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  2. Binoculars - Wikipedia

    en.wikipedia.org/wiki/Binoculars

    Typically, binoculars with a magnification of 8× to 10× are used, though many manufacturers produce models with 7× magnification for a wider field of view and increased depth of field. The other main consideration for birdwatching binoculars is the size of the objective that collects light.

  3. Depth perception - Wikipedia

    en.wikipedia.org/wiki/Depth_perception

    Photography utilizes size, environmental context, lighting, textural gradience, and other effects to capture the illusion of depth. [33] Stereoscopes and Viewmasters, as well as 3D films, employ binocular vision by forcing the viewer to see two images created from slightly different positions (points of view).

  4. Field of view - Wikipedia

    en.wikipedia.org/wiki/Field_of_view

    For example, binocular vision, which is the basis for stereopsis and is important for depth perception, covers 114 degrees (horizontally) of the visual field in humans; [7] the remaining peripheral ~50 degrees on each side [6] have no binocular vision (because only one eye can see those parts of the visual field). Some birds have a scant 10 to ...

  5. Exit pupil - Wikipedia

    en.wikipedia.org/wiki/Exit_pupil

    A set of 7×50 binoculars has an exit pupil just over 7.14 mm, which corresponds to the average pupil size of a youthful dark-adapted human eye in circumstances with no extraneous light. The emergent light at the eyepiece then fills the eye's pupil, meaning no loss of brightness at night due to using such binoculars (assuming perfect transmission).

  6. Eye relief - Wikipedia

    en.wikipedia.org/wiki/Eye_relief

    For example, a 10 × 42 binocular has a 4.2 mm wide exit cone, and fairly comfortable for general use, whereas doubling the magnification with a zoom feature to 20 × results in a much more critical 2.1 mm exit cone. Optics showing eye relief and exit pupil 1 Real image 2 Field diaphragm 3 Eye relief 4 Exit pupil

  7. Visual field - Wikipedia

    en.wikipedia.org/wiki/Visual_field

    The binocular visual field is the superimposition of the two monocular fields. In the binocular field, the area left of the vertical meridian is referred to as the left visual field (which is located temporally for the left, and nasally for the right eye); a corresponding definition holds for the right visual field.

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