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Advancements in Gel Science—A Special Issue in Memory of Toyoichi Tanaka
Resumen/Descripción – provisto por la editorial
No disponible.
Palabras clave – provistas por la editorial
delamination; n/a; fractal analysis; buckling; artificial hydrogel cartilage; frictional property; kinetic coefficient; paint coating; scaling analysis; moving boundary picture; XRD; volume phase transition; fracture; fatigue; crack; gelation temperature; xerogel; swelling of thermosensitive gels; copolymerization; phase transition dynamics; wetting; poly (acryl amide) gel; swelling; sucrose; anisotropic shape; ice crystallization during rewarming; micropipette aspiration; microgel; crosslink density (density of crosslinks); hydrogel; Sephadex® (crosslinked dextran); sol-gel transition; thermoresponsive property; compression; Brunauer-Emmett-Teller theory; monomer sequence; microcrystallite; swelling behavior; micrometric confinement; wear; light scattering; X-ray CT; co-crosslinking; electrophoresis; gel; hysteresis; ice grain; effects of electric charge; phase separation; acrylamide derivative; Barrett-Joyner-Halenda analysis; temperature; xylitol; agarose gel; spinodal temperature; glassy water; chemical gel; blood coagulation; poly(vinyl alcohol); pulse field gradient spin echo method of nuclear magnetic resonance (PFG-NMR); time domain reflectometry (TDR) of dielectric spectroscopy; site-bond correlated-percolation model for polymer gelation; spinodal decomposition; adhesion; janus particle; wrinkle; friction; cloud point temperature; drying; gamma ray sterilization; solvent exchange; solids content; solvent transport; heterogeneous gelation dynamics; PVA gel; hydrogen bond
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Información
Tipo de recurso:
libros
ISBN electrónico
978-3-03921-344-3
País de edición
Suiza