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.

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721 to 780 of 1,035

  1. Adaptive Coevolutionary Networks: A Review

    Thilo Gross, Bernd Blasius

    physics.soc-phcond-mat.stat-mechq-bio.PEarXiv:0709.1858v22007
  2. Reputation and Impact in Academic Careers

    Alexander M. Petersen, Santo Fortunato, Raj K. Pan +6

    physics.soc-phcs.DLphysics.data-anarXiv:1303.7274v42013
  3. Causality-Driven Slow-Down and Speed-Up of Diffusion in Non-Markovian Temporal Networks

    Ingo Scholtes, Nicolas Wider, Rene Pfitzner +3

    physics.soc-phcond-mat.dis-nncond-mat.stat-mecharXiv:1307.4030v62013
  4. Networks in Cognitive Science

    Andrea Baronchelli, Ramon Ferrer-i-Cancho, Romualdo Pastor-Satorras +2

    physics.soc-phcs.SIq-bio.NCarXiv:1304.6736v22013
  5. Exact Recovery in the Stochastic Block Model

    Emmanuel Abbe, Afonso S. Bandeira, Georgina Hall

    cs.SImath.PRphysics.soc-pharXiv:1405.3267v42014
  6. The extreme vulnerability of interdependent spatially embedded networks

    Amir Bashan, Yehiel Berezin, Sergey V. Buldyrev +1

    physics.data-ancond-mat.stat-mechphysics.soc-pharXiv:1206.2062v12012
  7. Identifying a set of influential spreaders in complex networks

    Jian-Xiong Zhang, Duan-Bing Chen, Qiang Dong +1

    cs.SIphysics.soc-pharXiv:1602.00070v22016
  8. Historical Review of Recurrence Plots

    Norbert Marwan

    physics.hist-phphysics.soc-pharXiv:1709.09971v12017
  9. Graph cluster randomization: network exposure to multiple universes

    Johan Ugander, Brian Karrer, Lars Backstrom +1

    cs.SIphysics.soc-phstat.MEarXiv:1305.6979v12013
  10. How opinions are received by online communities: A case study on Amazon.com helpfulness votes

    Cristian Danescu-Niculescu-Mizil, Gueorgi Kossinets, Jon Kleinberg +1

    cs.CLcs.IRphysics.data-anarXiv:0906.3741v12009
  11. Temporal motifs in time-dependent networks

    Lauri Kovanen, Márton Karsai, Kimmo Kaski +2

    physics.data-ancs.SIphysics.soc-pharXiv:1107.5646v22011
  12. Urban Spatial Order: Street Network Orientation, Configuration, and Entropy

    Geoff Boeing

    physics.soc-pharXiv:1808.00600v42018
  13. Simulated epidemics in an empirical spatiotemporal network of 50,185 sexual contacts

    Luis Enrique Correa Rocha, Fredrik Liljeros, Petter Holme

    physics.soc-phq-bio.PEarXiv:1006.2856v12010
  14. On the Convexity of Latent Social Network Inference

    Seth A. Myers, Jure Leskovec

    cs.SIphysics.soc-pharXiv:1010.5504v12010
  15. Detecting highly overlapping community structure by greedy clique expansion

    Conrad Lee, Fergal Reid, Aaron McDaid +1

    physics.data-anphysics.soc-pharXiv:1002.1827v22010
  16. Re-examining rates of lithium-ion battery technology improvement and cost decline

    Micah S. Ziegler, Jessika E. Trancik

    physics.soc-pharXiv:2007.13920v22020
  17. How the Scientific Community Reacts to Newly Submitted Preprints: Article Downloads, Twitter Mentions, and Citations

    Xin Shuai, Alberto Pepe, Johan Bollen

    cs.SIcs.DLphysics.soc-pharXiv:1202.2461v32012
  18. Over-Optimization of Academic Publishing Metrics: Observing Goodhart's Law in Action

    Michael Fire, Carlos Guestrin

    cs.SIcs.CYphysics.soc-pharXiv:1809.07841v12018
  19. A message passing approach for general epidemic models

    Brian Karrer, M. E. J. Newman

    physics.soc-phcond-mat.stat-mechq-bio.PEarXiv:1003.5673v22010
  20. Explosive synchronization in adaptive and multilayer networks

