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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481 to 540 of 1,037
Random walks on hypergraphs
Timoteo Carletti, Federico Battiston, Giulia Cencetti +1
physics.soc-phcs.SIphysics.data-anarXiv:1911.06523v22019Competing epidemics on complex networks
Brian Karrer, M. E. J. Newman
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1105.3424v12011Main-path analysis and path-dependent transitions in HistCite(TM)-based historiograms
Diana Lucio-Arias, Loet Leydesdorff
physics.soc-phcs.DLarXiv:0911.1454v12009Measuring the evolution of contemporary western popular music
Joan Serrà, Álvaro Corral, Marián Boguñá +2
cs.SDcs.IRcs.MMarXiv:1205.5651v12012Emergence of bimodality in controlling complex networks
Tao Jia, Yang-Yu Liu, Endre Csóka +3
physics.soc-phcs.SIarXiv:1505.06476v12015Representing higher-order dependencies in networks
Jian Xu, Thanuka L. Wickramarathne, Nitesh V. Chawla
cs.SIphysics.soc-pharXiv:1508.03113v62015Reality Inspired Voter Models: A Mini-Review
S. Redner
physics.soc-phcond-mat.stat-mecharXiv:1811.11888v32018Quantifying the Effect of Sentiment on Information Diffusion in Social Media
Emilio Ferrara, Zeyao Yang
cs.SIcs.LGphysics.soc-pharXiv:1506.06072v12015Limited communication capacity unveils strategies for human interaction
Giovanna Miritello, Rubén Lara, Manuel Cebrián +1
physics.soc-phcs.SIarXiv:1304.1979v12013Hypothesis Testing for Automated Community Detection in Networks
Peter J. Bickel, Purnamrita Sarkar
stat.MLcs.LGcs.SIarXiv:1311.2694v22013Community Detection on Networks with Ricci Flow
Chien-Chun Ni, Yu-Yao Lin, Feng Luo +1
cs.SIphysics.soc-pharXiv:1907.03993v12019Anticipating cryptocurrency prices using machine learning
Laura Alessandretti, Abeer ElBahrawy, Luca Maria Aiello +1
physics.soc-phcs.LGq-fin.GNarXiv:1805.08550v42018Explore Spatiotemporal and Demographic Characteristics of Human Mobility via Twitter: A Case Study of Chicago
Feixiong Luo, Guofeng Cao, Kevin Mulligan +1
cs.SIcs.CYphysics.soc-pharXiv:1508.00188v22015Effect of spatial structure on the evolution of cooperation
Carlos P. Roca, José A. Cuesta, Angel Sánchez
q-bio.PEcs.GTphysics.soc-pharXiv:0806.1649v42008Generic Absorbing Transition in Coevolution Dynamics
F. Vazquez, V. M. Eguiluz, M. San Miguel
physics.soc-phcond-mat.stat-mecharXiv:0710.4910v22007Asymmetrically interacting spreading dynamics on complex layered networks
Wei Wang, Ming Tang, Hui Yang +3
physics.soc-phcs.SIarXiv:1405.1905v12014Emergence of communities in weighted networks
J. M. Kumpula, J. -P. Onnela, J. Saramaki +2
physics.soc-pharXiv:0708.0925v12007The Dynamics of a Mobile Phone Network
Cesar A. Hidalgo, C. Rodriguez-Sickert
physics.soc-pharXiv:0712.4031v22007Robust network community detection using balanced propagation
Lovro Šubelj, Marko Bajec
physics.soc-phcs.SIphysics.data-anarXiv:1106.5524v12011The Death and Life of Great Italian Cities: A Mobile Phone Data Perspective
Marco De Nadai, Jacopo Staiano, Roberto Larcher +3
cs.CYcs.SIphysics.soc-pharXiv:1603.04012v12016Complex network analysis of water distribution systems
A. Yazdani, P. Jeffrey
