p is the density in grams per cubic centimeter .cm3 V is the volume of the space the gas occupies in cubic centimeters [cm'] Assume the experimental gas has a density of 0.0078 pound-mass per cubic foot Ibm f13 The rate of introduction is 500 milligrams per second mg What is the volume of the enclosed space in units of gallons [gal] ?
p is the density in grams per cubic centimeter .cm3 V is the volume of the space the gas occupies in cubic centimeters [cm'] Assume the experimental gas has a density of 0.0078 pound-mass per cubic foot Ibm f13 The rate of introduction is 500 milligrams per second mg What is the volume of the enclosed space in units of gallons [gal] ?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Please show all your work please. Make sure you show all your work, clear hand written please. Please write everything, units etc
![p is the density in grams per cubic
centimeter
стз
V is the volume of the space the gas
occupies in cubic centimeters
[em]
Assume the experimental gas has a density of
0.0078 pound-mass per cubic foot
Ibm
ft³
The rate of introduction is 500 milligrams per
second
mg
What is the volume of the enclosed space in
units of gallons
(gal]
?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F94bb715a-53b2-429a-957c-6b50bc881438%2F98168232-f373-4712-af59-c6479d7440ce%2Fgrxlm5p_processed.jpeg&w=3840&q=75)
Transcribed Image Text:p is the density in grams per cubic
centimeter
стз
V is the volume of the space the gas
occupies in cubic centimeters
[em]
Assume the experimental gas has a density of
0.0078 pound-mass per cubic foot
Ibm
ft³
The rate of introduction is 500 milligrams per
second
mg
What is the volume of the enclosed space in
units of gallons
(gal]
?
![The concentration (C) of a gas substance
introduced into an enclosed space as a
function of time (t) was measured and is shown
in the graph.
C = 52 e 0.21
Time (t) [s]
The theoretical equation is as follows:
0.5 rt
C =
= C, e pV
е ру
where:
Co is the initial concentration in grams
per liter
r is the rate of introduction in grams per
second
p is the density in grams per cubic
Concentration (C)[g/L]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F94bb715a-53b2-429a-957c-6b50bc881438%2F98168232-f373-4712-af59-c6479d7440ce%2Fxverwk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The concentration (C) of a gas substance
introduced into an enclosed space as a
function of time (t) was measured and is shown
in the graph.
C = 52 e 0.21
Time (t) [s]
The theoretical equation is as follows:
0.5 rt
C =
= C, e pV
е ру
where:
Co is the initial concentration in grams
per liter
r is the rate of introduction in grams per
second
p is the density in grams per cubic
Concentration (C)[g/L]
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