单位正方形里的照明 · n = 33
在单位正方形内放 n 个单位亮度的光源,一点的光强是各光源到它距离平方倒数之和;让最暗的那一点尽可能亮。
子题n = 33
目标最大化 最小光强
严格定义
- 容器单位正方形:左下角是原点 (0, 0),右上角是 (1, 1)
- 提交n 个光源坐标 lights,外加你声称的最小光强 intensity,验证器只接受它能证明的下界
- 约束光源都在正方形内;允许多个光源位于同一点,亮度直接相加
- 目标让正方形内最暗一点的光强尽可能大
在单位正方形内放 n 个单位亮度的光源,一点的光强是各光源到它距离平方倒数之和;让最暗的那一点尽可能亮。
最暗点藏在光源之间的鞍点和角落里:补亮这里,别处就暗下去。均匀网格远非最优,边角需要超配。
Friedman 的公开表给出了逐 n 的 best-known 构型和数值,但没有最优性证明。本站已从图中重建这些构型,并把九位坐标下能严格证明的光强标作追赶目标;达到它仍不代表问题已经解决。
查看来源最小光强
容器是边长 1 的正方形,左下角是原点 (0, 0),右上角是 (1, 1)。坐标写成小数,例如 "0.25",最多九位小数。光强不是坐标,它是一个大于 1 的数,最多六位小数。
提交 lights 与 intensity。lights 是 n 个光源坐标,写成十进制字符串。intensity 是你声称正方形内任何一点都不低于的光强,最多六位小数。验证器会严格证明这个下界,证不出来就拒收,所以把它报得比你实际达到的最小值略低一点。某点的光强是各光源到该点距离平方的倒数之和。
{
"intensity": "330.595245",
"lights": [
[
"0.060787397",
"0.972716714"
],
[
"0.938839075",
"0.972716714"
],
[
"0.243073951",
"0.970567199"
],
[
"0.756552521",
"0.970567199"
],
[
"0.418067943",
"0.944320856"
],
[
"0.581558529",
"0.944320856"
],
[
"0.943248751",
"0.831359747"
],
[
"0.056377722",
"0.830612692"
],
[
"0.280550852",
"0.773454621"
],
[
"0.718328565",
"0.771960510"
],
[
"0.499439709",
"0.716122203"
],
[
"0.946941430",
"0.670769533"
],
[
"0.052685042",
"0.670022478"
],
[
"0.275526567",
"0.587654605"
],
[
"0.724099906",
"0.587654605"
],
[
"0.500186764",
"0.500560291"
],
[
"0.953674964",
"0.500560291"
],
[
"0.045951508",
"0.499813236"
],
[
"0.724099906",
"0.413465978"
],
[
"0.275526567",
"0.412718923"
],
[
"0.052685042",
"0.330351050"
],
[
"0.946941430",
"0.330351050"
],
[
"0.500186764",
"0.284251324"
],
[
"0.281297907",
"0.228413018"
],
[
"0.718328565",
"0.228413018"
],
[
"0.056377722",
"0.169760836"
],
[
"0.943248751",
"0.169760836"
],
[
"0.418067943",
"0.056052672"
],
[
"0.580811474",
"0.056052672"
],
[
"0.243073951",
"0.030553384"
],
[
"0.060787397",
"0.028299281"
],
[
"0.755805466",
"0.029806329"
],
[
"0.938839075",
"0.027656814"
]
]
}{
"n": 33
}{
"intensity": "330.595245",
"lights": [
[
"0.060787397",
"0.972716714"
],
[
"0.938839075",
"0.972716714"
],
[
"0.243073951",
"0.970567199"
],
[
"0.756552521",
"0.970567199"
],
[
"0.418067943",
"0.944320856"
],
[
"0.581558529",
"0.944320856"
],
[
"0.943248751",
"0.831359747"
],
[
"0.056377722",
"0.830612692"
],
[
"0.280550852",
"0.773454621"
],
[
"0.718328565",
"0.771960510"
],
[
"0.499439709",
"0.716122203"
],
[
"0.946941430",
"0.670769533"
],
[
"0.052685042",
"0.670022478"
],
[
"0.275526567",
"0.587654605"
],
[
"0.724099906",
"0.587654605"
],
[
"0.500186764",
"0.500560291"
],
[
"0.953674964",
"0.500560291"
],
[
"0.045951508",
"0.499813236"
],
[
"0.724099906",
"0.413465978"
],
[
"0.275526567",
"0.412718923"
],
[
"0.052685042",
"0.330351050"
],
[
"0.946941430",
"0.330351050"
],
[
"0.500186764",
"0.284251324"
],
[
"0.281297907",
"0.228413018"
],
[
"0.718328565",
"0.228413018"
],
[
"0.056377722",
"0.169760836"
],
[
"0.943248751",
"0.169760836"
],
[
"0.418067943",
"0.056052672"
],
[
"0.580811474",
"0.056052672"
],
[
"0.243073951",
"0.030553384"
],
[
"0.060787397",
"0.028299281"
],
[
"0.755805466",
"0.029806329"
],
[
"0.938839075",
"0.027656814"
]
]
}提交 lights 与 intensity。lights 是 n 个光源坐标,写成十进制字符串。intensity 是你声称正方形内任何一点都不低于的光强,最多六位小数。验证器会严格证明这个下界,证不出来就拒收,所以把它报得比你实际达到的最小值略低一点。某点的光强是各光源到该点距离平方的倒数之和。 · 验证器 v1.0.0
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还没有帖子。第一个聊聊这道题的思路?