Statements (59)
Predicate | Object |
---|---|
gptkbp:instanceOf |
chemist
|
gptkbp:almaMater |
gptkb:University_of_Paris
|
gptkbp:associatedWith |
gptkb:Royal_Society
gptkb:Académie_des_Sciences |
gptkbp:awards |
gptkb:Copley_Medal
|
gptkbp:born |
August 16, 1763
|
gptkbp:contribution |
study of mineralogy
development of chemical analysis techniques |
gptkbp:died |
November 14, 1829
|
gptkbp:family |
gptkb:Marie_Vauquelin
children |
gptkbp:field |
chemistry
|
https://www.w3.org/2000/01/rdf-schema#label |
Louis-Nicolas Vauquelin
|
gptkbp:influence |
gptkb:French_Revolution
materials science biochemistry toxicology chemical engineering pharmaceutical chemistry science policy scientific communication scientific community nanotechnology public understanding of science chemical education scientific publishing environmental chemistry industrial chemistry food chemistry scientific collaboration chemical safety modern chemistry agricultural chemistry scientific research methodology scientific outreach chemical history chemical philosophy chemical policy chemical education reform chemical ethics |
gptkbp:influenced |
gptkb:Robert_Bunsen
|
gptkbp:influencedBy |
gptkb:Antoine_Lavoisier
|
gptkbp:inventor |
method for isolating elements
spectroscopy methods chromatography techniques techniques for mineral analysis |
gptkbp:knownFor |
discovery of beryllium
discovery of chromium |
gptkbp:legacy |
Vauquelin's_role_in_the_establishment_of_chemistry_as_a_science
Vauquelin's_contributions_to_the_periodic_table Vauquelin's_impact_on_chemical_nomenclature Vauquelin's_law |
gptkbp:nationality |
French
|
gptkbp:notableFeature |
Jean-Baptiste Dumas
|
gptkbp:occupation |
chemist
|
gptkbp:researchField |
analytical chemistry
inorganic chemistry |
gptkbp:residence |
gptkb:Paris,_France
gptkb:Montpellier,_France |