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01 - Tom Laue: Introduction to AUC: AUC theory and practices [1]
01-R - Tom Laue: Introduction to AUC: AUC theory and practices [3]
02 - Tom Laue: Introduction to AUC: Optical Systems [2]
02-R - Tom Laue: Introduction to AUC: Optical Systems [4]
03 - Sandy Ross: Fluorescence Spectroscopy: a complement to AUC [1]
03-R - Sandy Ross: Fluorescence Spectroscopy: a complement to AUC [6]
04 - Membrane Proteins [1]
04 - Membrane Proteins [2]
05 - Emre Brookes: US-SOMO Hydrodynamic Modeling [1-3]
05-R - Emre Brookes: US-SOMO Hydrodynamic Modeling [7-9]
06 - Emre Brookes: US-SOMO Small Angle Scattering [4-6]
07 - Emre Brookes: SASSIE2 [7-10]
08 - Helmut Coelfen: Nanoparticle Analysis by AUC [2]
08-R - Helmut Coelfen: Nanoparticle Analysis by AUC [4]
09 - Borries Demeler: Introduction to UltraScan [3-6]
10 - Borries Demeler: AUC Problems Solving with UltraScan [7-10]
11 - Walter Stafford, Jack Correia: SEDANAL [3-10]
12 - John Philo: SEDNTERP [5]
13 - John Philo: Time-derivative Analysis with DCDT+ [7]
13-R - John Philo: Time-derivative Analysis with DCDT+ [8]
14 - John Philo: Getting Confidence Limits Using the Program SVEDBERG [9]
14-R - John Philo: Getting Confidence Limits Using the Program SVEDBERG [10]
15 - Ivo Nischang: Hydrodynamic analysis of synthetic and bio-macromolecules [5-6]
15-R - Ivo Nischang: Hydrodynamic analysis of synthetic and bio-macromolecules [9-10]]
16 - GUSSI [3]
17 - Membrane proteins and conformational changes [5-6]
18 - Multisignal SV and Analyzing SE Data [7-8]
19 - Complementary Techniques: ITC and MST [9-10]
20 - Johannes Walter: HDR-MULTIFIT [5-6]
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