1 / 12

Non-Linear Form of the Integrated Rate Law

Non-Linear Form of the Integrated Rate Law. Edward A. Mottel Integrated, First-Year Curriculum in Science, Engineering and Mathematics. Please Sit with Someone so that there is one computer for two people. Please be sure you or your partner has a copy of the Integrated Rate Law handout.

kirby
Télécharger la présentation

Non-Linear Form of the Integrated Rate Law

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Non-Linear Form of the Integrated Rate Law Edward A. Mottel Integrated, First-Year Curriculum in Science, Engineering and Mathematics

  2. Please Sit with Someoneso that there is one computer for two people • Please be sure you or your partner has a copy of the Integrated Rate Law handout. • Turn on your computer and start Excel • You DO NOT have to be on the network.

  3. Is it possible to get the best fit line to look like the original data? NO2 Decomposition at 400 K 500 450 400 350 300 250 PNO2 (torr) 200 150 100 50 0 0 200 400 600 800 1000 Time (s) Take the 1-n root of each side! How can you rewrite the equation so PNO2 is a function of time? (PNO2)t1-n= (n-1) k(t - to) + (PNO2)o1-n

  4. 1 é ù 1-n (PNO2)t= (n-1) k(t - to) + (PNO2)o1-n ë û Plot this function versus time in Excel Non-Linear Integrated Rate Law Method (PNO2)t1-n= (n-1) k(t - to) + (PNO2)o1-n

  5. A B C D E F G 1 Time PNO2 Diff DiffSq 2 0 474 n 3 26 400 Ao 4 88 290 k 5 190 200 SumSq 6 801 70 Using the same procedure name Ao, k and SumSq Set Up the Excel Spreadsheet to Look Like This Fit Click on this cell and from the tool bar select Insert / Name / Define The cell name choice should be listed as n, select OK

  6. A B C D E F G 1 Time PNO2 Diff DiffSq 2 0 474 450 n 2 3 26 400 Ao 450 4 88 290 k 1e-4 5 190 200 SumSq 6 801 70 Click on this cell and enter =((n-1)*k*A2 + (Ao)^(1-n))^(1/(1-n)) If you put into G2, G3 and G4 the numbers 2, 450, 1e-4 the value 450 should appear in cell c2 Set Up the Excel Spreadsheet to Look Like This Fit

  7. A B C D E F G 1 Time PNO2 Diff DiffSq 2 0 474 24 576 n 2 3 26 400 Ao 450 4 88 290 k 1e-4 5 190 200 SumSq 6 801 70 Click on this cell and enter Click on this cell and enter =B2 - C2 =D2 * D2 The value 24 should appear The value 576 should appear Set Up the Excel Spreadsheet to Look Like This Fit 450

  8. A B C D E F G 1 Time PNO2 Diff DiffSq 2 0 474 450 24 576 n 2 3 26 400 Ao 450 207 193 37105 4 88 290 91 199 39710 k 1e-4 5 190 200 SumSq 47 153 23372 6 801 70 12 58 3347 and copy down the columns. Set Up the Excel Spreadsheet to Look Like This Fit Select these three cells (Shift/Click) The indicated values should appear.

  9. A B C D E F G 1 Time PNO2 Diff DiffSq 2 0 474 450 24 576 n 2 3 26 400 Ao 450 207 193 37105 4 88 290 91 199 39710 k 1e-4 5 190 200 SumSq 47 153 23372 104110 6 801 70 12 58 3347 Click on this cell and enter The indicated value should appear. Set Up the Excel Spreadsheet to Look Like This Fit =sum (e2 : e6)

  10. NO2 Decomposition 500 450 400 350 300 250 PNO2 (torr) 200 150 100 50 0 0 100 200 300 400 500 600 700 800 900 Time (s) Click on the lower data set and choose Format Data Series This line should appear Make a graph of the data with two functionsA1:A6,B1:B6,C1:C6 Select Line: Custom Marker: None

  11. Using Solver

More Related