{ "data": { "question": { "questionId": "1401", "questionFrontendId": "1276", "categoryTitle": "Algorithms", "boundTopicId": 47724, "title": "Number of Burgers with No Waste of Ingredients", "titleSlug": "number-of-burgers-with-no-waste-of-ingredients", "content": "

Given two integers tomatoSlices and cheeseSlices. The ingredients of different burgers are as follows:

\n\n\n\n

Return [total_jumbo, total_small] so that the number of remaining tomatoSlices equal to 0 and the number of remaining cheeseSlices equal to 0. If it is not possible to make the remaining tomatoSlices and cheeseSlices equal to 0 return [].

\n\n

 

\n

Example 1:

\n\n
\nInput: tomatoSlices = 16, cheeseSlices = 7\nOutput: [1,6]\nExplantion: To make one jumbo burger and 6 small burgers we need 4*1 + 2*6 = 16 tomato and 1 + 6 = 7 cheese.\nThere will be no remaining ingredients.\n
\n\n

Example 2:

\n\n
\nInput: tomatoSlices = 17, cheeseSlices = 4\nOutput: []\nExplantion: There will be no way to use all ingredients to make small and jumbo burgers.\n
\n\n

Example 3:

\n\n
\nInput: tomatoSlices = 4, cheeseSlices = 17\nOutput: []\nExplantion: Making 1 jumbo burger there will be 16 cheese remaining and making 2 small burgers there will be 15 cheese remaining.\n
\n\n

 

\n

Constraints:

\n\n\n", "translatedTitle": "不浪费原料的汉堡制作方案", "translatedContent": "

圣诞活动预热开始啦,汉堡店推出了全新的汉堡套餐。为了避免浪费原料,请你帮他们制定合适的制作计划。

\n\n

给你两个整数 tomatoSlices 和 cheeseSlices,分别表示番茄片和奶酪片的数目。不同汉堡的原料搭配如下:

\n\n\n\n

请你以 [total_jumbo, total_small]([巨无霸汉堡总数,小皇堡总数])的格式返回恰当的制作方案,使得剩下的番茄片 tomatoSlices 和奶酪片 cheeseSlices 的数量都是 0

\n\n

如果无法使剩下的番茄片 tomatoSlices 和奶酪片 cheeseSlices 的数量为 0,就请返回 []

\n\n

 

\n\n

示例 1:

\n\n
输入:tomatoSlices = 16, cheeseSlices = 7\n输出:[1,6]\n解释:制作 1 个巨无霸汉堡和 6 个小皇堡需要 4*1 + 2*6 = 16 片番茄和 1 + 6 = 7 片奶酪。不会剩下原料。\n
\n\n

示例 2:

\n\n
输入:tomatoSlices = 17, cheeseSlices = 4\n输出:[]\n解释:只制作小皇堡和巨无霸汉堡无法用光全部原料。\n
\n\n

示例 3:

\n\n
输入:tomatoSlices = 4, cheeseSlices = 17\n输出:[]\n解释:制作 1 个巨无霸汉堡会剩下 16 片奶酪,制作 2 个小皇堡会剩下 15 片奶酪。\n
\n\n

示例 4:

\n\n
输入:tomatoSlices = 0, cheeseSlices = 0\n输出:[0,0]\n
\n\n

示例 5:

\n\n
输入:tomatoSlices = 2, cheeseSlices = 1\n输出:[0,1]\n
\n\n

 

\n\n

提示:

