Question: J D @ RI | DEL M M X * C| * C| * C| * CI| * D. | # D. | # D

J D @ RI | DEL M M X * C| * C| * C| * CI| * D. | # D. | # D | # D | # D | # D | # D | # D | # D | # D | # D | # D | # D | # D | # D | # D / G G | Si| + - X G https://mylab.pearson.com/Student/PlayerTest.aspx?testld=252854772 ... b MAT1340C06 College Algebra: MA1 (Alice Ward-Franey) SU23 Brandon Okamatsu 07/23/23 7:07 PM ? = Test: Module 4 EXAM (5.1 - 5.6) Question 13 of 25 This test: 100 point(s) possible This question: 4 point(s) possible Submit test 4500 Question list K In a town whose population is 4500, a disease creates an epidemic. The number of people N infected t days after the disease has begun is given by the function N(t) = 1 + 24.6- 0.9t . Complete Question 4 parts a) through c) below. Question 5 a) How many are initially infected with the disease (t = 0)? (Round to the nearest whole number as needed.) Question 6 b) Find the number infected after 2 days, 5 days, 8 days, 12 days, and 16 days. The number infected after 2 days is . (Round to the nearest whole number as needed.) O Question 7 The number infected after 5 days is . (Round to the nearest whole numbers as needed.) The number infected after 8 days is | . (Round to the nearest whole numbers as needed.) Question 8 The number infected after 12 days is . (Round to the nearest whole numbers as needed.) The number infected after 16 days is . (Round to the nearest whole numbers as needed.) Question 9 c) Using this model, can you say whether all 4500 people will ever be infected? Explain. Select the correct choice below and, if necessary, fill in the answer box to complete your choice. Question 10 O A. As t-0, N(t)-4500, so 4500 people will be infected after |days. O B. As t->e, N(t)-4500, so 4500 people will be infected after days. Question 11 O c. As too, N(t)-4500, so the number approaches 4500, but never actually reaches it. Question 12 Question 13 Time Remaining: 01:42:32 Next 87.F Mostly cloudy Q Search D W X 7:07 PM 7/23/2023
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