61 lines
		
	
	
		
			2.1 KiB
		
	
	
	
		
			HTML
		
	
	
	
	
	
			
		
		
	
	
			61 lines
		
	
	
		
			2.1 KiB
		
	
	
	
		
			HTML
		
	
	
	
	
	
<!DOCTYPE html>
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<html lang="en">
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    <head>
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        <title>thematdev</title>
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        <meta charset="UTF-8">
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        <link rel="stylesheet" href="/static/css/fonts.css">
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        <link rel="stylesheet" href="/static/css/teststyle.css">
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        <script>
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            MathJax = {
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              tex: {
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                inlineMath: [['$', '$'], ['\\(', '\\)']]
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              },
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              svg: {
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                fontCache: 'global'
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              }
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            };
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            </script>
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        <script rel=preload type="text/javascript" id="MathJax-script" async
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          src="https://cdn.jsdelivr.net/npm/mathjax@3/es5/tex-svg.js">
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        </script>
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    </head>
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    <body>
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        <!--
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        <div class="headline">
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            About me
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        </div>
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        -->
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        <div class="intro">
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            <h1> About me </h1>
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            <div class="monotext">
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                <p>19 y.o maths student from Moscow, studying at Independent University of Moscow and Moscow Institute of Physics and
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                Technology.</p>
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                <p>Interested in number theory and arithmetic geometry.</p>
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                <p> Minimalist and privacy enthusiast. </p>
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                <p> Last update: 14.10.2025 </p>
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            </div>
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            <!--
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            <div class="monotext">
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                <div class="mathformula">
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                    $\displaystyle \frac{1}{\pi} = \frac{2 \sqrt{2}}{9801} \sum^{\infty}_{k=0}{\frac{(4k)! (1103 + 26390k)}{(k!)^4 396^{4k}}}$
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                </div>
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                <div class="mathformula">
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                    $\displaystyle \sum_{n \leqslant x} \Omega(n) = x\log \log x + B_2x + o(x)$
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                </div>
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                <div class="mathformula">
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                    $\displaystyle \sum_{n \leqslant x} \omega(n) = x\log \log x + B_1 x + o(x)$
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                </div>
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                <div class="mathformula">
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                    $\displaystyle \sum_{p \leq x} \frac 1p = \log \log x + M + o(1)$.
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                </div>
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            </div>
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            <button type="button" class="btn-tex">
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                $\displaystyle \TeX$
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            </button>
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            -->
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        </div>
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    </body>
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</html>
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