There is less dust in space than earth.
An earth-based telescope has to contend with atmospheric turbulence, which can distort and blur images. This is not a concern for a space-based telescope, which operates above Earth's atmosphere and can provide clearer images.
Atmospheric and environmental interference.
A space telescope can produce clearer images than a terrestrial telescope primarily because it operates above Earth's atmosphere, which distorts and absorbs light due to turbulence, humidity, and air pollution. In space, there is no atmospheric interference, allowing for sharper images and a wider range of wavelengths to be observed, including ultraviolet and infrared. Additionally, space telescopes avoid light pollution from urban areas, further enhancing image clarity and detail.
Adaptive optics technology can enable ground-based telescopes to achieve images as sharp as those from the Hubble Space Telescope. This technology involves using mirrors that can change shape to compensate for the distortions caused by Earth's atmosphere, allowing for clearer and more detailed images.
Yes, the Hubble Space Telescope was built to observe objects in space without the distortion caused by Earth's atmosphere. By being located above Earth's atmosphere, the Hubble Telescope can capture clearer and more detailed images of celestial objects.
An earth-based telescope has to contend with atmospheric turbulence, which can distort and blur images. This is not a concern for a space-based telescope, which operates above Earth's atmosphere and can provide clearer images.
The Hubble Space Telescope produces clearer images than ground-based telescopes of the same size primarily because it operates outside of Earth's atmosphere. The atmosphere can distort light from celestial objects due to turbulence and varying densities, which causes blurring and reduces image clarity. Additionally, Hubble can capture a broader range of wavelengths, including ultraviolet light, which is absorbed by the atmosphere. This combination allows Hubble to achieve higher resolution and clearer images.
The Hubble Space Telescope can provide clearer images than telescopes on Earth due to two main reasons: it is above Earth's atmosphere, which can distort and block light reaching ground-based telescopes, and its position in space allows it to capture light without the interference of atmospheric effects like light pollution and turbulence. These factors contribute to Hubble's ability to produce high-resolution images of celestial objects with great clarity.
Outside the atmosphere the telescope has no interference, precisely by the atmosphere. The telescope can get a clearer picture, and see certain wavelengengths that don't reach Earth.Outside the atmosphere the telescope has no interference, precisely by the atmosphere. The telescope can get a clearer picture, and see certain wavelengengths that don't reach Earth.Outside the atmosphere the telescope has no interference, precisely by the atmosphere. The telescope can get a clearer picture, and see certain wavelengengths that don't reach Earth.Outside the atmosphere the telescope has no interference, precisely by the atmosphere. The telescope can get a clearer picture, and see certain wavelengengths that don't reach Earth.
Atmospheric and environmental interference.
You are probably referring to the Hubble space telescope. The basic idea is that a telescope in space has a clearer view, because it doesn't have atmospheric interference. Thus, the hubble telescope, while only being 2.4 meter in diameter, can get clearer pictures than a 5-meter telescope on Earth, for example. Also, it can capture some wavelengths that don't get to the Earth's surface, because they are almost completely absorbed by the atmosphere.
A space telescope can produce clearer images than a terrestrial telescope primarily because it operates above Earth's atmosphere, which distorts and absorbs light due to turbulence, humidity, and air pollution. In space, there is no atmospheric interference, allowing for sharper images and a wider range of wavelengths to be observed, including ultraviolet and infrared. Additionally, space telescopes avoid light pollution from urban areas, further enhancing image clarity and detail.
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Astronomers wanted to put a telescope into space to avoid the distortion caused by Earth's atmosphere, which can affect the quality of images taken by ground-based telescopes. By placing a telescope in space, astronomers can achieve sharper and clearer images of celestial objects.
not affected by earth's atmosphere
Adaptive optics technology can enable ground-based telescopes to achieve images as sharp as those from the Hubble Space Telescope. This technology involves using mirrors that can change shape to compensate for the distortions caused by Earth's atmosphere, allowing for clearer and more detailed images.
Infrared astronomy can also be done from the ground, though it is limited by interference from Earth's atmosphere. Space-based infrared telescopes, such as the Spitzer Space Telescope and the James Webb Space Telescope, provide clearer images by avoiding atmospheric distortion.