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1104.0121v12011The role of centrality for the identification of influential spreaders in complex networks
Guilherme Ferraz de Arruda, André Luiz Barbieri, Pablo Martín Rodriguez +3
physics.soc-phcs.SIarXiv:1404.4528v12014Multilayer Networks in a Nutshell
Alberto Aleta, Yamir Moreno
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1804.03488v12018Tail-scope: Using friends to estimate heavy tails of degree distributions in large-scale complex networks
Young-Ho Eom, Hang-Hyun Jo
physics.soc-phcs.SIphysics.data-anarXiv:1411.6871v22014Collective emotions online and their influence on community life
Anna Chmiel, Julian Sienkiewicz, Mike Thelwall +4
physics.soc-phcs.SIarXiv:1107.2647v12011Fluctuating epidemics on adaptive networks
Leah B. Shaw, Ira B. Schwartz
q-bio.PEphysics.soc-pharXiv:0801.0606v12008Three-phase traffic theory and two-phase models with a fundamental diagram in the light of empirical stylized facts
Martin Treiber, Arne Kesting, Dirk Helbing
physics.soc-pharXiv:1004.5545v12010Uncovering Coordinated Networks on Social Media: Methods and Case Studies
Diogo Pacheco, Pik-Mai Hui, Christopher Torres-Lugo +3
cs.SIphysics.soc-pharXiv:2001.05658v22020Social Turing Tests: Crowdsourcing Sybil Detection
Gang Wang, Manish Mohanlal, Christo Wilson +4
cs.SIphysics.soc-pharXiv:1205.3856v22012Traffic Instabilities in Self-Organized Pedestrian Crowds
Mehdi Moussaid, Elsa G. Guillot, Mathieu Moreau +7
physics.soc-pharXiv:1203.5267v12012The impact factor's Matthew effect: a natural experiment in bibliometrics
Vincent Lariviere, Yves Gingras
physics.soc-phcs.DLarXiv:0908.3177v12009Conversations Gone Awry: Detecting Early Signs of Conversational Failure
Justine Zhang, Jonathan P. Chang, Cristian Danescu-Niculescu-Mizil +4
cs.CLcs.AIcs.CYarXiv:1805.05345v12018The diminishing role of hubs in dynamical processes on complex networks
Rick Quax, Andrea Apolloni, Peter M. A. Sloot
cs.ITnlin.AOphysics.soc-pharXiv:1111.5483v32011Ranking in evolving complex networks
Hao Liao, Manuel Sebastian Mariani, Matus Medo +2
physics.soc-phcs.DLcs.IRarXiv:1704.08027v12017Information Transfer in Social Media
Greg Ver Steeg, Aram Galstyan
cs.SIphysics.soc-phstat.AParXiv:1110.2724v12011The Majority Illusion in Social Networks
Kristina Lerman, Xiaoran Yan, Xin-Zeng Wu
cs.SIcs.CYphysics.soc-pharXiv:1506.03022v12015Scaling rules in the science system: influence of field-specific citation characteristics on the impact of research groups
Anthony F. J. van Raan
physics.soc-phphysics.data-anarXiv:0707.3261v12007StaticGreedy: solving the scalability-accuracy dilemma in influence maximization
Suqi Cheng, Huawei Shen, Junming Huang +2
cs.SIcs.DSphysics.soc-pharXiv:1212.4779v32012140 Characters to Victory?: Using Twitter to Predict the UK 2015 General Election
Pete Burnap, Rachel Gibson, Luke Sloan +2
cs.CYcs.SIphysics.soc-pharXiv:1505.01511v12015Multiscale modeling of granular flows with application to crowd dynamics
Emiliano Cristiani, Benedetto Piccoli, Andrea Tosin
math-phmath.NAphysics.soc-pharXiv:1006.0694v12010Is the Voter Model a model for voters?