    Xiyun Zhang, Stefano Boccaletti, Shuguang Guan +1

    physics.soc-phnlin.AOarXiv:1410.2986v12014
  21. Self-similarity of complex networks and hidden metric spaces

    M. Angeles Serrano, Dmitri Krioukov, Marian Boguna

    cond-mat.dis-nncs.NIphysics.soc-pharXiv:0710.2092v22007
  22. Revealing travel patterns and city structure with taxi trip data

    Xi Liu, Li Gong, Yongxi Gong +1

    physics.soc-phcs.SIarXiv:1310.6592v22013
  23. Information Source Detection in the SIR Model: A Sample Path Based Approach

    Kai Zhu, Lei Ying

    cs.SIphysics.soc-pharXiv:1206.5421v22012
  24. Once Upon a Crime: Towards Crime Prediction from Demographics and Mobile Data

    Andrey Bogomolov, Bruno Lepri, Jacopo Staiano +3

    cs.CYcs.SIphysics.soc-pharXiv:1409.2983v12014
  25. A meta-analysis of state-of-the-art electoral prediction from Twitter data

    Daniel Gayo-Avello

    cs.SIcs.CLcs.CYarXiv:1206.5851v12012
  26. Identifying influential spreaders in complex networks based on gravity formula

    Ling-Ling Ma, Chuang Ma, Hai-Feng Zhang +1

    physics.soc-phcs.SIarXiv:1505.02476v32015
  27. Modeling and Predicting Popularity Dynamics via Reinforced Poisson Processes

    Hua-Wei Shen, Dashun Wang, Chaoming Song +1

    cs.SIphysics.soc-pharXiv:1401.0778v12014
  28. Mapping county-level mobility pattern changes in the United States in response to COVID-19

    Song Gao, Jinmeng Rao, Yuhao Kang +2

    physics.soc-phcs.SIq-bio.PEarXiv:2004.04544v22020
  29. The Physics of Communicability in Complex Networks

    Ernesto Estrada, Naomichi Hatano, Michele Benzi

    physics.soc-phcond-mat.stat-mechcs.SIarXiv:1109.2950v12011
  30. Small vulnerable sets determine large network cascades in power grids

    Yang Yang, Takashi Nishikawa, Adilson E. Motter

    physics.soc-phcond-mat.dis-nncs.SIarXiv:1804.06432v12018
  31. Partisan Asymmetries in Online Political Activity

    Michael D. Conover, Bruno Gonçalves, Alessandro Flammini +1

    cs.SIcs.HCphysics.soc-pharXiv:1205.1010v22012
  32. Comparison of Pedestrian Fundamental Diagram Across Cultures

    Ujjal Chattaraj, Armin Seyfried, Partha Chakroborty

    physics.soc-pharXiv:0903.0149v12009
  33. Learning to Perform Physics Experiments via Deep Reinforcement Learning

    Misha Denil, Pulkit Agrawal, Tejas D Kulkarni +3

    stat.MLcs.AIcs.CVarXiv:1611.01843v32016
  34. Hierarchical modularity in human brain functional networks

    D. Meunier, R. Lambiotte, A. Fornito +2

    physics.data-annlin.AOphysics.bio-pharXiv:1004.3153v12010
  35. Contact patterns among high school students

    Julie Fournet, Alain Barrat

    physics.soc-phcs.SIarXiv:1409.5318v12014
  36. Elementary processes governing the evolution of road networks

    Emanuele Strano, Vincenzo Nicosia, Vito Latora +2

    physics.soc-phcond-mat.dis-nnarXiv:1203.0300v12012
  37. Modeling Radicalization Phenomena in Heterogeneous Populations

    Serge Galam, Marco Alberto Javarone

    physics.soc-phcond-mat.stat-mechcs.SIarXiv:1508.05269v22015
  38. Inferring land use from mobile phone activity

    Jameson L. Toole, Michael Ulm, Dietmar Bauer +1

    stat.MLcs.LGphysics.data-anarXiv:1207.1115v12012
  39. Towards real-time community detection in large networks

    Ian X. Y. Leung, Pan Hui, Pietro Lio' +1

    physics.soc-pharXiv:0808.2633v42008
  40. Efficient Community Detection in Large Networks using Content and Links

