinetic experiment, when 4.76 mM urease was used, the initial rate of the reaction was determined to be 8.1 M/sec. What is the concentration in unit of mM of urea in blood? Please keep your answer to two decimal place. Please convert all concentration unit to mM in calculation. The answer is 4.26 (I would need help getting this answer)Rate Law find the initial rate N2O4 - 2 NO2 experiment initial (N2O4) (M) initial rate (M/sec) 1 0.50 0.050 2 1.00 0.200 3 1.50 0.450
- What will the units be for those rate calculations if you collect data from the interactive? Identify the correct answer for both CO_2CO2 and O_2O2 . Select all that apply: ppm CO_2CO2 / min min / ppm CO_2CO2 min / % O_2O2 % O_2O2 / minInstantaneous rates for the reaction of hydroxide ion with Cv+ can be determined from the slope of the curve in Figure 11.3 at various concentrations. They are (1) At 4.0 105 mol/L, rate = 12.3 107 mol L1 s1 (2) At 3.0 105 mol/L, rate = 9.25 107 mol L1 s1 (3) At 2.0 105 mol/L, rate = 6.16 107 mol L1 s1 (4) At 1.5 105 mol/L, rate = 4.60 107 mol L1 s1 (5) At 1.0 105 mol/L, rate = 3.09 107 mol L1 s1 (a) What is the relationship between the rates in (1) and (3)? Between (2) and (4)? Between (3) and (5)? (b) What is the relationship between the concentrations in each of these cases? (c) Is the rate of the reaction proportional to the concentration of Cv+? Explain your answer.how we can calculate the actual dissolved Oxygen concentration (cL) in oxygen transfer rate (OTR) formula .whenwe have cL than we can calculate the KLa value we find OTR from graph slope . cS =468/(31.6+T) T= 23 KLa = OTR/(cL- cS) cS = oxygen saturation concentration time(h) Dissolved oxygen(mg/l) 3.264 4.326 3.2818 3.697 3.29537 3.674 3.31445 3.268 3.33385 2.858 3.35218 2.475 3.37633 1.994 3.42174 1.15 3.4376 0.89 3.48951 0.249 3.54265 0.028