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Imaging soft biological samples in liquid with Atomic Force Microscope (AFM) has long stood as a very challenging task. Until recently, most. Conductive Atomic Force Microscopy (C-AFM) is a mode of atomic force microscopy in which a conductive tip is scanned in contact with the sample surface. One way to verify that your AFM is operating correctly is to test the instrument's imaging capability or data collection on a sample with known properties.

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This is built on the fundamentals of scanning probe microscopy, which utilizes a physical probe to measure the surface features of samples with atomic. Atomic force microscopy (AFM) is one kind of observation method that takes advantage of the atomic force between the probe and the sample surface. The atomic force microscope (AFM) is best known for its high-resolution imaging capabilities, cantilever and tip are moved directly towards the sample.

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Atomic force microscopy (AFM) is one kind of observation method that takes advantage of the atomic force between the probe and the sample surface. The atomic force microscope (AFM) is best known for its high-resolution imaging capabilities, cantilever and tip are moved directly towards the sample. 3. What kind of samples can be analysed by AFM? What are the applications of AFM? · Polymers · Metals · Fibres: Hair, synthetic fibres, nanotubes · Particles: micro.