CORD-19:6e2db98aa242e3e84116afdfad5e250943c55ac5 / 17778-17948
Annnotations
CORD-19_Custom_license_subset
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T135 | 0-170 | Sentence | denotes | We can flip all coins a priori to produce a weighted graph G = (V, E, c), where an edge (u, v) is labeled with the time cost c(u, v) -a sample of random variable C(u, v). |
CORD-19-Sentences
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
TextSentencer_T135 | 0-170 | Sentence | denotes | We can flip all coins a priori to produce a weighted graph G = (V, E, c), where an edge (u, v) is labeled with the time cost c(u, v) -a sample of random variable C(u, v). |
TextSentencer_T135 | 0-170 | Sentence | denotes | We can flip all coins a priori to produce a weighted graph G = (V, E, c), where an edge (u, v) is labeled with the time cost c(u, v) -a sample of random variable C(u, v). |
T35889 | 0-170 | Sentence | denotes | We can flip all coins a priori to produce a weighted graph G = (V, E, c), where an edge (u, v) is labeled with the time cost c(u, v) -a sample of random variable C(u, v). |
Epistemic_Statements
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T55 | 0-170 | Epistemic_statement | denotes | We can flip all coins a priori to produce a weighted graph G = (V, E, c), where an edge (u, v) is labeled with the time cost c(u, v) -a sample of random variable C(u, v). |