Kirjojen hintavertailu – 12 903 725 kirjaa ja 27 kauppaa

Kirjailija

Milad Radiom

Kirjat ja teokset yhdessä paikassa: 3 kirjaa, julkaisuja vuosilta 2010–2016, suosituimpiin kuuluu Correlation Force Spectroscopy for Single Molecule Measurements. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

3 kirjaa

Kirjojen julkaisuvuodet: 2010–2016.

Correlation Force Spectroscopy for Single Molecule Measurements

Correlation Force Spectroscopy for Single Molecule Measurements

Milad Radiom

Springer International Publishing AG
2016
nidottu
This thesis addresses the development of a new force spectroscopy tool, correlation force spectroscopy (CFS) for the measurement of the properties of very small volumes of material (molecular to µm3) at kHz-MHz frequency range. CFS measures the simultaneous thermal fluctuations of two closely-spaced atomic force microscopy (AFM) cantilevers. CFS then calculates the cross-correlation in the thermal fluctuations that gives the mechanical properties of the matter that spans the gap of the two cantilevers. The book also discusses development of CFS, its advantages over AFM, and its application in single molecule force spectroscopy and micro-rheology.
Correlation Force Spectroscopy for Single Molecule Measurements

Correlation Force Spectroscopy for Single Molecule Measurements

Milad Radiom

Springer International Publishing AG
2015
sidottu
This thesis addresses the development of a new force spectroscopy tool, correlation force spectroscopy (CFS) for the measurement of the properties of very small volumes of material (molecular to µm3) at kHz-MHz frequency range. CFS measures the simultaneous thermal fluctuations of two closely-spaced atomic force microscopy (AFM) cantilevers. CFS then calculates the cross-correlation in the thermal fluctuations that gives the mechanical properties of the matter that spans the gap of the two cantilevers. The book also discusses development of CFS, its advantages over AFM, and its application in single molecule force spectroscopy and micro-rheology.