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Titlebook: In-situ Materials Characterization; Across Spatial and T Alexander Ziegler,Heinz Graafsma,Joost W.M. Frenke Book 2014 Springer-Verlag Berli

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Vedran Vonk,Heinz Graafsma and clinical scientists andpractitioners in academia, hospitals and industry with valuable interlinked information..This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and future
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Götz Eckold,Helmut Schober and clinical scientists andpractitioners in academia, hospitals and industry with valuable interlinked information..This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and future
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and clinical scientists andpractitioners in academia, hospitals and industry with valuable interlinked information..This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and future
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In-situ Transmission Electron Microscopy, nanoscale labs rather than just imaging tools. In this chapter, various types of in-situ TEM technologies are introduced accompanied by application examples. In parallel to the sub-angstrom breakthrough made by the aberration-corrected TEM, atomic resolution is now emphasized in advanced in-situ TE
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Ultrafast Transmission Electron Microscopy and Electron Diffraction,fast electron diffraction (UED). The topics included are electron sources for pulsed operation and the appropriate emitter materials for this application, electron pulse propagation, electron- and laser-material interactions, the operational challenges during an UEM or UED experiment, i.e., time-res
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Scanning Tunneling Microscopy at Elevated Pressure,of a Scanning Tunneling Microscope (STM) or Atomic Force Microscope (AFM). With such a configuration it becomes possible to perform atomic-scale observations on well-defined model catalysts under fully controlled working conditions. These structural observations acquire further significance by being
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Detectors for Electron and X-ray Scattering and Imaging Experiments,such as the Modulation Transfer Function (MTF), the Detector Quantum Efficiency (DQE), the dynamic range, pixel size, sensitivity, linearity, uniformity, background noise, read out speed, and reliability (or life time) among other characteristics will need to be considered to decide which detector d
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