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Titlebook: Atomic Force Microscopy/Scanning Tunneling Microscopy; Samuel H. Cohen,Mona T. Bray,Marcia L. Lightbody Book 1994 Springer Science+Busines

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期刊全称Atomic Force Microscopy/Scanning Tunneling Microscopy
影响因子2023Samuel H. Cohen,Mona T. Bray,Marcia L. Lightbody
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图书封面Titlebook: Atomic Force Microscopy/Scanning Tunneling Microscopy;  Samuel H. Cohen,Mona T. Bray,Marcia L. Lightbody Book 1994 Springer Science+Busines
影响因子The first U. S. Army Natick Research, Development and Engineering Center Atomic Force/Scanning Tunneling Microscopy (AFM/STM) Symposium was held on lune 8-10, 1993 in Natick, Massachusetts. This book represents the compilation of the papers presented at the meeting. The purpose ofthis symposium was to provide a forum where scientists from a number of diverse fields could interact with one another and exchange ideas. The various topics inc1uded application of AFM/STM in material sciences, polymers, physics, biology and biotechnology, along with recent developments inc1uding new probe microscopies and frontiers in this exciting area. The meeting‘s format was designed to encourage communication between members of the general scientific community and those individuals who are at the cutting edge of AFM, STM and other probe microscopies. It immediately became clear that this conference enabled interdisciplinary interactions among researchers from academia, industry and government, and set the tone for future collaborations. Expert scientists from diverse scientific areas including physics, chemistry, biology, materials science and electronics were invited to participate in the symposium
Pindex Book 1994
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Scale-Area Analysis of Scanning Tunneling Microscopy/Atomic Force Microscopy Data by the Patchwork M..Using the patchwork method, one can identify the smooth-rough crossover in scale which separates the relatively large scales where the surface is smooth and best described by Euclidean geometry, from those smaller scales where the surface is rough and best described by fractal geometry. One also o
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Atomic Force Microscopic Imaging of Biomineral Powder Samples Formed by Deposits from Ethanolic Suspm, in agreement with published values for its <110> and <001> crystal planes, respectively..Preliminary results indicate that substrates affect the structure of the deposits. Structural differences of the two mineral deposits on glass and mica were observed.
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Scanning Tunneling Microscopy and Atomic Force Microscopy Investigations on Organic Material Thin Fiixing the molecules to the substrate. We show that in this case after some rather harsh sweeping by the tip, one can observe fairly ordered molecular structures near to the lower part of surface steps on layered material substrates.
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Atomic Force Microscopy/Scanning Tunneling Microscopy
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