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Acoustic Scanning Probe Microscopy (Hardcover, 2013 ed.): Francesco Marinello, Daniele Passeri, Enrico Savio Acoustic Scanning Probe Microscopy (Hardcover, 2013 ed.)
Francesco Marinello, Daniele Passeri, Enrico Savio
R4,910 R3,770 Discovery Miles 37 700 Save R1,140 (23%) Ships in 12 - 17 working days

The combination of atomic force microscopy with ultrasonic methods allows the nearfield detection of acoustic signals. The nondestructive characterization and nanoscale quantitative mapping of surface adhesion and stiffness or friction is possible. The aim of this book is to provide a comprehensive review of different scanning probe acoustic techniques, including AFAM, UAFM, SNFUH, UFM, SMM and torsional tapping modes. Basic theoretical explanations are given to understand not only the probe dynamics but also the dynamics of tip surface contacts. Calibration and enhancement are discussed to better define the performance of the techniques, which are also compared with other classical techniques such as nanoindentation or surface acoustic wave. Different application fields are described, including biological surfaces, polymers and thin films.

Acoustic Scanning Probe Microscopy (Paperback, 2013 ed.): Francesco Marinello, Daniele Passeri, Enrico Savio Acoustic Scanning Probe Microscopy (Paperback, 2013 ed.)
Francesco Marinello, Daniele Passeri, Enrico Savio
R4,406 Discovery Miles 44 060 Ships in 10 - 15 working days

The combination of atomic force microscopy with ultrasonic methods allows the nearfield detection of acoustic signals. The nondestructive characterization and nanoscale quantitative mapping of surface adhesion and stiffness or friction is possible. The aim of this book is to provide a comprehensive review of different scanning probe acoustic techniques, including AFAM, UAFM, SNFUH, UFM, SMM and torsional tapping modes. Basic theoretical explanations are given to understand not only the probe dynamics but also the dynamics of tip surface contacts. Calibration and enhancement are discussed to better define the performance of the techniques, which are also compared with other classical techniques such as nanoindentation or surface acoustic wave. Different application fields are described, including biological surfaces, polymers and thin films.

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