Difference between revisions of "Lauren Hartle"

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(Topic 1: Introduction)
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==Wiki entries:==
 
==Wiki entries:==
  
* Introduction: "[[Soft Robotics for Chemists]]" by George Whitesides
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* Introduction: "[[Soft Robotics for Chemists]]" by [[George Whitesides]]
* Surface Forces: "[[Growth of polygonal rings and wires of CuS on structured surfaces]]" by Joanna Aizenberg, et al.
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* Surface Forces: "[[Growth of polygonal rings and wires of CuS on structured surfaces]]" by [[Joanna Aizenberg]], et al.
* Capillarity and Wetting: "[[Millimeter-Scale Contact Printing of Aqueous Solutions using a Stamp Made out of Paper and Tape]]" by George Whitesides, et al
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* Capillarity and Wetting: "[[Millimeter-Scale Contact Printing of Aqueous Solutions using a Stamp Made out of Paper and Tape]]" by [[George Whitesides]], et al
* Polymers and Polymer Solutions: "[[Biopolymer network geometries: Characterization, regeneration, and elastic properties]]" by David Weitz, et al.
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* Polymers and Polymer Solutions: "[[An active biopolymer network controlled by molecular motors]]" by [[David Weitz]], et al.
* Surfactants and Spontaneous ordering: "[[One-Step Emulsification of Multiple Concentric Shells with Capillary Microfluidic Devices]]" by David Weitz, et al.
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* Surfactants and Spontaneous ordering: "[[One-Step Emulsification of Multiple Concentric Shells with Capillary Microfluidic Devices]]" by [[David Weitz]], et al.
* Equillibria and Phase Diagrams: "[[Homogeneous flow of metallic glasses: A free volume perspective]]" by Frans Spaepen, et al.
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* Equillibria and Phase Diagrams: "[[Homogeneous flow of metallic glasses: A free volume perspective]]" by [[Frans Spaepen]], et al.
* Charged Interfaces: "[[Cationic Membranes Complexed with Oppositely Charged Microtubules: Hierarchical Self-Assembly Leading to Bio-Nanotubes]]" by Daniel Needleman, et al.
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* Colloids: "[[Patterned Colloidal Coating Using Adhesive Emulsions]]" by [[David Weitz]], et al.
* Colloids: "[[Patterned Colloidal Coating Using Adhesive Emulsions]]" by David Weitz, et al.
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* Rheology and Viscoelasticity: "[[Stretchable Microfluidic Radiofrequency Antennas]]" by [[George Whitesides]], et al.
* Rheology and Viscoelasticity: "[[Stretchable Microfluidic Radiofrequency Antennas]]" by George Whitesides, et al.
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==Keywords==
 
==Keywords==
 +
 
===Topic 1: Introduction===
 
===Topic 1: Introduction===
 
[[Actuators]], [[Elastomer]], [[Polymer]], [[Soft Machines]], [[Soft Robotics]]
 
[[Actuators]], [[Elastomer]], [[Polymer]], [[Soft Machines]], [[Soft Robotics]]
  
 
===Topic 2: Surface Forces===
 
===Topic 2: Surface Forces===
 +
[[Crystal Structure]], [[Nanowires]], [[Micropillars]], [[Self-Assembly]], [[Self-Assembled Structures]], [[Structured Surfaces]], [[Superhydrophobic]]
 +
 
===Topic 3: Capillarity and Wetting===
 
===Topic 3: Capillarity and Wetting===
 +
[[Contact Printing]], [[Hydrophilic]], [[Hydrophobic]], [[Low-Cost Diagnostics]], [[Medical Devices]], [[Microfluidics]],[[Patterned Surfaces]], [[Wicking]]
 +
 
===Topic 4: Polymers and Polymer Solutions===
 
===Topic 4: Polymers and Polymer Solutions===
 
[[Active Network]], [[Biopolymer]], [[Loss Modulus]], [[Mechanical Properties]], [[Molecular Motors]], [[Myosin]], [[Passive Network]], [[Polymer]], [[Polymer Network]], [[Rheology]], [[Storage Modulus]]
 
