physics.soc-ph

Papers filed under physics.soc-ph on arXiv, each one already summarized by Paperlayer. Open any of them to read the summary beside the original PDF, with every point linked to the line, figure, or table it came from.

Search paper metadata (including unsummarized papers)

601 to 660 of 1,034

  1. A sequential algorithm for fast clique percolation

    Jussi M. Kumpula, Mikko Kivela, Kimmo Kaski +1

    physics.soc-pharXiv:0805.1449v22008
  2. You Tweet What You Eat: Studying Food Consumption Through Twitter

    Sofiane Abbar, Yelena Mejova, Ingmar Weber

    cs.CYcs.SIphysics.soc-pharXiv:1412.4361v22014
  3. Measuring social dynamics in a massive multiplayer online game

    Michael Szell, Stefan Thurner

    physics.soc-pharXiv:0911.1084v12009
  4. Community detection in networks: Modularity optimization and maximum likelihood are equivalent

    M. E. J. Newman

    cs.SIphysics.soc-pharXiv:1606.02319v12016
  5. Time varying networks and the weakness of strong ties

    Márton Karsai, Nicola Perra, Alessandro Vespignani

    physics.soc-phcs.SIarXiv:1303.5966v22013
  6. Fundamental structures of dynamic social networks

    Vedran Sekara, Arkadiusz Stopczynski, Sune Lehmann

    physics.soc-phcs.SIarXiv:1506.04704v22015
  7. Data on face-to-face contacts in an office building suggests a low-cost vaccination strategy based on community linkers

    Mathieu Génois, Christian L. Vestergaard, Julie Fournet +3

    physics.soc-phcs.SIarXiv:1409.7017v22014
  8. Detecting change points in the large-scale structure of evolving networks

    Leto Peel, Aaron Clauset

    cs.SIphysics.soc-phstat.MLarXiv:1403.0989v22014
  9. How Bad is Forming Your Own Opinion?

    David Bindel, Jon Kleinberg, Sigal Oren

    cs.GTphysics.soc-pharXiv:1203.2973v12012
  10. Network Geometry

    Marian Boguna, Ivan Bonamassa, Manlio De Domenico +3

    physics.soc-phcond-mat.dis-nncs.SIarXiv:2001.03241v22020
  11. Prediction of Emerging Technologies Based on Analysis of the U.S. Patent Citation Network

    Péter Érdi, Kinga Makovi, Zoltán Somogyvári +4

    cs.SIphysics.soc-pharXiv:1206.3933v32012
  12. Combining smart card data and household travel survey to analyze jobs-housing relationships in Beijing

    Ying Long, Jean-Claude Thill

    cs.SIphysics.soc-pharXiv:1309.5993v12013
  13. Graph Metrics for Temporal Networks

    Vincenzo Nicosia, John Tang, Cecilia Mascolo +3

    physics.soc-phcs.SIarXiv:1306.0493v12013
  14. Random hypergraphs and their applications

    Gourab Ghoshal, Vinko Zlatic, Guido Caldarelli +1

    physics.soc-phcs.DLarXiv:0903.0419v12009
  15. Analytical maximum-likelihood method to detect patterns in real networks

    Tiziano Squartini, Diego Garlaschelli

    physics.data-ancs.SIphysics.soc-pharXiv:1103.0701v22011
  16. Modularity clustering is force-directed layout

    Andreas Noack

    cs.DMcs.CGphysics.soc-pharXiv:0807.4052v22008
  17. China's Shrinking Home Bias and Rising Disruptive Impact: Evidence from a Global Citation Network Analysis

    Nan Deng, Zheng Ma, Xiaohui Liu

    physics.soc-phcs.DLarXiv:2608.28139v12026
  18. The Spontaneous Emergence of Conventions: An Experimental Study of Cultural Evolution

    Damon Centola, Andrea Baronchelli

    physics.soc-phcs.MAcs.SIarXiv:1502.06910v12015
  19. Growing multiplex networks

    Vincenzo Nicosia, Ginestra Bianconi, Vito Latora +1

    physics.soc-phcond-mat.dis-nncs.SIarXiv:1302.7126v32013
  20. Probabilistic sharing solves the problem of costly punishment

