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151. Final Report of the MSR Science Planning Group 2 (MSPG2)

152. Preliminary Planning for Mars Sample Return (MSR) Curation Activities in a Sample Receiving Facility

153. Science and Curation Considerations for the Design of a Mars Sample Return (MSR) Sample Receiving Facility

154. The Scientific Importance of Returning Airfall Dust as a Part of Mars Sample Return (MSR)

155. Rapid accretion and differentiation of iron meteorite parent bodies inferred from 182Hf–182W chronometry and thermal modeling

156. The Scientific Importance of Returning Airfall Dust as a Part of Mars Sample Return (MSR)

157. Analytical Developments for High-Precision Measurements of W Isotopes in Iron Meteorites.

158. Publisher Correction: Correlated iron isotopes and silicon contents in aubrite metals reveal structure of their asteroidal parent body.

159. Magnesium isotope analysis of olivine and pyroxene by SIMS: Evaluation of matrix effects.

160. The Ni isotopic composition of Ryugu reveals a common accretion region for carbonaceous chondrites.

161. Analysis of Cation Composition in Dolomites on the Intact Particles Sampled from Asteroid Ryugu.

162. Helium Leak Rate Measurements of Flight-like Mars 2020 Sample Tubes.

163. Water circulation in Ryugu asteroid affected the distribution of nucleosynthetic isotope anomalies in returned sample.

165. Abundant presolar grains and primordial organics preserved in carbon-rich exogenous clasts in asteroid Ryugu.

166. Samples returned from the asteroid Ryugu are similar to Ivuna-type carbonaceous meteorites.

167. Oxygen isotopes of anhydrous primary minerals show kinship between asteroid Ryugu and comet 81P/Wild2.

168. Ryugu's nucleosynthetic heritage from the outskirts of the Solar System.

169. Time-Sensitive Aspects of Mars Sample Return (MSR) Science.

170. Correlated iron isotopes and silicon contents in aubrite metals reveal structure of their asteroidal parent body.

171. The relationship between CM and CO chondrites: Insights from combined analyses of titanium, chromium, and oxygen isotopes in CM, CO, and ungrouped chondrites.

172. Combined mass-dependent and nucleosynthetic isotope variations in refractory inclusions and their mineral separates to determine their original Fe isotope compositions.

173. Titanium isotope signatures of calcium-aluminum-rich inclusions from CV and CK chondrites: Implications for early Solar System reservoirs and mixing.

174. Terrestrial exposure of a fresh Martian meteorite causes rapid changes in hydrogen isotopes and water concentrations.

175. Silica-rich volcanism in the early solar system dated at 4.565 Ga.

176. Evidence for supernova injection into the solar nebula and the decoupling of r-process nucleosynthesis.

177. Isotope ratios of H, C, and O in CO2 and H2O of the martian atmosphere.

178. Clues from Fe isotope variations on the origin of early Archean BIFs from Greenland.

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