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Thomas E. Ouldridge
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2020 – today
- 2024
- [i5]Benjamin Qureshi, Jenny M. Poulton, Thomas E. Ouldridge:
Information propagation in far-from-equilibrium molecular templating networks is optimised by pseudo-equilibrium systems with negligible dissipation. CoRR abs/2404.02791 (2024) - 2023
- [i4]William Poole, Thomas E. Ouldridge, Manoj Gopalkrishnan:
Autonomous Learning of Generative Models with Chemical Reaction Network Ensembles. CoRR abs/2311.00975 (2023) - [i3]David H. Wolpert, Jan Korbel, Christopher Lynn, Farita Tasnim, Joshua A. Grochow, Gülce Kardes, James B. Aimone, Vijay Balasubramanian, Eric De Giuli, David Doty, Nahuel Freitas, Matteo Marsili, Thomas E. Ouldridge, Andréa W. Richa, Paul M. Riechers, Édgar Roldán, Brenda M. Rubenstein, Zoltán Toroczkai, Joseph A. Paradiso:
Is stochastic thermodynamics the key to understanding the energy costs of computation? CoRR abs/2311.17166 (2023) - 2022
- [e1]Thomas E. Ouldridge, Shelley F. J. Wickham:
28th International Conference on DNA Computing and Molecular Programming, DNA 28, August 8-12, 2022, University of New Mexico, Albuquerque, New Mexico, USA. LIPIcs 238, Schloss Dagstuhl - Leibniz-Zentrum für Informatik 2022, ISBN 978-3-95977-253-2 [contents] - [i2]Ian Seet, Thomas E. Ouldridge, Jonathan P. K. Doye:
Simulation of reversible molecular mechanical logic gates and circuits. CoRR abs/2205.01563 (2022) - [i1]William Poole, Thomas E. Ouldridge, Manoj Gopalkrishnan, Erik Winfree:
Detailed Balanced Chemical Reaction Networks as Generalized Boltzmann Machines. CoRR abs/2205.06313 (2022) - 2020
- [j3]Abhishek Deshpande, Thomas E. Ouldridge:
Optimizing enzymatic catalysts for rapid turnover of substrates with low enzyme sequestration. Biol. Cybern. 114(6): 653-668 (2020) - [c2]Antti Lankinen, Ismael Mullor Ruiz, Thomas E. Ouldridge:
Implementing Non-Equilibrium Networks with Active Circuits of Duplex Catalysts. DNA 2020: 7:1-7:25
2010 – 2019
- 2018
- [j2]Thomas E. Ouldridge:
The importance of thermodynamics for molecular systems, and the importance of molecular systems for thermodynamics. Nat. Comput. 17(1): 3-29 (2018) - 2017
- [c1]William Poole, Andrés Ortiz-Muñoz, Abhishek Behera, Nick S. Jones, Thomas E. Ouldridge, Erik Winfree, Manoj Gopalkrishnan:
Chemical Boltzmann Machines. DNA 2017: 210-231 - 2014
- [j1]Petr Sulc, Thomas E. Ouldridge, Flavio Romano, Jonathan P. K. Doye, Ard A. Louis:
Simulating a burnt-bridges DNA motor with a coarse-grained DNA model. Nat. Comput. 13(4): 535-547 (2014)
Coauthor Index
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