a. Write a function F(t) that describes the value after t years of a $2000 investment that increases by 9% per year. c. Write a function P(t) that describes the population after t days of a colony of 1000 fire ants that doubles in population every 13 days. b. Write a function (t) that describes the value after t years of a $25,000 car that depreciates (loses value) at a rate of 15% per year. d. Write a function m(t) that describes the remaining mass after t years of a 100-gram sample of a radioac- tive compound with a half-life of 31 years.
a. Write a function F(t) that describes the value after t years of a $2000 investment that increases by 9% per year. c. Write a function P(t) that describes the population after t days of a colony of 1000 fire ants that doubles in population every 13 days. b. Write a function (t) that describes the value after t years of a $25,000 car that depreciates (loses value) at a rate of 15% per year. d. Write a function m(t) that describes the remaining mass after t years of a 100-gram sample of a radioac- tive compound with a half-life of 31 years.
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Transcribed Image Text:a. Write a function F(t) that describes
the value after t years of a $2000
investment that increases by 9% per
year.
c. Write a function P(t) that describes
the population after t days of a
colony of 1000 fire ants that doubles
in population every 13 days.
b. Write a function (t) that describes
the value after t years of a $25,000
car that depreciates (loses value) at
a rate of 15% per year.
d. Write a function m(t) that describes
the remaining mass after t years
of a 100-gram sample of a radioac-
tive compound with a half-life of 31
years.
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