Paragraph Styles We need to adjust our data to create a graph which represents the above linear equation for first order kinetics. For each round in your experiment, calculate the natural log (In) of the number of Parent atoms (you are NOT using the above equation to find this value; just use the In button on your calculator or create an equation in Excel). Enter the Round number and number of Parent Atoms Remaining (from Tables 1 and 2 in Question #2), and In(Parent Atoms) in Table 3 below: Table 3: In(Parent Atoms) vs. Round number Round 0 123456789 3 10 Trial 1 Skittles "S" Up (Parent Atoms) 50 24 11 742H0 1 In (Parent Atoms) 3.91 3.18 Round 66949SWNTO 1 2 3 5 8 10 Trial 2 Skittles "S" Up (Parent Atoms) 50 29 15 H75320 11 In (Parent Atoms) 3.91
Paragraph Styles We need to adjust our data to create a graph which represents the above linear equation for first order kinetics. For each round in your experiment, calculate the natural log (In) of the number of Parent atoms (you are NOT using the above equation to find this value; just use the In button on your calculator or create an equation in Excel). Enter the Round number and number of Parent Atoms Remaining (from Tables 1 and 2 in Question #2), and In(Parent Atoms) in Table 3 below: Table 3: In(Parent Atoms) vs. Round number Round 0 123456789 3 10 Trial 1 Skittles "S" Up (Parent Atoms) 50 24 11 742H0 1 In (Parent Atoms) 3.91 3.18 Round 66949SWNTO 1 2 3 5 8 10 Trial 2 Skittles "S" Up (Parent Atoms) 50 29 15 H75320 11 In (Parent Atoms) 3.91
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:We need to adjust our data to create a graph that represents the linear equation for first-order kinetics. For each round in your experiment, calculate the natural log (ln) of the number of Parent atoms (you are NOT using the above equation to find this value; just use the ln button on your calculator or create an equation in Excel). Enter the Round number and number of Parent Atoms Remaining (from Tables 1 and 2 in Question #2), and ln(Parent Atoms) in Table 3 below:
**Table 3: ln(Parent Atoms) vs. Round number**
| Round | Trial 1 Skittles “S” Up (Parent Atoms) | ln(Parent Atoms) | Trial 2 Skittles “S” Up (Parent Atoms) | ln(Parent Atoms) |
|-------|----------------------------------------|------------------|----------------------------------------|------------------|
| 0 | 50 | 3.91 | 0 | 50 | 3.91 |
| 1 | 24 | *3.18* | 1 | 29 | |
| 2 | 11 | | 2 | 15 | |
| 3 | 7 | | 3 | 11 | |
| 4 | 4 | | 4 | 7 | |
| 5 | 2 | | 5 | 5 | |
| 6 | 1 | | 6 | 3 | |
| 7 | 0 | | 7 | 2 | |
| 8 | | | 8 | 0 | |
| 9 | | | 9 | | |
| 10 | | | 10 | | |
The table shows two trials measuring the number of "Parent Atoms" after several rounds. The first column lists the round number, followed by the number of Parent Atoms for Trial 1 and Trial 2. The ln(Parent Atoms) values are derived from taking the natural logarithm of the Parent Atoms count for each round and are displayed where calculated.
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