Re: Biden Drops out on sure defeat.

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Sujet : Re: Biden Drops out on sure defeat.
De : jeffl (at) *nospam* cruzio.com (Jeff Liebermann)
Groupes : rec.bicycles.tech
Date : 23. Jul 2024, 03:18:41
Autres entêtes
Message-ID : <lgut9jt8i036v9pglp1mjhk1ii2o908fhv@4ax.com>
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On Mon, 22 Jul 2024 23:04:37 GMT, Tom Kunich <cyclintom@yahoo.com>
wrote:

Satellite photos are taken from about 20,000 km up.

Nope.  Last time, you were at 6 miles altitude (9.7km).  I guess
20,000 km is closer to the mark.  I assume that 20,000 km "up" means
20,000 km "and up" or minimum altitude.  The real minimum is more like
167.4 km (104 miles) and up:
<https://www.guinnessworldrecords.com/world-records/592663-lowest-altitude-earth-observation-satellite-in-orbit>
Your 20,000 km altitude is probably a bad guess or a number picked at
random. 
<https://kardashev.fandom.com/wiki/Clarke_Belt>
There's very little in orbit at 20,000 km.
"Humanity currently has about 500 operational satellites occupying
Earth’s "Clarke Belt". This is about one-third of the Earth’s existing
satellites, whereas the rest are at an altitude of 2000 km (1200 mi)
or less from the surface – the region known as Low Earth Orbit (LEO)."

Tell us the amount of ground covered by ONE degree from that altitude.

Yet again, you're asking me to demonstrate YOUR talking point.  It's a
simple calculation and you should be able to do it without my help. Do
your own calculations and show your work.  It would also be helpful if
you would specify a more realistic satellite altitude and any slant
angle involved.

THAT would require knowing simple algebra or you could pretend that
it is a trig problem.

There's no algebra involved.  It's 100% trigonometry which you should
have learned in the 10th or 11th grade.  If you want better accuracy
or a large viewing area, spherical geometry will be necessary.  For
the purposes of this discussion, a flat earth approximation is
sufficient.

Maybe you should do some reading about diffraction limited angular
resolution, which is what limits satellite optical resolution.  That's
why satellite imagery can't read license plates.
<https://en.wikipedia.org/wiki/Diffraction-limited_system>

Since EE's are supposed to be educated in partial equation calculus,
tell us what amount of ground that covers which will inform everyone
here what you know about anything and why pictures are taken at
midday and straight down.

There are no ordinary differential equations involved. Nothing is
changing as the photos are being taken.  There are no time or motion
dependent variables involved.  Similarly, there are no partial
differential equations because a partial differential equation is just
an ordinary differential equation with more than one variable.

The highest resolution that you can get is about 0.5 meters which
means that SEEING people is difficult at best.

0.5m is correct, however 0.3m is now commercially available:
<https://earthi.space/resources/guide-to-image-data/>
"Satellite data resolution is specified using Ground Sampling Distance
(GSD), measured in metres.  Satellite imagery of 0.3m GSD means that
each pixel covers 30cm x 30cm of the Earth."
0.3m is 11.8 inches.
<https://landscape.satsummit.io/capture/resolution-considerations.html>

--
Jeff Liebermann                 jeffl@cruzio.com
PO Box 272      http://www.LearnByDestroying.com
Ben Lomond CA 95005-0272
Skype: JeffLiebermann      AE6KS    831-336-2558

Date Sujet#  Auteur
22 Jul 24 * Re: Biden Drops out on sure defeat.10Jeff Liebermann
22 Jul 24 `* Re: Biden Drops out on sure defeat.9Zen Cycle
22 Jul 24  `* Re: Biden Drops out on sure defeat.8Jeff Liebermann
22 Jul 24   `* Re: Biden Drops out on sure defeat.7Zen Cycle
23 Jul 24    +* Re: Biden Drops out on sure defeat.3Jeff Liebermann
23 Jul 24    i+- Re: Biden Drops out on sure defeat.1Zen Cycle
23 Jul 24    i`- Re: Biden Drops out on sure defeat.1Jeff Liebermann
23 Jul 24    `* Re: Biden Drops out on sure defeat.3Frank Krygowski
24 Jul 24     `* Re: Biden Drops out on sure defeat.2Frank Krygowski
24 Jul 24      `- Re: Biden Drops out on sure defeat.1Jeff Liebermann

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