In Problems 18, solve each pure-time differential equation. dy dx = x + sin x, where y0 = 0 for x0 = 0
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Textbook Solutions for Calculus For Biology and Medicine (Calculus for Life Sciences Series)
Question
Suppose that N(t) denotes the size of a population at time t and that dN dt = 1.5N _ 1 N 50 _ (a) Solve this differential equation when N(0) = 10. (b) Solve this differential equation when N(0) = 90. (c) Graph your solutions in (a) and (b) in the same coordinate system. (d) Find limt N(t) for your solutions in (a) and (b).
Solution
The first step in solving 8.1 problem number 39 trying to solve the problem we have to refer to the textbook question: Suppose that N(t) denotes the size of a population at time t and that dN dt = 1.5N _ 1 N 50 _ (a) Solve this differential equation when N(0) = 10. (b) Solve this differential equation when N(0) = 90. (c) Graph your solutions in (a) and (b) in the same coordinate system. (d) Find limt N(t) for your solutions in (a) and (b).
From the textbook chapter Solving Differential Equations you will find a few key concepts needed to solve this.
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