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Atomic force microscope diagram

Figure C2.9.3 Schematic diagrams of the interfaces reaiized by (a) tire atomic force microscope, (b) tire surface forces apparatus and (c) tire quartz crystai microbaiance for achieving fundamentai measurements of friction in weii defined systems. Figure C2.9.3 Schematic diagrams of the interfaces reaiized by (a) tire atomic force microscope, (b) tire surface forces apparatus and (c) tire quartz crystai microbaiance for achieving fundamentai measurements of friction in weii defined systems.
Fig. 5. Block diagram of contact atomic force microscope system in which cantilever deflection monitored optically with position-sensitive photodiode... Fig. 5. Block diagram of contact atomic force microscope system in which cantilever deflection monitored optically with position-sensitive photodiode...
Fig. 2. Schematic diagrams of alternative force feedback modes. (A) Illustrates noncontact atomic force microscope feedback. (B) Shear-force feedback frequently used in NSOM imaging applications. From Paesler and Moyer (41), with permission. Fig. 2. Schematic diagrams of alternative force feedback modes. (A) Illustrates noncontact atomic force microscope feedback. (B) Shear-force feedback frequently used in NSOM imaging applications. From Paesler and Moyer (41), with permission.
Figure 3-18 Schematic diagram of the atomic force microscope.360 Courtesy of Paul Hansma. Figure 3-18 Schematic diagram of the atomic force microscope.360 Courtesy of Paul Hansma.
Association constant. See Formation constant Astacin 627 Asthma 26, 385 Asymmetric unit of crystal 134 Asymmetry of molecules 41-43 handedness 41-43 in oligomers 344 Ataxia telangiectasia 566, 574 Atomic force microscope 131 diagram of 131... [Pg.907]

Figure 15.13 Schematic diagram of an atomic force microscope (image courtesy of the Opensource Handbook of Nanoscience and Nanotechnology). Figure 15.13 Schematic diagram of an atomic force microscope (image courtesy of the Opensource Handbook of Nanoscience and Nanotechnology).
Figure 7.47. Illustrations of STM (top), and AFM (bottom). Reproduced with permission through the Wikipedia Commons agreement. The illustration of STM is courtesy of Michael Schmid, TU Wien, and is available online at http //www.iap.tuwien.ac.at/www/surface/STM Gallery/stm.schematic.html. The illustration of AFM is available online at http //en.wikipedia.0rg/wiki/Image Atomic.force microscope block diagram.png... Figure 7.47. Illustrations of STM (top), and AFM (bottom). Reproduced with permission through the Wikipedia Commons agreement. The illustration of STM is courtesy of Michael Schmid, TU Wien, and is available online at http //www.iap.tuwien.ac.at/www/surface/STM Gallery/stm.schematic.html. The illustration of AFM is available online at http //en.wikipedia.0rg/wiki/Image Atomic.force microscope block diagram.png...
Figure 1 Schematic diagram of the Atomic Force Microscope with a cooling stage. The samples were prepared in two different ways ... Figure 1 Schematic diagram of the Atomic Force Microscope with a cooling stage. The samples were prepared in two different ways ...
Figure 4.9 Schematic diagram of an atomic force microscope. Figure 4.9 Schematic diagram of an atomic force microscope.
Biosensors Using Atomic Force Microscopes, Fig. 1 (a) Basic components and working principle of AFM. A sharp tip fixed at the end of a fiexible cantilever is raster scanned over the surface of a sample. As the tip interacts with the surface, the cantilever deflects, and its deflections are monitored by a laser and a photodiode and then used to reconstruct the topography of the sample, (b) A schematic diagram of AFM as a biosensor in detecting... [Pg.157]

Figure 7.1. Schematic diagram of a typical atomic force microscope. Figure 7.1. Schematic diagram of a typical atomic force microscope.
Figure 31-3 (A) Cryo atomic force (AFM) micrograph of molecules of the human immunoglobulin IgM. Courtesy of Zhifeng Shao, University of Virginia. (B) Schematic diagram. One-fifth of this structure is shown in greater detail in Fig. 31-4A. (C) Model based on earlier electron microscopic images. From Feinstein and Munn. 64(2... Figure 31-3 (A) Cryo atomic force (AFM) micrograph of molecules of the human immunoglobulin IgM. Courtesy of Zhifeng Shao, University of Virginia. (B) Schematic diagram. One-fifth of this structure is shown in greater detail in Fig. 31-4A. (C) Model based on earlier electron microscopic images. From Feinstein and Munn. 64(2...

See other pages where Atomic force microscope diagram is mentioned: [Pg.182]    [Pg.58]    [Pg.107]    [Pg.1144]    [Pg.637]    [Pg.270]    [Pg.171]    [Pg.254]    [Pg.34]    [Pg.49]    [Pg.96]    [Pg.511]   
See also in sourсe #XX -- [ Pg.131 ]

See also in sourсe #XX -- [ Pg.131 ]

See also in sourсe #XX -- [ Pg.131 ]

See also in sourсe #XX -- [ Pg.131 ]




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