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#12 | |
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Bamboozled!
"πΊππ·π·π"
May 2003
Down not across
101010000000002 Posts |
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#13 | |
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Sep 2006
The Netherlands
36 Posts |
Quote:
Ritchey-Chretien uses for the primary mirror a hyperbolic primary mirror. A hyperbolic mirror is very difficult to test during grinding. A parabolic mirror is far easier to test during grinding. If you take the parameters such of the hyperbolic primary mirror of R-C then there is no difference in practice with a parabolic mirror, if we take grinding accuracies into account. good example is hubble telescope. The primary mirror on paper should have been a parabolic mirror, which just in theory is a hyperbolic mirror. Yet maximum deviation for hubbles primary mirror, so on paper in theory (not what actually was delivered) versus a parabolic mirror is less than 0.1 nm when i did do the math for it using the public published numbers. That's because primary mirror is what is it something like 2.40 meters diameter and it has a focus 4+ meters away. So with a very simple test the primary could have been grind back then. If you grind a primary mirror of just 40 CM or so, then there is a huge difference between a parabolic and hyperbolic primary mirror and it'll be way more complicated to setup testing for the primary mirror for testing during grinding. If you take a mirror 1 meter diameter with a very long tube, then you again get back in the easier to grind area (apart from the more massive job for the primary) :) Of course i ignore the secondary here - that's yet another story. Last fiddled with by diep on 2018-04-16 at 20:19 |
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