Fix issues in translatable strings in .md files:
- replace "⋅" not displayed on Windows (for some reason) by "·" - replace the double space at end of lines by the tag <br> A translatable string cannot ends by 2 spaces, because they are not really visible
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// Do not edit this file, it is autogenerated by CMake from the .md file
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_HKI( "### Bridged Tee Attenuator\n"
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"___a___ is attenuation in dB \n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω \n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω \n"
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"___Z<sub>0</sub> = Z<sub>in</sub> = Z<sub>out</sub>___ \n"
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"___a___ is attenuation in dB<br>\n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω<br>\n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω<br>\n"
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"___Z<sub>0</sub> = Z<sub>in</sub> = Z<sub>out</sub>___\n"
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"\n"
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"___L = 10<sup>a/20</up>___\n"
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"___R<sub>1</sub> = Z<sub>0</sub> ⋅ (L−1)___ \n"
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"___R<sub>1</sub> = Z<sub>0</sub> · (L−1)___<br>\n"
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"___R<sub>2</sub> = Z<sub>0</sub> / (L−1)___\n"
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"" );
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@ -1,9 +1,9 @@
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### Bridged Tee Attenuator
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___a___ is attenuation in dB
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___Z<sub>in</sub>___ is desired input impedance in Ω
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___Z<sub>out</sub>___ is desired output impedance in Ω
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___Z<sub>0</sub> = Z<sub>in</sub> = Z<sub>out</sub>___
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___a___ is attenuation in dB<br>
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___Z<sub>in</sub>___ is desired input impedance in Ω<br>
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___Z<sub>out</sub>___ is desired output impedance in Ω<br>
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___Z<sub>0</sub> = Z<sub>in</sub> = Z<sub>out</sub>___
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___L = 10<sup>a/20</up>___
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___R<sub>1</sub> = Z<sub>0</sub> ⋅ (L−1)___
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___R<sub>1</sub> = Z<sub>0</sub> · (L−1)___<br>
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___R<sub>2</sub> = Z<sub>0</sub> / (L−1)___
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@ -1,12 +1,12 @@
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// Do not edit this file, it is autogenerated by CMake from the .md file
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_HKI( "### Pi Attenuator\n"
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"___a___ is attenuation in dB \n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω \n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω \n"
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"___a___ is attenuation in dB<br>\n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω<br>\n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω<br>\n"
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"\n"
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"___L = 10<sup>a/20</sup>___ \n"
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"___A = (L+1) / (L−1)___ \n"
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"___R<sub>2</sub> = (L−1) / 2⋅√(Z<sub>in</sub> ⋅ Z<sub>out</sub> / L)___ \n"
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"___R<sub>1</sub> = 1 / (A/Z<sub>in</sub> − 1/R<sub>2</sub>)___ \n"
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"___L = 10<sup>a/20</sup>___<br>\n"
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"___A = (L+1) / (L−1)___<br><br>\n"
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"___R<sub>2</sub> = (L−1) / 2·√(Z<sub>in</sub> · Z<sub>out</sub> / L)___<br>\n"
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"___R<sub>1</sub> = 1 / (A/Z<sub>in</sub> − 1/R<sub>2</sub>)___<br>\n"
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"___R<sub>3</sub> = 1 / (A/Z<sub>out</sub> − 1/R<sub>2</sub>)___\n"
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"" );
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### Pi Attenuator
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___a___ is attenuation in dB
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___Z<sub>in</sub>___ is desired input impedance in Ω
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___Z<sub>out</sub>___ is desired output impedance in Ω
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___a___ is attenuation in dB<br>
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___Z<sub>in</sub>___ is desired input impedance in Ω<br>
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___Z<sub>out</sub>___ is desired output impedance in Ω<br>
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___L = 10<sup>a/20</sup>___
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___A = (L+1) / (L−1)___
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___R<sub>2</sub> = (L−1) / 2⋅√(Z<sub>in</sub> ⋅ Z<sub>out</sub> / L)___
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___R<sub>1</sub> = 1 / (A/Z<sub>in</sub> − 1/R<sub>2</sub>)___
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___L = 10<sup>a/20</sup>___<br>
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___A = (L+1) / (L−1)___<br><br>
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___R<sub>2</sub> = (L−1) / 2·√(Z<sub>in</sub> · Z<sub>out</sub> / L)___<br>
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___R<sub>1</sub> = 1 / (A/Z<sub>in</sub> − 1/R<sub>2</sub>)___<br>
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___R<sub>3</sub> = 1 / (A/Z<sub>out</sub> − 1/R<sub>2</sub>)___
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@ -1,12 +1,12 @@
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// Do not edit this file, it is autogenerated by CMake from the .md file
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_HKI( "### Tee Attenuator\n"
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"___a___ is attenuation in dB \n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω \n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω\n"
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"___a___ is attenuation in dB<br>\n"
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"___Z<sub>in</sub>___ is desired input impedance in Ω<br>\n"
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"___Z<sub>out</sub>___ is desired output impedance in Ω<br>\n"
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"\n"
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"___L = 10<sup>a/20</sup>___ \n"
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"___A = (L+1) / (L−1)___ \n"
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"___R<sub>2</sub> = 2⋅√(L ⋅ Z<sub>in</sub> ⋅ Z<sub>out</sub>) / (L−1)___ \n"
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"___R<sub>1</sub> = Z<sub>in</sub> ⋅ A − R<sub>2</sub>___ \n"
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"___R<sub>3</sub> = Z<sub>out</sub> ⋅ A − R<sub>2</sub>___\n"
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"___L = 10<sup>a/20</sup>___<br>\n"
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"___A = (L+1) / (L−1)___<br>\n"
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"___R<sub>2</sub> = 2·√(L · Z<sub>in</sub> · Z<sub>out</sub>) / (L−1)___<br>\n"
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"___R<sub>1</sub> = Z<sub>in</sub> · A − R<sub>2</sub>___<br>\n"
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"___R<sub>3</sub> = Z<sub>out</sub> · A − R<sub>2</sub>___\n"
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"" );
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@ -1,10 +1,10 @@
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### Tee Attenuator
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___a___ is attenuation in dB
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___Z<sub>in</sub>___ is desired input impedance in Ω
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___Z<sub>out</sub>___ is desired output impedance in Ω
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___a___ is attenuation in dB<br>
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___Z<sub>in</sub>___ is desired input impedance in Ω<br>
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___Z<sub>out</sub>___ is desired output impedance in Ω<br>
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___L = 10<sup>a/20</sup>___
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___A = (L+1) / (L−1)___
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___R<sub>2</sub> = 2⋅√(L ⋅ Z<sub>in</sub> ⋅ Z<sub>out</sub>) / (L−1)___
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___R<sub>1</sub> = Z<sub>in</sub> ⋅ A − R<sub>2</sub>___
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___R<sub>3</sub> = Z<sub>out</sub> ⋅ A − R<sub>2</sub>___
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___L = 10<sup>a/20</sup>___<br>
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___A = (L+1) / (L−1)___<br>
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___R<sub>2</sub> = 2·√(L · Z<sub>in</sub> · Z<sub>out</sub>) / (L−1)___<br>
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___R<sub>1</sub> = Z<sub>in</sub> · A − R<sub>2</sub>___<br>
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___R<sub>3</sub> = Z<sub>out</sub> · A − R<sub>2</sub>___
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