Mathematics
Mathematics, 16.03.2020 18:59, scotrebe3626

The Michaelis-Menten model describes the kinetics of enzyme mediated reactions: dS / dt= Vm S/k_s+S where S = substrate concentration (moles/L), vm = maximum uptake rate (moles/L/d), and ks = the half-saturation constant, which is the substrate level at which uptake is half of the maximum [moles/L]. If the initial substrate level at / = 0 is 5o, this differential equation can be solved for S = S_0 - V_mt + k_s IN(S_0/S) Generate a plot of S versus t for the case where S_0 = 8 moles/L, vm = 0.7 moles/L/d, and k_s = 2.5 moles/L. Requirements: 1. Use the Bisection Method to find the root 2. Write a main program and a function program 3. Main Program a. define constants b. define es c. define function handle for the function you are finding the root for. Note that the function handle you define will be a function of S and t, i. e. f(S, t) d. define Si and Su e. t will go from 0 days to 40 days. f. Use 40 values for t use a for loop (inside main program) to loop through the values of t (one at a time) to generate a vector for S (one value at a time). Note that each value of t will give a different value for S. g. use a convergence criteria corresponding to 6 significant figures h. generate plot of S vs t. 4. Function Program a. algorithm for Bisection Method b. inputs to your function will be es, Si, Su, t (note that the t value sent to the function program is a scalar value), and your function handle c. output will be a scalar value for S (i. e. the root of your equation for the single value of t that you sent to the function)

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The Michaelis-Menten model describes the kinetics of enzyme mediated reactions: dS / dt= Vm S/k_s+S...

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