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
Denote by L(t) the length of a fish at time t, and assume that the fish grows according to the von Bertalanffy equation dL dt = k(34 L(t)) with L(0) = 2 (8.44) (a) Solve (8.44). (b) Use your solution in (a) to determine k under the assumption that L(4) = 10. Sketch the graph of L(t) for this value of k. (c) Find the length of the fish when t = 10. (d) Find the asymptotic length of the fish; that is, find limt L(t).
Solution
The first step in solving 8.1 problem number 22 trying to solve the problem we have to refer to the textbook question: Denote by L(t) the length of a fish at time t, and assume that the fish grows according to the von Bertalanffy equation dL dt = k(34 L(t)) with L(0) = 2 (8.44) (a) Solve (8.44). (b) Use your solution in (a) to determine k under the assumption that L(4) = 10. Sketch the graph of L(t) for this value of k. (c) Find the length of the fish when t = 10. (d) Find the asymptotic length of the fish; that is, find limt L(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