|
Author/s |
PaperTitle
|
Institution |
Category |
Paper No. |
|
Almatroushi, Eisa, et al. |
Breakup of Surfactant-Laden Drops in Flow through Capillaries |
|
Interfacial Phenomena and Surfactants |
64 |
|
Banerjee, Arghya et al. |
On-Chip Actuation of Liquid Droplets by EWOD Technique for Hot-Spot Cooling |
|
Drops, Bubbles, and Particles |
23 |
|
Bartoli, Carlo & Baffigi, Federica |
Heat transfer enhancement between a platinum wire and an upward flow slot submerged jet |
|
Boiling Phenomena |
65 |
|
Berbecaru, C et al. |
Synthesis and characterization of thin BZT films for microwave applications |
|
Phase-Change Phenomena |
61 |
|
Berbecaru, C et al. |
Synthesis and Characterization of the Eulityte Glasses |
|
Phase-Change Phenomena |
60 |
|
Berbecaru, C et al. |
Sintering conditions and dielectric
characterization of the Ba0.6Sr0.4TiO3 ceramics |
|
Phase-Change Phenomena |
59 |
|
Bhowmik, Shantanu |
Nano Adhesive Bonding of Space Durable Polymer to Titanium and its Performance under Space Radiation |
|
Materials Technology |
15 |
|
Bitlloch, |
Spatial structure and velocity fluctuations in turbulent bubble jets under microgravity conditions |
UB/IEEC, |
Drops, Bubbles, and Particles |
49 |
|
Borhan, Ali and Fick, Anthony |
Numerical Simulation of the Confined Motion of Drops Using a Hybrid VOF/Level Set Method |
The |
Drops, Bubbles, and Particles |
62 |
|
Breitkopf, Cornelia et al. |
Diffusion and Reaction in nanostructured sulfated zirconias - a transient TAP study |
TU |
Porous and Bioporous Media |
37 |
|
Brundu, Claudia |
Cell metal segregation, liver pathologies and Ultramicroscopy techniques |
|
Biotransport Phenomena |
51 |
|
Calderon, Andres J. et al. |
Effect of disturbed and laminar flow on drug delivery vehicles targeted to endothelial cells |
|
Targeted Drug Delivery and Treatment |
20 |
|
Chayen, Naomi E. |
The Application of Nano Pores for Transport
and Nucleation of Biological Macromolecules
|
|
Protein
and Inorganic |
72 |
|
|
Shear flow analysis with sessile drops
|
|
Drops, Bubbles, and Particles |
80 |
|
Conrath, Michael et al |
Gas separation and bubble behaviour at a woven screen |
ZARM, |
Interfacial Phenomena and Surfactants |
11 |
|
Das, Diganta Bhusan |
Solute Transport In Intervertebral
Disc: Effects Of Disc Composition
|
|
Porous and Bioporous Media |
69 |
|
Davis, Stephen H. |
Beyond Thin Films
|
Northwestern |
Interfacial Phenomena and Surfactants |
70 |
|
Devi, Reena et al |
Double confinement of fluid in nano-channels |
|
General Papers |
44 |
|
di Schio,
Eugenia Rossi and |
Fully developed forced convection in a porous channel with a streamwise periodic boundary temperature |
|
Porous and Bioporous Media |
30 |
|
Eckmann, David M. |
Using 3-D dense packing models to predict surface tension change due to protein adsorption |
|
Interfacial Phenomena and Surfactants |
07 |
|
Ellis, Marianne J and Shipley, Rebecca J |
PLGA hollow fibre membrane scaffolds and serum protein interactions |
|
Materials Technology |
41 |
|
Frishfelds, Vilnis et al. |
Flow-induced deformation of non-crimp fabrics during RTM |
|
Porous and Bioporous Media |
52 |
|
Grah, Aleksander et al. |
One-dimensional and three-dimensional computation of free surface flow |
ZARM, |
Interfacial Phenomena and Surfactants |
12 |
|
Gupta, Nivedita R and Cui, Yuanyuan |
Drop Formation in Co-flowing Fluid Streams
|
|
Interfacial Phenomena and Surfactants |
77 |
|
Hasegawa, Koji et al. |
PIV measurement of internal and external flow of an acoustically levitated droplet |
|
Drops, Bubbles, and Particles |
24 |
|
Hira, Hiroaki, Kitaya, Yoshiaki and Hirai, Takehiro |
Performance of Light sources and radiation sensors under low gravity
realized
, |
|
Bio-Response in Space Environment |
78 |
|
Högberg, Sofie et al. |
Deposition of Fibrous Nanoparticles in Branching TubesNumerical Study |
Luleċ |
Nanoparticles and Aerosols |
40 |
|
Jacobi, Martin Nilsson et al. |
Fast calculation of effective diffusion constants in obstructing materials |
|
General Papers |
45 |
|
Keshavarzi, Banafsheh et al. |
Numerical Simulation of Ozone Uptake in the Respiratory Tract During Steady Inspiratory Flow |
