403 - 415 |
Linear rheology of diluted linear, star and model long chain branched polymer melts Daniels DR, McLeish TCB, Kant R, Crosby BJ, Young RN, Pryke A, Allgaier J, Groves DJ, Hawkins RJ |
416 - 425 |
Structure and rheology of model side-chain liquid crystalline polymers with varying mesogen length Wewerka A, Viertler K, Vlassopoulos D, Stelzer F |
426 - 433 |
Electrorheology of nematic liquid crystals in uniform shear flow Reyes JA, Manero O, Rodriguez RF |
434 - 440 |
An empirical model predicting the viscosity of highly concentrated, bimodal dispersions with colloidal interactions Dames B, Morrison BR, Willenbacher N |
441 - 456 |
Water in water emulsions: phase separation and rheology of biopolymer solutions Capron I, Costeux S, Djabourov M |
457 - 466 |
A comparison of extensional viscosity measurements from various RME rheometers Schulze JS, Lodge TP, Macosko CW, Hepperle J, Munstedt H, Bastian H, Ferri D, Groves DJ, Kim YH, Lyon M, Schweizer T, Virkler T, Wassner E, Zoetelief W |
467 - 484 |
The instability mechanism of single and multilayer Newtonian and viscoelastic flows down an inclined plane Huang CT, Khomami B |
485 - 489 |
Analysis of the effect of breakup frequency on the steady droplet size in flowing polymer blends Fortelny I |
490 - 498 |
Melt rheology and structure of silicone resins Takahashi T, Kaschta J, Munstedt H |
499 - 503 |
New measurements of the flow-curves for Carbopol dispersions without slip artefacts Roberts GP, Barnes HA |
504 - 506 |
Response to letter by Mitsoulis et al. Rajagopalan D |