Consider the following table. Pressure Under Water Depth, D (feet, ft) Pressure, P (atm) Surface 1 33 66 3 99 4 132 Write the function for the model of the data as given. That is, write the function for the model that gives the pressure in atm, where d is depth in feet, with data from 0 sds 132. (Round all numerical values to three decimal places.) P(d) = Write the function for the model of the inverted data. That is, write the function for the model that gives the depth in feet, where p is pressure in atm, with data from 1 sps 5. (Round all numerical values to three decimal places.) D(p) =

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
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Chapter6: Exponential And Logarithmic Functions
Section6.8: Fitting Exponential Models To Data
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Consider the following table.
Pressure Under Water
Depth, D
(feet, ft)
Pressure, P
(atm)
Surface
1
33
66
3
99
4
132
Write the function for the model of the data as given. That is, write the function for the model that gives the pressure in atm, where d is depth in feet, with data from 0 sds 132. (Round all
numerical values to three decimal places.)
P(d) =
Write the function for the model of the inverted data. That is, write the function for the model that gives the depth in feet, where p is pressure in atm, with data from 1 sps 5. (Round all numerical
values to three decimal places.)
D(p) =
Transcribed Image Text:Consider the following table. Pressure Under Water Depth, D (feet, ft) Pressure, P (atm) Surface 1 33 66 3 99 4 132 Write the function for the model of the data as given. That is, write the function for the model that gives the pressure in atm, where d is depth in feet, with data from 0 sds 132. (Round all numerical values to three decimal places.) P(d) = Write the function for the model of the inverted data. That is, write the function for the model that gives the depth in feet, where p is pressure in atm, with data from 1 sps 5. (Round all numerical values to three decimal places.) D(p) =
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