Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Phillip J. Tracey
Drop-On-Demand Microdroplet Generation: A Very Stable Platform for Single-Droplet Experimentation
RSC Advances
Chemistry
Chemical Engineering
Related publications
Experimental Study of the Parameters for Stable Drop-On-Demand Inkjet Performance
Physics of Fluids
Mechanics of Materials
Condensed Matter Physics
Mechanical Engineering
Fluid Flow
Transfer Processes
Computational Mechanics
Stable Pressure Driving System for Generation of Droplets on Demand
Drop-On-Demand Satellite-Free Drop Formation for Precision Fluid Delivery
Chemical Engineering Science
Applied Mathematics
Chemistry
Chemical Engineering
Manufacturing Engineering
Industrial
A Droplet Microfluidic Platform for Automating Genetic Engineering
ACS Synthetic Biology
Biochemistry
Biomedical Engineering
Medicine
Genetics
Molecular Biology
From Single Drop Coalescence to Droplet Swarms – Scale-Up Considering the Influence of Collision Velocity and Drop Size on Coalescence Probability
Chemical Engineering Science
Applied Mathematics
Chemistry
Chemical Engineering
Manufacturing Engineering
Industrial
Silicon and Glass Very Large Scale Microfluidic Droplet Integration for Terascale Generation of Polymer Microparticles
Nature Communications
Astronomy
Genetics
Molecular Biology
Biochemistry
Chemistry
Physics
Implementation of a Distributed Control Experimentation Platform
Single Photon Generation "On Demand" From a Single Trapped Atom Strongly Coupled to an Optical Cavity
Off-Chip-Controlled Droplet-On-Demand Method for Precise Sample Handling