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Numpy Beginner's Guide (Update)

Numpy Beginner's Guide (Update)

By : Ivan Idris
2 (1)
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Numpy Beginner's Guide (Update)

Numpy Beginner's Guide (Update)

2 (1)
By: Ivan Idris

Overview of this book

This book is for the scientists, engineers, programmers, or analysts looking for a high-quality, open source mathematical library. Knowledge of Python is assumed. Also, some affinity, or at least interest, in mathematics and statistics is required. However, I have provided brief explanations and pointers to learning resources.
Table of Contents (16 chapters)
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14
C. NumPy Functions' References
15
Index

Time for action – drawing Lissajous curves

The Lissajous figures are determined by four parameters: A, B, a, and b. Let's set A and B to 1 for simplicity:

  1. Initialize t with the linspace() function from -pi to pi with 201 points:
    a = 9
    b = 8
    t = np.linspace(-np.pi, np.pi, 201)
  2. Calculate x with the sin() function and np.pi:
    x = np.sin(a * t + np.pi/2)
  3. Calculate y with the sin() function:
    y = np.sin(b * t)
  4. Plot as shown in the following:
    plt.plot(x, y)
    plt.title('Lissajous curves')
    plt.grid()
    plt.show()

    The result for a = 9 and b = 8 is as follows:

    Time for action – drawing Lissajous curves

What just happened?

We plotted the Lissajous curve with the aforementioned parametric equations where A=B=1, a=9, and b=8. We used the sin() and linspace() functions, as well as the NumPy pi constant (see lissajous.py):

import numpy as np
import matplotlib.pyplot as plt


a = 9
b = 8
t = np.linspace(-np.pi, np.pi, 201)
x = np.sin(a * t + np.pi/2)
y = np.sin(b * t)
plt.plot(x, y)
plt.title('Lissajous curves')
plt.grid()
plt...
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