Self-Assembly

Results: 643



#Item
41Staged Self-Assembly:  Nanomanufacture of Arbitrary Shapes with O(1) Glues

Staged Self-Assembly: Nanomanufacture of Arbitrary Shapes with O(1) Glues

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Source URL: www.eecs.tufts.edu

Language: English - Date: 2007-06-11 16:33:36
42Project B9: Modelling self-assembly of natural polysaccharides Project leader: Grafmüller (MPIKG) Co-reviewer of Ph.D. thesis: Schoen (TUB) US partner: Berkowitz (UNC) Outline. Polysaccharides are stable, non-toxic, bio

Project B9: Modelling self-assembly of natural polysaccharides Project leader: Grafmüller (MPIKG) Co-reviewer of Ph.D. thesis: Schoen (TUB) US partner: Berkowitz (UNC) Outline. Polysaccharides are stable, non-toxic, bio

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Source URL: www.ssni.tu-berlin.de

Language: English - Date: 2016-02-24 07:09:31
    43The Self-Made Puzzle: Integrating Self-Assembly and Pattern Formation Under Non-Random Genetic Regulation René Doursat Institut des Systèmes Complexes, CREA

    The Self-Made Puzzle: Integrating Self-Assembly and Pattern Formation Under Non-Random Genetic Regulation René Doursat Institut des Systèmes Complexes, CREA

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    Source URL: necsi.edu

    Language: English - Date: 2008-02-15 17:15:05
    44   Summer	
  School	
  2014	
  „Self-­‐Assembly	
  in	
  Soft	
  Matter	
  Systems“	
   Directors	
    G.	
  López	
  (ΔMRSEC),	
  M.	
  Schoen	
  (IRTG	
  1524)	
  

      Summer  School  2014  „Self-­‐Assembly  in  Soft  Matter  Systems“   Directors   G.  López  (ΔMRSEC),  M.  Schoen  (IRTG  1524)  

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    Source URL: www.ssni.tu-berlin.de

    Language: English - Date: 2014-07-31 13:05:46
      45Spatially Targeted Communication and Self-Assembly Nithin Mathews1 , Anders Lyhne Christensen2 , Rehan O’Grady1 , and Marco Dorigo1 Abstract— We introduce spatially targeted communication – a communication method f

      Spatially Targeted Communication and Self-Assembly Nithin Mathews1 , Anders Lyhne Christensen2 , Rehan O’Grady1 , and Marco Dorigo1 Abstract— We introduce spatially targeted communication – a communication method f

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      Source URL: home.iscte-iul.pt

      Language: English - Date: 2014-01-07 10:39:26
        46Program Size and Temperature in Self-Assembly∗ Ho-Lin Chen† David Doty†  Shinnosuke Seki‡

        Program Size and Temperature in Self-Assembly∗ Ho-Lin Chen† David Doty† Shinnosuke Seki‡

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        Source URL: web.cs.ucdavis.edu

        Language: English - Date: 2011-04-27 03:08:04
          47Limitations of Self-Assembly at Temperature 1∗ David Doty†, Matthew J. Patitz, and Scott M. Summers‡ Department of Computer Science Iowa State University Ames, IA 50011, USA {ddoty,mpatitz,summers}@cs.iastate.edu

          Limitations of Self-Assembly at Temperature 1∗ David Doty†, Matthew J. Patitz, and Scott M. Summers‡ Department of Computer Science Iowa State University Ames, IA 50011, USA {ddoty,mpatitz,summers}@cs.iastate.edu

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          Source URL: web.cs.ucdavis.edu

          Language: English - Date: 2011-01-04 03:11:38
            48Proofreading Tile Sets: Error Correction for Algorithmic Self-Assembly Erik Winfree and Renat Bekbolatov Computer Science and Computation & Neural Systems California Institute of Technology, Pasadena, CA, USA

            Proofreading Tile Sets: Error Correction for Algorithmic Self-Assembly Erik Winfree and Renat Bekbolatov Computer Science and Computation & Neural Systems California Institute of Technology, Pasadena, CA, USA

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            Source URL: www.dna.caltech.edu

            Language: English - Date: 2003-11-14 04:32:49
              49Random Number Selection in Self-Assembly David Doty⋆ , Jack H. Lutz⋆⋆ , Matthew J. Patitz⋆ ⋆ ⋆ , Scott M. Summers† , and Damien Woods‡ Abstract. We investigate methods for exploiting nondeterminism inhere

              Random Number Selection in Self-Assembly David Doty⋆ , Jack H. Lutz⋆⋆ , Matthew J. Patitz⋆ ⋆ ⋆ , Scott M. Summers† , and Damien Woods‡ Abstract. We investigate methods for exploiting nondeterminism inhere

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              Source URL: web.cs.ucdavis.edu

              Language: English - Date: 2010-08-31 21:00:46
                50ARTICLE  Nitrogen-Promoted Self-Assembly of N-Doped Carbon Nanotubes and Their Intrinsic Catalysis for Oxygen Reduction in Fuel Cells

                ARTICLE Nitrogen-Promoted Self-Assembly of N-Doped Carbon Nanotubes and Their Intrinsic Catalysis for Oxygen Reduction in Fuel Cells

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                Source URL: zpzhu.sxicc.ac.cn

                Language: English - Date: 2013-11-01 03:55:52