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CHEBI ONTOLOGY - ANNOTATIONS

The Chemical Entities of Biological Interest (ChEBI) ontology is downloaded weekly from EMBL-EBI at http://www.ebi.ac.uk/chebi/. The data is made available under the Creative Commons License (CC BY 3.0, http://creativecommons.org/licenses/by/3.0/). For more information see: Degtyarenko et al. (2008) ChEBI: a database and ontology for chemical entities of biological interest. Nucleic Acids Res. 36, D344–D350.

Term:inorganic heterocyclic compound
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Accession:CHEBI:33596 term browser browse the term
Synonyms:related_synonym: inorganic heterocycle;   inorganic heterocyclic compounds



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Term paths to the root
Path 1
Term Annotations click to browse term
  CHEBI ontology 497
    chemical entity 497
      molecular entity 497
        polyatomic entity 490
          molecule 469
            cyclic compound 450
              heterocyclic compound 412
                inorganic heterocyclic compound 0
                  borazine 0
                  boroxin 0
                  borthiin 0
                  cyclodiborathiane 0
                  cyclotriphosphoric acid 0
                  disulfur dinitride 0
                  inorganic heteromonocyclic compound + 0
Path 2
Term Annotations click to browse term
  CHEBI ontology 497
    subatomic particle 497
      composite particle 497
        hadron 497
          baryon 497
            nucleon 497
              atomic nucleus 497
                atom 497
                  group 491
                    polyatomic entity 490
                      molecule 469
                        cyclic compound 450
                          heterocyclic compound 412
                            inorganic heterocyclic compound 0
                              borazine 0
                              boroxin 0
                              borthiin 0
                              cyclodiborathiane 0
                              cyclotriphosphoric acid 0
                              disulfur dinitride 0
                              inorganic heteromonocyclic compound + 0
paths to the root