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Field Emission Scanning Electron Microscopy: New Perspectives For Materials CharacterizationField Emission Scanning Electron Microscopy: New Perspectives For Materials Characterization

Field Emission Scanning Electron Microscopy: New Perspectives For Materials Characterization

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Current price: $90.29
Original price: $112.87
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Field Emission Scanning Electron Microscopy: New Perspectives For Materials Characterization

Coles

Field Emission Scanning Electron Microscopy: New Perspectives For Materials Characterization

By None

Current price: $90.29
Original price: $112.87
Loading Inventory...

Size: Kobo eBook

Visit retailer's website
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This book highlights what is now achievable in terms of materials characterization with the new generation of cold-field emission scanning electron microscopes applied to real materials at high spatial resolution. It discusses advanced scanning electron microscopes/scanning- transmission electron microscopes (SEM/STEM), simulation and post-processing techniques at high spatial resolution in the fields of nanomaterials, metallurgy, geology, and more. These microscopes now offer improved performance at very low landing voltage and high -beam probe current stability, combined with a routine transmission mode capability that can compete with the (scanning-) transmission electron microscopes (STEM/-TEM) historically run at higher beam accelerating voltage
This book highlights what is now achievable in terms of materials characterization with the new generation of cold-field emission scanning electron microscopes applied to real materials at high spatial resolution. It discusses advanced scanning electron microscopes/scanning- transmission electron microscopes (SEM/STEM), simulation and post-processing techniques at high spatial resolution in the fields of nanomaterials, metallurgy, geology, and more. These microscopes now offer improved performance at very low landing voltage and high -beam probe current stability, combined with a routine transmission mode capability that can compete with the (scanning-) transmission electron microscopes (STEM/-TEM) historically run at higher beam accelerating voltage

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