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J Buehler

Showing results (201-210 of 349) with videos related to

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ACS Biomaterials Science & Engineering|January 9, 2021
Modeling and Experiment Reveal Structure and Nanomechanics across the Inverse Temperature Transition in <i>B. mori</i> Silk-Elastin-like Protein PolymersAnna Tarakanova, Wenwen Huang, Zhao Qin, et al.
Arxiv|July 23, 2024
Multicell-Fold: geometric learning in folding multicellular lifeHaiqian Yang, Anh Q Nguyen, Dapeng Bi, et al.
Nanoscale|September 2, 2017
Unusually low and density-insensitive thermal conductivity of three-dimensional gyroid grapheneGang Seob Jung, Jingjie Yeo, Zhiting Tian, et al.
Biomaterials|March 10, 2012
Molecular mechanism of force induced stabilization of collagen against enzymatic breakdownShu-Wei Chang, Brendan P Flynn, Jeffrey W Ruberti, et al.
Journal of the Mechanical Behavior of Biomedical Materials|August 27, 2021
Deep learning approach to assess damage mechanics of bone tissueSabrina Chin-Yun Shen, Marta Peña Fernández, Gianluca Tozzi, et al.
Macromolecular Rapid Communications|June 20, 2023
Coordination Stoichiometry Effects on the Binding Hierarchy of Histamine and Imidazole-M<sup>2+</sup> ComplexesJake Song, Eesha Khare, Li Rao, et al.
Nano Letters|June 4, 2010
Molecular and nanostructural mechanisms of deformation, strength and toughness of spider silk fibrilsAndrea Nova, Sinan Keten, Nicola M Pugno, et al.
ACS Nano|August 14, 2018
The Rise of Hierarchical Nanostructured Materials from Renewable Sources: Learning from NatureFrancisco J Martin-Martinez, Kai Jin, Diego López Barreiro, et al.
Science Advances|March 26, 2025
Learning the rules of peptide self-assembly through data mining with large language modelsZhenze Yang, Sarah K Yorke, Tuomas P J Knowles, et al.
Matrix Biology Plus|February 5, 2021
Allysine modifications perturb tropoelastin structure and mobility on a local and global scaleJazmin Ozsvar, Anna Tarakanova, Richard Wang, et al.
Pageof 35

Showing results (201-210 of 349) with videos related to

Sort By:
Pageof 35
ACS Biomaterials Science & Engineering|January 9, 2021
Modeling and Experiment Reveal Structure and Nanomechanics across the Inverse Temperature Transition in <i>B. mori</i> Silk-Elastin-like Protein PolymersAnna Tarakanova, Wenwen Huang, Zhao Qin, et al.
Arxiv|July 23, 2024
Multicell-Fold: geometric learning in folding multicellular lifeHaiqian Yang, Anh Q Nguyen, Dapeng Bi, et al.
Nanoscale|September 2, 2017
Unusually low and density-insensitive thermal conductivity of three-dimensional gyroid grapheneGang Seob Jung, Jingjie Yeo, Zhiting Tian, et al.
Biomaterials|March 10, 2012
Molecular mechanism of force induced stabilization of collagen against enzymatic breakdownShu-Wei Chang, Brendan P Flynn, Jeffrey W Ruberti, et al.
Journal of the Mechanical Behavior of Biomedical Materials|August 27, 2021
Deep learning approach to assess damage mechanics of bone tissueSabrina Chin-Yun Shen, Marta Peña Fernández, Gianluca Tozzi, et al.
Macromolecular Rapid Communications|June 20, 2023
Coordination Stoichiometry Effects on the Binding Hierarchy of Histamine and Imidazole-M<sup>2+</sup> ComplexesJake Song, Eesha Khare, Li Rao, et al.
Nano Letters|June 4, 2010
Molecular and nanostructural mechanisms of deformation, strength and toughness of spider silk fibrilsAndrea Nova, Sinan Keten, Nicola M Pugno, et al.
ACS Nano|August 14, 2018
The Rise of Hierarchical Nanostructured Materials from Renewable Sources: Learning from NatureFrancisco J Martin-Martinez, Kai Jin, Diego López Barreiro, et al.
Science Advances|March 26, 2025
Learning the rules of peptide self-assembly through data mining with large language modelsZhenze Yang, Sarah K Yorke, Tuomas P J Knowles, et al.
Matrix Biology Plus|February 5, 2021
Allysine modifications perturb tropoelastin structure and mobility on a local and global scaleJazmin Ozsvar, Anna Tarakanova, Richard Wang, et al.
Pageof 35