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Your search keyword '"polymer physics"' showing total 308 results

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308 results on '"polymer physics"'

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1. Polymer Physics Models Reveal Structural Folding Features of Single-Molecule Gene Chromatin Conformations.

2. Motorized chain models of the ideal chromosome.

3. Physical modeling of nucleosome clustering in euchromatin resulting from interactions between epigenetic reader proteins.

4. Deciphering the intrinsically disordered characteristics of the FG-Nups through the lens of polymer physics

5. Activity-driven chromatin organization during interphase: Compaction, segregation, and entanglement suppression.

6. Coarse-Grained Simulations on Polyethylene Crystal Network Formation and Microstructure Analysis.

7. A polyelectrolyte handle for single‐molecule force spectroscopy.

8. Polymer Physics Models Reveal Structural Folding Features of Single-Molecule Gene Chromatin Conformations

9. 针对高分子刷构象转变的自振荡模型.

10. A general strategy for designing complex brush architecture using star‐like polymeric grafts.

11. The Effect of Drying of Glycerol-Plasticized Starch upon Its Dielectric Relaxation Dynamics and Charge Transport.

12. Diffusion and distal linkages govern interchromosomal dynamics during meiotic prophase

13. The Challenges Facing the Current Paradigm Describing Viscoelastic Interactions in Polymer Melts.

14. Robust estimates of solute diffusivity in polymers for predicting patient exposure to medical device leachables.

15. Molecular Simulations in Macromolecular Science.

16. Coarse-Grained Simulations on Polyethylene Crystal Network Formation and Microstructure Analysis

17. Intramolecular structural heterogeneity altered by long-range contacts in an intrinsically disordered protein.

18. Gaussian basis functions for an orbital‐free‐related density functional theory of atoms.

19. Theory of chromatin organization maintained by active loop extrusion.

20. Maxwell-Dirac Isomorphism Revisited: From Foundations of Quantum Mechanics to Geometrodynamics and Cosmology.

21. Consistencies and contradictions in different polymer models of chromatin architecture

22. Polymer physics-based mathematical models for the correlation of DNA and mRNA in a eukaryotic cell

23. 基于工程教育专业认证构建一致化的教学大纲 ——以高分子物理课程为例.

24. Toward a 3D physical model of diffusive polymer chains

25. Unveiling the Machinery behind Chromosome Folding by Polymer Physics Modeling.

26. Molecular Dynamics Simulation of Entangled Melts at High Rates: Identifying Entanglement Lockup Mechanism Leading to True Strain Hardening.

27. Topological Considerations in Biomolecular Condensation.

28. Fluorescence Resonance Energy Transfer Measurements in Polymer Science: A Review.

29. Relation between mechanical response of reinforced elastomers and dynamics of confined polymer chains

30. The importance of initial extension rate on elasto-capillary thinning of dilute polymer solutions.

31. The Challenges Facing the Current Paradigm Describing Viscoelastic Interactions in Polymer Melts

32. How enzymatic activity is involved in chromatin organization

33. Polymer Models of Chromatin Imaging Data in Single Cells.

34. Modeling of Dissolving Microneedle-Based Transdermal Drug Delivery: Effects of Dynamics of Polymers in Solution.

35. Statistics and topology of fluctuating ribbons.

36. Matrix Mechanosensing: From Scaling Concepts in ’Omics Data to Mechanisms in the Nucleus, Regeneration, and Cancer

37. Monte Carlo on manifolds in high dimensions.

38. The Physics of DNA Folding: Polymer Models and Phase-Separation.

39. Predicting genome organisation and function with mechanistic modelling.

40. Physical mechanisms of chromatin spatial organization.

41. Deciphering the intrinsically disordered characteristics of the FG-Nups through the lens of polymer physics.

42. Controlling Hydrogel Mechanics via Bio-Inspired Polymer–Nanoparticle Bond Dynamics

43. Efficient computational implementation of polymer physics models to explore chromatin structure.

44. Fission yeast condensin contributes to interphase chromatin organization and prevents transcription-coupled DNA damage

45. Unveiling the Machinery behind Chromosome Folding by Polymer Physics Modeling

46. Topological Considerations in Biomolecular Condensation

47. Rigidity percolation and active advection synergize in the actomyosin cortex to drive amoeboid cell motility.

48. Motorized chain models of the ideal chromosome.

49. Mechanics and hydraulics of pollen tube growth.

50. Molecular weight effect of PS latex particles on optical and electrical percolations of PS latex/MWCNT nanocomposite films.

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