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Fingerprint Dive into the research topics where Jeremy Hopwood is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Chemical Compounds

Barium Sulfate
Water
Microemulsions
Liquid Crystals
Microcrystals
Crystallization
Surface-Active Agents
Calcium Carbonate
Micelles
Tectonics
Polymer solutions
Neutron scattering
Aluminum
Supersaturation
Crystals
Acids
Urea
Cones
Atomic force microscopy
Pipe
Crystalline materials
Nanoparticles
Polyacrylates
Coatings
Fibers
Minerals
Crystallites
Needles
Defects
Copolymers
Oxidants
Cationic surfactants
Calcium Phosphates
Single crystals
Aquaporins
Microstructure
Nuclear magnetic resonance spectroscopy
Block copolymers
Optical microscopy
Hydrochloric Acid
Scanning electron microscopy
Polymers
Biocompatible Materials
Deposits
Air
Interfacial energy
Pore size
Gravel
Nucleation
Textures

Engineering & Materials Science

Barite
Water
Barium
Microcrystals
Acids
Calcite
Microemulsions
Surface active agents
Polymer solutions
Neutron scattering
Urea
Micelles
Supersaturation
Liquid crystals
Cones
Styrene
Atomic force microscopy
Copolymers
Lead
Crystallization
Pipe
Nanoparticles
Polyacrylates
Aluminum
Coatings
Fibers
Crystalline materials
Crystallites
Needles
Minerals
Defects
Crystals
Oxidants
Cationic surfactants
Single crystals
Hydrochloric acid
Interfacial energy
Scanning electron microscopy
Nuclear magnetic resonance spectroscopy
Block copolymers
Optical microscopy
Nucleation
Deposits
Textures
Air
Gravel
Kinetics
Sulfates
Potable water
Nanoclusters

Physics & Astronomy

Chemistry and Materials

barite
acrylates
calcite
ureas
styrenes
water
crystallization
air
acids
hydrochloric acid
surface energy
barium
sulfates

General

microcrystals
surfactants
liquid crystals
atomic force microscopy
needles
crystallites
flat surfaces
supersaturation
microscopy
metastable state
textures
alignment

Engineering

copolymers
nucleation

Physics

neutron scattering
nuclear magnetic resonance
neutron diffraction