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Mohit P Dalwadi

Showing results (1-10 of 11) with videos related to

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Proceedings of the National Academy of Sciences of the United States of America|March 4, 2021
Emergent robustness of bacterial quorum sensing in fluid flowMohit P Dalwadi, Philip Pearce
Bulletin of Mathematical Biology|March 7, 2020
An Asymptotic Analysis of the Malonyl-CoA Route to 3-Hydroxypropionic Acid in Genetically Engineered MicrobesMohit P Dalwadi, John R King
Bulletin of Mathematical Biology|January 3, 2025
A Dynamical Analysis of the Alignment Mechanism Between Two Interacting CellsVivienne Leech, Mohit P Dalwadi, Angelika Manhart
Journal of Mathematical Biology|November 22, 2017
Multi-timescale analysis of a metabolic network in synthetic biology: a kinetic model for 3-hydroxypropionic acid production via beta-alanineMohit P Dalwadi, John R King, Nigel P Minton
Proceedings of the National Academy of Sciences of the United States of America|January 21, 2026
A shear-induced limit on bacterial surface adhesion in fluid flowEdwina F Yeo, Benjamin J Walker, Philip Pearce, et al.
Physical Review Letters|December 15, 2023
Motility-Induced Phase Separation Mediated by Bacterial Quorum SensingWesley J M Ridgway, Mohit P Dalwadi, Philip Pearce, et al.
Journal of Theoretical Biology|December 5, 2017
Applying asymptotic methods to synthetic biology: Modelling the reaction kinetics of the mevalonate pathwayMohit P Dalwadi, Marco Garavaglia, Joseph P Webb, et al.
Frontiers in Bioengineering and Biotechnology|June 28, 2021
A Systematically Reduced Mathematical Model for Organoid ExpansionMeredith A Ellis, Mohit P Dalwadi, Marianne J Ellis, et al.
Journal of Mathematical Biology|August 8, 2020
Using singular perturbation theory to determine kinetic parameters in a non-standard coupled enzyme assayMohit P Dalwadi, Diego Orol, Frederik Walter, et al.
Royal Society Open Science|July 18, 2024
An agent-based modelling framework to study growth mechanisms in <i>EGFR-L858R</i> mutant cell alveolar type II cellsHelena Coggan, Clare E Weeden, Philip Pearce, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Proceedings of the National Academy of Sciences of the United States of America|March 4, 2021
Emergent robustness of bacterial quorum sensing in fluid flowMohit P Dalwadi, Philip Pearce
Bulletin of Mathematical Biology|March 7, 2020
An Asymptotic Analysis of the Malonyl-CoA Route to 3-Hydroxypropionic Acid in Genetically Engineered MicrobesMohit P Dalwadi, John R King
Bulletin of Mathematical Biology|January 3, 2025
A Dynamical Analysis of the Alignment Mechanism Between Two Interacting CellsVivienne Leech, Mohit P Dalwadi, Angelika Manhart
Journal of Mathematical Biology|November 22, 2017
Multi-timescale analysis of a metabolic network in synthetic biology: a kinetic model for 3-hydroxypropionic acid production via beta-alanineMohit P Dalwadi, John R King, Nigel P Minton
Proceedings of the National Academy of Sciences of the United States of America|January 21, 2026
A shear-induced limit on bacterial surface adhesion in fluid flowEdwina F Yeo, Benjamin J Walker, Philip Pearce, et al.
Physical Review Letters|December 15, 2023
Motility-Induced Phase Separation Mediated by Bacterial Quorum SensingWesley J M Ridgway, Mohit P Dalwadi, Philip Pearce, et al.
Journal of Theoretical Biology|December 5, 2017
Applying asymptotic methods to synthetic biology: Modelling the reaction kinetics of the mevalonate pathwayMohit P Dalwadi, Marco Garavaglia, Joseph P Webb, et al.
Frontiers in Bioengineering and Biotechnology|June 28, 2021
A Systematically Reduced Mathematical Model for Organoid ExpansionMeredith A Ellis, Mohit P Dalwadi, Marianne J Ellis, et al.
Journal of Mathematical Biology|August 8, 2020
Using singular perturbation theory to determine kinetic parameters in a non-standard coupled enzyme assayMohit P Dalwadi, Diego Orol, Frederik Walter, et al.
Royal Society Open Science|July 18, 2024
An agent-based modelling framework to study growth mechanisms in <i>EGFR-L858R</i> mutant cell alveolar type II cellsHelena Coggan, Clare E Weeden, Philip Pearce, et al.
Pageof 2