\n\n\n", "isPaidOnly": false, "difficulty": "Medium", "likes": 16, "dislikes": 0, "isLiked": null, "similarQuestions": "[]", "contributors": [], "langToValidPlayground": "{\"cpp\": true, \"java\": true, \"python\": true, \"python3\": true, \"mysql\": false, \"mssql\": false, \"oraclesql\": false, \"c\": false, \"csharp\": false, \"javascript\": false, \"ruby\": false, \"bash\": false, \"swift\": false, \"golang\": false, \"scala\": false, \"html\": false, \"pythonml\": false, \"kotlin\": false, \"rust\": false, \"php\": false, \"typescript\": false, \"racket\": false, \"erlang\": false, \"elixir\": false}", "topicTags": [ { "name": "Math", "slug": "math", "translatedName": "数学", "__typename": "TopicTagNode" } ], "companyTagStats": null, "codeSnippets": [ { "lang": "C++", "langSlug": "cpp", "code": "class Solution {\npublic:\n vector numOfBurgers(int tomatoSlices, int cheeseSlices) {\n\n }\n};", "__typename": "CodeSnippetNode" }, { "lang": "Java", "langSlug": "java", "code": "class Solution {\n public List numOfBurgers(int tomatoSlices, int cheeseSlices) {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Python", "langSlug": "python", "code": "class Solution(object):\n def numOfBurgers(self, tomatoSlices, cheeseSlices):\n \"\"\"\n :type tomatoSlices: int\n :type cheeseSlices: int\n :rtype: List[int]\n \"\"\"", "__typename": "CodeSnippetNode" }, { "lang": "Python3", "langSlug": "python3", "code": "class Solution:\n def numOfBurgers(self, tomatoSlices: int, cheeseSlices: int) -> List[int]:", "__typename": "CodeSnippetNode" }, { "lang": "C", "langSlug": "c", "code": "\n\n/**\n * Note: The returned array must be malloced, assume caller calls free().\n */\nint* numOfBurgers(int tomatoSlices, int cheeseSlices, int* returnSize){\n\n}", "__typename": "CodeSnippetNode" }, { "lang": "C#", "langSlug": "csharp", "code": "public class Solution {\n public IList NumOfBurgers(int tomatoSlices, int cheeseSlices) {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "JavaScript", "langSlug": "javascript", "code": "/**\n * @param {number} tomatoSlices\n * @param {number} cheeseSlices\n * @return {number[]}\n */\nvar numOfBurgers = function(tomatoSlices, cheeseSlices) {\n\n};", "__typename": "CodeSnippetNode" }, { "lang": "Ruby", "langSlug": "ruby", "code": "# @param {Integer} tomato_slices\n# @param {Integer} cheese_slices\n# @return {Integer[]}\ndef num_of_burgers(tomato_slices, cheese_slices)\n\nend", "__typename": "CodeSnippetNode" }, { "lang": "Swift", "langSlug": "swift", "code": "class Solution {\n func numOfBurgers(_ tomatoSlices: Int, _ cheeseSlices: Int) -> [Int] {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Go", "langSlug": "golang", "code": "func numOfBurgers(tomatoSlices int, cheeseSlices int) []int {\n\n}", "__typename": "CodeSnippetNode" }, { "lang": "Scala", "langSlug": "scala", "code": "object Solution {\n def numOfBurgers(tomatoSlices: Int, cheeseSlices: Int): List[Int] = {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Kotlin", "langSlug": "kotlin", "code": "class Solution {\n fun numOfBurgers(tomatoSlices: Int, cheeseSlices: Int): List {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Rust", "langSlug": "rust", "code": "impl Solution {\n pub fn num_of_burgers(tomato_slices: i32, cheese_slices: i32) -> Vec {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "PHP", "langSlug": "php", "code": "class Solution {\n\n /**\n * @param Integer $tomatoSlices\n * @param Integer $cheeseSlices\n * @return Integer[]\n */\n function numOfBurgers($tomatoSlices, $cheeseSlices) {\n\n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "TypeScript", "langSlug": "typescript", "code": "function numOfBurgers(tomatoSlices: number, cheeseSlices: number): number[] {\n\n};", "__typename": "CodeSnippetNode" }, { "lang": "Racket", "langSlug": "racket", "code": "(define/contract (num-of-burgers tomatoSlices cheeseSlices)\n (-> exact-integer? exact-integer? 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