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An organism's population has an initial biomass concentration of 200 mg/L, a maximum specific growth rate of 1/day, and respiration rate coefficient of 0.05/day. Assuming
An organism's population has an initial biomass concentration of 200 mg/L, a maximum specific growth rate of 1/day, and respiration rate coefficient of 0.05/day. Assuming a logistic growth model, what is the difference in the predicted final biomass amounts (in units of mg/L) at t1 = 10 days and at t2 = 10,000 days? Assume the carrying capacity is reported to be 5,000 mg/L. A) 4990B) Not applicable (error) - the model cannot be used.C) 1000D) No significant difference in resulting biomasses.
An organism's population has an initial biomass concentration of 200 mg/L, a maximum specific growth rate of 1/day, and respiration rate coefficient of 0.05/day. Assuming a logistic growth model, what is the difference in the predicted final biomass amounts (in units of mg/L) at t1 = 10 days and at t2 = 10,000 days? Assume the carrying capacity is reported to be 5,000 mg/L. A) 4990B) Not applicable (error) - the model cannot be used.C) 1000D) No significant difference in resulting biomasses.
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