DI or I 6. 2. 4. 5. 1. 3. Graph 4: The following data represents the chip Temperature-dependence of cricket chirp frequencies in south central Maine 3 4 4 7 8 10 10 12 14 15 20 24 25 26 28 36 40 40 44 Data modified from: http://abacus.bates.edu/~ganderso/biology/resources/writing/HTWtablefigs.html#linegra Temp (°C) 5.0 5.6 7.2 7.2 7.2 7.2 10.0 10.0 10.6 11.1 12.8 15.6 17.8 18.3 18.3 20.0 23.9 25.6 27.8 29.4 What is the dependent variable? # of Chirps/14 sec 2 What is the independent variable? Are the independent variables quantitative? Are the independent variables continuous? Explain the reason(s) for using a line graph (line of best fit) for this data. After completing the graph, write a brief conclusion based on the data.
DI or I 6. 2. 4. 5. 1. 3. Graph 4: The following data represents the chip Temperature-dependence of cricket chirp frequencies in south central Maine 3 4 4 7 8 10 10 12 14 15 20 24 25 26 28 36 40 40 44 Data modified from: http://abacus.bates.edu/~ganderso/biology/resources/writing/HTWtablefigs.html#linegra Temp (°C) 5.0 5.6 7.2 7.2 7.2 7.2 10.0 10.0 10.6 11.1 12.8 15.6 17.8 18.3 18.3 20.0 23.9 25.6 27.8 29.4 What is the dependent variable? # of Chirps/14 sec 2 What is the independent variable? Are the independent variables quantitative? Are the independent variables continuous? Explain the reason(s) for using a line graph (line of best fit) for this data. After completing the graph, write a brief conclusion based on the data.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
Related questions
Question

Transcribed Image Text:Multiple line graphs show the relationship between two variables across different categories of data.
For example, the multiple line graph below shows how the population has changed over time in three
different regions.
Sor
cor
At
6.
5.
1.
2.
3.
4.
Population (in millions)
Urica
The Americas
urope
Graph 4: The following data represents the chirp frequencies of crickets at different temperatures.
Temperature-dependence of cricket chirp frequencies
in south central Maine
28
36
40
40
44
Data modified from: http://abacus.bates.edu/~ganderso/biology/resources/writing/HTWtablefigs.html#linegraph
Temp (°C) # of Chirps/14 sec
2
3
4
4
7
8
10
10
12
14
15
20
24
25
26
5.0
5.6
7.2
7.2
7.2
7.2
10.0
10.0
10.6
11.1
12.8
15.6
17.8
18.3
18.3
20.0
23.9
25.6
27.8
29.4
What is the dependent variable?
What is the independent variable?
Are the independent variables quantitative?
Are the independent variables continuous?
Explain the reason(s) for using a line graph (line of best fit) for this data.
After completing the graph, write a brief conclusion based on the data.
39

Transcribed Image Text:Multiple line graphs show the relationship between two variables across different categories of data.
For example, the multiple line graph below shows how the population has changed over time in three
different regions.
Sor
cor
At
6.
5.
1.
2.
3.
4.
Population (in millions)
Urica
The Americas
urope
Graph 4: The following data represents the chirp frequencies of crickets at different temperatures.
Temperature-dependence of cricket chirp frequencies
in south central Maine
28
36
40
40
44
Data modified from: http://abacus.bates.edu/~ganderso/biology/resources/writing/HTWtablefigs.html#linegraph
Temp (°C) # of Chirps/14 sec
2
3
4
4
7
8
10
10
12
14
15
20
24
25
26
5.0
5.6
7.2
7.2
7.2
7.2
10.0
10.0
10.6
11.1
12.8
15.6
17.8
18.3
18.3
20.0
23.9
25.6
27.8
29.4
What is the dependent variable?
What is the independent variable?
Are the independent variables quantitative?
Are the independent variables continuous?
Explain the reason(s) for using a line graph (line of best fit) for this data.
After completing the graph, write a brief conclusion based on the data.
39
Expert Solution

Step 1
When collecting data, sometimes it is found to collect two data of two different variables simultaneously. This type of data is called bi-variate data. When there are bi-variate one variable may be associated with the other variable such that the change of one complies with the change of other.
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