2. Population Growth Population (millions) 252:1 255.0 257.7 260.3 262:8 265:2 Year 1991 1992 1993 1994 1995 1996 1997 1998 1999 2010 Source: U.S. Census Bureau 267.7 270.3 272.9. Glencoe/McGraw-Hill 275 270 Population 285 (millions) 260 255 250 8. 12 1990 1992 1994 Year 1996 1998 2000 Advanced Mathematical Concept

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Question
1-6
NAME
8.
DATE
Practice
Modeling Real-World Data with Linear Fund
Complete the following for each set of data.
a. Graph the data on a scatter plot.
b. Use two ordered pairs to write the equation of a best-fit line.
c. If the equation of the regression line shows a moderate or
strong relationship, predict the missing value. Explain whether
you think the prediction is reliable.
75.9
Pre-
Transcribed Image Text:1-6 NAME 8. DATE Practice Modeling Real-World Data with Linear Fund Complete the following for each set of data. a. Graph the data on a scatter plot. b. Use two ordered pairs to write the equation of a best-fit line. c. If the equation of the regression line shows a moderate or strong relationship, predict the missing value. Explain whether you think the prediction is reliable. 75.9 Pre-
2.
Population Growth
Population
(millions)
252:1
255.0
257.7
260.3
Year
1991
1992
1993
1994
1995
20
1996
1997
262:8
265:2
: 267:7
270.3
272.9.
1998
1999
2010
Source: U.S. Census Bureau
Glencoe/McGraw-Hill
8.
Population
(millions)
12
275
270
285
260
255
250
1990
1992
1994
1996
Year
1998
E
2000
Advanced Mathematical Concept
Transcribed Image Text:2. Population Growth Population (millions) 252:1 255.0 257.7 260.3 Year 1991 1992 1993 1994 1995 20 1996 1997 262:8 265:2 : 267:7 270.3 272.9. 1998 1999 2010 Source: U.S. Census Bureau Glencoe/McGraw-Hill 8. Population (millions) 12 275 270 285 260 255 250 1990 1992 1994 1996 Year 1998 E 2000 Advanced Mathematical Concept
Expert Solution
Hint:

1)Plot the givens  points.

2) Draw the line of the best fit.

3)Take two points off the line .

4)Find the equation of the line using the two. points.

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