Question

What was not used to determine the order of the [Dye] in the rate law: a)...

What was not used to determine the order of the [Dye] in the rate law:

a) The table of data that shows the changes of rate as a consequence of the change in the [Dye] for all experiments
b) The association of the appropriate integrated rate law with the linear function exhibited by the plotted data
c) The method of isolation
d) The plot of ln [Dye] versus time

Homework Answers

Answer #1

Answer: c) The method of isolation

rate law depends on concentration of monomers and products, temperature & pressure if applicable then mainly the reaction mechanism whether it is Radical, cationic, or anionic and also depends on intermediate species sometimes. But never depends on method of isolation. Isolation means reaction is already completed and ready to take out our desired product from reaction mixture. It merely depends upon other options

a) The table of data that shows the changes of rate as a consequence of the change in the [Dye] for all experiments
b) The association of the appropriate integrated rate law with the linear function exhibited by the plotted data
d) The plot of ln [Dye] versus time

Thank You So Much! Please Rate this answer as you wish.

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Given the following data collected from experiments, determine the rate law, overall order, and the numerical...
Given the following data collected from experiments, determine the rate law, overall order, and the numerical value for the rate constant. Experiement [A] [B] Initial Rate (M min ^-1) 1 0.200 0.300 0.300 2 0.800 0.300 4.80 3 0.200 0.600 2.40
all calculations must be included! The indicator crystal violet, (V) reacts with NaOH (OH- ) according...
all calculations must be included! The indicator crystal violet, (V) reacts with NaOH (OH- ) according to the equation: CV(aq) + OH- (aq) → CV- (aq) (Violet) (Colorless) The rate law for the reaction is: Rate = k2 [CV] [NaOH]. In an experiment the concentration of NaOH exceeds that of the crystal violet by a factor of 1000 so the rate law becomes Rate = k1 [CV] where k1 = k2 [NaOH] . The following data were obtained for the...
PART 4: MASS OF THE SUN Kepler’s 3rd law of planetary motion can be used to...
PART 4: MASS OF THE SUN Kepler’s 3rd law of planetary motion can be used to estimate MS the mass of the sun: T2 = 4π2/GMs*r3 Go online and find the data for the mean distance and orbital period of the planets of the solar system. Enter the orbital periods of the planets (in seconds) and the mean distances (in meter) between the planets and the sun into separate columns in an Excel spreadsheet. Plot T versus r and note...
1. Dinitrogen pentoxide (N2O5) decomposes to NO2 and O2 at relatively low temperatures in the reaction...
1. Dinitrogen pentoxide (N2O5) decomposes to NO2 and O2 at relatively low temperatures in the reaction 2N2O5(soln) → 4NO2(soln) + O2(g) This reaction is carried out in a CCl4 solution at 45° C. The concentrations of N2O5 as a function of time are listed in the table. Plot a graph of the concentration versus t, ln (natural log) concentration versus t, and 1/concentration versus t. Graphically, determine the order of the reaction, write the rate law and calculate the value...
Exercise 5 (Linear Regression). The hydrolysis of cellulose in dilute acid solution follows first order reaction...
Exercise 5 (Linear Regression). The hydrolysis of cellulose in dilute acid solution follows first order reaction kinetics. As a result, the rate constant for the hydrolysis can be determined by plotting the natural logarithm of the amount of cellulose in the reaction mixture versus the elapsed reaction time. The rate constant is equal to the negative of the slope value of this line. What are the units of the rate constant? Use the reaction data given in Table 3 to...
Consider the reaction: A + B → products The following rate law was experimentally determined: rate...
Consider the reaction: A + B → products The following rate law was experimentally determined: rate = k[A][B]2 If the concentration of A stays the same and B doubles, the rate will increase by a factor of sixteen. triple. quadruple. double. Which statement is correct? The exponents in the rate law NEVER match the coefficients in the balanced chemical reaction. The exponents in the rate law MUST be determined by experiment. The exponents in the rate law ALWAYS match the...
Design a CSTR to provide pretreatment for an industrial wastewater that flows at a rate of...
Design a CSTR to provide pretreatment for an industrial wastewater that flows at a rate of 1,000 fpm with a phenol concentration of 200 mg/L. Phenol undergoes a first-order decay reaction in the CSTR with a rate constant, k=0.50 hr^(-1). The current industrial pretreatment permit limitation for phenol is 20 mg/L. The permit limitation may be changed, either higher or lower, in the future. 1. Determine the required CSTR volume, V (in gallons), and hydraulic residence time, in V/Q (hours),...
62a. Changes in inventory unplanned investment are used by economists in order to determine a. changes...
62a. Changes in inventory unplanned investment are used by economists in order to determine a. changes in business capital. b. the total value of goods produced and sold in a year. c. the total value of sold products. d. the total value of goods produced but not sold in a year. e. changes in planned investment. 62b. In the income-expenditure analysis, the change in the equilibrium level output that results from a given change in the level of investment is...
Methyl Acetate reacts in alkaline solution to produce acetate and methanol according to the reaction below:...
Methyl Acetate reacts in alkaline solution to produce acetate and methanol according to the reaction below: CH3COOCH3(aq) + OH-(aq) → CH3COO-(aq) + CH3OH (aq) i) In an experiment, the concentration of methyl acetate was monitored as a function of time. The data is given in the table below. Complete the table below by converting the concentration data to an appropriate form that can be plotted to determine whether this reaction is first or second order. Show one example calculation for...
The first-order decomposition of a colored chemical species, X, into colorless products is monitored with a...
The first-order decomposition of a colored chemical species, X, into colorless products is monitored with a spectrophotometer by measuring changes in absorbance over time. Species X has a molar absorptivity constant of 5.00x103 cm–1M–1 and the path length of the cuvette containing the reaction mixture is 1.00 cm. The data from the experiment are given in the table below. [X] (M) Absorbance (A) Time (min) ? 0.600 0.0 4.00 x 10-5 0.200 35.0 3.00 x 10-5 0.150 44.2 1.50 x...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT