<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>콜라츠 추측 on kenji.blog</title><link>http://kenji.blog/ko/tags/%EC%BD%9C%EB%9D%BC%EC%B8%A0-%EC%B6%94%EC%B8%A1/</link><description>Recent content in 콜라츠 추측 on kenji.blog</description><generator>Hugo -- gohugo.io</generator><language>ko</language><copyright>kenjinote</copyright><lastBuildDate>Tue, 15 Jul 2025 18:03:03 +0900</lastBuildDate><atom:link href="http://kenji.blog/ko/tags/%EC%BD%9C%EB%9D%BC%EC%B8%A0-%EC%B6%94%EC%B8%A1/index.xml" rel="self" type="application/rss+xml"/><item><title>'콜라츠 추측'</title><link>http://kenji.blog/ko/p/%E3%82%B3%E3%83%A9%E3%83%83%E3%83%84%E4%BA%88%E6%83%B3/</link><pubDate>Tue, 15 Jul 2025 18:03:03 +0900</pubDate><guid>http://kenji.blog/ko/p/%E3%82%B3%E3%83%A9%E3%83%83%E3%83%84%E4%BA%88%E6%83%B3/</guid><description>&lt;img src="http://kenji.blog/p/%E3%82%B3%E3%83%A9%E3%83%83%E3%83%84%E4%BA%88%E6%83%B3/img.png" alt="Featured image of post '콜라츠 추측'" />&lt;h1 id="어떤-숫자든-마지막엔-1이-된다는-게-진짜야--콜라츠-추측을-즐겨보자">&amp;ldquo;어떤 숫자든 마지막엔 1이 된다&amp;quot;는 게 진짜야? ── 콜라츠 추측을 즐겨보자
&lt;/h1>&lt;p>안녕하세요! kenji입니다.&lt;/p>
&lt;p>갑작스럽지만, &amp;ldquo;어떤 숫자든 최종적으로 1이 되는 규칙&amp;quot;이라고 들으면,
조금 신기하지 않나요?&lt;/p>
&lt;blockquote>
&lt;p>예를 들어, 19나, 87이나, 1000000이라도.
적당한 규칙에 따라 숫자를 다루다 보면, 왠지 마지막은 &amp;ldquo;1&amp;quot;로 수렴합니다.&lt;/p>
&lt;/blockquote>
&lt;p>그런 꿈 같은 이야기가, &lt;strong>콜라츠 추측(Collatz Conjecture)&lt;/strong> 입니다.&lt;/p>
&lt;hr>
&lt;h2 id="애초에-콜라츠-추측이란-게-뭐야">애초에, 콜라츠 추측이란 게 뭐야?
&lt;/h2>&lt;p>먼저 규칙을 소개할게요.&lt;/p>
&lt;ul>
&lt;li>
&lt;p>시작: 임의의 &lt;strong>양의 정수&lt;/strong> 를 선택합니다.&lt;/p>
&lt;/li>
&lt;li>
&lt;p>조작:&lt;/p>
&lt;ul>
&lt;li>짝수라면 → 반으로 나눈다 (n → n / 2)&lt;/li>
&lt;li>홀수라면 → 3을 곱하고 1을 더한다 (n → 3n + 1)&lt;/li>
&lt;/ul>
&lt;/li>
&lt;/ul>
&lt;p>이것을 계～속 반복하면, &lt;strong>어떤 숫자도 최종적으로는 1에 도달한다&lt;/strong> 는 추측인 거죠.&lt;/p>
&lt;p>예를 들어, &lt;code>6&lt;/code>부터 시작하면:&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt">1
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">6 → 3 → 10 → 5 → 16 → 8 → 4 → 2 → 1
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>제대로 &amp;ldquo;1&amp;quot;이 되었습니다. 어서 오세요!&lt;/p>
&lt;hr>
&lt;h2 id="코드로-해보자-python으로-콜라츠">코드로 해보자: Python으로 콜라츠
&lt;/h2>&lt;p>자, 이럴 때는 코드로 시험해보는 게 빠릅니다!
Python으로 &amp;ldquo;콜라츠 수열&amp;quot;을 출력해봅시다.&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt"> 1
&lt;/span>&lt;span class="lnt"> 2
&lt;/span>&lt;span class="lnt"> 3
&lt;/span>&lt;span class="lnt"> 4
&lt;/span>&lt;span class="lnt"> 5
&lt;/span>&lt;span class="lnt"> 6
&lt;/span>&lt;span class="lnt"> 7
&lt;/span>&lt;span class="lnt"> 8
&lt;/span>&lt;span class="lnt"> 9
&lt;/span>&lt;span class="lnt">10
&lt;/span>&lt;span class="lnt">11
&lt;/span>&lt;span class="lnt">12
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-python" data-lang="python">&lt;span class="line">&lt;span class="cl">&lt;span class="k">def&lt;/span> &lt;span class="nf">collatz&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">):&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">steps&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="p">[&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">]&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">while&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">!=&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">:&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">%&lt;/span> &lt;span class="mi">2&lt;/span> &lt;span class="o">==&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">:&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">n&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">//&lt;/span> &lt;span class="mi">2&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">else&lt;/span>&lt;span class="p">:&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">n&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="mi">3&lt;/span> &lt;span class="o">*&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">steps&lt;/span>&lt;span class="o">.&lt;/span>&lt;span class="n">append&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">return&lt;/span> &lt;span class="n">steps&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">&lt;span class="c1"># 예: 19부터 시작해보기&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">&lt;span class="nb">print&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">collatz&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="mi">19&lt;/span>&lt;span class="p">))&lt;/span>
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>실행하면:&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt">1
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">[19, 58, 29, 88, 44, 22, 11, 34, 17, 52, 26, 13, 40, 20, 10, 5, 16, 8, 4, 2, 1]
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>멋지게 1에 도달합니다.
꽤 우회하는데도, 마지막은 확실하게 골인!&lt;/p>
&lt;p>참고로 29부터 시작해도, 마찬가지로 1에 도달합니다.&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt">1
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">pythonprint(collatz(29))
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>실행하면&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt">1
&lt;/span>&lt;span class="lnt">2
&lt;/span>&lt;span class="lnt">3
&lt;/span>&lt;span class="lnt">4
&lt;/span>&lt;span class="lnt">5
&lt;/span>&lt;span class="lnt">6
&lt;/span>&lt;span class="lnt">7
&lt;/span>&lt;span class="lnt">8
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">[27, 82, 41, 124, 62, 31, 94, 47, 142, 71, 214, 107, 322, 161, 484, 242,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">121, 364, 182, 91, 274, 137, 412, 206, 103, 310, 155, 466, 233, 700, 350,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">175, 526, 263, 790, 395, 1186, 593, 1780, 890, 445, 1336, 668, 334, 167,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">502, 251, 754, 377, 1132, 566, 283, 850, 425, 1276, 638, 319, 958, 479,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">1438, 719, 2158, 1079, 3238, 1619, 4858, 2429, 7288, 3644, 1822, 911,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">2734, 1367, 4102, 2051, 6154, 3077, 9232, 4616, 2308, 1154, 577, 1732,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">866, 433, 1300, 650, 325, 976, 488, 244, 122, 61, 184, 92, 46, 23, 70, 35,
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">106, 53, 160, 80, 40, 20, 10, 5, 16, 8, 4, 2, 1]
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>무려, 111스텝이나 걸립니다!&lt;/p>
&lt;p>게다가, 중간에 9000 이상까지 부풀어 오르는 장면도.
엄청나게 우회하고 나서 골인하는 패턴이네요.&lt;/p>
&lt;hr>
&lt;h2 id="그래서-결국-뭐가-대단한-거야">그래서, 결국 뭐가 대단한 거야?
&lt;/h2>&lt;p>이 추측의 무엇이 대단하냐면,&lt;/p>
&lt;blockquote>
&lt;p>&lt;strong>증명되지 않았는데, 어떤 수로 해도 1이 되는 것 같다&lt;/strong>&lt;/p>
&lt;/blockquote>
&lt;p>라는 점입니다.&lt;/p>
&lt;p>어? 그럼, 1조나, 1경(경)은&amp;hellip;?&lt;/p>
&lt;p>라고 생각하신 분, 예리합니다.
실제로 컴퓨터를 사용해서 &amp;ldquo;2의 68승&amp;rdquo; 정도까지는 확인되었고,
&lt;strong>모두 1에 도달&lt;/strong> 하고 있습니다. 믿을 수 없어&amp;hellip;&lt;/p>
&lt;p>하지만, &lt;strong>&amp;ldquo;전부 그렇게 된다&amp;quot;고 이론적으로 증명된 것은 아닙니다&lt;/strong>.
이것이 수학 세계에서 말하는 &amp;ldquo;미해결 문제&amp;rdquo;.&lt;/p>
&lt;hr>
&lt;h2 id="콜라츠-씨가-누구야">콜라츠 씨가 누구야?
&lt;/h2>&lt;p>자, 여기까지 읽고 &amp;ldquo;애초에 콜라츠가 누구야?&amp;ldquo;라고 생각하시죠.
