SLAC National Accelerator Laboratory
Showing 51-100 of 150 Results
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Edward Paul Chin
Safety Sys Engineerin Director, Accelerator
Current Role at StanfordMy role at SLAC is to support the mission of the lab by integrating a fully functional safety system which includes the Personnel Protection System, Hutch Protection System, Beam Containment System, Non-Ionizing Radiation Protection System, and the Oxygen Deficiency Monitoring System. I ensure the division is adequately staffed to design, build, test, and support the safety systems as required by the program.
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Wah Chiu
Wallenberg-Bienenstock Professor and Professor of Bioengineering and, by courtesy, of Microbiology and Immunology
Current Research and Scholarly InterestsMy research includes methodology improvements in single particle cryo-EM for atomic resolution structure determination of molecules and molecular machines, as well as in cryo-ET of cells and organelles towards subnanometer resolutions. We collaborate with many researchers around the country and outside the USA on understanding biological processes such as protein folding, virus assembly and disassembly, pathogen-host interactions, signal transduction, and transport across cytosol and membranes.
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Matthieu Chollet
Staff Scientist, LCLS - Linac Coherent Light Source
Current Role at StanfordX-ray Correlation Spectroscopy (XCS) instrument lead
LCLS Material Science Department -
William Chueh
Director, Precourt Institute for Energy, Kimmelman Professor, Professor of Materials Science and Engineering, of Energy Science and Engineering, of Photon Science and Senior Fellow at the Precourt Institute for Energy
BioThe availability of low-cost but intermittent renewable electricity (e.g., derived from solar and wind) underscores the grand challenge to store and dispatch energy so that it is available when and where it is needed. Redox-active materials promise the efficient transformation between electrical, chemical, and thermal energy, and are at the heart of carbon-neutral energy cycles. Understanding design rules that govern materials chemistry and architecture holds the key towards rationally optimizing technologies such as batteries, fuel cells, electrolyzers, and novel thermodynamic cycles. Electrochemical and chemical reactions involved in these technologies span diverse length and time scales, ranging from Ångströms to meters and from picoseconds to years. As such, establishing a unified, predictive framework has been a major challenge. The central question unifying our research is: “can we understand and engineer redox reactions at the levels of electrons, ions, molecules, particles and devices using a bottom-up approach?” Our approach integrates novel synthesis, fabrication, characterization, modeling and analytics to understand molecular pathways and interfacial structure, and to bridge fundamentals to energy storage and conversion technologies by establishing new design rules.
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Ryan Coffee
Senior Scientist, LCLS - Linac Coherent Light Source
Current Role at StanfordSr. Staff Scientist at SLAC National Accelerator Laboratory
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Aina E. Cohen
Senior Scientist, Stanford Synchrotron Radiation Lightsource
Current Role at StanfordDivision Director, Structural Molecular Biology (SMB), Stanford Synchrotron Radiation Lightsource (SSRL), SLAC National Accelerator Laboratory, Stanford University
Director of the X-ray-Accelerated Medicines Development (XMeD) consortium, funded by the DOE to advance US Biopreparedness
Technical Leader of the LCLS-MFX Standard Goniometer Setup for Serial Macromolecular Crystallography, The Linac Coherent Light Source, SLAC National Accelerator Laboratory