Exponential Functions

Because of their dramatic changes in intensity from one point to another, earthquakes are an ideal example of exponential functions. A massive earthquake in southwestern China in 2008 caused an enormous amount of damage at its epicenter but much less at points farther away. This program compares qua...

Full description

Other Authors: Films for the Humanities & Sciences (Firm), Infobase., Media 4 Math (Firm).
Format: Video
Language: English
Published: New York, N.Y. : Infobase, [2011], c2011.
Physical Description: 1 streaming video file (20 min.) : sd., col., digital file.
Series: Algebra applications (New York, N.Y.)
Subjects:
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490 1 |a Algebra Applications. 
500 |a Encoded with permission for digital streaming by Infobase on October 09, 2011. 
500 |a Films on Demand is distributed by Infobase for Films for the Humanities & Sciences, Cambridge Educational, Meridian Education, and Shopware. 
505 0 |a Sichuan Earthquake (2:08) -- Decreasing and Increasing Exponential Functions (6:02) -- Intensity vs. Magnitude (1:37) -- Graph the Intensity and Magnitude of Earthquake (4:03) -- Measure of Earthquake Magnitude (4:33) -- Credits: Exponential Functions (0:09) 
506 |a Access requires authentication through Films on Demand. 
520 |a Because of their dramatic changes in intensity from one point to another, earthquakes are an ideal example of exponential functions. A massive earthquake in southwestern China in 2008 caused an enormous amount of damage at its epicenter but much less at points farther away. This program compares quakes of various magnitudes that occurred in Sichuan Province to explain the difference between linear and exponential functions. The difference between magnitude and intensity, and their relation to each other, is also covered. 
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650 0 |a Exponential functions. 
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830 0 |a Algebra applications (New York, N.Y.) 
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