“a very expressive face”
Definitions come from WordNet, a hand-curated dictionary.
characterized by expression
Panels 3, 4 and 5 are computed per model. Switch to see them disagree.
“a very expressive face”
Definitions come from WordNet, a hand-curated dictionary.
This is the tokenizer splitting text, not the model understanding it.
WordNet lists none for this word.
Shade shows how close the model puts each word to expressive.
WordNet lists none for this word.
Shade shows how close the model puts each word to expressive.
This model splits expressive into 2 pieces, so it has no vector of its own here: this is the average of its fragments, and the results below are correspondingly rough.
WordNet lists none for this word.
Shade shows how close the model puts each word to expressive.
Model neighbours are distributional, not dictionary synonyms. Two words can be close because they appear in similar sentences, which is why an antonym can outscore a synonym here.
This model splits expressive into 2 pieces, so it has no vector of its own here: this is the average of its fragments, and the results below are correspondingly rough.
Scores are projections onto axes we defined from anchor words, not labels the model assigns.
These sit just outside the closest neighbours in panel 3, and no dictionary lists any of them as related to expressive. That gap is the model’s own learned association.
These sit just outside the closest neighbours in panel 3, and no dictionary lists any of them as related to expressive. That gap is the model’s own learned association.
This model splits expressive into 2 pieces, so it has no vector of its own here: this is the average of its fragments, and the results below are correspondingly rough.
These sit just outside the closest neighbours in panel 3, and no dictionary lists any of them as related to expressive. That gap is the model’s own learned association.
These are statistical associations in the training data, not the model thinking.