16. The graph of f(y) is given below, use it to answer the following. f 2 a b y (a) Sketch the phase line for y' = f(y). Identify each equilibrium as stable, unstable, or semi- stable. (b) For what values of k does the equation y' = f(y) - k have two stable equilibria?
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- Describe the qualitative behavior of the differential equation by locating all the equilibrium points (fixed points) and graphing the phase trajectory in the phase plane.Differentiate the following expressions with respect to x: (i) y= (2x³-4) X+1 y = x-1 (ii) (iv) f(x)=(x³-3x)(2x²+3x+5) x²+2x y = x 3-x²-2x (v) y= x²-1 y y= √√x(√x+3) Complete Table 2.5 and then, find their derivatives. Table 2.5 (all) y = f(g(x)) (i) y= (6x-5)4 (ii) 1 y= (ii) y=√x²-1 u = g(x) y = f(u)what is the phase shift of f(x)=16sin(8x-11)-16?
- dy 3. Use the phase plot for dt = g(y) to identify the equilibria (if any) and their corresponding stabilities. 1.5- 1- 0.5- 0.5 1.5 2.5 3.5 -0.5- Equilibria StabilityFind a particular solution y, of the following equation. Primes denote the derivatives with respect to x. y(6) + 2y(3) + 2y" = 5x? - 6 ... The particular solution is y, (x) =:Help solving problem
- A population of animals oscillates between a low of 1100 on January 1 ( t = 0 ) and a high of 2000 on July 1 (t = 6 ). The population doesn't reach this high before July 1. (a) Find a formula for the population, P, in terms of the time, t, in months. Assume there is no phase shift. Use "pi" or symbol r to enter the n. P(t) = ? Edit (b) Interpret the amplitude, period, and midline of the function P = f(t). Amplitude = This is the amount that the population varies above and below the average population. Period = months. This means the cycle repeats annually.The population of fish in a lake grows logistically according to the differential equation where t is in years with no harvesting. If the lake has 550 fish and opens to fishing, determine how many fish can be harvested per year to maintain equilibrium. dy/dt=0.1y(1-y/2500) Differential EquationsConsider a pond that initially contains 10 million gal of fresh water. Water containing an undesirable chemical flows into the pond at the rate of 5 million gal/yr, and the mixture in the pond flows out at the same rate. The concentration y(t) of chemical in the incoming water varies periodically with time according to the expression y(t) = 2 + sin 2t g/gal. Construct a mathematical model of this flow process and determine the amount of chemical in the pond at any time.