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1. First identification of Zn 58 β -delayed proton emission

2. Low-lying level structure of Cu 56 and its implications for the rp process

3. Quenching of the SnSbTe Cycle in the rp-Process

4. Half-life and spin of 60Mng

5. β-decay of odd-A Ti57 and V59

6. Development of shell closures at N=32,34. I. β decay of neutron-rich Sc isotopes

7. Time-of-Flight Mass Measurements for Nuclear Processes in Neutron Star Crusts.

8. Mass Measurement of 56Sc Reveals a Small A = 56 Odd-Even Mass Staggering, Implying a Cooler Accreted Neutron Star Crust.

9. Levels in 12N via the 14N(p,t) reaction using the JENSA gas-jet target.

10. Mass Measurements Demonstrate a Strong N = 28 Shell Gap in Argon.

11. Penning-trap mass spectrometry of highly charged, neutron-rich Rb and Sr isotopes in the vicinity of A ≈ 100.

12. 26Si excited states via one-neutron removal from a 27Si radioactive ion beam.

13. Exploiting Isospin Symmetry to Study the Role of Isomers in Stellar Environments.

14. Toward complete spectroscopy using β decay: The example of 32Cl(βγ)32S.

15. Detailed study of the decay 31Cl(βγ)31S.

16. Isospin Mixing Reveals 30P(p,γ)31S Resonance Influencing Nova Nucleosynthesis.

17. Time-of-flight mass measurements of neutron-rich chromium isotopes up to N=40 and implications for the accreted neutron star crust.

18. Proton Shell Gaps in N=28 Nuclei from the First Complete Spectroscopy Study with FRIB Decay Station Initiator.

19. First Direct Measurement Constraining the ^{34}Ar(α,p)^{37}K Reaction Cross Section for Mixed Hydrogen and Helium Burning in Accreting Neutron Stars.

20. β Decay of ^{61}V and its Role in Cooling Accreted Neutron Star Crusts.

21. First Direct Measurement of ^{22}Mg(α,p)^{25}Al and Implications for X-Ray Burst Model-Observation Comparisons.

22. Constraining the Neutron Star Compactness: Extraction of the ^{23}Al(p,γ) Reaction Rate for the rp Process.

23. Isospin Mixing Reveals ^{30}P(p,γ)^{31}S Resonance Influencing Nova Nucleosynthesis.

24. Mass Measurement of 56Sc Reveals a Small A = 56 Odd-Even Mass Staggering, Implying a Cooler Accreted Neutron Star Crust.

25. Determining the rp-process flow through 56Ni: resonances in 57Cu(p,γ)58Zn identified with GRETINA.

26. β+ Gamow-Teller transition strengths from 46Ti and stellar electron-capture rates.

27. Ground-state proton decay of 69Br and implications for the 68Se astrophysical rapid proton-capture process waiting point.

28. Mass measurements of very neutron-deficient Mo and Tc isotopes and their impact on rp process nucleosynthesis.

29. Direct mass measurements of short-lived A=2Z-1 nuclides (63)Ge, (65)As, (67)Se, and (71)Kr and their impact on nucleosynthesis in the rp process.

30. Quenching of the SnSbTe cycle in the rp process.

31. rp process and masses of N approximately Z approximately 34 nuclides.

32. Mass measurements beyond the major r-process waiting point 80Zn.

33. Production and beta decay of rp-process nuclei 96Cd, 98In, and 100Sn.

34. Alpha decay of 109I and its implications for the proton decay of 105Sb and the astrophysical rapid proton-capture process.

35. Half-life of the doubly magic r-process nucleus 78Ni.

36. Mass measurement on the rp-process waiting point 72Kr.

37. New approach for measuring properties of rp-process nuclei.

38. Elastic alpha-12C scattering and the 12C(alpha,gamma)16O E2 S factor.

39. End point of the rp process on accreting neutron stars.

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