Telescope Magnification Vs Aperture at Frances Storey blog

Telescope Magnification Vs Aperture. For viewing planets, a magnification of around 30x to 50x per inch of aperture is recommended. The amount that a telescope enlarges its subject. However it is only a rough guide and i find varies widely across types of telescope. Telescope aperture sizes allow observers to determine a telescope’s maximum useful magnification. X50 per inch is often regarded as 'the best you can ever expect'. The aperture determines the upper limit on the quality of the images you’ll see. On top of that, the aperture will also determine another very important number for stargazing, the maximum useful magnification. It’s equal to the telescope’s focal length divided by the eyepiece’s focal length. More aperture makes for a brighter image. As mentioned in a previous article, the most important specification of any telescope is the aperture, the diameter of the main lens or mirror of the telescope. So the magnification per inch of aperture rule is largely based on the limitations of telescope optics and takes no account of seeing. A good telescope magnification depends on what you want to observe. Telescope magnification is primarily determined by the telescope’s focal length and the diameter of the eyepiece, but magnification is limited by the telescope’s aperture. For deep sky objects, a lower magnification of around 20x to 30x per inch of aperture is better. Here are some general guidelines for telescope magnification

How do Telescopes work? And what makes them so powerful? Space Mystery
from www.thespacemystery.com

For deep sky objects, a lower magnification of around 20x to 30x per inch of aperture is better. For viewing planets, a magnification of around 30x to 50x per inch of aperture is recommended. Telescope magnification is primarily determined by the telescope’s focal length and the diameter of the eyepiece, but magnification is limited by the telescope’s aperture. As mentioned in a previous article, the most important specification of any telescope is the aperture, the diameter of the main lens or mirror of the telescope. X50 per inch is often regarded as 'the best you can ever expect'. Here are some general guidelines for telescope magnification A good telescope magnification depends on what you want to observe. It’s equal to the telescope’s focal length divided by the eyepiece’s focal length. The amount that a telescope enlarges its subject. The aperture determines the upper limit on the quality of the images you’ll see.

How do Telescopes work? And what makes them so powerful? Space Mystery

Telescope Magnification Vs Aperture A good telescope magnification depends on what you want to observe. The aperture determines the upper limit on the quality of the images you’ll see. For viewing planets, a magnification of around 30x to 50x per inch of aperture is recommended. Telescope magnification is primarily determined by the telescope’s focal length and the diameter of the eyepiece, but magnification is limited by the telescope’s aperture. More aperture makes for a brighter image. A good telescope magnification depends on what you want to observe. So the magnification per inch of aperture rule is largely based on the limitations of telescope optics and takes no account of seeing. As mentioned in a previous article, the most important specification of any telescope is the aperture, the diameter of the main lens or mirror of the telescope. Telescope aperture sizes allow observers to determine a telescope’s maximum useful magnification. X50 per inch is often regarded as 'the best you can ever expect'. The amount that a telescope enlarges its subject. For deep sky objects, a lower magnification of around 20x to 30x per inch of aperture is better. However it is only a rough guide and i find varies widely across types of telescope. On top of that, the aperture will also determine another very important number for stargazing, the maximum useful magnification. It’s equal to the telescope’s focal length divided by the eyepiece’s focal length. Here are some general guidelines for telescope magnification

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