    Xiaojie Chen, Attila Szolnoki, Matjaz Perc

    physics.soc-phcs.GTq-bio.PEarXiv:1408.1945v12014
  21. The Spontaneous Emergence of Social Influence in Online Systems

    J. -P. Onnela, F. Reed-Tsochas

    physics.soc-pharXiv:0912.0045v12009
  22. Coevolution spreading in complex networks

    Wei Wang, Quan-Hui Liu, Junhao Liang +2

    physics.soc-phcs.SIarXiv:1901.02125v32019
  23. DEMON: a Local-First Discovery Method for Overlapping Communities

    Michele Coscia, Giulio Rossetti, Fosca Giannotti +1

    cs.DScs.SIphysics.soc-pharXiv:1206.0629v12012
  24. Invention as a Combinatorial Process: Evidence from U.S. Patents

    Hyejin Youn, Luis M. A. Bettencourt, Deborah Strumsky +1

    physics.soc-phcs.SIarXiv:1406.2938v12014
  25. The Knowledge-Based Economy and the Triple Helix Model

    Loet Leydesdorff

    cs.OHphysics.soc-pharXiv:1201.4553v12012
  26. 'Beating the news' with EMBERS: Forecasting Civil Unrest using Open Source Indicators

    Naren Ramakrishnan, Patrick Butler, Sathappan Muthiah +27

    cs.SIcs.CYphysics.soc-pharXiv:1402.7035v22014
  27. Analysis of community structure in networks of correlated data

    Sergio Gomez, Pablo Jensen, Alex Arenas

    physics.soc-pharXiv:0812.3030v22008
  28. Community structure and scale-free collections of Erdös-Rényi graphs

    C. Seshadhri, Tamara G. Kolda, Ali Pinar

    cs.SIphysics.soc-pharXiv:1112.3644v12011
  29. Optimal interdependence between networks for the evolution of cooperation

    Zhen Wang, Attila Szolnoki, Matjaz Perc

    physics.soc-phcond-mat.stat-mechcs.SIarXiv:1308.4969v12013
  30. Agent-based Models of Financial Markets

    E. Samanidou, E. Zschischang, D. Stauffer +1

    physics.soc-phq-fin.TRarXiv:physics/0701140v12007
  31. Statistical physics of crime: A review

    Maria R. D'Orsogna, Matjaz Perc

    physics.soc-phcs.SInlin.AOarXiv:1411.1743v12014
  32. Dynamics of conflicts in Wikipedia

    Taha Yasseri, Robert Sumi, András Rung +2

    physics.soc-phcs.SIphysics.data-anarXiv:1202.3643v22012
  33. Hierarchy measure for complex networks

    Enys Mones, Lilla Vicsek, Tamás Vicsek

    physics.soc-phcond-mat.dis-nncond-mat.stat-mecharXiv:1202.0191v22012
  34. Heat kernel based community detection

    Kyle Kloster, David F. Gleich

    cs.SIcs.DSphysics.soc-pharXiv:1403.3148v42014
  35. Anatomy of an online misinformation network

    Chengcheng Shao, Pik-Mai Hui, Lei Wang +4

    cs.SIphysics.soc-pharXiv:1801.06122v12018
  36. Eigenvector centrality of nodes in multiplex networks

    Luis Sola, Miguel Romance, Regino Criado +3

    physics.soc-phcs.SIarXiv:1305.7445v22013
  37. Community Detection via Maximization of Modularity and Its Variants

    Mingming Chen, Konstantin Kuzmin, Boleslaw K. Szymanski

    physics.soc-phcs.SIarXiv:1507.00787v12015
  38. Entropy measures for complex networks: Toward an information theory of complex topologies

    Kartik Anand, Ginestra Bianconi

    cond-mat.dis-nncond-mat.stat-mechphysics.soc-pharXiv:0907.1514v22009
  39. The Physics of Financial Networks

    Marco Bardoscia, Paolo Barucca, Stefano Battiston +6

    physics.soc-phcond-mat.stat-mechcs.SIarXiv:2103.05623v12021
  40. Spectrum of Controlling and Observing Complex Networks

    Gang Yan, Georgios Tsekenis, Baruch Barzel +3

    physics.soc-phcond-mat.dis-nnarXiv:1503.01160v22015
  41. Resolving social dilemmas on evolving random networks

