Network Theory and New Materials
FOCUS · MAR-A69 · ID: 3097102
Presentations
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From Physical Network to Network Materials
ORAL · Invited
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Presenters
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Albert-Laszlo Barabasi
Northeastern University
Authors
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Albert-Laszlo Barabasi
Northeastern University
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Measuring Entanglement in Physical Networks
ORAL
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Publication: Glover, Cory, and Albert-László Barabási. "Measuring Entanglement in Physical Networks." Physical Review Letters 133.7 (2024): 077401.
Presenters
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Cory S Glover
Northeastern University
Authors
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Cory S Glover
Northeastern University
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Albert-Laszlo Barabasi
Northeastern University
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Mapping the landscape of polymer network topologies with graph-generative modeling
ORAL
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Publication: Jason Mulderrig, Jeffrey Ethier, Matthew Grasinger, Timothy Sirk, Vikas Varshney and Philip Buskohl; Mapping the landscape of polymer network topologies with graph-generative modeling; In preparation.
Presenters
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Jason P Mulderrig
Cornell University, Air Force Research Laboratory (AFRL), Air Force Research Laboratory
Authors
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Jason P Mulderrig
Cornell University, Air Force Research Laboratory (AFRL), Air Force Research Laboratory
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Jeffrey G Ethier
Air Force Research Laboratory (AFRL)
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Matthew J Grasinger
Air Force Research Laboratory (AFRL)
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Timothy W Sirk
US Army Research Lab Aberdeen
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Vikas Varshney
Air Force Research Laboratory
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Philip Buskohl
Air Force Research Laboratory (AFRL)
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Designing the dynamical response of elastic network materials
ORAL
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Presenters
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Niranjan Sarpangala
University of Pennsylvania
Authors
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Niranjan Sarpangala
University of Pennsylvania
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Sean C Fancher
University of Pennsylvania
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Prashant Purohit
University of Pennsylvania
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Eleni Katifori
University of Pennsylvania
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Abstract Withdrawn
ORAL Withdrawn
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Fracture-resistant soft materials by topology engineering
ORAL
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Publication: J. Kim*, G. Zhang*, M. Shi, Z. Suo†, "Fracture, fatigue, and friction of polymers in which entanglements greatly outnumber cross-links", Science, 374(6564), 212-216 (2021)<br>G. Nian*, J. Kim*, X. Bao, Z. Suo†, "Making Highly Elastic and Tough Hydrogels from Doughs", Advanced Materials, 34(50), 2206577 (2022)<br>J. Steck*, J. Kim*, Y. Kutsovsky†, Z. Suo†, "Multiscale stress deconcentration amplifies fatigue resistance of rubber", Nature, 624, 303-308 (2023)
Presenters
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Junsoo Kim
Northwestern University
Authors
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Junsoo Kim
Northwestern University
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Electrical Transport in Tunably-Disordered Metamaterials: Characterization Using Network Entropy.
ORAL
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Publication: arXiv: 2410.11525
Presenters
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Mastawal A Tirfe
North Carolina State University
Authors
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Mastawal A Tirfe
North Carolina State University
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Caitlyn Obrero
North Carolina State University
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Carmen L Lee
North Carolina State University
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Sourabh Saptarshi
North Carolina State University
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Christopher D Rock
North Carolina State University
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Karen E Daniels
North Carolina State University
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Katherine Newhall
University of North Carolina at Chapel Hill, University of North Carolina, Chapel Hill
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Abstract Withdrawn
ORAL Withdrawn
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Digital computing with elasto-plastic metamaterials
ORAL
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Presenters
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Frederic Lechenault
CNRS - LPENS
Authors
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Frederic Lechenault
CNRS - LPENS
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Laura Michel
CNRS
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Alexander Balatsky
ORAL · Invited
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Presenters
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Alexander V. Balatsky
University of Connecticut, NORDITA, University of Connecticut
Authors
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Alexander V. Balatsky
University of Connecticut, NORDITA, University of Connecticut
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