The |
Biotransport Phenomena |
63 |
|
Kitaya,Yoshiaki et al. |
The effect of gravity on sap flow in plant stems |
|
Biotransport Phenomena ???? Bioresponse??? |
48 |
|
Kral, Karel |
Transport of charge in nanostructures |
|
General Papers |
42 |
|
Lambert, Ruth Anne and Rangel, Roger H. |
Beam deformation and fluid mixing in a microchannel |
|
General Papers |
08 |
|
Lampe, Joshua W. and Becker, Lance |
Direct pressure modulation induces oxidant generation and alters electron transport in isolated mitochondria |
|
Bio-Response in Space Environment |
58 |
|
Lampe, Joshua W. et al. |
Rapid Induction of heterogeneous ice nucleation in a biologically compatible coolant |
|
Phase-Change Phenomena |
57 |
|
Langerman, Michael |
Thermal Model Development of Laser Processing: Transient Field
Temperature Assesment During
Laser Glazing
|
|
Materials Technology |
66 |
|
Lasheras, Juan C. et al |
Spatio-temporal organization of
traction forces in amoeboid cell motility
|
|
Biotransport Phenomena |
67 |
|
León-Becerril, |
Axial variation of mass transfer volumetric coefficients in bubble column bioreactors |
Universidad |
Drops, Bubbles, and Particles |
21 |
|
Manglik, Raj M. |
Molecular-To-Macro-Scale Control of Interfacial Behavior in Ebullient Phase Change in Aqueous Solutions of Reagents |
|
Interfacial Phenomena and Surfactants |
35 |
|
McGranaghan, Gerard and Robinson, Anthony |
Visualisation of two-phase flow within a totally transparent sapphire and acrylic concentric heat exchanger test section. |
|
Boiling Phenomena |
27 |
|
Merte, Jr., Herman et al. |
Nucleate Pool Boiling with Increased Gravity and Subcooling near the Critical Heat Flux |
|
Boiling Phenomena |
01 |
|
MILANI, Marziale et al. |
Electron Mirroring: control of electron transport and understanding of physical processes from SEM images. |
|
Electrostatic and Electromagnetic Phenomena |
54 |
|
Moradian-Oldak , Janet |
Protein transport in tooth enamel formation
|
U
of Southern California, |
Biotransport Phenomena |
71 |
|
Mostaghimi, Javad et. al |
Spray Forming of Metal Foam |
|
Materials Technology |
81 |
|
Muzykantov, Vladimir |
Targeted delivery of drugs in the vascular system |
|
Targeted Drug Delivery and Treatment |
31 |
|
Nakagawa, Kazuya et al. |
Subcooled flow boiling with microbubble emission ; An effect of orientation of heating surface on boiling |
|
Boiling Phenomena |
22 |
|
Narain, Amitabh, et. al |
Gravity and/or Shear Driven Condensing Flows inside Micro- to
Millimeter Scale Channels/Tubes
|
|
Phase-Change |
75 |
|
Noreen N. Khan-Mayberry and Alamelu Sundaresan |
Space toxicology: environmental health considerations during spaceflight operations and potential paths for research. |
|
Bio-Response in Space Environment |
34 |
|
Okutani, Takeshi et al. |
Effect of microgravity quality on unidirectional solidification of iron-rich Sm-Fe magnetostrictive alloys |
|
Materials Technology |
26 |
|
O'Shaughnessy, Sèamus M. and Robinson, Anthony J. |
Experimental & Numerical Investigation of Bubble Induced Marangoni Convection under Terrestrial Conditions |
|
Interfacial Phenomena and Surfactants |
50 |
|
Pasrija, Ritu and Srivastav, Sunita |
Molecular Dynamic Simulations with glue potentials |
|
General Papers |
47 |
|
Penkova, A. et al. |
A new approach for the synthesis of a substituted 1',3'-dihydrospiro
|
Institute of |
General Papers |
73 |
|
Pesso, T. and Piva, S. |
Thermo-fluid analysis of a cylindrical collinear ohmic sterilizer in laminar flow |
ENDIF, Engineering Department In |
General Papers |
53 |
|
Polezhaev, V.I. and |
Interaction of the basic mechanisms of buoyancy-driven convection: fundamentals, technical and material sciences applications |
A.Yu. Ishlinsky
Instutiute for Problems in |
Materials Technology |
05 |
|
Pontrelli,, Giuseppe and de Monte, Filippo |
A multi-layer wall model in arterial drug-eluting stents |
IAC CNR, |
Biotransport Phenomena |
33 |
|
Porterfield, D. |
The role of microgravity in diffusion limited membrane transport of oxygen during spaceflight |
|
Bio-Response in Space Environment |
32 |
|
