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The exposure is adjusted for Saturn which is much brighter than the stars.
by hackerbabz 7y ago
The exposure is adjusted for Saturn which is much brighter than the stars.
- macintux 7y agoSame thing that people ask about the Moon landing photos. Where are the stars?
- exhilaration 7y agoThank you, that makes perfect sense. I would still love to see what it looks like with the naked eye.
- jonbronson 7y agoThat said, it would be amazing to see HDR images of these stellar bodies.
- ksaj 7y agoHere's a picture of some of the light even HDR wouldn't likely uncover: https://www.esa.int/spaceinimages/Images/2007/07/The_constellation_Orion_and_the_winter_Milky_Way https://www.esa.int/spaceinimages/Images/2007/07/The_constel... EDIT: A larger version of the image, with an equally huge url: https://m.esa.int/var/esa/storage/images/esa_multimedia/images/2007/07/the_constellation_orion_and_the_winter_milky_way/9242622-5-eng-GB/The_constellation_Orion_and_the_winter_Milky_Way_article_mob.jpg https://m.esa.int/var/esa/storage/images/esa_multimedia/imag...
- the8472 7y agoHDR and wide-spectrum are extensions along different measurement axes.
- tabtab 7y agoSimilarly, fake-moon-landing conspiracists don't seem to understand the large magnitude of differences between heavily objects. Sunlight is typically so much brighter than stars such that the exposures best used in sunlight will wash out stars (make their images be swamped by sensor noise). This happens even as far out as Saturn, which gets much less sun than our moon. Thus the "no stars in photos" argument about Apollo holds no water. Even in a backyard telescope, if you look at Saturn, its brightness will wash out all but the very brightest of nearby stars because your eye adjusts for Saturn's brightness, not star brightness. (One nearby "star" you may see is actually the moon Titan.) The New Horizons probe did pick up star images in Ultima-Thule images, if you look at the raw exposures, but Ultima-Thule is really far away from the sun, beyond Pluto. And it's a dark body, requiring sensitive camera settings. Note that some raw exposures from some probes will show streaks that may be mistaken for stars, but are actually cosmic rays. They are usually digitally removed from final versions. The boundary where planetary exposures will start to clearly show stars is roughly around Neptune's or Pluto's orbit. But processing may have to remove them because time-lapse and/or multiple exposures may be needed to properly capture dim planets and rocky bodies that far out. Any stars caught would otherwise look smeared or smugdy.