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Physics 102 Lab Online Experiment 2 - Beta Decay 1. Go to the following url: httpsR/pbet.colorado.eduven/simulation/legacy/beta-decay 2. Start the simulation and set it up as
Physics 102 Lab Online Experiment 2 - Beta Decay 1. Go to the following url: httpsR/pbet.colorado.eduven/simulation/legacy/beta-decay 2. Start the simulation and set it up as below. a. Select the "Multiple Atoms" tab at the top and click on "Carbon 14 - Nitrogen 14" b. Click "Pause" and take 99 atoms from the bucket by clicking the "Add 10" icon below the bucket 10 times. C. Your experiment should look like the diagram below. 3. Click the "" button on and off in 2500-year intervals, and record in the table below the number of undecayed atoms remain. This is the top # *C. Repeat your measurement 4 more times and calculate the average for each time interval. Time Run 1 Run 2 Run 3 Run 4 Run 5 (years) Average 99 99 99 90 99 2500 5000 7500 10000 12500 15000Online Physics 102 Lab 4. Using Excel, graph the number of undecayed nuclei N versus time t. Make an exponential fit, write the equation and identify the parameters: No and T. Add the graph to the report. 5. Calculate the natural logarithm of the each (average of N)\\ N.: In () and write them in the table below. Time (years 0 2500 5000 7500 10000 12500 15000 Number of undecayed atom, N 99 In () 6. Using Excel, graph In () versus t, and using the trendline, get a linear fit of the data and display the equation. Add the graph to the report.Physics 102. Lab Onlin 7. Use the slope of the line to determine the time constant . T - -- slope 8. Calculate the half-life using the equation given in the background section, T = - $1/2 In(2) Show your work. 9. Is the calculated half-life similar to the half-life for Carbon 14, which is 5730 years? If not, review your calculations
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