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authorJörg Frings-Fürst <debian@jff-webhosting.net>2016-10-02 19:25:17 +0200
committerJörg Frings-Fürst <debian@jff-webhosting.net>2016-10-02 19:25:17 +0200
commitc2ca7be5a751879159f3cb591a64bb9568b79762 (patch)
tree04e38d4f4a2aad4d789bda0a65b7abb80a3439a2 /doc/FWA.html
parent45c152c326d87478fbf41714b4b8e2f7b57a282b (diff)
parent3db384424bd7398ffbb7a355cab8f15f3add009f (diff)
Updated version 1.9.1+repack from 'upstream/1.9.1+repack'
with Debian dir 98a996367aa69ae41accf9c6d369f600bc94de80
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instruments provide an illuminant measurement capability over the
visible spectrum, for FWA compensation it is desirable to know the
Ultra Violet (UV) component of the illuminant. Few color instruments
- are capable of reading to such short wavelengths though. Argyll
- provides an indirect way of estimating the UV component of an
- illuminant using its <a href="illumread.html">illumread</a>
+ are capable of reading to such short wavelengths though (the <a
+ href="instruments.html#specbos">JETI specbos 1211</a> is an
+ exception). Argyll provides an indirect way of estimating the UV
+ component of an illuminant using its <a href="illumread.html">illumread</a>
utility. Using illumread in combination with FWA compensation is the
recommended approach to modelling real world appearance of paper
containing FWA.<br>