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8e0e6f2 | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 | import streamlit as st
import pandas as pd
import numpy as np
import plotly.express as px
from sklearn.preprocessing import StandardScaler
from sklearn.decomposition import PCA
st.title('Principal Component Analysis Demo App 🤖')
st.subheader('Credit: @BenjaminJack')
st.subheader('Raw Data')
iris = px.data.iris().drop('species_id',axis=1)
st.write(iris)
xvar = st.selectbox('Select x-axis',iris.columns[:-1])
yvar = st.selectbox('Select y-axis',iris.columns[:-1])
st.write(px.scatter(iris, x=xvar, y=yvar, color='species'))
iris_scaled = StandardScaler().fit_transform(iris.drop('species',axis=1))
iris_pca = PCA()
iris_transformed = iris_pca.fit_transform(iris_scaled)
col_names = [f'component{i+1}' for i in range(iris_transformed.shape[1])]
st.write(col_names)
iris_transformed_df = pd.DataFrame(iris_transformed, columns=col_names)
iris_transformed_df = pd.concat([iris_transformed_df, iris['species']],axis=1)
st.subheader('Transformed Data')
st.write(iris_transformed_df)
st.subheader('Explore principal components')
xvar = st.selectbox('Select x-axis:', iris_transformed_df.columns[:-1])
yvar = st.selectbox('Select y-axis:', iris_transformed_df.columns[:-1])
st.write(px.scatter(iris_transformed_df,x=xvar, y=yvar, color = 'species'))
st.subheader('Explore Loadings')
loadings = iris_pca.components_.T * np.sqrt(iris_pca.explained_variance_)
loadings_df = pd.DataFrame(loadings,columns=col_names)
loadings_df = pd.concat([loadings_df,
pd.Series(iris.columns[0:4],name='var')],
axis=1)
component =st.selectbox('Select Component:',loadings_df.columns[0:4])
bar_chart = px.bar(loadings_df[['var',component]].sort_values(component),
y='var',
x=component,
orientation='h',
range_x=[-1,1]
)
st.write(bar_chart)
st.write(loadings_df)
#Credits : benjaminjack |