import matplotlib.pyplot as plt from mpl_toolkits.mplot3d import Axes3D import numpy as np # --- Paramètres du GPU Graf-X --- size_x, size_y, size_z = 5, 5, 0.5 # cm (5 cm x 5 cm x 5 mm) # Super-cordes Q14-CORD pour visualisation num_cords = 14 angles = np.linspace(0, 2 * np.pi, num_cords) x = 0.5 * np.cos(angles) y = 0.5 * np.sin(angles) z = np.linspace(0, size_z, num_cords) # Couleurs pour chaque quark / super-corde colors = plt.cm.viridis(np.linspace(0, 1, num_cords)) # Création de la figure 3D fig = plt.figure(figsize=(8, 6)) ax = fig.add_subplot(111, projection='3d') ax.set_title('GPU Graf-X — Projection 3D Quarkique', fontsize=16, fontweight='bold') # Tracé des super-cordes 3D for i in range(num_cords): ax.plot([0, x[i]], [0, y[i]], [0, z[i]], color=colors[i], linewidth=2) ax.scatter(x[i], y[i], z[i], color=colors[i], s=100, edgecolors='k') # Rendu esthétique photo-réaliste ax.set_box_aspect([1, 1, 0.1]) ax.view_init(elev=30, azim=45) ax.set_xlabel('X-axis (cm)') ax.set_ylabel('Y-axis (cm)') ax.set_zlabel('Z-axis (cm)') ax.grid(False) ax.set_facecolor('white') plt.tight_layout() # Encadré publicitaire plt.figtext(0.5, 0.01, 'GPU Graf-X — Ultimate Q14 Projection. Powered by GPTX.', ha='center', fontsize=12, fontweight='bold') plt.show() See more