Boxplot Demo

Example boxplot code

import numpy as np
import matplotlib.pyplot as plt

# Fixing random state for reproducibility
np.random.seed(19680801)

# fake up some data
spread = np.random.rand(50) * 100
center = np.ones(25) * 50
flier_high = np.random.rand(10) * 100 + 100
flier_low = np.random.rand(10) * -100
data = np.concatenate((spread, center, flier_high, flier_low))
fig1, ax1 = plt.subplots()
ax1.set_title('Basic Plot')
ax1.boxplot(data)
Basic Plot

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f7827107610>, <matplotlib.lines.Line2D object at 0x7f78262c5160>], 'caps': [<matplotlib.lines.Line2D object at 0x7f78262c5fa0>, <matplotlib.lines.Line2D object at 0x7f78262c5070>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7827107730>], 'medians': [<matplotlib.lines.Line2D object at 0x7f78262c5e20>], 'fliers': [<matplotlib.lines.Line2D object at 0x7f78262c5340>], 'means': []}
fig2, ax2 = plt.subplots()
ax2.set_title('Notched boxes')
ax2.boxplot(data, notch=True)
Notched boxes

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f7826b1f8b0>, <matplotlib.lines.Line2D object at 0x7f7826b1fdf0>], 'caps': [<matplotlib.lines.Line2D object at 0x7f7826dcb130>, <matplotlib.lines.Line2D object at 0x7f7826dcb8b0>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7826de30a0>], 'medians': [<matplotlib.lines.Line2D object at 0x7f7826dcbee0>], 'fliers': [<matplotlib.lines.Line2D object at 0x7f7826dcbf70>], 'means': []}
green_diamond = dict(markerfacecolor='g', marker='D')
fig3, ax3 = plt.subplots()
ax3.set_title('Changed Outlier Symbols')
ax3.boxplot(data, flierprops=green_diamond)
Changed Outlier Symbols

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f78264a9250>, <matplotlib.lines.Line2D object at 0x7f78264a9df0>], 'caps': [<matplotlib.lines.Line2D object at 0x7f78264a93a0>, <matplotlib.lines.Line2D object at 0x7f78264a9e20>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7826df74c0>], 'medians': [<matplotlib.lines.Line2D object at 0x7f78264a9fd0>], 'fliers': [<matplotlib.lines.Line2D object at 0x7f7826ff5eb0>], 'means': []}
fig4, ax4 = plt.subplots()
ax4.set_title('Hide Outlier Points')
ax4.boxplot(data, showfliers=False)
Hide Outlier Points

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f7826db5df0>, <matplotlib.lines.Line2D object at 0x7f7826dd7160>], 'caps': [<matplotlib.lines.Line2D object at 0x7f7826dd74c0>, <matplotlib.lines.Line2D object at 0x7f7826dd7820>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7826db5a90>], 'medians': [<matplotlib.lines.Line2D object at 0x7f7826dd7b80>], 'fliers': [], 'means': []}
red_square = dict(markerfacecolor='r', marker='s')
fig5, ax5 = plt.subplots()
ax5.set_title('Horizontal Boxes')
ax5.boxplot(data, vert=False, flierprops=red_square)
Horizontal Boxes

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f78265962b0>, <matplotlib.lines.Line2D object at 0x7f782658d130>], 'caps': [<matplotlib.lines.Line2D object at 0x7f782658d490>, <matplotlib.lines.Line2D object at 0x7f782658d7f0>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7826596df0>], 'medians': [<matplotlib.lines.Line2D object at 0x7f782658db50>], 'fliers': [<matplotlib.lines.Line2D object at 0x7f782658deb0>], 'means': []}
fig6, ax6 = plt.subplots()
ax6.set_title('Shorter Whisker Length')
ax6.boxplot(data, flierprops=red_square, vert=False, whis=0.75)
Shorter Whisker Length

Out:

{'whiskers': [<matplotlib.lines.Line2D object at 0x7f7826233e80>, <matplotlib.lines.Line2D object at 0x7f782647a310>], 'caps': [<matplotlib.lines.Line2D object at 0x7f782647adf0>, <matplotlib.lines.Line2D object at 0x7f782647a4c0>], 'boxes': [<matplotlib.lines.Line2D object at 0x7f7826233b20>], 'medians': [<matplotlib.lines.Line2D object at 0x7f782647abb0>], 'fliers': [<matplotlib.lines.Line2D object at 0x7f782647af40>], 'means': []}

Fake up some more data

spread = np.random.rand(50) * 100
center = np.ones(25) * 40
flier_high = np.random.rand(10) * 100 + 100
flier_low = np.random.rand(10) * -100
d2 = np.concatenate((spread, center, flier_high, flier_low))

Making a 2-D array only works if all the columns are the same length. If they are not, then use a list instead. This is actually more efficient because boxplot converts a 2-D array into a list of vectors internally anyway.

data = [data, d2, d2[::2]]
fig7, ax7 = plt.subplots()
ax7.set_title('Multiple Samples with Different sizes')
ax7.boxplot(data)

plt.show()
Multiple Samples with Different sizes

References

The use of the following functions, methods, classes and modules is shown in this example:

Out:

<function boxplot at 0x7f782df49ee0>

Total running time of the script: ( 0 minutes 2.780 seconds)

Keywords: matplotlib code example, codex, python plot, pyplot Gallery generated by Sphinx-Gallery