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[Show more]Computation can contribute to addressing such questions in at least two distinct ways. First, computational analysis is required to extract useful information from experimental measurements. Second, one can use computational techniques to predict structures, dynamics, and important biochemical prope...
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Add to cartComputation can contribute to addressing such questions in at least two distinct ways. First, computational analysis is required to extract useful information from experimental measurements. Second, one can use computational techniques to predict structures, dynamics, and important biochemical prope...
How can structural information contribute to the design of drugs, proteins, or perhaps even cells? 
• Reducing image noise 
 
• Sharpening images 
 
• Image description and classification 
 
• Practical image processing tips 
 
 computational methods for studying spatial organization of c...
Preview 4 out of 36 pages
Add to cartHow can structural information contribute to the design of drugs, proteins, or perhaps even cells? 
• Reducing image noise 
 
• Sharpening images 
 
• Image description and classification 
 
• Practical image processing tips 
 
 computational methods for studying spatial organization of c...
Super-resolution fluorescence imaging with single molecules 
Fluorescence Microscopy 
light microscope
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Add to cartSuper-resolution fluorescence imaging with single molecules 
Fluorescence Microscopy 
light microscope
Random Walks and 1-D Diffusion 
Continuum Diffusion Equations
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Add to cartRandom Walks and 1-D Diffusion 
Continuum Diffusion Equations
Ultra-large library docking for discovering new chemotypes 
Prediction of Protein — Ligand Interactions. Docking and Scoring: Successes and Gaps 
Glide: A New Approach for Rapid, Accurate Docking and Scoring
Preview 4 out of 31 pages
Add to cartUltra-large library docking for discovering new chemotypes 
Prediction of Protein — Ligand Interactions. Docking and Scoring: Successes and Gaps 
Glide: A New Approach for Rapid, Accurate Docking and Scoring
Super-resolution biomolecular crystallography with low-resolution data 
Improved low-resolution crystallographic refinement with Phenix and Rosetta 
Computation can contribute to addressing such questions in at least two distinct ways. First, computational analysis is required to extract useful info...
Preview 3 out of 30 pages
Add to cartSuper-resolution biomolecular crystallography with low-resolution data 
Improved low-resolution crystallographic refinement with Phenix and Rosetta 
Computation can contribute to addressing such questions in at least two distinct ways. First, computational analysis is required to extract useful info...
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