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Geometric Binding Site Design for Surface-Tension Driven Self-Assembly Xiaorong Xiong, Sheng-Hsiung Liang and Karl F. B¨ohringer Department of Electrical Engineering University of Washington, Seattle, WA[removed]Emai
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Document Date: 2004-03-07 17:14:20


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Selinsgrove / Santa Clara / Maastricht / Seoul / San Diego / San Juan / /

Company

Quantum Electronics / Electronics Packaging Manufacturing / Micro Electro Mechanical Systems / IEEE Journal / Ed. John Wiley & Sons / I. (a) Solutions / /

Country

Switzerland / Puerto Rico / United States / Netherlands / South Korea / /

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pence / /

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Facility

Susquehanna University / Electrical Engineering University of Washington / Pacific Center / square GaAs/GaAlAs LEDs / /

IndustryTerm

energy minimum / interfacial energy / substrate binding site / circular binding site / energy point of view / rst-order approximation energy model / given site / feasible solution / hydrocarbon oil / 1×1mm2 square binding site / surface energy / microelectromechanical systems / electrical networks / software package / exhaustive search / feasible solutions / Numerical solutions / surface energy minimum / numerical solution / energy / /

Organization

Mathematics Department / Surface-Tension Driven Self-Assembly Xiaorong Xiong / Sheng-Hsiung Liang and Karl F. B¨ohringer Department / University of Washington / Seattle / Susquehanna University / /

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Position

rst order approximation model for calculating the surface energy / /

ProvinceOrState

Pennsylvania / California / Washington / /

Technology

laser / microelectromechanical systems / Microassembly technologies / Simulation / /

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http /

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