This book enlightens readers on the basic surface properties and distance-dependent intersurface forces one must understand to obtain even simple data from an atomic force microscope (AFM). The material becomes progressively more complex throughout the book, explaining details of calibration, physical origin of artifacts, and signal/noise limitations. Coverage spans imaging, materials property characterization, in-liquid interfacial analysis, tribology, and electromagnetic interactions.
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GREG HAUGSTAD, PhD, is a technical staff member and Director of the Characterization Facility in the College of Science and Engineering at the University of Minnesota. He has collaborated with industry professionals on such technologies as medical X-ray imaging media, lubrication, inkjet printing, and more recently on biomedical device coatings. He teaches undergraduate and graduate AFM courses, as well as short professional courses, and has trained over 600 AFM users.
Complete guidance for becoming an expert user of atomic force microscopy and understanding its research applications
Although atomic force microscopy (AFM) is an essential tool in materials and biological research, little systematic training is available for users. Addressing the gap in the field, Atomic Force Microscopy is a comprehensive primer covering knowledge readers need in order to become astute operators of AFM, including basic principles, data analysis, and such applications as imaging, materials property characterization, in-liquid interfacial analysis, tribology (friction/wear), electrostatics, and more.
Geared to a wide audience, from students and technicians to research scientists and engineers, this unique guide explains in simple terms the distance-dependent intersurface forces AFM users need to understand when measuring basic surface properties. Moving gradually to more complex areas, it explores such topics as calibration, physical origins of artifacts, and multifrequency methods. Features include:
Readers will learn to configure and operate instruments and interpret results for successful applications of atomic force microscopy. They will also gain a thorough understanding of a variety of topics for future research and experimentation.
Complete guidance for becoming an expert user of atomic force microscopy and understanding its research applications
Although atomic force microscopy (AFM) is an essential tool in materials and biological research, little systematic training is available for users. Addressing the gap in the field, Atomic Force Microscopy is a comprehensive primer covering knowledge readers need in order to become astute operators of AFM, including basic principles, data analysis, and such applications as imaging, materials property characterization, in-liquid interfacial analysis, tribology (friction/wear), electrostatics, and more.
Geared to a wide audience, from students and technicians to research scientists and engineers, this unique guide explains in simple terms the distance-dependent intersurface forces AFM users need to understand when measuring basic surface properties. Moving gradually to more complex areas, it explores such topics as calibration, physical origins of artifacts, and multifrequency methods. Features include:
Readers will learn to configure and operate instruments and interpret results for successful applications of atomic force microscopy. They will also gain a thorough understanding of a variety of topics for future research and experimentation.
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Hardcover. Zustand: Fine. Leichte Rillen / Abschürfungen / Risse / Knicke. This book enlightens readers on the basic surface properties and distance-dependent intersurface forces one must understand to obtain even simple data from an atomic force microscope (AFM). The material becomes progressively more complex throughout the book, explaining details of calibration, physical origin of artifacts, and signal/noise limitations. Coverage spans imaging, materials property characterization, in-liquid interfacial analysis, tribology, and electromagnetic interactions. Bestandsnummer des Verkäufers 093ded42-8f24-4aa3-9f08-58ad700891aa
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