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1. First measurement of Ξc0 production in pp collisions at s=7 TeV

2. Longitudinal asymmetry and its effect on pseudorapidity distributions in Pb–Pb collisions at sNN=2.76 TeV

3. Measurement of Z0-boson production at large rapidities in Pb–Pb collisions at sNN=5.02TeV

4. Search for collectivity with azimuthal J/ψ-hadron correlations in high multiplicity p–Pb collisions at sNN=5.02 and 8.16 TeV

5. Constraining the magnitude of the Chiral Magnetic Effect with Event Shape Engineering in Pb–Pb collisions at sNN=2.76 TeV

6. First measurement of jet mass in Pb–Pb and p–Pb collisions at the LHC

7. J/ψ production as a function of charged-particle pseudorapidity density in p–Pb collisions at sNN=5.02TeV

8. Measuring KS0K± interactions using Pb–Pb collisions at sNN=2.76 TeV

9. Linear and non-linear flow mode in Pb–Pb collisions at sNN=2.76 TeV

10. Centrality dependence of the pseudorapidity density distribution for charged particles in Pb–Pb collisions at sNN=5.02 TeV

11. Measurement of the production of high-pT electrons from heavy-flavour hadron decays in Pb–Pb collisions at sNN=2.76 TeV

12. Measurement of electrons from beauty-hadron decays in p-Pb collisions at s N N = 5.02 $$ \sqrt{s_{\mathrm{NN}}}=5.02 $$ TeV and Pb-Pb collisions at s N N = 2.76 $$ \sqrt{s_{\mathrm{NN}}}=2.76 $$ TeV

13. Production of muons from heavy-flavour hadron decays in p–Pb collisions at sNN=5.02 TeV

14. J/ψ suppression at forward rapidity in Pb–Pb collisions at sNN=5.02 TeV

15. Jet-like correlations with neutral pion triggers in pp and central Pb–Pb collisions at 2.76 TeV

16. Pseudorapidity dependence of the anisotropic flow of charged particles in Pb–Pb collisions at sNN=2.76 TeV

17. ALICE Collaboration

18. Erratum to: Insight into particle production mechanisms via angular correlations of identified particles in pp collisions at s = 7 TeV (The European Physical Journal C, (2017), 77, 8, (569), 10.1140/epjc/s10052-017-5129-6)

19. Measurement of the production of high- p T electrons from heavy-flavour hadron decays in Pb–Pb collisions at

20. First measurement of jet mass in Pb–Pb and p–Pb collisions at the LHC

21. Production of 4He and He‾4 in Pb–Pb collisions at sNN=2.76TeV at the LHC

22. First measurement of Ξc 0 production in pp collisions at s=7 TeV

23. Constraining the magnitude of the Chiral Magnetic Effect with Event Shape Engineering in Pb–Pb collisions at sNN=2.76 TeV

24. Enhanced production of multi-strange hadrons in high-multiplicity proton-proton collisions

25. Centrality dependence of the pseudorapidity density distribution for charged particles in Pb-“Pb collisions at √sNN = 5.02 TeV

26. Measurement of electrons from beauty-hadron decays in p-Pb collisions at √sNN=5.02 TeV and Pb-Pb collisions at √sNN=2.76 TeV

27. Production of muons from heavy-flavour hadron decays in p–Pb collisions at sNN=5.02 TeV

28. Azimuthally Differential Pion Femtoscopy in Pb-Pb Collisions at sNN =2.76 TeV

29. Kaon femtoscopy in Pb-Pb collisions at s NN =2.76 TeV

30. Charged-particle multiplicity distributions over a wide pseudorapidity range in proton-proton collisions at √s= 0.9, 7, and 8 TeV

31. Centrality dependence of the pseudorapidity density distribution for charged particles in Pb–Pb collisions at sNN=5.02 TeV

32. Production of Σ (1385) ± and Ξ (1530) 0 in p–Pb collisions at √sNN=5.02 TeV

33. ALICE Collaboration

34. Measuring KS 0K± interactions using Pb–Pb collisions at sNN=2.76 TeV

35. Measurement of the production of high-pT electrons from heavy-flavour hadron decays in Pb–Pb collisions at sNN=2.76 TeV

36. J/ψ suppression at forward rapidity in Pb–Pb collisions at sNN=5.02 TeV

37. D-meson production in p-Pb collisions at s NN =5.02 TeV and in pp collisions at s =7 TeV

38. Jet-like correlations with neutral pion triggers in pp and central Pb–Pb collisions at 2.76 TeV

39. Centrality dependence of ψ(2S) suppression in p-Pb collisions at √sNN= 5.02 TeV

40. Pseudorapidity dependence of the anisotropic flow of charged particles in Pb–Pb collisions at sNN=2.76 TeV

41. Copper Pipelines for High Capacity Communication between Multiple WPAN, to Establish a User Environment Area Network at Home

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