All Stories

  1. Slip-Link Theory Predicts Entangled, Star-Branched Relaxation Measurably Different from Tube Model Predictions
  2. Stable upstream swimming of a swarm of puller microswimmers
  3. Reëntanglement Dynamics in Polymer Melts Can Be Explained by Fast Dangling End Retraction without Resorting to Nonuniversality
  4. Influence of the Dielectric Constant on the Ionic Current Rectification of Bipolar Nanopores
  5. Equibiaxial elongation of entangled polyisobutylene melts: Experiments and theoretical predictions
  6. Effect of Stiffness on the Dynamics of Entangled Nanofiber Networks at Low Concentrations
  7. The effects of hydrodynamic interactions on the swimming velocity and stability of a swarm of microswimmers
  8. Water flow in a polymeric nanoslit channel with graphene and hexagonal boron nitride wall coatings: An atomistic study
  9. pyDSM: GPU-accelerated rheology predictions for entangled polymers in python
  10. Current rectification by nanoparticles in bipolar nanopores
  11. Ionic Transport in Electrostatic Janus Membranes. An Explicit Solvent Molecular Dynamic Simulation
  12. Effect of charge inversion on nanoconfined flow of multivalent ionic solutions
  13. MUnCH: a calculator for propagating statistical and other sources of error in passive microrheology
  14. Nonequilibrium thermodynamics for soft matter made easy(er)
  15. Examination of Nonuniversalities in Entangled Polymer Melts during the Start-Up of Steady Shear Flow
  16. Polymer rheology predictions from first principles using the slip-link model
  17. A simple microswimmer model inspired by the general equation for nonequilibrium reversible–irreversible coupling
  18. 1CPN: A coarse-grained multi-scale model of chromatin
  19. The Effects of the Interplay between Motor and Brownian Forces on the Rheology of Active Gels
  20. A Molecular View of the Dynamics of dsDNA Packing Inside Viral Capsids in the Presence of Ions
  21. Tension-Dependent Free Energies of Nucleosome Unwrapping
  22. Mechanical Response of DNA–Nanoparticle Crystals to Controlled Deformation
  23. A boundary integral method for computing forces on particles in unsteady Stokes and linear viscoelastic fluids
  24. Anisotropy and probe-medium interactions in the microrheology of nematic fluids
  25. Analytic slip-link expressions for universal dynamic modulus predictions of linear monodisperse polymer melts
  26. The role of filament length, finite-extensibility and motor force dispersity in stress relaxation and buckling mechanisms in non-sarcomeric active gels
  27. A single-chain model for active gels I: active dumbbell model
  28. The analytic solution of Stokes for time-dependent creeping flow around a sphere: Application to linear viscoelasticity as an ingredient for the generalized Stokes–Einstein relation and microrheology analysis
  29. The effects of compressibility, hydrodynamic interaction and inertia on two-point, passive microrheology of viscoelastic materials
  30. The effects of hydrodynamic interaction and inertia in determining the high-frequency dynamic modulus of a viscoelastic fluid with two-point passive microrheology
  31. Competing effects of particle and medium inertia on particle diffusion in viscoelastic materials, and their ramifications for passive microrheology
  32. Treating inertia in passive microbead rheology
  33. Elimination of inertia from a Generalized Langevin Equation: Applications to microbead rheology modeling and data analysis
  34. Comparative analysis for three different immobilisation strategies in the hexavalent chromium biosorption process using Bacillus sphaericus S‐layer
  35. Lipase supported on granular activated carbon and activated carbon cloth as a catalyst in the synthesis of biodiesel fuel
  36. Quantitative fit of a model for proving of bread dough and determination of dough properties
  37. The plasticizing effect of alginate on the thermoplastic starch/glycerin blends
  38. Chromate reduction by Arthrobacter CR47 in biofilm packed bed reactors