An endangered species numbered 7,000 at the start of the year 2003 and at the start of 2014 numbered 1,000. Assuming the population follows the exponential decay model N(t) = Noe kt, predict in what year the population will fall below 100. (Your answer must be a year).
An endangered species numbered 7,000 at the start of the year 2003 and at the start of 2014 numbered 1,000. Assuming the population follows the exponential decay model N(t) = Noe kt, predict in what year the population will fall below 100. (Your answer must be a year).
Big Ideas Math A Bridge To Success Algebra 1: Student Edition 2015
1st Edition
ISBN:9781680331141
Author:HOUGHTON MIFFLIN HARCOURT
Publisher:HOUGHTON MIFFLIN HARCOURT
Chapter6: Exponential Functions And Sequences
Section: Chapter Questions
Problem 14CR
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Transcribed Image Text:An endangered species numbered 7,000 at the start of the year 2003 and at the start of 2014 numbered 1,000. Assuming the population follows the exponential decay model N(t) = Noe kt,
predict in what year the population will fall below 100. (Your answer must be a year).
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