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David K. Lubensky

Identifiers

  • name variant David K. Lubensky 0.60 · backfill

Papers (19)

  1. Distinguishing Feedback Mechanisms in Clock Models q-bio.MN · 2018 · author #3
  2. Theory of circadian metabolism q-bio.MN · 2018 · author #2
  3. Spontaneous Chiral Symmetry Breaking in Planar Polarized Epithelia q-bio.TO · 2017 · author #2
  4. Optimal entrainment of circadian clocks in the presence of noise physics.bio-ph · 2017 · author #2
  5. Vertex stability and topological transitions in vertex models of foams and epithelia q-bio.TO · 2016 · author #3
  6. Discrete gene replication events drive coupling between the cell cycle and circadian clocks q-bio.MN · 2015 · author #4
  7. Exchange of stability as a function of system size in a nonequilibrium system cond-mat.stat-mech · 2012 · author #2
  8. Robust circadian clocks from coupled protein modification and transcription-translation cycles q-bio.MN · 2010 · author #2
  9. Switch and template pattern formation in a discrete reaction diffusion system inspired by the Drosophila eye q-bio.MN · 2010 · author #2
  10. Equilibrium-like behavior in far-from-equilibrium chemical reaction networks cond-mat.stat-mech · 2007 · author #1
  11. An allosteric model for circadian KaiC phosphorylation - Supporting Information q-bio.MN · 2007 · author #2
  12. An allosteric model of KaiC phosphorylation q-bio.MN · 2007 · author #2
  13. Dynamics of Molecular Motors with Finite Processivity on Heterogeneous Tracks cond-mat.stat-mech · 2004 · author #2
  14. Dynamics of Molecular Motors and Polymer Translocation with Sequence Heterogeneity cond-mat.stat-mech · 2003 · author #2
  15. DNA unzipped under a constant force exhibits multiple metastable intermediates cond-mat.soft · 2003 · author #4
  16. Unzipping Kinetics of Double-Stranded DNA in a Nanopore cond-mat.soft · 2002 · author #3
  17. Single Molecule Statistics and the Polynucleotide Unzipping Transition cond-mat.soft · 2001 · author #1
  18. Pulling Pinned Polymers and Unzipping DNA cond-mat.soft · 2000 · author #1
  19. Driven Polymer Translocation Through a Narrow Pore physics.bio-ph · 1999 · author #1

Mentions

  • 1510.05850 #4 · backfill · confidence 0.70 David K. Lubensky
  • 1206.0290 #2 · backfill · confidence 0.70 David K. Lubensky
  • 1004.2821 #2 · backfill · confidence 0.70 David K. Lubensky
  • 1001.4451 #2 · backfill · confidence 0.70 David K. Lubensky
  • 0708.2953 #1 · backfill · confidence 0.70 David K. Lubensky

Frequent Coauthors