If C (in units of 10-4 molar) is the concentration of glucose in a solution, then E. coli bacteria in the solution grow at a rate, R 1.35C (in cell divisions per hour), given by' R = cell divisions 0.22 +C per hour. (a) Find the growth rate of bacteria growing in 3 - 10-4 molar glucose solution. Include units. NOTE: Round your answer to four decimal places. The growth rate is Choose one Choose one dR (b) Find dR dC dC cell divisions per hour per 10-4 molar. dR (c) Find dC Include unit cell divisions. |C=3 NOTE: Rownd your answer to four d hours/cell division. dR Choose dC |C=3 cell divisions per hour.
If C (in units of 10-4 molar) is the concentration of glucose in a solution, then E. coli bacteria in the solution grow at a rate, R 1.35C (in cell divisions per hour), given by' R = cell divisions 0.22 +C per hour. (a) Find the growth rate of bacteria growing in 3 - 10-4 molar glucose solution. Include units. NOTE: Round your answer to four decimal places. The growth rate is Choose one Choose one dR (b) Find dR dC dC cell divisions per hour per 10-4 molar. dR (c) Find dC Include unit cell divisions. |C=3 NOTE: Rownd your answer to four d hours/cell division. dR Choose dC |C=3 cell divisions per hour.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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