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  2. Leupold & Stevens - Wikipedia

    en.wikipedia.org/wiki/Leupold_&_Stevens

    After World War II Leupold & Stevens began making gun scopes after Marcus Leupold failed to hit a deer with his rifle. His scope fogged up and he is reported to have exclaimed "Hell! I could build a better scope than this!" as the deer bounded off. [3] [4] In 1962, Leupold invented the Duplex Reticle, which most riflescopes now use. [6]

  3. Jupiter (lenses) - Wikipedia

    en.wikipedia.org/wiki/Jupiter_(lenses)

    Jupiter-9 85 mm f /2.0 lens with M42 mount for SLRs. Pre-set aperture, no lens coatings, made in 1980. The Jupiter-9 lens is derived from the Zeiss Sonnar design. It has seven elements in three groups. [5] Its focal length is 85mm, which makes it a short telephoto lens usually used for portrait photography. The maximum aperture of this lens is ...

  4. Wide-field multiphoton microscopy - Wikipedia

    en.wikipedia.org/wiki/Wide-field_multiphoton...

    The axial resolution is typically 2-3 μm [4] [5] even with structured illumination techniques. [10] [11] The spatial dispersion generated by the diffraction grating ensures that the energy in the laser is spread over a wider area in the objective lens, hence reducing the possibility of damaging the lens itself.

  5. Optical microscope - Wikipedia

    en.wikipedia.org/wiki/Optical_microscope

    A simple microscope uses a lens or set of lenses to enlarge an object through angular magnification alone, giving the viewer an erect enlarged virtual image. [1] [2] The use of a single convex lens or groups of lenses are found in simple magnification devices such as the magnifying glass, loupes, and eyepieces for telescopes and microscopes.

  6. Condenser (optics) - Wikipedia

    en.wikipedia.org/wiki/Condenser_(optics)

    The focus of the first lens is traditionally about 2mm away from the plane face coinciding with the sample plane. A pinhole cap can be used to align the optical axis of the condenser with that of the microscope. The Abbe condenser is still the basis for most modern light microscope condenser designs, even though its optical performance is poor.

  7. Multifocal plane microscopy - Wikipedia

    en.wikipedia.org/wiki/Multifocal_plane_microscopy

    The schematic of a multifocal plane microscope. Multifocal plane microscopy (MUM), also known as multiplane microscopy or multifocus microscopy, is a form of light microscopy that allows the tracking of the 3D dynamics in live cells at high temporal and spatial resolution by simultaneously imaging different focal planes within the specimen.

  8. Telecentric lens - Wikipedia

    en.wikipedia.org/wiki/Telecentric_lens

    A telecentric lens is a special optical lens (often an objective lens or a camera lens) that has its entrance or exit pupil, or both, at infinity. The size of images produced by a telecentric lens is insensitive to either the distance between an object being imaged and the lens, or the distance between the image plane and the lens, or both, and ...

  9. Diaphragm (optics) - Wikipedia

    en.wikipedia.org/wiki/Diaphragm_(optics)

    Nine-blade iris Pentacon 2.8/135 lens with 15-blade iris Aperture mechanism of Canon 50mm f/1.8 II lens, with five blades In the human eye, the iris (light brown) acts as the diaphragm and continuously constricts and dilates its aperture (the pupil) A 750nm titanium-sapphire laser beam passing through an iris diaphragm, while opening and closing the iris.

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