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Introduction to in situ techniques
In situ deformation
High temperature microscopy
7 other sections not shown
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alloy aluminium aperture beam heating bulk cell pressure cementite coil cold stage Conf Congr contamination controlled coolant cooling deformation deposition device diameter differentially pumped diffraction diffusion dislocations domain wall effects electron beam electropolishing environmental cell evaporation examination experimental gases grain boundaries grid growth heater Henderson Brown High Voltage Electron hot stage hydration image intensifier Imura increase irradiation liquid helium magnetic magnetisation martensite material mechanism metal micro micrographs microscope minimise normal nucleation objective aperture objective lens observations occur operation oxide oxygen particles pearlite Phys piezoelectric plane pole piece precipitation Proc radiation damage reaction recrystallisation reduced resolution Saka screw dislocations shown in Fig side-entry single crystal sintering specimen holder specimen temperature stress structure substrate surface Swann techniques tensile thermal thermocouple thin foils tilt tion top-entry torr transmission electron microscopy tube vacuum Valdre Venables Voltage Electron Microscopy water vapour wet cell