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Long Term Patterns and Predictions of Climate Change
*****It is part of scientific inquiry to evaluate the results of scientific investigations, experiments, observations, |
Government climate data has been accurately kept for approximately one hundred years. This information is available on the Internet at http://www.ncdc.noaa.gov. For schools without Internet access there is a sample data sheet included for both carbon dioxide and average global temperatures. This exercise will enable students to use real data to perform specific calculations and extrapolate the effect and magnitude of human activity on earth's climate.
Materials:
Pre activity questions:
1. What effect does increased carbon dioxide concentration have on the average global temperature?
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2. What human activity is the main source of carbon dioxide in the environment?
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3. What ways do you think that greenhouse emissions can be reduced?
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4. What are the two most important natural storage areas for carbon dioxide?
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5. The national government has been recording climatological data for the last ________years.
1. Answer the pre-activity questions.
2. Construct a graph on which to display the data. Make sure you title and label your graph properly.
3. Record temperature and carbon dioxide data from the link or sample data sheet. (The sample data sheet can be
used to plot the relationship between temperature and another variable for a particular city that will be
assigned by the teacher.)
4. Plot the relationship of average temperature versus time.
5. Plot carbon dioxide concentration verses time on the second sheet of graph paper.
6. For sample data sheet: plot the temperature at a given city verses another value that has been
recorded in the data table from a web site.
7. Answer the post lab questions.
Sample data table:
(sample data from NOAA Reports to the Nation, No. 4, Fall 1997)
|
Year |
Average Global Temp. (C) |
CO2 Concentration (ppmv) |
|
1750 |
13.7 |
276 |
|
1760 |
13.7 |
276 |
|
1770 |
13.6 |
277 |
|
1780 |
13.5 |
278 |
|
1790 |
13.6 |
279 |
|
1800 |
13.8 |
280 |
|
1810 |
14.0 |
281 |
|
1820 |
14.1 |
282 |
|
1830 |
14.0 |
282 |
|
1840 |
14.2 |
282 |
|
1850 |
14.2 |
288 |
|
1860 |
14.3 |
289 |
|
1870 |
14.6 |
289 |
|
1880 |
14.6 |
289 |
|
1890 |
14.8 |
290 |
|
1900 |
14.8 |
295 |
|
1910 |
14.7 |
300 |
|
1920 |
14.9 |
303 |
|
1930 |
14.9 |
306 |
|
1940 |
15.0 |
307 |
|
1950 |
14.8 |
312 |
|
1960 |
15.0 |
313 |
|
1970 |
15.1 |
320 |
|
1980 |
15.2 |
314 |
|
1990 |
15.2 |
322 |
|
1998 |
15.5 |
332 |
Data table 1: Data available from http://www.worldclimate.com/climate/index.htm.
CO2 data can be obtained from http://www.cdiac.esd.ornl.gov/home.htmlhttp://www.worldclimate.com/climate/index.htm
|
Year |
Average Global Temp(C) |
Assigned variable |
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1. From your graph, what will the average temperature of the earth be in 2020 if the current trend in global warming continues?
________________________________________________________________________________
2. What relationship is shown to exist between the average global temperature and carbon dioxide concentration?
_________________________________________________________________________________
3. If carbon dioxide levels return to pre-1900 levels what will happen to the average global temperature?
__________________________________________________________________________________
4. In what year was the greatest increase in carbon dioxide levels recorded? ______ What are possible reasons for the increase?
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5. What effect will increased industrialization of developing countries such as China and India have on the climate?
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