Privman, Vladimir |
Shapes of Colloids and Nanoparticles Grown by Solution Synthesis |
|
Protein and Inorganic |
18 |
|
Ramakrishna, B.L. et al. |
Transport of ions, polymers and biomolecules through hierarchical biogenic silica nanostructures |
|
Porous and Bioporous Media |
36 |
|
Rapoport, Natalya et al |
Droplet-to-bubble transition in phase-shift nanoemulsions for tumor chemotherapy |
|
Targeted Drug Delivery and Treatment |
28 |
|
Rapoport, Natalya et al. |
Thermodynamics of droplet-to-bubble transition in phase-shift nanoemulsions |
|
Drops, Bubbles, and Particles |
29 |
|
Rong, Zimei & Vadgama, Pankaj |
Analytical Expressions for Mass Transport within Microfluidic
Systems
|
Queen Mary University of London, |
General Papers |
68 |
|
Ruiz, Xavier and Pallares, Jordi |
The impact of solutal Marangoni convection in the accuracy of the diffusion coefficient measurements under µg conditions using shear cells. |
Universitat Rovira
i Virgili, IEEC/URV, |
General Papers |
25 |
|
|
Nucleate Boiling Heat Transfer in Alcohol Aqueous Solutions |
|
Boiling Phenomena |
09 |
|
Sato, Masahide et al. |
Thermal Performance of Self-rewetting Fluid Heat Pipe Containing Dilute solutions of Silver Nanoparticles Synthesized by Microwave-Polyol Process |
|
Thermal Management in Space |
19 |
|
Shajiee, Shervin et al |
Digitized Heat Transfer Using Electrowetting on Dielectric for Cooling of Compact Electronic Devices |
|
Thermal Management in Space |
17 |
|
Shermenev, Alexander |
Nonlinear waves in shallow water |
Russian |
TBD General Papers?? |
43 |
|
Shimkevich, Alexander et al. |
Composition principles in designing water coolant for PWR |
RRC Kurchatov Institute, |
Nanoparticles and Aerosols ????? |
39 |
|
Shipley, Rebecca et al. |
Combining Mathematical Modelling with Experimental Data to Characterize Fluid and Protein Transport in Hollow Fibre Scaffolds |
|
Materials Technology |
46 |
|
Smith, Reg. W. and Scott, Paul J. |
Mass diffusion coefficient for dilute binary liquid alloy: radial distribution function, static structure factor and isothermal compressibility estima |
|
Materials Technology |
02 |
|
Soria-Verdugo, Antonio et al |
Transport phenomena in a bubbling fluidized bed with a rotating distributor |
Universidad Carlos III de Madrid, |
Drops, Bubbles, and Particles |
16 |
|
Sundaresan, A |
A possible cardiovascular predictor of susceptibility to microgravity |
|
Biotransport Phenomena |
06 |
|
Sundaresan, A. |
Modeled microgravity as a "physiological test bed" for immune suppression and ageing |
|
Biotransport Phenomena |
13 |
|
Suzuki, Kengo et al. |
Microbubble Emission Boiling: An effect of pressure on subcooled flow boiling with microbubble emission |
Graduate Shool of |
Boiling Phenomena |
56 |
|
Testi, Daniele and Grassi, Walter |
|
|
Boiling Phenomena |
79 |
|
Lemaire, Thibault et. al |
Multiphysical fluid transport within
bone tissues including ionic exchanges
|
Laboratory MSME - FRE CNRS 3160, France |
Porous and Bioporous Media |
74 |
|
|
Asymmetric Location of Anionic Phospholipids in Mixed Zwitterionic/Anionic Vesicles |
|
Interfacial Phenomena and Surfactants |
10 |
|
Ueno, Ichiro |
Formation of precursor film ahead macroscopic contact line of spreading droplet |
|
Interfacial Phenomena and Surfactants |
38 |
|
Vesely, Drahosh |
Liquid Transport in Polymer Matrixes
|
|
Materials Technology |
76 |
|
Watanabe, Toshiki |
Flow transition in a free rectangular liquid film under a temperature gradient |
|
Interfacial Phenomena and Surfactants |
14 |
|
Westerberg, Lars G. et sl. |
Transport of bubbles during compression in a non-Newtonian fluid |
Luleċ |
Drops, Bubbles, and Particles |
55 |
|
Yurtseven, Hamit and Sen, Sema |
A mean flow model for the phase diagram of benzene |
|
Phase-Change Phenomena |
04 |
|
Zaman, Muhammad et al. |
Nanoprobes for quantifying mechanics of metastatic
cells.
|
|
Biotransport Phenomena in Physiology and Medicine |
82 |
|
Zhang, Qin-Hui et al. |
Controlled Synthesis of LixZryOz Tri-oxides with Different Crystalline Phase |
East China Univ. of Science and Technology, P.R. China |
Protein and Inorganic |
03 |