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  2. File:Atomic force microscope block diagram.svg - Wikipedia

    en.wikipedia.org/wiki/File:Atomic_force...

    Date/Time Thumbnail Dimensions User Comment; current: 01:58, 25 April 2020: 926 × 859 (12 KB): Nyq: decapitalized common nouns, extended image width to ensure all labels fit it

  3. File:Atomic force microscope block diagram v2.svg - Wikipedia

    en.wikipedia.org/wiki/File:Atomic_force...

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  4. Optical microscope - Wikipedia

    en.wikipedia.org/wiki/Optical_microscope

    Diagram of a simple microscope. There are two basic types of optical microscopes: simple microscopes and compound microscopes. A simple microscope uses the optical power of a single lens or group of lenses for magnification. A compound microscope uses a system of lenses (one set enlarging the image produced by another) to achieve a much higher ...

  5. Polarized light microscopy - Wikipedia

    en.wikipedia.org/wiki/Polarized_light_microscopy

    Polarizing microscope operating principle Depiction of internal organs of a midge larva via birefringence and polarized light microscopy. Polarized light microscopy can mean any of a number of optical microscopy techniques involving polarized light. Simple techniques include illumination of the sample with polarized light.

  6. Free body diagram - Wikipedia

    en.wikipedia.org/wiki/Free_body_diagram

    In physics and engineering, a free body diagram (FBD; also called a force diagram) [1] is a graphical illustration used to visualize the applied forces, moments, and resulting reactions on a free body in a given condition. It depicts a body or connected bodies with all the applied forces and moments, and reactions, which act on the body(ies).

  7. Live-cell imaging - Wikipedia

    en.wikipedia.org/wiki/Live-cell_imaging

    The combination of holography and rotational scanning allows long-term, label-free, live-cell recordings. Non-invasive optical nanoscopy can achieve such a lateral resolution by using a quasi-2π-holographic detection scheme and complex deconvolution. The spatial frequencies of the imaged cell do not make any sense to the human eye.

  8. Fluorescence microscope - Wikipedia

    en.wikipedia.org/wiki/Fluorescence_microscope

    Schematic of a fluorescence microscope. The majority of fluorescence microscopes, especially those used in the life sciences, are of the epifluorescence design shown in the diagram. Light of the excitation wavelength illuminates the specimen through the objective lens.

  9. Phase-contrast microscopy - Wikipedia

    en.wikipedia.org/wiki/Phase-contrast_microscopy

    Phase-contrast microscopy is particularly important in biology. It reveals many cellular structures that are invisible with a bright-field microscope, as exemplified in the figure. These structures were made visible to earlier microscopists by staining, but this required additional preparation and death of the cells.

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