Jay Donald Schieber, Ph.D.
Affiliations: | Chemical and Biological Engineering, and Physics | Illinois Institute of Technology, Chicago, IL, United States |
Area:
polymer physics, rheology, transport phenomena, multiscale modelingWebsite:
http://www.iit.edu/engineering/chbe/faculty/schieber_jay.shtmlGoogle:
"Jay Schieber"Mean distance: 8.26 | S | N | B | C | P |
Parents
Sign in to add mentorR. Byron Bird | grad student | 1989 | UW Madison | |
(The effects of finite link number on reptation models for undiluted polymers) |
Children
Sign in to add traineeMaria Katzarova | grad student | Illinois Institute of Technology | |
Chi-Chung Hua | grad student | 1991-1996 | University of Houston |
Job D. Guzman | grad student | 2003 | Illinois Institute of Technology |
Mahnaz Eskandari | grad student | 2006 | Illinois Institute of Technology |
Renat N. Khaliullin | grad student | 2010 | Illinois Institute of Technology |
Marat Andreev | grad student | 2014 | Illinois Institute of Technology |
Andrés Córdoba Uribe | grad student | 2014 | Illinois Institute of Technology |
David Nieto Simavilla | grad student | 2014 | Illinois Institute of Technology |
Pavel Dutov | grad student | 2015 | Illinois Institute of Technology |
Ekaterina Pilyugina | grad student | 2015 | Illinois Institute of Technology |
Hualong Feng | post-doc | Illinois Institute of Technology | |
Maksim Shivokhin | post-doc | Illinois Institute of Technology | |
Rudi Steenbakkers | post-doc | Illinois Institute of Technology | |
Andy Kiessling | post-doc | 2015- | Illinois Institute of Technology |
Stoyan K. Smoukov | post-doc | 2002-2003 | Illinois Institute of Technology |
Collaborators
Sign in to add collaboratorTsutomu Indei | collaborator | Illinois Institute of Technology |
BETA: Related publications
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Publications
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Steenbakkers RJA, Andreev M, Schieber JD. (2021) Thermodynamically consistent incorporation of entanglement spatial fluctuations in the slip-link model. Physical Review. E. 103: 022501 |
Córdoba A, Schieber JD, Indei T. (2020) A simple microswimmer model inspired by the general equation for nonequilibrium reversible-irreversible coupling. The Journal of Chemical Physics. 152: 194902 |
Becerra D, Córdoba A, Katzarova M, et al. (2020) Polymer rheology predictions from first principles using the slip-link model Journal of Rheology. 64: 1035-1043 |
Venerus DC, Simavilla DN, Schieber JD. (2019) THERMAL TRANSPORT IN CROSS-LINKED ELASTOMERS SUBJECTED TO ELONGATIONAL DEFORMATIONS Rubber Chemistry and Technology. 92: 639-652 |
Valadez-Pérez NE, Taletskiy K, Schieber JD, et al. (2018) Efficient Determination of Slip-Link Parameters from Broadly Polydisperse Linear Melts. Polymers. 10 |
Taletskiy K, Tervoort TA, Schieber JD. (2018) Predictions of the linear rheology of polydisperse, entangled linear polymer melts by using the discrete slip-link model Journal of Rheology. 62: 1331-1338 |
Nieto Simavilla D, Schieber JD, Venerus DC. (2018) Evidence of Deformation-Dependent Heat Capacity and Energetic Elasticity in a Cross-Linked Elastomer Subjected to Uniaxial Elongation Macromolecules. 51: 589-597 |
Ramírez-Hernández A, Peters BL, Schneider L, et al. (2018) A Detailed Examination of the Topological Constraints of Lamellae-Forming Block Copolymers Macromolecules. 51: 2110-2124 |
Katzarova M, Kashyap T, Schieber JD, et al. (2018) Linear viscoelastic behavior of bidisperse polystyrene blends: experiments and slip-link predictions Rheologica Acta. 57: 327-338 |
Pilyugina E, Krajina B, Spakowitz AJ, et al. (2017) Buckling a Semiflexible Polymer Chain under Compression. Polymers. 9 |