
Last modified: 2017-02-20 10:00:00
Affillations (J) field begins with “岡山大院自”, “岡山大自”, “Okayama U.”; 12 programs are found.
The search results are sorted by the start time.
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Day 2 | PC231 | Study on measurement method of actual coverage of fine particles on main particle surface based on energy dispersive X-ray analysis | covering state image analysis solid phase reaction | 12-c | 736 |
| Day 2 | N223 | Surface structure of polymer membrane formed via thermally-induced phase separation | thermally induced phase separation polymer membrane phase field method | 4-a | 865 |
| Day 3 | PD303 | Numerical simulation design of coalescing media for oil water separation | Lattice Boltzmann method two-phase flow coalescing | 4-a | 686 |
| Day 3 | PD319 | Analysis of phase transition of temperature responsive ionic liquid solution by molecular simulation | ionic liquid molecular simulation draw solution | 4-a | 720 |
| Day 3 | PD336 | Molecular dynamics study of water permeation mechanisms on TiO2 nanoporous membranes | Molecular dynamics water permeation nanoporous membrane | 4-a | 372 |
| Day 3 | M306 | Intern's report | Internship | HC-13 | 360 |
| Day 3 | F306 | Preparation of stereocomplexed polylactide-based nanocapsules for controlled release of water-soluble molecules | stereocomplex nanocapsule polylactide | 12-c | 554 |
| Day 3 | C308 | Sensitive Detection of Weak Biomolecular Interaction through Molecular Design of CutA1 | biosensor immobilization molecular design | 7-c | 342 |
| Day 3 | PE331 | Direct numerical simulation of particulate flow through micropore | Lattice Boltzmann Method Discrete Element Method Fouling | 2-e | 660 |
| Day 3 | PE339 | Investigation on the improvement mechanism of particle removal by a Pulsed air jet -Effect of nozzle shape on a removal characteristics - | Dry cleaning Pulsed air jet Removal characteristics | 2-f | 585 |
| Day 3 | PE358 | Preparation of surface functionalized PET nanofibers by microfluidic wet-spinning and surface modification process | microfluidics nanofiber surface modification | 5-f | 475 |
| Day 3 | PE361 | Fabrication of single-walled carbon nanotubes fibers using a novel microchannel wet-spinning | microchannel carbon nanotube carbon material | 5-f | 470 |
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SCEJ 82nd Annual Meeting (Tokyo, 2017)
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