Increase K1 to shift the N1-intercept out for the pathc No further engineering is needed because there is a ste Decrease a12 to shift the N2-intercept up for the pathc

Curren'S Math For Meds: Dosages & Sol
11th Edition
ISBN:9781305143531
Author:CURREN
Publisher:CURREN
Chapter10: Reconstitution Of Powdered Drugs
Section: Chapter Questions
Problem 47SST
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Increase K1 to shift the N1-intercept out for the pathogen
O No further engineering is needed because there is a steady state point
Decrease 12
to shift the N2-intercept up for the pathogen
Increase K2 to shift the N2-intercept up for the probiotic
Transcribed Image Text:Increase K1 to shift the N1-intercept out for the pathogen O No further engineering is needed because there is a steady state point Decrease 12 to shift the N2-intercept up for the pathogen Increase K2 to shift the N2-intercept up for the probiotic
For a pathogen of interest there is a potential probiotic (the adjacent phase plane
diagram depicts the interaction of these two species: orange = pathogen; blue =
probiotic). Currently the carrying capacities are K1 = 550, K2 = 700; and the
competition coefficients are ¤12 = 0.6, a21 = 0.9 (1 = pathogen, 2 = probiotic).
Which of the following would be a good strategy to make the probiotic more
effective at eliminating the pathogen?
%3D
%3D
1000
800-
600-
400
200-
0
200 400 600
800 1000
Species 1 (#)
Species 2 (#)
Transcribed Image Text:For a pathogen of interest there is a potential probiotic (the adjacent phase plane diagram depicts the interaction of these two species: orange = pathogen; blue = probiotic). Currently the carrying capacities are K1 = 550, K2 = 700; and the competition coefficients are ¤12 = 0.6, a21 = 0.9 (1 = pathogen, 2 = probiotic). Which of the following would be a good strategy to make the probiotic more effective at eliminating the pathogen? %3D %3D 1000 800- 600- 400 200- 0 200 400 600 800 1000 Species 1 (#) Species 2 (#)
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