* feat(tools): add seed/solution restore script * chore(curriculum): remove empty sections' markers * chore(curriculum): add seed + solution to Chinese * chore: remove old formatter * fix: update getChallenges parse translated challenges separately, without reference to the source * chore(curriculum): add dashedName to English * chore(curriculum): add dashedName to Chinese * refactor: remove unused challenge property 'name' * fix: relax dashedName requirement * fix: stray tag Remove stray `pre` tag from challenge file. Signed-off-by: nhcarrigan <nhcarrigan@gmail.com> Co-authored-by: nhcarrigan <nhcarrigan@gmail.com>
		
			
				
	
	
		
			118 lines
		
	
	
		
			2.6 KiB
		
	
	
	
		
			Markdown
		
	
	
	
	
	
			
		
		
	
	
			118 lines
		
	
	
		
			2.6 KiB
		
	
	
	
		
			Markdown
		
	
	
	
	
	
| ---
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| id: 5a23c84252665b21eecc7e7b
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| title: Generator/Exponential
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| challengeType: 5
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| forumTopicId: 302275
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| dashedName: generatorexponential
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| ---
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| 
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| # --description--
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| 
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| A generator is an executable entity (like a function or procedure) that contains code that yields a sequence of values, one at a time, so that each time you call the generator, the next value in the sequence is provided.
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| 
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| Generators are often built on top of coroutines or objects so that the internal state of the object is handled "naturally".
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| 
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| Generators are often used in situations where a sequence is potentially infinite, and where it is possible to construct the next value of the sequence with only minimal state.
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| 
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| # --instructions--
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| 
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| Write a function that uses generators to generate squares and cubes. Create a new generator that filters all cubes from the generator of squares.
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| 
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| The function should return the \\( n^{th} \\) value of the filtered generator.
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| 
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| For example for \\(n=7\\), the function should return 81 as the sequence would be 4, 9, 16, 25, 36, 49, 81. Here 64 is filtered out, as it is a cube.
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| 
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| # --hints--
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| 
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| `exponentialGenerator` should be a function.
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| 
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| ```js
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| assert(typeof exponentialGenerator == 'function');
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| ```
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| 
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| `exponentialGenerator()` should return a number.
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| 
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| ```js
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| assert(typeof exponentialGenerator(10) == 'number');
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| ```
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| 
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| `exponentialGenerator(10)` should return `144`.
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| 
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| ```js
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| assert.equal(exponentialGenerator(10), 144);
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| ```
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| 
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| `exponentialGenerator(12)` should return `196`.
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| 
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| ```js
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| assert.equal(exponentialGenerator(12), 196);
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| ```
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| 
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| `exponentialGenerator(14)` should return `256`.
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| 
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| ```js
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| assert.equal(exponentialGenerator(14), 256);
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| ```
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| 
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| `exponentialGenerator(20)` should return `484`.
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| 
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| ```js
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| assert.equal(exponentialGenerator(20), 484);
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| ```
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| 
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| `exponentialGenerator(25)` should return `784`.
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| 
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| ```js
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| assert.equal(exponentialGenerator(25), 784);
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| ```
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| 
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| # --seed--
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| 
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| ## --seed-contents--
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| 
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| ```js
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| function exponentialGenerator(n) {
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| 
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| }
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| ```
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| 
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| # --solutions--
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| 
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| ```js
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| function exponentialGenerator(n){
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|   function* PowersGenerator(m) {
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|     var n=0;
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|     while(1) {
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|         yield Math.pow(n, m);
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|         n += 1;
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|     }
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|   }
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| 
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|   function* FilteredGenerator(g, f){
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|     var value = g.next().value;
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|     var filter = f.next().value;
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|     while(1) {
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|         if( value < filter ) {
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|             yield value;
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|             value = g.next().value;
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|         } else if ( value > filter ) {
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|             filter = f.next().value;
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|         } else {
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|             value = g.next().value;
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|             filter = f.next().value;
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|         }
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|     }
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|   }
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| 
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|   var squares = PowersGenerator(2);
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|   var cubes = PowersGenerator(3);
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| 
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|   var filtered = FilteredGenerator(squares, cubes);
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| 
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|   var curr=0;
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|   for(var i=0;i<n;i++) curr=filtered.next();
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| 
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|   return curr.value;
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| }
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| ```
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