The population sizes of many animal species rise and fall over time. Suppose that the population size of a certain species can be modeled by the following function. p(t)=3350+1250 sin 1.5t In this equation, p (t) represents the total population size, and t is the time in years. Find the following. If necessary, round to the nearest hundredth. Period of p : years Frequency of p :cycles per year Minimum population size:

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter1: Units And Measurement
Section: Chapter Questions
Problem 17P: A generation is about one-third of a lifetime. Approximately how many generations have passed since...
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The population sizes of many animal species rise and fall over time. Suppose that the population size of a certain species can be modeled by the following
function.
p(t)=3350+1250 sin 1.5t
In this equation, p (t) represents the total population size, and t is the time in years.
Find the following. If necessary, round to the nearest hundredth.
Period of p : years
Frequency of p :cycles per year
Minimum population size:
Transcribed Image Text:The population sizes of many animal species rise and fall over time. Suppose that the population size of a certain species can be modeled by the following function. p(t)=3350+1250 sin 1.5t In this equation, p (t) represents the total population size, and t is the time in years. Find the following. If necessary, round to the nearest hundredth. Period of p : years Frequency of p :cycles per year Minimum population size:
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