{ "data": { "question": { "questionId": "1577", "questionFrontendId": "1467", "categoryTitle": "Algorithms", "boundTopicId": 266095, "title": "Probability of a Two Boxes Having The Same Number of Distinct Balls", "titleSlug": "probability-of-a-two-boxes-having-the-same-number-of-distinct-balls", "content": "
Given 2n
balls of k
distinct colors. You will be given an integer array balls
of size k
where balls[i]
is the number of balls of color i
.
All the balls will be shuffled uniformly at random, then we will distribute the first n
balls to the first box and the remaining n
balls to the other box (Please read the explanation of the second example carefully).
Please note that the two boxes are considered different. For example, if we have two balls of colors a
and b
, and two boxes []
and ()
, then the distribution [a] (b)
is considered different than the distribution [b] (a)
(Please read the explanation of the first example carefully).
Return the probability that the two boxes have the same number of distinct balls. Answers within 10-5
of the actual value will be accepted as correct.
\n
Example 1:
\n\n\nInput: balls = [1,1]\nOutput: 1.00000\nExplanation: Only 2 ways to divide the balls equally:\n- A ball of color 1 to box 1 and a ball of color 2 to box 2\n- A ball of color 2 to box 1 and a ball of color 1 to box 2\nIn both ways, the number of distinct colors in each box is equal. The probability is 2/2 = 1\n\n\n
Example 2:
\n\n\nInput: balls = [2,1,1]\nOutput: 0.66667\nExplanation: We have the set of balls [1, 1, 2, 3]\nThis set of balls will be shuffled randomly and we may have one of the 12 distinct shuffles with equal probability (i.e. 1/12):\n[1,1 / 2,3], [1,1 / 3,2], [1,2 / 1,3], [1,2 / 3,1], [1,3 / 1,2], [1,3 / 2,1], [2,1 / 1,3], [2,1 / 3,1], [2,3 / 1,1], [3,1 / 1,2], [3,1 / 2,1], [3,2 / 1,1]\nAfter that, we add the first two balls to the first box and the second two balls to the second box.\nWe can see that 8 of these 12 possible random distributions have the same number of distinct colors of balls in each box.\nProbability is 8/12 = 0.66667\n\n\n
Example 3:
\n\n\nInput: balls = [1,2,1,2]\nOutput: 0.60000\nExplanation: The set of balls is [1, 2, 2, 3, 4, 4]. It is hard to display all the 180 possible random shuffles of this set but it is easy to check that 108 of them will have the same number of distinct colors in each box.\nProbability = 108 / 180 = 0.6\n\n\n
\n
Constraints:
\n\n1 <= balls.length <= 8
1 <= balls[i] <= 6
sum(balls)
is even.桌面上有 2n
个颜色不完全相同的球,球上的颜色共有 k
种。给你一个大小为 k
的整数数组 balls
,其中 balls[i]
是颜色为 i
的球的数量。
所有的球都已经 随机打乱顺序 ,前 n
个球放入第一个盒子,后 n
个球放入另一个盒子(请认真阅读示例 2 的解释部分)。
注意:这两个盒子是不同的。例如,两个球颜色分别为 a
和 b
,盒子分别为 []
和 ()
,那么 [a] (b)
和 [b] (a)
这两种分配方式是不同的(请认真阅读示例的解释部分)。
请返回「两个盒子中球的颜色数相同」的情况的概率。答案与真实值误差在 10^-5
以内,则被视为正确答案
\n\n
示例 1:
\n\n\n输入:balls = [1,1]\n输出:1.00000\n解释:球平均分配的方式只有两种:\n- 颜色为 1 的球放入第一个盒子,颜色为 2 的球放入第二个盒子\n- 颜色为 2 的球放入第一个盒子,颜色为 1 的球放入第二个盒子\n这两种分配,两个盒子中球的颜色数都相同。所以概率为 2/2 = 1 。\n\n\n
示例 2:
\n\n\n输入:balls = [2,1,1]\n输出:0.66667\n解释:球的列表为 [1, 1, 2, 3]\n随机打乱,得到 12 种等概率的不同打乱方案,每种方案概率为 1/12 :\n[1,1 / 2,3], [1,1 / 3,2], [1,2 / 1,3], [1,2 / 3,1], [1,3 / 1,2], [1,3 / 2,1], [2,1 / 1,3], [2,1 / 3,1], [2,3 / 1,1], [3,1 / 1,2], [3,1 / 2,1], [3,2 / 1,1]\n然后,我们将前两个球放入第一个盒子,后两个球放入第二个盒子。\n这 12 种可能的随机打乱方式中的 8 种满足「两个盒子中球的颜色数相同」。\n概率 = 8/12 = 0.66667\n\n\n
示例 3:
\n\n\n输入:balls = [1,2,1,2]\n输出:0.60000\n解释:球的列表为 [1, 2, 2, 3, 4, 4]。要想显示所有 180 种随机打乱方案是很难的,但只检查「两个盒子中球的颜色数相同」的 108 种情况是比较容易的。\n概率 = 108 / 180 = 0.6 。\n\n\n
\n\n
提示:
\n\n1 <= balls.length <= 8
1 <= balls[i] <= 6
sum(balls)
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