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42, S. 225 - 228 (1998)
Adsorption kinetics and rheological properties of food proteins at air/water and oil/water interfaces. Nahrung-Food 102.
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2 (6), S. 578 - 583 (1997)
Surface rheology of adsorbed surfactants and proteins. Current Opinion in Colloid & Interface Science 103.
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98, S. 239 - 242 (1995)
Studies of asdorption and surface shear rheology of mixed β-lactoglobulin/surfactant systems. Progress in Colloid and Polymer Science 104.
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22 (1), S. 29 - 35 (1994)
Investigations on the stability of the liquid bridge in the slide hopper type coating technique. 4. Effect of viscoelastic flow properties on the stability of the liquid bridge. Journal of Information Recording Materials 105.
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Profile analysis tensiometry for studies of liquid interfacial dynamics. In: Laser optofluidics in fighting multiple drug resistance, S. 41 - 74 (Hg. Pascu, M. L.). Bentham Science Publishers, Dubai, U.A.E. (2017)
106.
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5, S. 83 - 104 (Hg. Miller, R.; Liggieri, L.). CRC; Taylor & Francis, Boca Raton, FL (2016)
Dynamics of Interfacial Layer Formation. In: Progress in Colloid and Interface Science, Bd. 107.
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5, S. 59 - 82 (Hg. Miller, R.; Liggieri, L.). CRC; Taylor & Francis, Boca Raton, FL (2016)
Experimental Approaches and Related Theories. In: Progress in Colloid and Interface Science, Bd. 108.
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Thermodynamic Models for the Adsorption of Alkyl Trimethyl Ammonium Bromides at the Water/Hexane Interface. In: Colloid Process Engineering, S. 309 - 321 (Hg. Kind, M.; Peukert, W.; Rehage, H.; Schuchmann, H. P.). Springer International Publishing, Cham (2015)
109.
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Surfactant Adsorption Layers at Liquid Interfaces. In: Surfactant Science and Technology: Retrospects and Prospects, S. 149 - 170 (Hg. Romstedt, L.). CRC Press/Taylor and Francis Group, Boca Raton (2014)
110.
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Particle-surfactant interaction at liquid interfaces. In: Colloid and Interface Chemistry for Nanotechnology, S. 77 - 109 (Hg. Kralchevsky, P.; Ravera, F.). CRC Press, Boca Raton (2013)
111.
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Miller, R.). CRC Press, Taylor & Francis Group, Boca Raton, London, New York (2013)
Capillary pressure experiments with single drops and bubbles. In: Colloid and Interface Chemistry for Nanotechnology, Chapter 13, S. 271 - 312 (Hg. Kralchevski, P.; 112.
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Inferfacial dynamics methods. In: Encyclopedia of Colloid and Interface Science, S. 637 - 676 (Hg. Tadros, T.). Springer, Berlin (2013)
113.
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Thermodynamic and kinetics of mixed protein/surfactant adsorption layers at liquid interfaces. In: Proteins in solution and at interfaces: Methods and applications in biotechnology and materials science, S. 389 - 426 (Hg. Ruso, J. M.). John Wiley & Sons, Inc., Hoboken, NJ, USA (2013)
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Adsorption characteristics of ionic surfactants at water/hexane interface obtained by PAT and ODBA. In: Emulsion Formation and Stability, S. 99 - 108 (Hg. Tadros, T. F.). Wiley VCH, Weinheim (2013)
115.
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Mixed protein/surfactant interfacial layers as studied by drop shape analysis and capillary pressure tensiometry. In: Recent Trends in Surface and Colloid Science, S. 85 - 104 (Hg. Paul, B. K.; Moulik, S.). World Scientific, Singapore (2012)
116.
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Miller, R.; Liggieri, L.). Brill, Leiden, Boston (2011)
Studies in Capillary Pressure Tensiometry and Interfacial Dilational Rheology. In: Bubble and Drop Interfaces, S. 143 - 178 (Hg. 117.
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Miller, R.; Liggieri, L.). CRC, London (2009)
Dilataional rheology of thin liquid films. In: Interfacial Rheology, S. 476 - 518 (Hg. 118.
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Miller, R.; Liggieri, L.). CRC, London (2009)
Interfacial shear rheology - and overwiev of measuring techniques and their applications. In: Interfacial Rheology, S. 372 - 428 (Hg. 119.
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Miller, R.; Liggieri, L.). CRC, London (2009)
Determination of the dilational elasticity and viscosity from the surface tension response to harmonic area perturbations. In: Interfacial Rheology, S. 77 - 102 (Hg. 120.
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Microgravity as a tool for fundamental and applied studies on emulsion stability. In: Microgravity applications programme: successful teaming of science and industry, S. 150 - 167 (Hg. Wilson, A.). European Space Agency, Noordwijk (2005)