[[Active Network]], [[Biopolymer]], [[Loss Modulus]], [[Mechanical Properties]], [[Molecular Motors]], [[Myosin]], [[Passive Network]], [[Polymer]], [[Polymer Network]], [[Rheology]], [[Storage Modulus]]
 
===Topic 5: Surfactants and Spontaneous Ordering===
 
===Topic 5: Surfactants and Spontaneous Ordering===
 +
 +
[[Capillary]], [[Carbon Black]], [[Drop]], [[Drug Delivery]], [[Emulsion]], [[Encapsulation]], [[Fluid Jet]], [[Hydrophilic]], [[Hydrophobic]], [[Magnetic]], [[Microfluidics]], [[Polymer]]
 +
 
===Topic 6: Equillibria and Phase Diagrams===
 
===Topic 6: Equillibria and Phase Diagrams===
===Topic 7: Charged Interfaces===
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 +
[[Creep]], [[Deformation]], [[Glass Transition Temperature]], [[Free Volume Theory]], [[Fulcher–Vogel–Tammann Equation]], [[Metallic Glass]], [[Modulus]], [[Plastic Flow]], [[Poisson's Ratio]], [[Shear]], [[Shear Band]], [[Shear Transformation Zone]], [[Strain]], [[Stress]], [[Structural Relaxation]], [[Viscosity]]
 +
 
 
===Topic 8: Colloids===
 
===Topic 8: Colloids===
 
[[Colloid]], [[Emulsion]], [[Hydrophobic]], [[Hydrophilic]], [[Liquid Crystal]], [[Patterned substrate]], [[Surfactant]]
 
[[Colloid]], [[Emulsion]], [[Hydrophobic]], [[Hydrophilic]], [[Liquid Crystal]], [[Patterned substrate]], [[Surfactant]]
 +
 
===Topic 9: Rheology and Viscoelasticity===
 
===Topic 9: Rheology and Viscoelasticity===
 +
[[Elastomer]], [[Eutectic Point]], [[Flexible Electronics]], [[Microfluidics]], [[Polymer]], [[Resonance frequency]], [[Soft Machines]], [[Strain]]

Latest revision as of 06:20, 3 December 2011

Wiki entries:

Keywords

Topic 1: Introduction

Actuators, Elastomer, Polymer, Soft Machines, Soft Robotics

Topic 2: Surface Forces

Crystal Structure, Nanowires, Micropillars, Self-Assembly, Self-Assembled Structures, Structured Surfaces, Superhydrophobic

Topic 3: Capillarity and Wetting

Contact Printing, Hydrophilic, Hydrophobic, Low-Cost Diagnostics, Medical Devices, Microfluidics,Patterned Surfaces, Wicking

Topic 4: Polymers and Polymer Solutions

Active Network, Biopolymer, Loss Modulus, Mechanical Properties, Molecular Motors, Myosin, Passive Network, Polymer, Polymer Network, Rheology, Storage Modulus

Topic 5: Surfactants and Spontaneous Ordering

Capillary, Carbon Black, Drop, Drug Delivery, Emulsion, Encapsulation, Fluid Jet, Hydrophilic, Hydrophobic, Magnetic, Microfluidics, Polymer

Topic 6: Equillibria and Phase Diagrams

Creep, Deformation, Glass Transition Temperature, Free Volume Theory, Fulcher–Vogel–Tammann Equation, Metallic Glass, Modulus, Plastic Flow, Poisson's Ratio, Shear, Shear Band, Shear Transformation Zone, Strain, Stress, Structural Relaxation, Viscosity

Topic 8: Colloids

Colloid, Emulsion, Hydrophobic, Hydrophilic, Liquid Crystal, Patterned substrate, Surfactant

Topic 9: Rheology and Viscoelasticity

Elastomer, Eutectic Point, Flexible Electronics, Microfluidics, Polymer, Resonance frequency, Soft Machines, Strain