Atmospheric pressure (measured in atmospheres) decreases exponentially as height above sea level increases according to the equation h p = ( 1 45.000) , where h is the height above sea - level (in meters) and n is a constant. The atmospheric pressure at 1,800 meters above sea level is equal to 0.815 atmospheres. 24. What is n, rounded to the nearest integer?

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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Questions 24 and 25 use the following information.
Questions 24 and 25 use the following information.
Atmospheric pressure (measured in atmospheres)
decreases exponentially as height above sea level
increases according to the equation
h
p =D [1
TE 000), where h is the height above sea
%3D
45,000,
level (in meters) and n is a constant. The
atmospheric pressure at 1,800 meters above sea
level is equal to 0.815 atmospheres.
24. What is n, rounded to the nearest integer?
Transcribed Image Text:Questions 24 and 25 use the following information. Questions 24 and 25 use the following information. Atmospheric pressure (measured in atmospheres) decreases exponentially as height above sea level increases according to the equation h p =D [1 TE 000), where h is the height above sea %3D 45,000, level (in meters) and n is a constant. The atmospheric pressure at 1,800 meters above sea level is equal to 0.815 atmospheres. 24. What is n, rounded to the nearest integer?
Expert Solution
Given,

p=1-h45000n

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