Towards understanding the self-assembly of complicated particles via computation
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Summary
A selection of images from around the world can be found at www.dropbox.com/shutterfly/s3/index.shtml.
- Published
- 2012-01-01
- Cited by
- 0
- References
- 164
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:59279049
References
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- A physicist's approach to number partitioning
- An agent-based approach for modeling molecular self-organization.
- Expression, self-assembly, and antigenicity of the Norwalk virus capsid protein
- Electrorheological fluids: structures and mechanisms.
- Reversible self-assembly and directed assembly of DNA-linked micrometer-sized colloids.
- Collective Monte Carlo updating for spin systems.
- Self-assembly of anisotropic particles
- Colloidal interactions and self-assembly using DNA hybridization.
- Characterizing the network topology of the energy landscapes of atomic clusters.
- Self-Assembly of Patchy Particles.
- Shape-anisotropic colloids: Building blocks for complex assemblies
- Fabrication, assembly, and application of patchy particles.
- Homogeneous and heterogeneous binary colloidal clusters formed by evaporation-induced self-assembly inside droplets.
- Structure of water; A Monte Carlo calculation
- Simple method to produce Janus colloidal particles in large quantity.
- The complete atomic structure of the large ribosomal subunit at 2.4 A resolution.
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