import numpy as npimport matplotlib.pyplot as plt
x = np.linspace−10,10,100-10, 10, 100−10,10,100 y_quad = x2y_cubic = x3
plt.figurefigsize=(10,6)figsize=(10, 6)figsize=(10,6) plt.plot(x, y_quad, label='y = x^2', color='blue')plt.plot(x, y_cubic, label='y = x^3', color='red')
plt.axhline0,color=′black′,linewidth=0.50, color='black',linewidth=0.50,color=′black′,linewidth=0.5 plt.axvline0,color=′black′,linewidth=0.50, color='black',linewidth=0.50,color=′black′,linewidth=0.5
plt.legend plt.title('Graph of y = x^2 and y = x^3')plt.xlabel′x′'x'′x′ plt.ylabel′y′'y'′y′
plt.gridTrueTrueTrue plt.show
import numpy as np
import matplotlib.pyplot as plt
x = np.linspace−10,10,100-10, 10, 100−10,10,100 y_quad = x2
y_cubic = x3
plt.figurefigsize=(10,6)figsize=(10, 6)figsize=(10,6) plt.plot(x, y_quad, label='y = x^2', color='blue')
plt.plot(x, y_cubic, label='y = x^3', color='red')
plt.axhline0,color=′black′,linewidth=0.50, color='black',linewidth=0.50,color=′black′,linewidth=0.5 plt.axvline0,color=′black′,linewidth=0.50, color='black',linewidth=0.50,color=′black′,linewidth=0.5
plt.legend plt.title('Graph of y = x^2 and y = x^3')
plt.xlabel′x′'x'′x′ plt.ylabel′y′'y'′y′
plt.gridTrueTrueTrue plt.show