Replace “Your Name” with your actual name.
In this lab, you will practice creating APA-compliant graphs using ggplot2. Please complete each exercise by filling in the code chunks and interpreting the resulting graphs. Once you have completed the exercises, knit this document to HTML and publish it to RPubs. Make sure your YAML header includes a title, your name, and the date.
Run the below chunk to create the
apa_theme()
# Load ggplot2
library(ggplot2)
apa_theme <- theme_classic() +
theme(
panel.grid.major = element_blank(),
panel.grid.minor = element_blank(),
legend.position = "bottom",
text = element_text(family = "serif", size = 12),
axis.title = element_text(size = 12),
plot.title = element_text(size = 14, hjust = 0.5)
)
Dataset: Use the built-in iris
dataset
to compare the mean sepal length across different species.
Tasks:
1. Create a bar graph that shows the average sepal length for each
species in the iris
dataset.
2. Add error bars representing the standard error of the mean.
3. Apply APA formatting, including a descriptive title, axis labels, and
removing unnecessary grid lines.
4. Interpretation: Describe which species has the
longest average sepal length and which has the shortest. Discuss the
reliability of these comparisons based on the error bars.
## Sepal.Length Sepal.Width Petal.Length Petal.Width Species
## 1 5.1 3.5 1.4 0.2 setosa
## 2 4.9 3.0 1.4 0.2 setosa
## 3 4.7 3.2 1.3 0.2 setosa
## 4 4.6 3.1 1.5 0.2 setosa
## 5 5.0 3.6 1.4 0.2 setosa
## 6 5.4 3.9 1.7 0.4 setosa
# Create the APA-compliant bar graph
ggplot(iris, aes(x = Species, y = Sepal.Length)) +
geom_bar(stat = "summary", fun = "mean", fill = "lightblue", color = "black") +
geom_errorbar(stat = "summary", fun.data = "mean_se") +
labs(y = "Sepal Length", title = "Sepal Length Average by Species") +
apa_theme
Interpretation: The species with the longest sepal length is virginica. In addition, the SE bars are very narrow, which means the sepal length in each individual species category has low variability around the mean.
Dataset: Use the built-in mtcars
dataset to create a scatter plot of hp
(horsepower) versus
qsec
(quarter-mile time).
Tasks:
1. Create a scatter plot showing the relationship between horsepower and
quarter-mile time.
2. Add a line that summarizes the overall trend in the data (a line that
shows the general direction the data points are heading).
3. Apply APA formatting to ensure the plot is clear and
professional.
4. Interpretation: Explain whether cars with higher
horsepower tend to have faster or slower quarter-mile times based on the
direction of the trend line.
## mpg cyl disp hp drat wt qsec vs am gear carb
## Mazda RX4 21.0 6 160 110 3.90 2.620 16.46 0 1 4 4
## Mazda RX4 Wag 21.0 6 160 110 3.90 2.875 17.02 0 1 4 4
## Datsun 710 22.8 4 108 93 3.85 2.320 18.61 1 1 4 1
## Hornet 4 Drive 21.4 6 258 110 3.08 3.215 19.44 1 0 3 1
## Hornet Sportabout 18.7 8 360 175 3.15 3.440 17.02 0 0 3 2
## Valiant 18.1 6 225 105 2.76 3.460 20.22 1 0 3 1
# Create the APA-compliant scatter plot
ggplot(mtcars, aes(y = qsec, x = hp)) +
geom_point(color = "deeppink", size = 2) +
geom_smooth(method = "lm", color = "black", linetype = "dashed", se = FALSE) +
labs(x = "Horsepower", y = "Quarter-Mile Time (seconds)", title = "Does horsepower impact speed during the quarter-mile?") +
apa_theme
## `geom_smooth()` using formula = 'y ~ x'
Interpretation: What we see in the scatter plot is that as the horsepower increases, the amount of seconds it takes to complete the quarter-mile decreases.
Dataset: Use the built-in airquality
dataset to create a line graph showing the trend of average temperature
(Temp
) over the months (Month
).
Tasks:
1. Calculate the average temperature for each month in the
airquality
dataset.
2. Create a line graph that shows the trend of average temperature over
the months.
3. Apply APA formatting, ensuring the title is centered, axis labels are
clear, and the graph is free of unnecessary grid lines.
4. Interpretation: Describe how temperature changes
over the months. Identify which month has the highest average
temperature and discuss any patterns you observe.
## Ozone Solar.R Wind Temp Month Day
## 1 41 190 7.4 67 5 1
## 2 36 118 8.0 72 5 2
## 3 12 149 12.6 74 5 3
## 4 18 313 11.5 62 5 4
## 5 NA NA 14.3 56 5 5
## 6 28 NA 14.9 66 5 6
# Create the APA-compliant line graph
ggplot(airquality, aes(x = Month, y = Temp)) +
stat_summary(fun = "mean", geom = "line", size = 1.2) +
labs(x = "Months (May - September)", y = "Temperature (F)",
title = "Does temperature increase throughout the year?")
## Warning: Using `size` aesthetic for lines was deprecated in ggplot2 3.4.0.
## ℹ Please use `linewidth` instead.
## This warning is displayed once every 8 hours.
## Call `lifecycle::last_lifecycle_warnings()` to see where this warning was
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Interpretation: We see that from May to July the temperature increases rapidly. From July to August, it stays at a peak high before dropping as September hits.
Submission Instructions:
Ensure to knit your document to HTML format, checking that all content is correctly displayed before submission. Submit the RPubs URL to Canvas Assignments.