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CC
Core Connections Integrated I, 2013
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2. Section 11.2
1. Functions
p. 8-44
4 Subchapters
2. Linear Functions
p. 56-105
4 Subchapters
3. Transformations and Solving
p. 118-179
4 Subchapters
4. Modeling Two-Variable Data
p. 196-237
3 Subchapters
5. Sequences
p. 250-293
4 Subchapters
6. Systems of Equations
p. 306-356
5 Subchapters
7. Congruence and Coordinate Geometry
p. 369-414
3 Subchapters
8. Exponential Functions
p. 433-484
3 Subchapters
9. Inequalities
p. 497-552
4 Subchapters
10. Functions and Data
p. 540-574
3 Subchapters
11. Constructions and Closure
p. 587-628
3 Subchapters
A. Appendix
p. 647-684
2 Subchapters
Start
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11.2.1. Solving Work and Mixture Problems
p. 603-604
9 Solutions
47
p. 603
48
p. 603
49
p. 603
50
p. 603
51
p. 603
52
p. 604
53
p. 604
54
p. 604
55
p. 604
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11.2.2. Solving Equations and Systems Graphically
p. 607-608
9 Solutions
61
p. 607
62
p. 607
63
p. 607
64
p. 607
65
p. 608
66
p. 608
67
p. 608
68
p. 608
69
p. 608
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11.2.3. Using a Best-Fit Line to Make a Prediction
p. 610-614
18 Solutions
71
p. 610
72
p. 610
73
p. 611
74
p. 611
75
p. 611
76
p. 611
77
p. 611
78
p. 612
79
p. 612
80
p. 612
81
p. 612
82
p. 613
83
p. 613
84
p. 613
85
p. 613
86
p. 613
87
p. 614
88
p. 614
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11.2.4. Treasure Hunt
p. 616-617
9 Solutions
91
p. 616
92
p. 616
93
p. 616
94
p. 616
95
p. 616
96
p. 617
97
p. 617
98
p. 617
99
p. 617
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11.2.5. Using Coordinate Geometry and Constructions to Explore Shapes
p. 620-621
9 Solutions
104
p. 620
105
p. 620
106
p. 620
107
p. 620
108
p. 620
109
p. 621
110
p. 621
111
p. 621
112
p. 621
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11.2.6. Modeling with Exponential Functions and Linear Inequalities
p. 625-628
18 Solutions
117
p. 625
118
p. 625
119
p. 625
120
p. 625
121
p. 626
122
p. 626
123
p. 626
124
p. 626
125
p. 626
126
p. 627
127
p. 627
128
p. 627
129
p. 627
130
p. 627
131
p. 627
132
p. 628
133
p. 628
134
p. 628
Continue to next subchapter
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Exercise
87
Page
614
Page
614
A
B
Hint & Answer
Solution
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Hints
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A
a
Subtracting a
constant
from the output of a function
translates
it in the negative vertical direction.
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Show hint for A
B
b
Adding a constant to the output of a function translates it in the positive vertical direction.
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Check the answer
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A
a
Diagram:
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B
b
Diagram:
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Practice makes perfect
Practice exercises
Find more exercises to practice for Comparing Data Sets
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Asses your skill
Test your problem-solving skills with the Comparing Data Sets test
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Ask a question
autorenew
track_changes
Progress overview
a
The graph of
f
(
x
)
−
5
is a vertical
translation
of
f
(
x
)
by
5
units in the negative direction.
b
The graph of
f
(
x
)
+
1
.
5
is a vertical translation of
f
(
x
)
by
1
.
5
units in the positive direction.
