Fix issues typos in 6_3_Stochastic_Gradient_Descent.ipynb
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@@ -317,7 +317,7 @@
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" b = 0.33 * max_dist\n",
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" c = 0.66 * max_dist\n",
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" d = 1.0 * max_dist\n",
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" n_iter =0;\n",
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" n_iter = 0\n",
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"\n",
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" # While we haven't found the minimum closely enough\n",
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" while np.abs(b-c) > thresh and n_iter < max_iter:\n",
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@@ -53,7 +53,7 @@
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},
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"outputs": [],
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"source": [
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"# Let's create our training data 30 pairs {x_i, y_i}\n",
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"# Let's create our training data of 30 pairs {x_i, y_i}\n",
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"# We'll try to fit the Gabor model to these data\n",
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"data = np.array([[-1.920e+00,-1.422e+01,1.490e+00,-1.940e+00,-2.389e+00,-5.090e+00,\n",
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" -8.861e+00,3.578e+00,-6.010e+00,-6.995e+00,3.634e+00,8.743e-01,\n",
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@@ -128,7 +128,7 @@
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"id": "QU5mdGvpTtEG"
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},
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"source": [
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"Now lets create compute the sum of squares loss for the training data"
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"Now let's compute the sum of squares loss for the training data"
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]
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},
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{
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@@ -198,7 +198,7 @@
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" b = np.floor(my_colormap_vals_dec - r * 256 *256 - g * 256)\n",
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" my_colormap = ListedColormap(np.vstack((r,g,b)).transpose()/255.0)\n",
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"\n",
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" # Make grid of intercept/slope values to plot\n",
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" # Make grid of offset/frequency values to plot\n",
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" offsets_mesh, freqs_mesh = np.meshgrid(np.arange(-10,10.0,0.1), np.arange(2.5,22.5,0.1))\n",
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" loss_mesh = np.zeros_like(freqs_mesh)\n",
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" # Compute loss for every set of parameters\n",
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@@ -343,7 +343,7 @@
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" b = 0.33 * max_dist\n",
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" c = 0.66 * max_dist\n",
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" d = 1.0 * max_dist\n",
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" n_iter =0;\n",
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" n_iter = 0\n",
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"\n",
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" # While we haven't found the minimum closely enough\n",
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" while np.abs(b-c) > thresh and n_iter < max_iter:\n",
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@@ -367,7 +367,7 @@
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" continue;\n",
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"\n",
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" # Rule #2 If point b is less than point c then\n",
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" # then point d becomes point c, and\n",
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" # point d becomes point c, and\n",
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" # point b becomes 1/3 between a and new d\n",
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" # point c becomes 2/3 between a and new d\n",
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" if lossb < lossc:\n",
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@@ -377,7 +377,7 @@
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" continue\n",
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"\n",
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" # Rule #2 If point c is less than point b then\n",
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" # then point a becomes point b, and\n",
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" # point a becomes point b, and\n",
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" # point b becomes 1/3 between new a and d\n",
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" # point c becomes 2/3 between new a and d\n",
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" a = b\n",
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