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doc update
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@ -71,6 +71,8 @@
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- using <a href="https://dejavu-fonts.github.io/">"DejaVu Sans"</a> <c>JKQTMathText::setFontRomanAndMath("DejaVu Sans")</c>: \image html jkqtmathtext/jkqtmathtext_DejaVuSans.png
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- using <a href="https://dejavu-fonts.github.io/">"DejaVu Serif"</a> <c>JKQTMathText::setFontRomanAndMath("DejaVu Serif")</c>: \image html jkqtmathtext/jkqtmathtext_DejaVuSerif.png
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- using "XITS" <c>JKQTMathText::useXITS(false)</c>: \image html jkqtmathtext/jkqtmathtext_xits_all.png
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- using "Noto Sans" <c>JKQTMathText::setFontRomanAndMath("Noto Sans", "Noto Sans Math")</c>: \image html jkqtmathtext/jkqtmathtext_notosans.png
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- using "Noto Serif" <c>JKQTMathText::setFontRomanAndMath("Noto Serif", "Noto Serif")</c>: \image html jkqtmathtext/jkqtmathtext_notoserif.png
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.
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Math-mode is activated by enclosing your equation in \c $...$ or \c \\[...\\] .
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doc/images/jkqtmathtext/jkqtmathtext_notosans.png
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doc/images/jkqtmathtext/jkqtmathtext_notosans.png
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doc/images/jkqtmathtext/jkqtmathtext_notoserif.png
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doc/images/jkqtmathtext/jkqtmathtext_notoserif.png
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@ -47,6 +47,14 @@ jkqtmathtext_computermodern.png
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--fontmathroman=CMU Serif --fontroman=SMU Serif --sizeincrease=10
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Schrödinger's equation: $\left[-\frac{\hbar^2}{2m}\frac{\partial^2}{\partial x^2}+V\right]\Psi(x)=\mathrm{i}\hbar\frac{\partial}{\partial t}\Psi(x),\ \ x\in\mathbb{R}, \Psi(x)\in\mathbb{C}$
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---
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jkqtmathtext_notosans.png
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--fontmathroman=Noto Sans Math --fontroman=Noto Sans --sizeincrease=10
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Schrödinger's equation: $\left[-\frac{\hbar^2}{2m}\frac{\partial^2}{\partial x^2}+V\right]\Psi(x)=\mathrm{i}\hbar\frac{\partial}{\partial t}\Psi(x),\ \ x\in\mathbb{R}, \Psi(x)\in\mathbb{C}$
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---
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jkqtmathtext_notoserif.png
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--fontmathroman=Noto Serif --fontroman=Noto Serif --sizeincrease=10
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Schrödinger's equation: $\left[-\frac{\hbar^2}{2m}\frac{\partial^2}{\partial x^2}+V\right]\Psi(x)=\mathrm{i}\hbar\frac{\partial}{\partial t}\Psi(x),\ \ x\in\mathbb{R}, \Psi(x)\in\mathbb{C}$
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---
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jkqtmathtext_asana.png
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--fontmathroman=Asana Math --sizeincrease=10
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Schrödinger's equation: $\left[-\frac{\hbar^2}{2m}\frac{\partial^2}{\partial x^2}+V\right]\Psi(x)=\mathrm{i}\hbar\frac{\partial}{\partial t}\Psi(x),\ \ x\in\mathbb{R}, \Psi(x)\in\mathbb{C}$
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@ -317,7 +317,6 @@ bool JKQTMathText::useSTIX(bool mathModeOnly, bool useAsFallbackSymbol) {
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bool JKQTMathText::useXITS(bool mathModeOnly, bool useAsFallbackSymbol)
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{
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const JKQTMathTextFontSpecifier xits=JKQTMathTextFontSpecifier::getXITSFamilies();
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bool res=false;
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