An unknown metal has been found and the following experimental results have been tabulated in the table below. The table contains the grams of the unknown metal and the volume in milliliters of water displacement. Find a linear model that expresses mass as a function of the volume. grams Volume in ml 20 155.4 21.5 172.2 23 178.7 24.5 190.4 26 208.2 27.5 220.2 29 232.2 A) Write the linear regression equation for the data in the chart. Volume = where x is the grams of the unknown metal. Round your answers to 3 decimal places B) If the mass of an unknown metal is 18, using your un-rounded regression equation find its predicted volume. Round your answer to 1 decimal place. mL

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
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Author:Bruce Crauder, Benny Evans, Alan Noell
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Chapter5: A Survey Of Other Common Functions
Section5.6: Higher-degree Polynomials And Rational Functions
Problem 1TU: The following fictitious table shows kryptonite price, in dollar per gram, t years after 2006. t=...
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An unknown metal has been found and the following experimental results have been tabulated in the table
below. The table contains the grams of the unknown metal and the volume in milliliters of water
displacement. Find a linear model that expresses mass as a function of the volume.
grams
Volume in ml
20
155.4
21.5
172.2
23
178.7
24.5
190.4
26
208.2
27.5
220.2
29
232.2
A) Write the linear regression equation for the data in the chart.
Volume =
x +
where x is the grams of the unknown metal. Round your answers
to 3 decimal places
B) If the mass of an unknown metal is 18, using your un-rounded regression equation find its predicted
volume. Round your answer to 1 decimal place.
mL
Transcribed Image Text:An unknown metal has been found and the following experimental results have been tabulated in the table below. The table contains the grams of the unknown metal and the volume in milliliters of water displacement. Find a linear model that expresses mass as a function of the volume. grams Volume in ml 20 155.4 21.5 172.2 23 178.7 24.5 190.4 26 208.2 27.5 220.2 29 232.2 A) Write the linear regression equation for the data in the chart. Volume = x + where x is the grams of the unknown metal. Round your answers to 3 decimal places B) If the mass of an unknown metal is 18, using your un-rounded regression equation find its predicted volume. Round your answer to 1 decimal place. mL
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