    Yiye Ruan, David Fuhry, Srinivasan Parthasarathy

    cs.SIphysics.soc-pharXiv:1212.0146v12012
  41. Optimal hierarchical modular topologies for producing limited sustained activation of neural networks

    Marcus Kaiser, Claus C. Hilgetag

    q-bio.NCcond-mat.dis-nnphysics.soc-pharXiv:1003.3081v12010
  42. Design and analysis of experiments in networks: Reducing bias from interference

    Dean Eckles, Brian Karrer, Johan Ugander

    stat.MEcs.SIphysics.soc-pharXiv:1404.7530v22014
  43. Learning Latent Block Structure in Weighted Networks

    Christopher Aicher, Abigail Z. Jacobs, Aaron Clauset

    stat.MLcs.SIphysics.data-anarXiv:1404.0431v22014
  44. Knowledge transfer in a tourism destination: the effects of a network structure

    R. Baggio, C. Cooper

    physics.soc-pharXiv:0905.2734v22009
  45. Crowdsourcing, Attention and Productivity

    Bernardo A. Huberman, Daniel M. Romero, Fang Wu

    cs.CYphysics.soc-pharXiv:0809.3030v12008
  46. Heterogeneous aspirations promote cooperation in the prisoner's dilemma game

    Matjaz Perc, Zhen Wang

    physics.soc-phcond-mat.stat-mechq-bio.PEarXiv:1011.5132v12010
  47. Public transport networks: empirical analysis and modeling

    C. von Ferber, T. Holovatch, Yu. Holovatch +1

    physics.soc-phphysics.data-anarXiv:0803.3514v12008
  48. Uncovering space-independent communities in spatial networks

    Paul Expert, Tim Evans, Vincent D. Blondel +1

    physics.soc-phcs.SIarXiv:1012.3409v22010
  49. Universal power law governing pedestrian interactions

    Ioannis Karamouzas, Brian Skinner, Stephen J. Guy

    physics.soc-phcond-mat.stat-mechphysics.data-anarXiv:1412.1082v12014
  50. The inconsistency of the h-index

    Ludo Waltman, Nees Jan van Eck

    cs.DLphysics.soc-pharXiv:1108.3901v12011
  51. Geographic constraints on social network groups

    Jukka-Pekka Onnela, Samuel Arbesman, Marta C. González +2

    physics.soc-phcond-mat.dis-nncs.SIarXiv:1011.4859v22010
  52. From Crowd Dynamics to Crowd Safety: A Video-Based Analysis

    Anders Johansson, Dirk Helbing, Habib Z. Al-Abideen +1

    physics.soc-phphysics.data-anarXiv:0810.4590v12008
  53. Percolation on complex networks: Theory and application

    Ming Li, Run-Ran Liu, Linyuan Lü +3

    physics.soc-phcond-mat.stat-mecharXiv:2101.11761v12021
  54. Collective response of human populations to large-scale emergencies

    James P. Bagrow, Dashun Wang, Albert-László Barabási

    physics.soc-phcs.SIphysics.data-anarXiv:1106.0560v12011
  55. Power grids vulnerability: a complex network approach

    S. Arianos, E. Bompard, A. Carbone +1

    physics.soc-pharXiv:0810.5278v32008
  56. Quantifying the benefits of vehicle pooling with shareability networks

    Paolo Santi, Giovanni Resta, Michael Szell +3

    physics.soc-phcs.CYcs.SIarXiv:1310.2963v22013
  57. The scaling of human interactions with city size

    Markus Schläpfer, Luis M. A. Bettencourt, Sebastian Grauwin +5

    physics.soc-phcs.SIphysics.data-anarXiv:1210.5215v32012
  58. Solving the Cold-Start Problem in Recommender Systems with Social Tags

    Zi-Ke Zhang, Chuang Liu, Yi-Cheng Zhang +1

    cs.IRphysics.soc-pharXiv:1004.3732v22010
  59. Geospatial Big Data Handling Theory and Methods: A Review and Research Challenges

    S. Li, S. Dragicevic, F. Anton +8

    physics.soc-phcs.CYphysics.data-anarXiv:1511.03010v12015
  60. A Tutorial in Connectome Analysis: Topological and Spatial Features of Brain Networks

    Marcus Kaiser

    q-bio.NCcs.SIphysics.soc-pharXiv:1105.4705v12011