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0:18:46
Dynamic Nuclear Polarization Part 2: Biomolecular Applications
0:39:48
Biomolecular Solid-State NMR Part 2: Protein Structure and Dynamics
0:41:58
Dynamic Nuclear Polarization Part 1: Introduction and Principles
0:34:28
Biomolecular Solid-State NMR Part 1: Introduction and Principles
0:56:49
SpinDynamica Lecture 2: Superoperators in SpinDynamica
0:42:06
SpinDynamica Lecture 5: Relaxation in SpinDynamica I
0:50:08
SpinDynamica Lecture 4: Simulation Routines in SpinDynamica
0:53:53
SpinDynamica Lecture 3: More on SpinDynamica
1:17:51
SpinDynamica Lecture 6: Relaxation in SpinDynamica II
1:07:27
SpinDynamica Lecture 1: Introduction to SpinDynamica
1:35:20
NMR Relaxation Lecture 5: Practical Aspects of Spin Relaxation
1:19:54
NMR Relaxation Lecture 4: Rotating Frame Relaxation
1:47:14
NMR Relaxation Lecture 3: Redfield Equations Part II
1:18:54
NMR Relaxation Lecture 2: Redfield Equations Part I
1:27:52
NMR Relaxation Lecture 1: Introduction to Spin Relaxation and The Solomon Equations
0:43:19
Lecture 4: Spectral Deconvolution Methods
0:55:20
Lecture 1: Introduction to Metabolomics
0:44:30
Lecture 3: Software & DBs for NMR-based Metabolomics
1:22:26
Lecture 6: ELDOR detected NMR and ESEEM by Prof. Daniella Goldfarb
1:19:37
Lecture 5: Pulse ENDOR by Prof. Daniella Goldfarb
1:29:10
Lecture 2: The EPR interactions and EPR in the solid state by Prof. Daniella Goldfarb
1:18:06
Lecture 1: Introduction to EPR spectroscopy by Prof. Daniella Goldfarb
1:10:51
Lecture 3: Nitroxide spin labels and Pulse EPR by Prof. Daniella Goldfarb
1:06:04
Lecture 4: Double resonance techniques, DEER and CW ENDOR (liquids) by Prof. Daniella Goldfarb
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