제대로 소개할게요!&lt;/p>
&lt;ul>
&lt;li>이름: &lt;strong>로타르 콜라츠 (Lothar Collatz)&lt;/strong>&lt;/li>
&lt;li>국적: 독일&lt;/li>
&lt;li>생년: 1910년 ～ 1990년&lt;/li>
&lt;li>직함: 수학자 (함수 해석이나 정수론 분야에서 활약)&lt;/li>
&lt;/ul>
&lt;p>1937년에 이 추측을 제안했고,
그 후, 80년 이상에 걸쳐 &lt;strong>아무도 증명도 반증도 하지 못하고 있습니다&lt;/strong>.&lt;/p>
&lt;p>참고로, 이 문제는 너무 심플한데 심오해서,
그 폴 에어디시(초유명 수학자)조차 이렇게 말했다고 하죠.&lt;/p>
&lt;blockquote>
&lt;p>&amp;ldquo;수학은 아직 콜라츠를 다루기에 미숙하다&amp;rdquo;&lt;/p>
&lt;/blockquote>
&lt;p>즉, 인류의 수학이 이 수수께끼를 아직 따라잡지 못했다는 설&amp;hellip;&lt;/p>
&lt;hr>
&lt;h2 id="어려운-수식은-필요-없다">&amp;ldquo;어려운 수식&amp;quot;은 필요 없다
&lt;/h2>&lt;p>콜라츠 추측의 좋은 점은, &lt;strong>누구나 즐길 수 있다&lt;/strong> 는 것입니다.&lt;/p>
&lt;p>종이와 펜이 있으면 할 수 있습니다.
Python으로 코드를 작성하면, 자동으로 시험할 수 있습니다.
그러면서도, &lt;strong>최첨단의 수학자들이 진심으로 도전하고 있다&lt;/strong>.&lt;/p>
&lt;p>왠지, 두근두근하지 않나요?&lt;/p>
&lt;hr>
&lt;h2 id="덤-한-번에-시험하는-코드">덤: 한 번에 시험하는 코드
&lt;/h2>&lt;p>여러 숫자를 모아서 시험하는 코드도 실어둘게요.&lt;/p>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt">1
&lt;/span>&lt;span class="lnt">2
&lt;/span>&lt;span class="lnt">3
&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-python" data-lang="python">&lt;span class="line">&lt;span class="cl">&lt;span class="k">for&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="ow">in&lt;/span> &lt;span class="nb">range&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="mi">1&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="mi">21&lt;/span>&lt;span class="p">):&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">steps&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="n">collatz&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="nb">print&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="sa">f&lt;/span>&lt;span class="s2">&amp;#34;&lt;/span>&lt;span class="si">{&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="si">}&lt;/span>&lt;span class="s2">: &lt;/span>&lt;span class="si">{&lt;/span>&lt;span class="n">steps&lt;/span>&lt;span class="si">}&lt;/span>&lt;span class="s2">(스텝 수: &lt;/span>&lt;span class="si">{&lt;/span>&lt;span class="nb">len&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">steps&lt;/span>&lt;span class="p">)&lt;/span>&lt;span class="o">-&lt;/span>&lt;span class="mi">1&lt;/span>&lt;span class="si">}&lt;/span>&lt;span class="s2">)&amp;#34;&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>이것은 &amp;ldquo;1～20&amp;quot;의 콜라츠 수열을 한 번에 출력해 줍니다.&lt;/p>
&lt;hr>
&lt;h2 id="결론-이-세계-역시-신기하다">결론: 이 세계, 역시 신기하다
&lt;/h2>&lt;p>이런 이유로, 콜라츠 추측.&lt;/p>
&lt;ul>
&lt;li>엄청 심플한데&lt;/li>
&lt;li>아무도 증명하지 못해서&lt;/li>
&lt;li>수학계에서는 큰 문제&lt;/li>
&lt;/ul>
&lt;p>라는, 불가사의 덩어리 같은 존재였습니다.&lt;/p>
&lt;p>프로그래밍 초보자라도 시도해볼 수 있으니, 꼭 즐겨보세요～!&lt;/p>
&lt;hr>
&lt;h2 id="추천-링크-관심-있는-분용">추천 링크 (관심 있는 분용)
&lt;/h2>&lt;ul>
&lt;li>&lt;a class="link" href="https://ko.wikipedia.org/wiki/%ec%bd%9c%eb%9d%bc%ec%b8%a0_%ec%b6%94%ec%b8%a1" target="_blank" rel="noopener"
>Wikipedia: 콜라츠 추측&lt;/a>&lt;/li>
&lt;li>&lt;a class="link" href="https://arxiv.org/abs/1909.03562" target="_blank" rel="noopener"
>Terence Tao 논문 (영문)&lt;/a>&lt;/li>
&lt;li>Python의 시각화 버전을 만들어 보는 것도 재밌어요! (요청이 있으면 만들겠습니다)&lt;/li>
&lt;/ul>
&lt;hr>
&lt;p>더 이런 &amp;ldquo;신기한 수학 × 프로그래밍&amp;rdquo; 소재를 알고 싶은 분은,
편하게 &amp;ldquo;더 알려줘&amp;quot;라고 요청해 보세요.
조만간, 리만 가설이나 소수 이야기 등, 여러 가지 소개할게요!&lt;/p>
&lt;hr>
&lt;p>📮끝!&lt;/p>
&lt;hr></description></item></channel></rss>