We determined proportions of Type I (reduced) and Type II (oxidized) chondrules in ordinary chondrites (OC) and found linear relationships between chondrule abundances and chondrite bulk chemical and oxygen isotopic compositions. Similar relationships exist between bulk oxygen isotopic compositions of carbonaceous chondrites and modal abundances of their chondritic components (matrix, Type I and Type II chondrules, refractory calcium–aluminium-rich inclusions and amoeboid olivine aggregates). These correlations can be used to predict the bulk oxygen isotopic composition of chondrites based on their petrology. We can also define model isotopic compositions associated with each petrologic component, which are not their current actual isotopic...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
We determined proportions of Type I (reduced) and Type II (oxidized) chondrules in ordinary chondrit...
Several stages in the evolution of ordinary chondritic meteorites are recorded in the oxygen isotopi...
The properties of ordinary chondrites (OC) reflect both nebular and asteroidal processes. OC are mod...
International audienceChanges in the chemical and isotopic composition of the solar nebula with time...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
We determined proportions of Type I (reduced) and Type II (oxidized) chondrules in ordinary chondrit...
Several stages in the evolution of ordinary chondritic meteorites are recorded in the oxygen isotopi...
The properties of ordinary chondrites (OC) reflect both nebular and asteroidal processes. OC are mod...
International audienceChanges in the chemical and isotopic composition of the solar nebula with time...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...
International audiencePrimitive meteorites are characteristically formed from an aggregation of sub-...
International audienceAs the chemical compositions of CI chondrites closely resemble that of the Sun...
International audienceFeO-poor (type I) porphyritic chondrules formed by incomplete melting of solid...