From the kinetic data below, determine the experimental order with respect to D. Report to one decimal place. Exp [A] (M) [B] (M) [C] (M) [D] (M) Rate (M/s) 0.025 0.150 0.500 0.100 8.55E-04 0.050 0.150 0.300 0.200 1.71E-03 3 0.050 0.300 0.500 0.300 3.42E-03 4 0.025 0.300 0.300 0.400 6.84E-03 0.025 0.150 0.500 0.500 1.37E-02 О 1.5 O 1.6 O 1.7 O 1.8 O 1.9 O 2.0
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- Determine the average rate of change of BB from ?=0 st=0 s to ?=272 s.t=272 s. A⟶2BA⟶2B Time (s) Concentration of A (M) 0 0.7300.730 136136 0.4450.445 272272 0.1600.160 rateB= __________M/scan you help me understand how to find the constant rate to parts c - fA + B → C [A](M) [B](M) Initial Rate (M/h) 0.139 0.228 132 0.621 0.228 362 0.139 0.779 862 Find the order with respect to A. Round to the nearest whole number.
- phenol, atrazine, lindane, 2,4-D are found in a groundwater plume where the goal is to use a permeable reactive barrier (PRB) to remove them. The linear groundwater velocity is 0.25 ft/day. The compounds are all expect to degrade with the first order rate constant of 0.0015/h. If the starting concentrations are all at 150 mg/L, what is the anticipated concentration after passing through a PRB with a 4 foot wide zero valent iron media that is anticipated to promote the reduction of these chemicals? Assume a temperature of 25 C.For A⟶products, time and concentration data were collected and plotted as shown. [?] (?) t (s) 0.6000.600 00.000.0 0.4840.484 30.030.0 0.4050.405 60.060.0 0.3490.349 90.090.0 order = k = units =our is all about Chemical kinetics please help plsssss... please answer FIRST QUESTION ONLY
- Using the data in the table, determine the rate constant of the reaction and select the appropriate units. A+2B⟶C+D Trial [?] (?)[A] (M) [?] (?)[B] (M) Rate (M/s) 1 0.360 0.330 0.0164 2 0.360 0.660 0.0164 3 0.720 0.330 0.0656 ?=? Units =?Please help me determine the integrated rate law and justify the answerCalculate the rate law from the given data: Run [B] [C] Initial Rate (M/sec) 1 1.5 2.0 0.20 2 1.5 4.0 0.40 3 3.0 2.0 0.80
- An ocean outfall diffuser that discharges treated wastewater into the Pacific ocean is 5,000 m from a public beach. The wastewater contains 105 coliform bacteria per milliliter (coliform /mL). The wastewater discharge flow rate is 0.3 m3/s. The coliform first-order death rate in seawater is approximately 0.3 h-1. The current carries the wastewater plume toward the beach at a rate of 0.5 m/s. The ocean current may be approximated as a pipe carrying 600 m3/s of seawater. Determine the coliform concentration at the beach. Assume that the current behaves as a plug-flow reactor and that the wastewater is completely mixed in the current at the discharge point.What is method of initial rates and what does it do?Using the data in the table, determine the rate constant of the reaction and select the appropriate units. A+2B⟶C+D Trial [?] (?) [?] (?) Rate (M/s) 1 0.340 0.210 0.0204 2 0.340 0.420 0.0204 3 0.680 0.210 0.0816 ?=