Citation: Pm. Gilsenan et Sb. Ross-murphy, Viscoelasticity of thermoreversible gelatin gels from mammalian and piscine collagens, J RHEOL, 44(4), 2000, pp. 871-883
Citation: S. Ramakrishnan et Rk. Prud'Homme, Effect of solvent quality and ions on the rheology and gelation of kappa-carrageenan, J RHEOL, 44(4), 2000, pp. 885-896
Citation: K. Sivasailam et C. Cohen, Scaling behavior: Effect of precursor concentration and precursor molecular weight on the modulus and swelling of polymeric networks, J RHEOL, 44(4), 2000, pp. 897-915
Citation: Dj. Plazek et Zn. Frund, Recoverable creep compliance properties of associative model polymer and polyoxyethylene solutions, J RHEOL, 44(4), 2000, pp. 929-946
Citation: Jm. Guenet, Structure versus rheological properties in fibrillar thermoreversible gelsfrom polymers and biopolymers, J RHEOL, 44(4), 2000, pp. 947-960
Authors:
Perez-Gonzalez, J
de Vargas, L
Pavlinek, V
Hausnerova, B
Saha, P
Citation: J. Perez-gonzalez et al., Temperature-dependent instabilities in the capillary flow of a metallocenelinear low-density polyethylene melt, J RHEOL, 44(3), 2000, pp. 441-451
Citation: Da. Reinelt et Am. Kraynik, Simple shearing flow of dry soap foams with tetrahedrally close-packed structure, J RHEOL, 44(3), 2000, pp. 453-471
Citation: Hm. Schaink et al., The rheology of systems containing rigid spheres suspended in both viscousand viscoelastic media, studied by Stokesian dynamics simulations, J RHEOL, 44(3), 2000, pp. 473-498
Citation: Ya. Sergeev et Dc. Swailes, Predictive model of the turbulent flow of dilute gas-particulate suspension in a vertical pipe, J RHEOL, 44(3), 2000, pp. 499-526
Citation: M. Schnell et Ba. Wolf, Viscosity of polymer/solvent systems: Quantitative description on the basis of molecular surfaces, J RHEOL, 44(3), 2000, pp. 617-628
Citation: Gh. Mckinley et A. Tripathi, How to extract the Newtonian viscosity from capillary breakup measurementsin a filament rheometer, J RHEOL, 44(3), 2000, pp. 653-670
Citation: Ie. Zarraga et al., The characterization of the total stress of concentrated suspensions of noncolloidal spheres in Newtonian fluids (vol 44, pg 185, 2000), J RHEOL, 44(3), 2000, pp. 671-671
Citation: Pp. Simon et Hj. Ploehn, Modeling the effect of plasticizer on the viscoelastic response of crosslinked polymers using the tube-junction model, J RHEOL, 44(2), 2000, pp. 169-183
Citation: Ie. Zarraga et al., The characterization of the total stress of concentrated suspensions of noncolloidal spheres in Newtonian fluids, J RHEOL, 44(2), 2000, pp. 185-220