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L O Sundelöf

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Analytical Biochemistry|December 1, 1982
A versatile shear cell for diffusion measurements on small sample volumes allowing analytical recording of multicomponent transport. I. Design of instrumentL O Sundelöf
Acta Pharmaceutica Nordica|January 1, 1992
Basic principles of transport from topical preparationsL O Sundelöf
Biopolymers|November 28, 2000
The effect of polyelectrolyte counterion specificity, charge density, and conformation on polyelectrolyte-amphiphile interaction: the carrageenan/furcellaran-amitriptyline systemA Hugerth, L O Sundelöf
European Journal of Biochemistry|August 17, 1973
Light scattering in the study of associating macromolecules. The binding of glycosaminoglycans to collagenB Obrink, L O Sundelöf
Zeitschrift Fur Naturforschung. Section C, Biosciences|June 1, 1984
Thermal diffusion as a mechanism for biological transportF J Bonner, L O Sundelöf
Biopolymers|September 1, 1996
Changes in the polyelectrolyte-amphiphile interaction due to helix-coil transition induced by specific counterions or variations in temperatureN Caram-Lelham, L O Sundelöf
Pharmaceutical Research|June 1, 1996
The effect of hydrophobic character of drugs and helix-coil transition of kappa-carrageenan on the polyelectrolyte-drug interactionN Caram-Lelham, L O Sundelöf
Pharmaceutical Research|December 1, 1996
A new method for diffusion measurement in polymeric films based on a stacked sheet conceptH Sjöberg, R Bergman, L O Sundelöf
International Journal of Biological Macromolecules|October 16, 1999
Gel--sol transition in kappa-carrageenan systems: microviscosity of hydrophobic microdomains, dynamic rheology and molecular conformationA Hugerth, S Nilsson, L O Sundelöf
International Journal of Biological Macromolecules|December 1, 1996
Polyelectrolyte/amphiphile interaction studied by surface tension measurementsB Persson, N Caram-Lelham, L O Sundelöf
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Analytical Biochemistry|December 1, 1982
A versatile shear cell for diffusion measurements on small sample volumes allowing analytical recording of multicomponent transport. I. Design of instrumentL O Sundelöf
Acta Pharmaceutica Nordica|January 1, 1992
Basic principles of transport from topical preparationsL O Sundelöf
Biopolymers|November 28, 2000
The effect of polyelectrolyte counterion specificity, charge density, and conformation on polyelectrolyte-amphiphile interaction: the carrageenan/furcellaran-amitriptyline systemA Hugerth, L O Sundelöf
European Journal of Biochemistry|August 17, 1973
Light scattering in the study of associating macromolecules. The binding of glycosaminoglycans to collagenB Obrink, L O Sundelöf
Zeitschrift Fur Naturforschung. Section C, Biosciences|June 1, 1984
Thermal diffusion as a mechanism for biological transportF J Bonner, L O Sundelöf
Biopolymers|September 1, 1996
Changes in the polyelectrolyte-amphiphile interaction due to helix-coil transition induced by specific counterions or variations in temperatureN Caram-Lelham, L O Sundelöf
Pharmaceutical Research|June 1, 1996
The effect of hydrophobic character of drugs and helix-coil transition of kappa-carrageenan on the polyelectrolyte-drug interactionN Caram-Lelham, L O Sundelöf
Pharmaceutical Research|December 1, 1996
A new method for diffusion measurement in polymeric films based on a stacked sheet conceptH Sjöberg, R Bergman, L O Sundelöf
International Journal of Biological Macromolecules|October 16, 1999
Gel--sol transition in kappa-carrageenan systems: microviscosity of hydrophobic microdomains, dynamic rheology and molecular conformationA Hugerth, S Nilsson, L O Sundelöf
International Journal of Biological Macromolecules|December 1, 1996
Polyelectrolyte/amphiphile interaction studied by surface tension measurementsB Persson, N Caram-Lelham, L O Sundelöf
Pageof 2