Can you solve the alien probe riddle Dan Finkel

The discovery of an alien monolith
on planet RH-1729

has scientists across the world
racing to unlock its mysteries.

Your engineering team has developed
an elegant probe to study it.

The probe is a collection
of 27 cube modules

capable of running all the scientific
tests necessary to analyze the monolith.

The modules can self-assemble
into a large 3x3x3 cube,

with each individual module
placed anywhere in the cube,

and at any orientation.

It can also break itself apart
and reassemble into any other orientation.

Now comes your job.

The probe will need a special
protective coating

for each of the extreme
environments it passes through.

The red coating will seal it against
the cold of deep space,

the purple coating will protect it
from the intense heat

as it enters the atmosphere of RH-1729,

and the green coating will shield it
from the alien planet’s electric storms.

You can apply the coatings to each of
the faces of all 27 of the cubic modules

in any way you like,

but each face can only
take a single color coating.

You need to figure out how you
can apply the colors

so the cubes can re-assemble themselves
to show only red,

then purple,

then green.

How can you apply the colored coatings
to the 27 cubes

so the probe will be able
to make the trip?

Pause here if you want
to figure it out yourself.

You can start by painting the outside
of the complete cube red,

since you’ll need that regardless.

Then you can break it into 27 pieces,
and look at what you have.

There are 8 corner cubes,
which each have three red faces,

12 edge cubes,
which have two red faces,

6 face cubes, which have 1 red face,

and a single center cube,
which has no red faces.

You’ve painted a total of 54 faces red
at this point,

so you’ll need the same number of faces
for the green and purple cubes, too.

When you’re done,
you’ll have painted 54 faces red,

54 faces green,

and 54 faces purple.

That’s 162 faces, which is precisely
how many the cubes have in total.

So there’s no margin for waste.

If there’s any way to do this,
it’ll probably be highly symmetrical.

Maybe you can use that to help you.

You look at the center cube.

You’d better paint it half green
and half purple,

so you can use it as a corner
for each of those cubes,

and not waste a single face.

There’ll need to be center cubes
with no green and no purple too.

So you take 2 corner cubes
from the red cube

and paint the 3 blank faces of 1 purple,

and the 3 blank faces of the other green.

Now you’ve got the 6 face cubes
that each have 1 face painted red.

That leaves 5 empty faces on each.

You can split them in half.

In the first group,
you paint 3 faces green

and 2 faces purple;

In the second group,
paint 3 faces purple and 2 green.

Counting on symmetry,

you replicate these piles again
with the colors rearranged.

That gives you 6 with 1 green face,

6 with 1 red face,

and 6 with 1 purple face.

Counting up
what you’ve completely painted,

you see 8 corner cubes in each color,

6 edge cubes in each color,

6 face cubes in each color,

and 1 center cube.

That means you just need 6 more edge cubes
in green and purple.

And there are exactly 6 cubes left,
each with 4 empty faces.

You paint 2 faces of each green
and 2 faces of each purple.

And now you have a cube that’s perfectly
painted to make an incredible trip.

It rearranges itself
to be red in deep space,

purple as it enters RH-1729’s atmosphere,

and green when it flies through
the electric storms.

As it reaches the monolith,

you realize you’ve achieved
something humans have dreamt of for eons:

alien contact.

在 RH-1729 星球上发现了一块外星巨石,

全世界的科学家都在
竞相解开它的奥秘。

您的工程团队开发
了一个优雅的探针来研究它。

该探针
是 27 个立方体模块的集合,

能够运行
分析整体所需的所有科学测试。

这些模块可以自行组装
成一个大的 3x3x3 立方体

,每个单独的模块都可以
放置在立方体中的任何位置,

并且可以处于任何方向。

它也可以将自己分解
并重新组装成任何其他方向。

现在你的工作来了。

探头需要

为它通过的每一个极端
环境都涂上一层特殊的保护涂层。

红色涂层将密封它免受
深空的寒冷

,紫色涂层将保护它

进入 RH-1729 大气层时免受高温

,绿色涂层将保护它
免受外星球的电暴。

您可以以任何您喜欢的方式将涂层应用到
所有 27 个立方体模块的每个面上

但每个面只能
采用单色涂层。

您需要弄清楚
如何应用颜色,

以便立方体可以重新组装
,只显示红色,

然后是紫色,

然后是绿色。

如何将彩色涂层涂
在 27 个立方体上,

以便探头
能够进行行程?

如果您想
自己弄清楚,请在此处暂停。

您可以先将整个立方体的外部涂成
红色,

因为无论如何您都需要它。

然后你可以把它分成27块
,看看你有什么。

有 8 个角立方体
,每个立方体有 3 个红色面,

12 个边立方体
,有两个红色面,

6 个面立方体,有 1 个红色面

,一个中心立方体
,没有红色面。

此时您总共将 54 个面涂成了红色

因此
绿色和紫色立方体也需要相同数量的面。

完成后,
您将把 54 个面涂成红色,

54 个面涂成绿色

,54 个面涂成紫色。

那是 162 个面,这正是
立方体总共有多少个。

所以没有浪费的余地。

如果有任何方法可以做到这一点,
它可能是高度对称的。

也许你可以用它来帮助你。

你看中心立方体。

你最好把它涂成一半绿色
和一半紫色,

这样你就可以把它
作为每个立方体的角,

而不是浪费一张脸。

需要
有没有绿色和紫色的中心立方体。

因此,您从红色立方体中取出 2 个角立方体

并绘制 1 个紫色

的 3 个空白面,以及另一个绿色的 3 个空白面。

现在你有 6 个面立方体
,每个面都有 1 个面涂成红色。

这会在每个人身上留下 5 个空脸。

你可以把它们分成两半。

在第一组中,
您将 3 个面涂成绿色

,将 2 个面涂成紫色;

在第二组中,
油漆 3 面向紫色和 2 面向绿色。

依靠对称性,

您再次复制这些堆,
并重新排列颜色。

这给你 6 个有 1 个绿色的脸,

6 个有 1 个红色的脸,

以及 6 个有 1 个紫色的脸。

数一数
你完全画的东西,

你会看到每种颜色有 8 个角立方体,每种颜色有

6 个边缘立方体,每种颜色有

6 个面立方体,

还有 1 个中心立方体。

这意味着您只需要另外 6
个绿色和紫色的边缘立方体。

正好剩下 6 个立方体,
每个立方体有 4 个空面。

您绘制每个绿色
的 2 个面和每个紫色的 2 个面。

现在你有了一个完美绘制的立方体,
可以进行一次令人难以置信的旅行。


在深空重新排列为红色

,进入 RH-1729 大气层时为紫色,

在飞过电暴时为绿色

当它到达巨石时,

你意识到你已经实现
了人类长久以来梦寐以求的东西:

外星人接触。