Juan Fernández-Gracia, Krzysztof Suchecki, José J. Ramasco +2
physics.soc-phcs.SIarXiv:1309.1131v22013Towards a new crown indicator: An empirical analysis
Ludo Waltman, Nees Jan van Eck, Thed N. van Leeuwen +2
cs.DLphysics.soc-pharXiv:1004.1632v22010Effect of initial configuration on network-based recommendation
Tao Zhou, Luo-Luo Jiang, Ri-Qi Su +1
physics.soc-pharXiv:0711.2506v12007Fundamentals of spreading processes in single and multilayer complex networks
Guilherme Ferraz de Arruda, Francisco A. Rodrigues, Yamir Moreno
physics.soc-phcond-mat.stat-mechq-bio.PEarXiv:1804.08777v22018Dynamic Effects Increasing Network Vulnerability to Cascading Failures
Ingve Simonsen, Lubos Buzna, Karsten Peters +2
physics.soc-phphysics.class-pharXiv:0704.1952v22007Toward a social psychology of AI: language-model agents reproduce human-like minimal-group bias
Messi H. J. Lee
physics.soc-phcs.CYarXiv:2609.00009v12026Ranking the spreading influence in complex networks
Jian-Guo Liu, Zhuo-Ming Ren, Qiang Guo
physics.soc-phcs.SIarXiv:1408.4649v12014Competition and cooperation among different punishing strategies in the spatial public goods game
Xiaojie Chen, Attila Szolnoki, Matjaz Perc
physics.soc-phcs.GTq-bio.PEarXiv:1508.03325v12015Absence of influential spreaders in rumor dynamics
Javier Borge-Holthoefer, Yamir Moreno
physics.soc-phcs.SIarXiv:1112.2239v12011The Intelligent Driver Model with Stochasticity -- New Insights Into Traffic Flow Oscillations
Martin Treiber, Arne Kesting
physics.soc-phnlin.PSarXiv:1708.06952v12017Can AI-Assisted Inquiry Enhance Students' Decision-Making Skills in Socio-Scientific Issues? A Three-Group Experimental Study on Climate Change
Dimitrios Gousopoulos
cs.CYphysics.soc-pharXiv:2608.28617v12026A network approach to topic models
Martin Gerlach, Tiago P. Peixoto, Eduardo G. Altmann
stat.MLcs.CLphysics.data-anarXiv:1708.01677v22017Exploiting Social Network Structure for Person-to-Person Sentiment Analysis
Robert West, Hristo S. Paskov, Jure Leskovec +1
cs.SIcs.CLphysics.soc-pharXiv:1409.2450v12014Small world yields the most effective information spreading
Linyuan Lü, Duan-Bing Chen, Tao Zhou
physics.soc-phcs.SIphysics.data-anarXiv:1107.0429v22011Scaling laws of human interaction activity
Diego Rybski, Sergey V. Buldyrev, Shlomo Havlin +2
physics.soc-phcond-mat.stat-mechphysics.data-anarXiv:0909.2006v12009Modeling confirmation bias and polarization
Michela Del Vicario, Antonio Scala, Guido Caldarelli +2
physics.soc-phcs.SIarXiv:1607.00022v12016Control centrality and hierarchical structure in complex networks
Yang-Yu Liu, Jean-Jacques Slotine, Albert-László Barabási
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1203.2655v12012Robustness of interdependent networks under targeted attack
Xuqing Huang, Jianxi Gao, Sergey V. Buldyrev +2
physics.soc-phcs.SIphysics.data-anarXiv:1010.2160v32010The Mechanics of Democratic Dominance: A System Dynamics Paradigm for Dynamic Consent Engineering
Muhammad Sukri Bin Ramli
physics.soc-pharXiv:2608.27509v22026Community detection in networks: Structural communities versus ground truth
Darko Hric, Richard K. Darst, Santo Fortunato
physics.soc-phcs.IRcs.SIarXiv:1406.0146v22014