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Many updates to User Guide.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@7182 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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@@ -7,23 +7,25 @@ frequencies to 1718 Hz.
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.Wide Graph Settings:
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- Set *Bins/Pixel* = 7
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- *Bins/Pixel* = 7
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- *JT65 .... JT9* = 2500
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- Adjust the width of the Wide Graph window so that the upper
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frequency limit is approximately 4000 Hz.
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.Open a Wave File:
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- Select *File | Open* and navigate to +...\save\samples\130610_2343.wav+.
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The waterfall should look like this:
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The waterfall should look something like this:
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//.130610_2343.wav Decode
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[[X14]]
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image::130610_2343-wav-80.png[align="left",alt="Wide Graph Decode 130610_2343"]
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IMPORTANT: Notice the [blue]*BLUE* marker on the waterfall scale, here
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set at 2500 Hz. Its position is set by the spinner control *JT65 nnnn
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JT9*, where nnnn is a frequency in Hz. In *JT9+JT65* mode the program
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will automatically decode JT9 signals only above this frequency.
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IMPORTANT: The position pf the blue marker on the waterfall scale is
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set by the spinner control *JT65 nnnn JT9*, where nnnn is an audio
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frequency in Hz. In *JT9+JT65* mode the program will automatically
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decode JT9 signals only above this frequency. JT65 signals will be
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decoded over the full displayed frequency range.
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JT9 signals appear in the *Cumulative* spectrum as nearly rectangular
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shapes about 16 Hz wide. They have no clearly visible sync tone like
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