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The following pages are not linked from or transcluded into other pages in self-assembly wiki.
Showing below up to 50 results in range #1 to #50.
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- 2PATS-search-ocaml
- 2PATS-tileset-search
- A Cargo-Sorting DNA Robot
- A Domain-Specific Language for Programming in the Tile Assembly Model
- Active Self-Assembly of Algorithmic Shapes and Patterns in Polylogarithmic Time
- Algorithmic Self-Assembly of DNA Sierpinski Triangles
- An Introduction to Tile-Based Self-Assembly and a Survey of Recent Results
- Asynchronous Signal Passing for Tile Self-Assembly: Fuel Efficient Computation and Efficient Assembly of Shapes
- Auto Counter Tiler
- Auxetic Two-Dimensional Nanostructures
- Baggins-expressions
- Binary pattern tile set synthesis is NP-hard
- Biomolecular Swarming Agents
- Chemical Reaction Network (CRN)
- Circuit Simulation with Single-Stranded Tiles
- Co-transcriptional Folding
- Complexities for Generalized Models of Self-Assembly
- Computing in continuous space with self-assembling polygonal tiles
- Concentration programming
- Cooperation
- Covert Computation
- Covert Computation in Self-Assembled Circuits
- Crystals that count! Physical principles and experimental investigations of DNA tile self-assembly
- DNA Origami
- DNA Punch Cards for Storing Data
- DNA Sticky End Design and Assignment for Robust Algorithmic Self-assembly
- DNA walker circuits: computational potential, design, and verification
- Decider Tiler
- Decreasing Errors by Increasing Redundancy
- Diagonal and Non-Diagonal Glue Functions
- Diverse and Robust Molecular Algorithms Using Reprogrammable DNA Self-Assembly
- Doubles and Negatives are Positive (in Self-Assembly)
- Dupled abstract Tile Assembly Model (DaTAM)
- Equivalence of Cellular Automata and the Tile Assembly Model
- Fake conference
- Fibered Fractal Tiler
- Folding DNA to create nanoscale shapes and patterns
- Geometric Hindrance
- Geometric Tile Assembly Model (GTAM)
- Hierarchical Self-Assembly of Fractals with Signal-Passing Tiles
- IU Results in Diffusion-Restricted and Directed aTAMs
- Increasing Redundancy Exponentially Reduces Error Rates during Algorithmic Self-Assembly
- Integrating DNA strand-displacement circuitry with DNA tile self-assembly
- Intrinsic Universality in Self-Assembly
- Intrinsic universality in tile self-assembly requires cooperation
- Limitations of Self-Assembly at Temperature 1
- Magnetic Plasmon Networks Programmed by Molecular Self-Assembly
- Maze-Walking Tile Assembly Model
- Multiple Temperature Model
- NP Hard Problems