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			3.3 KiB
		
	
	
	
		
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			96 lines
		
	
	
		
			3.3 KiB
		
	
	
	
		
			Markdown
		
	
	
	
	
	
| ---
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| id: 5a23c84252665b21eecc8028
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| title: Stern-Brocot sequence
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| challengeType: 5
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| forumTopicId: 302324
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| ---
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| 
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| ## Description
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| <section id='description'>
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| For this task, the Stern-Brocot sequence is to be generated by an algorithm similar to that employed in generating the <a href="https://rosettacode.org/wiki/Fibonacci sequence" target="_blank">Fibonacci sequence</a>.
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| <ol>
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|   <li>The first and second members of the sequence are both 1:</li>
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|     <ul><li>1, 1</li></ul>
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|   <li>Start by considering the second member of the sequence</li>
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|   <li>Sum the considered member of the sequence and its precedent, (1 + 1) = 2, and append it to the end of the
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|     sequence:</li>
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|     <ul><li>1, 1, 2</li></ul>
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|   <li>Append the considered member of the sequence to the end of the sequence:</li>
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|     <ul><li>1, 1, 2, 1</li></ul>
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|   <li>Consider the next member of the series, (the third member i.e. 2)</li>
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|   <li>GOTO 3 </li>
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|     <ul>
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|       <li></li>
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|       <li> ─── Expanding another loop we get: ───</li>
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|       <li></li>
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|     </ul>
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|   <li>Sum the considered member of the sequence and its precedent, (2 + 1) = 3, and append it to the end of the
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|     sequence:</li>
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|     <ul><li>1, 1, 2, 1, 3</li></ul>
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|   <li>Append the considered member of the sequence to the end of the sequence:</li>
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|     <ul><li>1, 1, 2, 1, 3, 2</li></ul>
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|   <li>Consider the next member of the series, (the fourth member i.e. 1)</li>
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| </ol>
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| </section>
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| 
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| ## Instructions
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| <section id='instructions'>
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| Create a function that returns the $ n^{th} $ member of the sequence using the method outlined above.
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| </section>
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| 
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| ## Tests
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| <section id='tests'>
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| 
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| ``` yml
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| tests:
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|   - text: <code>sternBrocot</code> should be a function.
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|     testString: assert(typeof sternBrocot == 'function', '<code>sternBrocot</code> should be a function.');
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|   - text: <code>sternBrocot(2)</code> should return a number.
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|     testString: assert(typeof sternBrocot(2) == 'number', '<code>sternBrocot(2)</code> should return a number.');
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|   - text: <code>sternBrocot(2)</code> should return <code>3</code>.
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|     testString: assert.equal(sternBrocot(2), 3, '<code>sternBrocot(2)</code> should return <code>3</code>.');
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|   - text: <code>sternBrocot(3)</code> should return <code>5</code>.
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|     testString: assert.equal(sternBrocot(3), 5, '<code>sternBrocot(3)</code> should return <code>5</code>.');
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|   - text: <code>sternBrocot(5)</code> should return <code>11</code>.
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|     testString: assert.equal(sternBrocot(5), 11, '<code>sternBrocot(5)</code> should return <code>11</code>.');
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|   - text: <code>sternBrocot(7)</code> should return <code>19</code>.
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|     testString: assert.equal(sternBrocot(7), 19, '<code>sternBrocot(7)</code> should return <code>19</code>.');
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|   - text: <code>sternBrocot(10)</code> should return <code>39</code>.
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|     testString: assert.equal(sternBrocot(10), 39, '<code>sternBrocot(10)</code> should return <code>39</code>.');
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| ```
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| 
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| </section>
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| 
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| ## Challenge Seed
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| <section id='challengeSeed'>
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| <div id='js-seed'>
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| 
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| ```js
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| function sternBrocot(num) {
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|   // Good luck!
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| }
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| ```
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| 
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| </div>
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| </section>
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| 
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| ## Solution
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| <section id='solution'>
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| 
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| ```js
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| function sternBrocot(num) {
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|   function f(n) {
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|     return n < 2 ? n : (n & 1) ? f(Math.floor(n / 2)) + f(Math.floor(n / 2 + 1)) : f(Math.floor(n / 2));
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|   }
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| 
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|   function gcd(a, b) {
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|     return a ? a < b ? gcd(b % a, a) : gcd(a % b, b) : b;
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|   }
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|   var n;
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|   for (n = 1; f(n) != num; n++);
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|   return n;
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| }
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| ```
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| 
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| </section>
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