All changes saved 2 Dr. Ketterling was experimenting with antibiotics on a population of bacteria. He checked the population each hour after introducing the first antibiotic and determined that the population decreased at a steady rate of 7.5% each hour over a 24-hour period. If the initial population of bacteria was 2, 500, 000, what was the population after 24 hours? Round your answer to the nearest thousand. O A 375, 000 bacteria O A 355, 000 bacteria A~265 000 hacnrin REVIOUS 2 of 5 NEXT SAVE & EXIT Us O I 7:15 Lenovo N23

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Round your answer to the nearest thousand.
All chang
O Az 375, 000 bacteria
A 355, 000 bacteria
O A 365, 000 bacteria
O A= 385, 000 bacteria
PREVIOUS
2 of 5
NEXT
SAVI
LiF
US
Lenovo
esc
Ce
&
3
5
8.
9.
A4
Transcribed Image Text:Round your answer to the nearest thousand. All chang O Az 375, 000 bacteria A 355, 000 bacteria O A 365, 000 bacteria O A= 385, 000 bacteria PREVIOUS 2 of 5 NEXT SAVI LiF US Lenovo esc Ce & 3 5 8. 9. A4
All changes saved
2. Dr. Ketterling was experimenting with antibiotics on a population of bacteria. He checked the population each hour after introducing the first antibiotic and determined that
the population decreased at a steady rate of 7.5% each hour over a 24-hour period. If the initial population of bacteria was 2, 500, 000, what was the population after 24 hours?
Round your answer to the nearest thousand.
888
A 375, 000 bacteria
A 355, 000 bacteria
A 265 000 bactoria
REVIOUS
2 of 5
NEXT
SAVE & EXIT
Lir
US 1
日7:15
Lenovo
N23
esc
&
2
3
5
6
7
8
e
t
u
A4
%23
Transcribed Image Text:All changes saved 2. Dr. Ketterling was experimenting with antibiotics on a population of bacteria. He checked the population each hour after introducing the first antibiotic and determined that the population decreased at a steady rate of 7.5% each hour over a 24-hour period. If the initial population of bacteria was 2, 500, 000, what was the population after 24 hours? Round your answer to the nearest thousand. 888 A 375, 000 bacteria A 355, 000 bacteria A 265 000 bactoria REVIOUS 2 of 5 NEXT SAVE & EXIT Lir US 1 日7:15 Lenovo N23 esc & 2 3 5 6 7 8 e t u A4 %23
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