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  2. Sight In Your Target With These Expert-Recommended Range Finders

    www.aol.com/lifestyle/7-best-range-finders...

    RF.1 Rangefinder. The RF.1 was Maven’s first range finder—and it’s a good one. Its direct-to-consumer business model keeps the top-of-the-line performance under $500 while offering unique ...

  3. Rangekeeper - Wikipedia

    en.wikipedia.org/wiki/Rangekeeper

    Directing the fire of a long-range weapon to deliver a projectile to a specific location requires many calculations. The projectile point of impact is a function of many variables, including: gun azimuth , gun elevation , wind speed and direction, air resistance , gravity , latitude , gun/sight parallax , barrel wear, powder load, and ...

  4. List of the United States Army fire control and sighting ...

    en.wikipedia.org/wiki/List_of_the_United_States...

    This is a list of United States Army fire control, and sighting material by supply catalog designation, or Standard Nomenclature List (SNL) group "F".The United States Army Ordnance Corps Supply Catalog used an alpha-numeric nomenclature system from about the mid-1920s to about 1958.

  5. Coincidence rangefinder - Wikipedia

    en.wikipedia.org/wiki/Coincidence_rangefinder

    Eyepiece image of a naval rangefinder, showing the displaced image when not yet adjusted for range. The coincidence rangefinder uses a single eyepiece. Light from the target enters the rangefinder through two windows located at either end of the instrument. At either side the incident beam is reflected to the center of the optical bar by a ...

  6. Leica's new 'entry' M rangefinder camera costs $3,995 - AOL

    www.aol.com/news/2019-06-24-leica-m-e-typ-240...

    The company has introduced an M-E (Typ 240) model that preserves the compact rangefinder design and a 24-megapixel full-frame CMOS sensor, but at a slightly easier to swallow $3,995 price.

  7. Stadiametric rangefinding - Wikipedia

    en.wikipedia.org/wiki/Stadiametric_rangefinding

    The approximate range of an object one foot (30.48 cm) in height covering roughly 100 milliradians is 10 feet (3.048 m) or: Range (r) = approximate height of object (h) × (1000 ÷ aperture in milliradians (a)) r = h(1000/a) → where r and h are identical units, and a is in milliradians.

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