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Chrisy Xiyu Du
Position
Graduate Student Research Assistant
Company
University of Michigan
Location
Ann Arbor MI UNITED STATES
Networks
None yet.
Bio
None provided.
Meeting Program
BM03.06.05 : Inverse Design of Pressure-Induced Solid—Solid Transitions in Colloids Using the Alchemical Ensemble
9:00 AM–9:15 AM Nov 28, 2018
(US - Eastern)
Sheraton, 2nd Floor, Back Bay B
Chrisy Xiyu Du
Graduate Student Research Assistant at
University of Michigan
Keywords
Composition & Microstructure - Features
Crystallographic Structure
,
Composition & Microstructure - Features
Defects
,
Composition & Microstructure - Features
Dislocations
,
Composition & Microstructure - Features
Grain Boundaries
,
Composition & Microstructure - Features
Grain Size
,
Composition & Microstructure - Features
Macromolecular Structure
,
Composition & Microstructure - Features
Second Phases
,
Composition & Microstructure - Material Type
Biological
,
Composition & Microstructure - Material Type
Biomaterial
,
Composition & Microstructure - Material Type
Crystalline
,
Composition & Microstructure - Material Type
Diamond
,
Composition & Microstructure - Material Type
Graphene
,
Composition & Microstructure - Material Type
Nanoscale
,
Composition & Microstructure - Material Type
Polymer
,
Composition & Microstructure - Material Type
Quasicrystal
,
Composition & Microstructure - Material Type
Water
,
Non-technical - Education
Outreach
,
Non-technical - Government Interactions
Government Policy And Funding
,
Performance - Functionality
Art
,
Performance - Functionality
Biomedical
,
Performance - Functionality
Memory
,
Performance - Functionality
Structural
,
Performance - Material Form
Colloid
,
Performance - Material Form
Crystal
,
Performance - Material Form
Fractal
,
Performance - Material Form
Liquid Crystal
,
Performance - Material Form
Nanostructure
,
Performance - Theory
Kinetics
,
Performance - Theory
Simulation
,
Synthesis & Processing - Assembly
Cluster Assembly
,
Synthesis & Processing - Assembly
Self-Assembly
,
Synthesis & Processing - Growth
Crystal Growth
,
Synthesis & Processing - Growth
Nucleation & Growth
,
Synthesis & Processing - Transformation
Phase Transformation