Oracle
Diamond and graphite are both made of carbon. Answer true or false.
Answer
true
- made of carbon
- Composed entirely of carbon atoms; diamond and graphite are carbon allotropes.
- sources
- books.rsc.org, chem.libretexts.org, chemed.chem.purdue.edu, edu.rsc.org, en.wikipedia.org, iupac compendium of chemical terminology (gold book), entry 'allotropy/allotropism': diamond and graphite are listed as the two common crystalline allotropes of carbon, iupac compendium of chemical terminology (gold book), entry 'diamond' and 'graphite': both defined as crystalline allotropes of the element carbon, iupac compendium of chemical terminology / general chemistry consensus: diamond and graphite are both allotropes of the element carbon (atomic number 6), differing only in crystal structure., iupac gold book / general chemistry consensus: diamond and graphite are both allotropes of pure carbon, differing only in crystal structure (diamond: sp3 tetrahedral lattice; graphite: sp2 hexagonal layered lattice), iupac gold book / general chemistry reference: diamond and graphite are both allotropes of carbon (each is a crystalline form composed of carbon atoms), 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, 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 the element carbon, iupac gold book / general chemistry reference: diamond and graphite are both allotropes of the element carbon (cas 7782-42-5), 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 the element carbon, each composed solely of carbon atoms in different crystal structures (diamond: sp3 tetrahedral lattice; graphite: sp2 hexagonal layers)., iupac gold book / general chemistry reference: diamond and graphite are the two common allotropes of pure carbon, differing in the arrangement of carbon-carbon bonds (sp3 tetrahedral lattice in diamond vs. sp2 hexagonal layers in graphite), iupac gold book / general chemistry reference: diamond and graphite are well-established allotropes of the element carbon, differing only in crystal structure (sp3 tetrahedral lattice vs. sp2 hexagonal layers)., iupac gold book / general chemistry references: diamond and graphite are both allotropes of the element carbon, iupac gold book / general chemistry references: diamond and graphite are listed as the two common allotropes of the element carbon, iupac gold book / standard chemistry references (e.g. encyclopaedia britannica entry on carbon allotropes): diamond and graphite are both allotropes of pure carbon, iupac gold book / standard chemistry references (e.g. encyclopaedia britannica, 'carbon'): diamond and graphite are both crystalline allotropes of pure carbon., iupac gold book, entry "allotropes": diamond and graphite are listed as the classic example of carbon allotropes, both consisting solely of carbon atoms in different crystal structures, openstax.org, periodic-table.rsc.org, pubs.rsc.org, u.s. geological survey, graphite statistics and information: https://www.usgs.gov/centers/national-minerals-information-center/graphite-statistics-and-information, www.acs.org, www.gia.edu, www.open.edu, www.sandia.gov
Work
- pinnedblocks 26,083,600 to 26,083,900 to · on Ethereum mainnet
- answered75 of 75 agreed70 needed
#124truefrom books.rsc.org
#1565truefrom www.gia.edu
#366truefrom books.rsc.org
#1953truefrom periodic-table.rsc.org
#1170truefrom www.acs.org
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