Question

The data below show the concentration of cyclobutane (C4H8) versus time for the following reaction: C4H8→2C2H4...

The data below show the concentration of cyclobutane (C4H8) versus time for the following reaction: C4H8→2C2H4 Time (s) [C4H8] (M) 0 1.000 10 0.894 20 0.799 30 0.714 40 0.638 50 0.571 60 0.510 70 0.456 80 0.408 90 0.364 100 0.326

What is the rate of reaction when [C4H8]= 0.26 M ? Express your answer using two significant figures.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Firstly we need to find the order of reaction wrt the reactant, C4H8. We use the first order equation and try to find the rate constant. It the rate constant comes out to be constant, that means reaction is first order.

The rate constant comes out to be constant that means reaction is first order.

Add a comment
Know the answer?
Add Answer to:
The data below show the concentration of cyclobutane (C4H8) versus time for the following reaction: C4H8→2C2H4...
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. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • The rate constant k of the first-order reaction C4H8→2C2H4 is 7.60×10−3 s−1. The concentration of C4H8...

    The rate constant k of the first-order reaction C4H8→2C2H4 is 7.60×10−3 s−1. The concentration of C4H8 at t=8.00 seconds is 0.306 M. What was the initial concentration of C4H8? The answer has 3 significant figures (3 decimal points).

  • The first-order reaction C4H8→2C2H4 has the reaction constant k of 7.60×10−3 s−1. If the initial concentration...

    The first-order reaction C4H8→2C2H4 has the reaction constant k of 7.60×10−3 s−1. If the initial concentration of C4H8 is 0.325 M, what is the concentration of C4H8 after 20.0 seconds? The answer has three significant figures (3 decimal points).

  • The data below show the concentration of N2O5 versus time for the following reaction: N2O5(g)→NO3(g)+NO2(g) Time...

    The data below show the concentration of N2O5 versus time for the following reaction: N2O5(g)→NO3(g)+NO2(g) Time (s) [N2O5] (M) 0 1.000 25 0.822 50 0.677 75 0.557 100 0.458 125 0.377 150 0.310 175 0.255 200 0.210 Predict the concentration of N2O5 at 280 s . The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus time yields a straight line with slope 5.8×10−2 (M⋅s)−1 . You may want to reference (Page) section 13.4...

  • The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus...

    The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus time yields a straight line with slope 5.7×10−2 (M⋅s)−1 . 1) What is the value of the rate constant (k) for this reaction at this temperature? Express your answer using two significant figures. _____M-1S-1 2)Write the rate law for the reaction. Rate=k Rate=k[AB] Rate=k[AB]2 Rate=k[AB]3 3) What is the half-life when the initial concentration is 0.57 M ? Express your answer using two significant...

  • The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus...

    The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus time yields a straight line with slope 5.8×10−2 (M⋅s)−1 . You may want to reference (Page) section 13.4 while completing this problem. C. What is the half-life when the initial concentration is 0.53 M ? Express your answer using two significant figures. D. If the initial concentration of AB is 0.280 M , and the reaction mixture initially contains no products, what are the...

  • The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus...

    The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus time yields a straight line with slope 5.8×10−2 (M⋅s)−1 . You may want to reference (Page) section 13.4 while completing this problem. Part A Part complete What is the value of the rate constant (k) for this reaction at this temperature? Express your answer using two significant figures. -- SubmitPrevious AnswersRequest Answer Part B Part complete Write the rate law for the reaction. --...

  • MasyChemistry Crap Review Constants Periodic Table The data below show the concentration of N20 versus time...

    MasyChemistry Crap Review Constants Periodic Table The data below show the concentration of N20 versus time for the following reaction: You may want to reference (Pages 598-605, Section 14.5 while completing this problem Part A Determine the order of the reaction N205(g) + NO(g) + NO3(g) Time (s) (N20s] (M) 1.000 0.822 0.677 0.557 0.458 0.377 Request Answer Submit 0.310 0.255 0.210 Part B Complete previous parts) Part C Complete previous partis) Provide Feedback

  • TABLE 1. Concentration of crystal violet versus time in the crystal violet reaction (make calculations for...

    TABLE 1. Concentration of crystal violet versus time in the crystal violet reaction (make calculations for the third and fourth column and graph the results vs time) Time (min) [A] (molar conc.) In [A 1.000 0.893 0.806 0 (initiall 40.735 5 6 ーに。 0.676 0.625 0.581 0.543 0.510 0.481 0.454 0.431 0.410 -О-593 11.72 -067834 9 10 12 QUESTIONS 1) Is the reaction first-order or second-order? Explain. 2) Calculate the rate constant from the equation for the appropriate graph. 3)...

  • SEC | 14.4 The Integrated Rate Law: The Dependence of Concentration on Time Question 7 Note:...

    SEC | 14.4 The Integrated Rate Law: The Dependence of Concentration on Time Question 7 Note: The following reaction was monitored as a function of time: AB→A+B A plot of 1/[AB] versus time yields a straight line with slope 5.5×10−2 (M⋅s)−1 . Question Part D: If the initial concentration of AB is 0.210 M, and the reaction mixture initially contains no products, what are the concentrations of A and B after 75 s? Express your answers numerically using two significant...

  • Consider the balanced chemical equation. H2O2(aq)+3I−(aq)+2H+(aq)→I3−(aq)+2H2O(l) In the first 14.0 s of the reaction, the concentration...

    Consider the balanced chemical equation. H2O2(aq)+3I−(aq)+2H+(aq)→I3−(aq)+2H2O(l) In the first 14.0 s of the reaction, the concentration of I− drops from 1.000 M to 0.817 M Predict the rate of change in the concentration of H2O2 (Δ[H2O2]/Δt). Express the rate to three significant figures and include the appropriate units. (I understand the arithmetic, but I'm having a tough time with the units)

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT