In the week that ended on January 4, there were 24 cases of flu reported in a city's hospital. In the 5 weeks that followed, the number of new cases reported each week had grown exponentially and can be modeled by this graph. a. 24. 12* b. 24. (1.5)x flu cases reported c. 24 + 12x 140 120 100 80 60 40 20 (0,24) 1. Which expression represents the number of cases of flu x weeks after January 4? Explain what each number in your chosen expression means in terms of the flu cases. (1,36) 2 3 4 1 weeks since January 4 5 d. 24. (1.5)* 2. If the trend continued, would the number of cases reported be greater than 300 after 5 weeks? Explain or show how you know.
In the week that ended on January 4, there were 24 cases of flu reported in a city's hospital. In the 5 weeks that followed, the number of new cases reported each week had grown exponentially and can be modeled by this graph. a. 24. 12* b. 24. (1.5)x flu cases reported c. 24 + 12x 140 120 100 80 60 40 20 (0,24) 1. Which expression represents the number of cases of flu x weeks after January 4? Explain what each number in your chosen expression means in terms of the flu cases. (1,36) 2 3 4 1 weeks since January 4 5 d. 24. (1.5)* 2. If the trend continued, would the number of cases reported be greater than 300 after 5 weeks? Explain or show how you know.
Chapter6: Exponential And Logarithmic Functions
Section: Chapter Questions
Problem 4RE: Determine whether Table 1 could represent a function that is linear, exponential, or neither. If it...
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In the week that ended on January 4, there
were 24 cases of flu reported in a city’s
hospital. In the 5 weeks that followed, the
number of new cases reported each week
had grown exponentially and can be
modeled by this graph.
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