In Problems 18, solve each pure-time differential equation. dy dx = x + sin x, where y0 = 0 for x0 = 0
Read moreTable of Contents
Textbook Solutions for Calculus For Biology and Medicine (Calculus for Life Sciences Series)
Question
Suppose that the size of a population at time t is denoted by N(t) and that N(t) satisfies the differential equation dN dt = 0.34N _ 1 N 200 _ with N(0) = 50 Solve this differential equation, and determine the size of the population in the long run; that is, find limt N(t).
Solution
The first step in solving 8.1 problem number 37 trying to solve the problem we have to refer to the textbook question: Suppose that the size of a population at time t is denoted by N(t) and that N(t) satisfies the differential equation dN dt = 0.34N _ 1 N 200 _ with N(0) = 50 Solve this differential equation, and determine the size of the population in the long run; that is, find limt N(t).
From the textbook chapter Solving Differential Equations you will find a few key concepts needed to solve this.
Visible to paid subscribers only
Step 3 of 7)Visible to paid subscribers only
full solution