Comparing Data Sets
Level 1 exercises - Comparing Data Sets
Level 2 exercises - Comparing Data Sets
Level 3 exercises - Comparing Data Sets
Subchapter links
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11.2.1
Solving Work and Mixture Problems
p.603-604
47
Solving Work and Mixture Problems
48
(Page 603)
Solving Work and Mixture Problems
49
(Page 603)
Solving Work and Mixture Problems
50
(Page 603)
Solving Work and Mixture Problems
51
(Page 603)
Solving Work and Mixture Problems
52
(Page 604)
Solving Work and Mixture Problems
53
(Page 604)
Solving Work and Mixture Problems
54
(Page 604)
Solving Work and Mixture Problems
55
(Page 604)
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11.2.2
Solving Equations and Systems Graphically
p.607-608
Solving Equations and Systems Graphically
61
(Page 607)
Solving Equations and Systems Graphically
62
(Page 607)
Solving Equations and Systems Graphically
63
(Page 607)
Solving Equations and Systems Graphically
64
(Page 607)
65
Solving Equations and Systems Graphically
66
(Page 608)
Solving Equations and Systems Graphically
67
(Page 608)
Solving Equations and Systems Graphically
68
(Page 608)
Solving Equations and Systems Graphically
69
(Page 608)
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11.2.3
Using a Best-Fit Line to Make a Prediction
p.610-614
Using a Best-Fit Line to Make a Prediction
71
(Page 610)
Using a Best-Fit Line to Make a Prediction
72
(Page 610)
Using a Best-Fit Line to Make a Prediction
73
(Page 611)
Using a Best-Fit Line to Make a Prediction
74
(Page 611)
Using a Best-Fit Line to Make a Prediction
75
(Page 611)
Using a Best-Fit Line to Make a Prediction
76
(Page 611)
Using a Best-Fit Line to Make a Prediction
77
(Page 611)
Using a Best-Fit Line to Make a Prediction
78
(Page 612)
Using a Best-Fit Line to Make a Prediction
79
(Page 612)
Using a Best-Fit Line to Make a Prediction
80
(Page 612)
Using a Best-Fit Line to Make a Prediction
81
(Page 612)
Using a Best-Fit Line to Make a Prediction
82
(Page 613)
Using a Best-Fit Line to Make a Prediction
83
(Page 613)
Using a Best-Fit Line to Make a Prediction
84
(Page 613)
Using a Best-Fit Line to Make a Prediction
85
(Page 613)
Using a Best-Fit Line to Make a Prediction
86
(Page 613)
Using a Best-Fit Line to Make a Prediction
87
(Page 614)
Using a Best-Fit Line to Make a Prediction
88
(Page 614)
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11.2.4
Treasure Hunt
p.616-617
Treasure Hunt
91
(Page 616)
Treasure Hunt
92
(Page 616)
Treasure Hunt
93
(Page 616)
Treasure Hunt
94
(Page 616)
Treasure Hunt
95
(Page 616)
Treasure Hunt
96
(Page 617)
Treasure Hunt
97
(Page 617)
Treasure Hunt
98
(Page 617)
Treasure Hunt
99
(Page 617)
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11.2.5
Using Coordinate Geometry and Constructions to Explore Shapes
p.620-621
Using Coordinate Geometry and Constructions to Explore Shapes
104
(Page 620)
Using Coordinate Geometry and Constructions to Explore Shapes
105
(Page 620)
Using Coordinate Geometry and Constructions to Explore Shapes
106
(Page 620)
Using Coordinate Geometry and Constructions to Explore Shapes
107
(Page 620)
Using Coordinate Geometry and Constructions to Explore Shapes
108
(Page 620)
Using Coordinate Geometry and Constructions to Explore Shapes
109
(Page 621)
Using Coordinate Geometry and Constructions to Explore Shapes
110
(Page 621)
Using Coordinate Geometry and Constructions to Explore Shapes
111
(Page 621)
Using Coordinate Geometry and Constructions to Explore Shapes
112
(Page 621)
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11.2.6
Modeling with Exponential Functions and Linear Inequalities
p.625-628
Modeling with Exponential Functions and Linear Inequalities
117
(Page 625)
Modeling with Exponential Functions and Linear Inequalities
118
(Page 625)
Modeling with Exponential Functions and Linear Inequalities
119
(Page 625)
Modeling with Exponential Functions and Linear Inequalities
120
(Page 625)
Modeling with Exponential Functions and Linear Inequalities
121
(Page 626)
Modeling with Exponential Functions and Linear Inequalities
122
(Page 626)
Modeling with Exponential Functions and Linear Inequalities
123
(Page 626)
Modeling with Exponential Functions and Linear Inequalities
124
(Page 626)
Modeling with Exponential Functions and Linear Inequalities
125
(Page 626)
Modeling with Exponential Functions and Linear Inequalities
126
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
127
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
128
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
129
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
130
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
131
(Page 627)
Modeling with Exponential Functions and Linear Inequalities
132
(Page 628)
Modeling with Exponential Functions and Linear Inequalities
133
(Page 628)
Modeling with Exponential Functions and Linear Inequalities
134
(Page 628)
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