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1. Participant and spectator scaling of spectator fragments in Au+Au and Cu+Cu collisions at sqrt(sNN) = 19.6 and 22.4 GeV

2. Nucleon-Gold Collisions at 200 AGeV Using Tagged d+Au Interactions in PHOBOS

3. Phobos results on charged particle multiplicity and pseudorapidity distributions in Au+Au, Cu+Cu, d+Au, and p+p collisions at ultra-relativistic energies

4. Scaling properties in bulk and p$_{\rm T}$-dependent particle production near midrapidity in relativistic heavy ion collisions

5. System size, energy, centrality and pseudorapidity dependence of charged-particle density in Au+Au and Cu+Cu collisions at RHIC

6. System Size, Energy and Centrality Dependence of Pseudorapidity Distributions of Charged Particles in Relativistic Heavy Ion Collisions

7. Identified hadron transverse momentum spectra in Au+Au collisions at sqrt(s_(NN))=62.4 GeV

8. Charged particle production in the Pb+Pb system at 158 GeV/c per nucleon

9. Event-by-event elliptic flow fluctuations from PHOBOS

10. Results from the PHOBOS experiment at RHIC

11. The PHOBOS experiment at RHIC

13. The PHOBOS perspective on discoveries at RHIC

14. Charged hadron transverse momentum distributions in Au+Au collisions at = 200 GeV

15. Evidence of final-state suppression of high-p$_{_{\rm T}}$ hadrons in Au + Au collisions using d + Au measurements at RHIC

16. Low-p T spectra of identified charged particles in $\sqrt{s_{NN}}$ = 200 GeV Au+Au collisions from PHOBOS experiment at RHIC

19. Recent results from PHOBOS at RHIC

20. The PHOBOS detector at RHIC

21. Performance of the PHOBOS silicon sensors

23. First performance results of the Phobos silicon detectors

24. The PHOBOS experiment at the RHIC collider

25. Characteristics of JACEE heavy ion events at energies above TeV/nucleon

28. Charged-particle multiplicity and pseudorapidity distributions measured with the PHOBOS detector inAu+Au,Cu+Cu,d+Au, andp+pcollisions at ultrarelativistic energies

29. Event-by-Event Fluctuations of Azimuthal Particle Anisotropy inAu+AuCollisions atsNN=200GeV

30. Non-flow correlations and elliptic flow fluctuations inAu+Aucollisions atsNN=200GeV

31. High Transverse Momentum Triggered Correlations over a Large Pseudorapidity Acceptance inAu+AuCollisions atsNN=200GeV

32. System size dependence of cluster properties from two-particle angular correlations inCu+CuandAu+Aucollisions atsNN=200GeV

33. The PHOBOS Collaboration

34. Scaling properties in bulk andpT-dependent particle production near midrapidity in relativistic heavy ion collisions

35. System Size, Energy, and Centrality Dependence of Pseudorapidity Distributions of Charged Particles in Relativistic Heavy-Ion Collisions

36. Identified charged antiparticle to particle ratios near midrapidity in Cu+Cu collisions atsNN=62.4and 200 GeV

37. System Size, Energy, Pseudorapidity, and Centrality Dependence of Elliptic Flow

38. Cluster properties from two-particle angular correlations inp+pcollisions ats=200and 410 GeV

39. Identified hadron transverse momentum spectra in Au+Au collisions atsNN=62.4GeV

40. Recent Results from Phobos

41. Strangeness measurements with the PHOBOS experiment

42. Centrality and energy dependence of charged-particle multiplicities in heavy ion collisions in the context of elementary reactions

43. Charged-particle pseudorapidity distributions in Au+Au collisions atsNN=62.4GeV

44. Forward-backward multiplicity correlations insNN=200GeV Au+Au collisions

45. Energy Dependence of Directed Flow over a Wide Range of Pseudorapidity inAu+AuCollisions at the BNL Relativistic Heavy Ion Collider

46. System Size and Centrality Dependence of Charged Hadron Transverse Momentum Spectra inAu+AuandCu+CuCollisions atsNN=62.4and 200 GeV

47. Transverse momentum and rapidity dependence of Hanbury-Brown–Twiss correlations in Au+Au collisions atsNN=62.4 and 200 GeV

48. Centrality and pseudorapidity dependence of elliptic flow for charged hadrons in Au+Au collisions atsNN=200GeV

49. Scaling of charged particle production ind+Aucollisions atsNN=200GeV

50. Energy Dependence of Elliptic Flow over a Large Pseudorapidity Range inAu+AuCollisions at the BNL Relativistic Heavy Ion Collider

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