Oracle
Diamond and graphite are both made of carbon. Answer true or false.
Answer
true
- sources
- pubchem.ncbi.nlm.nih.gov, blog.education.nationalgeographic.org, books.rsc.org, chem.libretexts.org, edu.rsc.org, en.wikipedia.org, iupac / standard chemistry reference: diamond and graphite are both allotropes of pure carbon, iupac compendium of chemical terminology (gold book) and standard chemistry references (e.g. crc handbook of chemistry and physics) describing diamond and graphite as the two best-known crystalline allotropes of the element carbon, iupac compendium of chemical terminology (gold book) and standard chemistry references (e.g. encyclopedia britannica entries on 'diamond' and 'graphite') both state diamond and graphite are allotropes of elemental carbon, iupac compendium of chemical terminology (gold book), entry 'allotropes of carbon': diamond and graphite are both listed as crystalline allotropes of pure carbon, iupac compendium of chemical terminology (gold book), entry 'allotropy' / 'carbon': diamond and graphite are listed as allotropes of the element carbon, iupac compendium of chemical terminology / general chemistry reference: diamond and graphite are both allotropes of the element carbon, iupac compendium of chemical terminology / general chemistry references on carbon allotropes: diamond and graphite are both allotropes of the element carbon., iupac compendium of chemical terminology / general chemistry references: diamond and graphite are both allotropes of elemental carbon, differing only in atomic bonding structure (diamond: sp3 tetrahedral lattice; graphite: sp2 hexagonal layers), iupac gold book / general chemistry consensus: diamond and graphite are both allotropes of pure carbon (same element, different crystal structures), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of carbon, iupac gold book / general chemistry reference: diamond and graphite are both allotropes of carbon (element c), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of carbon, differing only in the arrangement and bonding of carbon atoms (diamond: sp3 tetrahedral lattice; graphite: sp2 layered hexagonal sheets)., iupac gold book / general chemistry reference: diamond and graphite are both allotropes of elemental carbon, iupac gold book / general chemistry reference: diamond and graphite are both allotropes of pure carbon, iupac gold book / general chemistry reference: diamond and graphite are both allotropes of pure carbon (cas 7782-40-3 graphite, 7782-40-5 diamond), differing in atomic bonding structure (sp3 tetrahedral lattice vs sp2 hexagonal layers)., iupac gold book / general chemistry reference: diamond and graphite are both allotropes of pure carbon, differing only in atomic bonding arrangement (sp3 tetrahedral lattice for diamond, sp2 hexagonal layered lattice for graphite)., iupac gold book / general chemistry reference: diamond and graphite are both allotropes of pure carbon, differing only in crystal structure (diamond: sp3 tetrahedral lattice; graphite: sp2 hexagonal layers)., iupac gold book / general chemistry reference: diamond and graphite are both allotropes of pure carbon, differing only in crystal structure (sp3 tetrahedral lattice vs sp2 layered sheets), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon, iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon (atomic number 6), composed entirely of carbon atoms in different crystal structures (sp3 tetrahedral lattice for diamond, sp2 hexagonal layered lattice for graphite)., iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon (cas 7782-42-5), differing only in atomic bonding arrangement (sp3 vs sp2), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon (same elemental composition, different crystal structures), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon, differing only in the arrangement (bonding geometry) of carbon atoms., iupac gold book / general chemistry reference: diamond and graphite are both listed as allotropes of pure carbon (atomic number 6), differing only in crystal structure, not elemental composition, iupac gold book / general chemistry reference: diamond and graphite are both well-known allotropes of carbon, differing only in the arrangement (hybridization and bonding) of carbon atoms, not in elemental composition., iupac gold book / general chemistry references (e.g. encyclopaedia britannica, 'allotropes of carbon'): diamond and graphite are both listed as naturally occurring allotropes of pure carbon, iupac gold book / general chemistry: diamond and graphite are both allotropes of pure carbon, iupac gold book / general chemistry: diamond and graphite are both allotropes of pure carbon (element c), differing only in atomic bonding structure (sp3 tetrahedral lattice vs sp2 hexagonal layers), iupac gold book / standard chemistry references (e.g., crc handbook of chemistry and physics) define diamond and graphite as allotropes of carbon, openstax.org, periodic-table.rsc.org, pubs.rsc.org, royal society of chemistry, periodic table: carbon — https://periodic-table.rsc.org/element/6/carbon, royal society of chemistry, periodic table: carbon — https://periodic-table.rsc.org/element/6/carbon (states that carbon occurs naturally as graphite and diamond, and describes their allotropes)., wikipedia, "allotropes of carbon": "well-known forms of carbon include diamond and graphite." https://en.wikipedia.org/wiki/allotropes_of_carbon, wikipedia, "diamond" (lead: "diamond is a mineral form of the element carbon... another solid form of carbon known as graphite...") and wikipedia, "allotropes of carbon" ("well-known forms of carbon include diamond and graphite."), wikipedia, 'carbon' (https://en.wikipedia.org/wiki/carbon): infobox caption 'graphite (left) and diamond (right), two allotropes of carbon'; the allotropes section lists graphite and diamond among the allotropes of carbon., www.gia.edu, www.llnl.gov, www.open.edu, www.scientificamerican.com, www.usgs.gov
Work
- pinnedblocks 26,093,366 to 26,093,664 to · on Ethereum mainnet
- answered146 of 146 agreed140 needed
#45truefrom pubchem.ncbi.nlm.nih.gov
#1273truefrom edu.rsc.org
#355truefrom en.wikipedia.org
#153trueIUPAC Gold Book / general chemistry reference: diamond and graphite are both allotropes of the element carbon
#312truefrom edu.rsc.org
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