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1. JUNO Sensitivity to Invisible Decay Modes of Neutrons

2. Real-time Monitoring for the Next Core-Collapse Supernova in JUNO

3. JUNO sensitivity to the annihilation of MeV dark matter in the galactic halo

4. The JUNO experiment Top Tracker

5. JUNO sensitivity to $^7$Be, $pep$, and CNO solar neutrinos

6. JUNO Sensitivity on Proton Decay $p\to \bar\nu K^+$ Searches

7. Model Independent Approach of the JUNO $^8$B Solar Neutrino Program

8. Prospects for Detecting the Diffuse Supernova Neutrino Background with JUNO

9. Mass Testing and Characterization of 20-inch PMTs for JUNO

10. Sub-percent Precision Measurement of Neutrino Oscillation Parameters with JUNO

11. Damping signatures at JUNO, a medium-baseline reactor neutrino oscillation experiment

12. Radioactivity control strategy for the JUNO detector

13. JUNO Physics and Detector

14. The Design and Sensitivity of JUNO's scintillator radiopurity pre-detector OSIRIS

15. JUNO sensitivity to low energy atmospheric neutrino spectra

16. Calibration Strategy of the JUNO Experiment

17. Feasibility and physics potential of detecting $^8$B solar neutrinos at JUNO

18. TAO Conceptual Design Report: A Precision Measurement of the Reactor Antineutrino Spectrum with Sub-percent Energy Resolution

19. The JUNO experiment Top Tracker

20. JUNO Physics and Detector

21. The Design and Sensitivity of JUNO's scintillator radiopurity pre-detector OSIRIS

22. JUNO sensitivity to low energy atmospheric neutrino spectra

23. Calibration strategy of the JUNO experiment

24. Feasibility and physics potential of detecting 8B solar neutrinos at JUNO * *This work was supported by the Chinese Academy of Sciences, the National Key R&D Program of China, the CAS Center for Excellence in Particle Physics, the Joint Large-Scale Scientific Facility Funds of the NSFC and CAS, Wuyi University, and the Tsung-Dao Lee Institute of Shanghai Jiao Tong University in China, the Institut National de Physique Nucléaire et de Physique de Particules (IN2P3) in France, the Istituto Nazionale di Fisica Nucleare (INFN) in Italy, the Fond de la Recherche Scientifique (F.R.S-FNRS) and FWO under the “Excellence of Science – EOS” in Belgium, the Conselho Nacional de Desenvolvimento Científico e Tecnològico in Brazil, the Agencia Nacional de Investigación y Desarrollo in Chile, the Charles University Research Centre and the Ministry of Education, Youth, and Sports in Czech Republic, the Deutsche Forschungsgemeinschaft (DFG), the Helmholtz Association, and the Cluster of Excellence PRISMA+ in Germany, the

25. TAO Conceptual Design Report: A Precision Measurement of the Reactor Antineutrino Spectrum with Sub-percent Energy Resolution

27. The Flash ADC system and PMT waveform reconstruction for the Daya Bay Experiment

28. Model-independent Approach of the JUNO 8B Solar Neutrino Program

29. Damping signatures at JUNO, a medium-baseline reactor neutrino oscillation experiment

30. Real-time monitoring for the next core-collapse supernova in JUNO

32. The design and sensitivity of JUNO’s scintillator radiopurity pre-detector OSIRIS

33. Radioactivity control strategy for the JUNO detector

34. JUNO sensitivity to low energy atmospheric neutrino spectra

35. JUNO sensitivity to the annihilation of MeV dark matter in the galactic halo

39. JUNO sensitivity to the annihilation of MeV dark matter in the galactic halo

41. The JUNO experiment Top Tracker

43. Model Independent Approach of the JUNO $^8$B Solar Neutrino Program

44. Prospects for detecting the diffuse supernova neutrino background with JUNO

45. Mass Testing and Characterization of 20-inch PMTs for JUNO

46. Feasibility of detecting B8 solar neutrinos at JUNO

47. Prospects for detecting the diffuse supernova neutrino background with JUNO

48. JUNO Sensitivity on Proton Decay $p\to \barνK^+$ Searches

49. JUNO Physics Prospects

50. Sub-percent precision measurement of neutrino oscillation parameters with JUNO*\t\t\t\t *Supported by the Chinese Academy of Sciences, the National Key R&D Program of China, the CAS Center for Excellence in Particle Physics, Wuyi University, and the Tsung-Dao Lee Institute of Shanghai Jiao Tong University in China, the Institut National de Physique Nucléaire et de Physique de Particules (IN2P3) in France, the Istituto Nazionale di Fisica Nucleare (INFN) in Italy, the Italian-Chinese collaborative research program MAECI-NSFC, the Fond de la Recherche Scientifique (F.R.S-FNRS) and FWO under the

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