a. The equation for the population (in millions) is P(t) = e (Use integers or decimals rounded to six decimal places for any numbers in the equation.) ...

College Algebra
7th Edition
ISBN:9781305115545
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter4: Exponential And Logarithmic Functions
Section: Chapter Questions
Problem 12CC: Suppose that the initial size of a population is n0 and the population grows exponentially. Let n(t)...
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The population of the world in the year 1650 was 470 million, and in the year 2005 was 6451 million.
a. Assuming that the population of the world grows exponentially, find the equation for the population in millions in the year t.
b. Use your answer from part a to find the population of the world in the year 4.
c. Is your answer to part b reasonable? What does this tell you about how the population of the world grows?
a. The equation for the population (in millions) is P(t) =
e
(Use integers or decimals rounded to six decimal places for any numbers in the equation.)
...
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Transcribed Image Text:The population of the world in the year 1650 was 470 million, and in the year 2005 was 6451 million. a. Assuming that the population of the world grows exponentially, find the equation for the population in millions in the year t. b. Use your answer from part a to find the population of the world in the year 4. c. Is your answer to part b reasonable? What does this tell you about how the population of the world grows? a. The equation for the population (in millions) is P(t) = e (Use integers or decimals rounded to six decimal places for any numbers in the equation.) ... () More
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