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Titlebook: RoboCup 2016: Robot World Cup XX; Sven Behnke,Raymond Sheh,Daniel D. Lee Conference proceedings 2017 Springer International Publishing AG,

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Yusuke Adachi,Masahide Ito,Tadashi NaruseThe modern ETEM allows the dynamic behavior of the nanoparticles to be studied in real time with atomic-resolution imaging and electron diffraction in up to 50 Torr of gas pressure. On a machine equipped with a field-emission gun, electron energy-loss spectra can be recorded using a sub-nanometer pr
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Patrick MacAlpine,Peter Stonereas of ongoing research and development. The HRTEM enables the atomic structure of interfaces and defects to be determined routinely, reliably and with very high positional accuracy, thus providing better insights into the physical behavior of many nanostructured materials. Experts in the HRTEM fie
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Sebastian Zug,Tim Niemueller,Nico Hochgeschwender,Kai Seidensticker,Martin Seidel,Tim Friedrich,Tobicterization of nanoscale particles and nanostructured bulk materials. Combined with the imaging and crystallographic measurement functions of TEMs and SEMs, comprehensive characterization of morphology, crystal structure, and composition becomes possible. The advent of more efficient electron optica
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Rémi Fabre,Quentin Rouxel,Grégoire Passault,Steve N’Guyen,Olivier Lytic devices as well as in molecular fabrications. The structure-composition-processing-property relationships for these sub 100 nm-sized materials can only be understood by employing an array of modern microscopy and microanalysis tools. Handbook of Microscopy for Nanotechnology aims to provide an o
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The modern ETEM allows the dynamic behavior of the nanoparticles to be studied in real time with atomic-resolution imaging and electron diffraction in up to 50 Torr of gas pressure. On a machine equipped with a field-emission gun, electron energy-loss spectra can be recorded using a sub-nanometer pr
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Pedro U. Lima,Daniele Nardi,Gerhard K. Kraetzschmar,Rainer Bischoff,Matteo MatteucciThe modern ETEM allows the dynamic behavior of the nanoparticles to be studied in real time with atomic-resolution imaging and electron diffraction in up to 50 Torr of gas pressure. On a machine equipped with a field-emission gun, electron energy-loss spectra can be recorded using a sub-nanometer pr
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