    Attila Szolnoki, Matjaz Perc

    physics.soc-phcond-mat.stat-mechq-bio.PEarXiv:0910.1905v12009
  42. Nodal dynamics, not degree distributions, determine the structural controllability of complex networks

    Noah J. Cowan, Erick J. Chastain, Daril A. Vilhena +2

    physics.soc-phcs.SInlin.AOarXiv:1106.2573v52011
  43. A Tutorial on Modeling and Analysis of Dynamic Social Networks. Part II

    Anton Proskurnikov, Roberto Tempo

    cs.SIeess.SYmath.OCarXiv:1801.06719v22018
  44. Inter-similarity between coupled networks

    Roni Parshani, Celine Rozenblat, Daniele Ietri +2

    physics.data-ancs.SIphysics.soc-pharXiv:1010.4506v12010
  45. Social features of online networks: the strength of intermediary ties in online social media

    Przemyslaw A. Grabowicz, Jose J. Ramasco, Esteban Moro +2

    physics.soc-phcs.SIarXiv:1107.4009v22011
  46. Topological Data Analysis of Financial Time Series: Landscapes of Crashes

    Marian Gidea, Yuri Katz

    q-fin.MFmath.DSphysics.soc-pharXiv:1703.04385v22017
  47. Geo-Spotting: Mining Online Location-based Services for Optimal Retail Store Placement

    Dmytro Karamshuk, Anastasios Noulas, Salvatore Scellato +2

    cs.SIcs.CEphysics.soc-pharXiv:1306.1704v22013
  48. Localization and Spreading of Diseases in Complex Networks

    A. V. Goltsev, S. N. Dorogovtsev, J. G. Oliveira +1

    physics.soc-phcond-mat.dis-nncs.SIarXiv:1202.4411v22012
  49. Modelling the Air Transport with Complex Networks: a short review

    Massimiliano Zanin, Fabrizio Lillo

    physics.soc-pharXiv:1302.7017v12013
  50. Can co-location be used as a proxy for face-to-face contacts?

    Mathieu Génois, Alain Barrat

    physics.soc-phcs.SIq-bio.PEarXiv:1712.06346v12017
  51. Scientific Utopia: I. Opening scientific communication

    Brian A. Nosek, Yoav Bar-Anan

    physics.soc-phcs.DLarXiv:1205.1055v12012
  52. Citation Statistics

    Robert Adler, John Ewing, Peter Taylor

    stat.MEcs.DLphysics.soc-pharXiv:0910.3529v12009
  53. Who Benefits from the "Sharing" Economy of Airbnb?

    Giovanni Quattrone, Davide Proserpio, Daniele Quercia +2

    cs.SIcs.CYphysics.soc-pharXiv:1602.02238v12016
  54. Network dismantling

    Alfredo Braunstein, Luca Dall'Asta, Guilhem Semerjian +1

    physics.soc-phcond-mat.stat-mechcs.DSarXiv:1603.08883v22016
  55. Network Sampling: From Static to Streaming Graphs

    Nesreen K. Ahmed, Jennifer Neville, Ramana Kompella

    cs.SIcs.DScs.LGarXiv:1211.3412v12012
  56. Temporal Graphs

    Vassilis Kostakos

    physics.soc-pharXiv:0807.2357v12008
  57. Epidemic spreading on interconnected networks

    Anna Saumell-Mendiola, M. Ángeles Serrano, Marián Boguñá

    cond-mat.dis-nncs.SIphysics.soc-pharXiv:1202.4087v12012
  58. Robustness and resilience of complex networks

    Oriol Artime, Marco Grassia, Manlio De Domenico +5

    physics.soc-phcond-mat.stat-mecharXiv:2509.19867v12025
  59. Multi-scale brain networks

    Richard F. Betzel, Danielle S. Bassett

    q-bio.NCphysics.soc-pharXiv:1608.08828v22016
  60. Explosive higher-order Kuramoto dynamics on simplicial complexes

    Ana P. Millán, Joaquín J. Torres, Ginestra Bianconi

    nlin.AOcond-mat.dis-nncond-mat.stat-mecharXiv:1912.04405v32019