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Scytale
Emma

작성자

Emma

20. 8월 2026SE
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Scytale

Wrap a strip of leather in a spiral around a rod, write the message across the turns, then unwind it. What is left on the strip is the same letters in a scrambled order, and to read them you need a rod of exactly the right diameter to line the turns up again. The Spartans are credited with it, and it is a transposition cipher — the letters are not replaced, only reordered — which makes it fundamentally different from the substitution ciphers that came later. The key is a physical object, and that is both its charm and its weakness: a key you can carry is a key that can be captured, measured or simply guessed, because there are not many plausible rod diameters.
초급
45 minutes

안내

1

Wind, write, unwind

Make and send your first message.

  1. Wrap a long paper strip in a close spiral along a dowel, edges touching, no gaps.
  2. Write your message ALONG the rod, across the turns.
  3. Unwind the strip and read what is on it.
The letters are all still there — none has been changed — but they are now separated by the number of characters that fit around one turn. Transposition rearranges; substitution replaces. This is the first family, and it is older.

이 단계의 재료:

Dowel RodDowel Rod2
Card Stock (Heavy, 50 Sheets)Card Stock (Heavy, 50 Sheets)1
2

Work out what the key really is

The rod's diameter is a proxy for a number.

  1. Count how many letters fit around one full turn — call it n.
  2. Write your message into a grid n columns wide, filling row by row.
  3. Read it out column by column.
You get the same ciphertext as the rod produced. The scytale IS a columnar transposition, and the rod is just a mechanical way of doing the grid. The real key is the single number n, which is why the physical object is a convenience rather than a secret.

이 단계의 재료:

Graph PaperGraph Paper1 pad
3

Break someone else's message

Attack it and see how weak the key space is.

  1. Take a ciphertext of known length without knowing n.
  2. Try n = 2, 3, 4, 5… writing the text into a grid of each width.
  3. Stop when readable text appears.
You will succeed within a handful of tries. The number of plausible values of n is bounded by the message length and by what rod sizes exist, so the key space is tiny. Any cipher whose key can be exhaustively searched by hand in minutes is not protecting anything from a determined reader.
4

Test what it does and does not hide

Count letters in plaintext and ciphertext.

  1. Tally how often each letter appears in your original message.
  2. Tally the same for the ciphertext.
  3. Compare the two tallies.
They are identical, because nothing was substituted. That is the defining weakness of pure transposition — the letter frequencies leak straight through, so an attacker instantly knows the language and that it is a transposition rather than a substitution. Knowing WHICH kind of cipher you face is most of the work of breaking it.
5

History and context

The scytale is described by Plutarch and other classical authors as a Spartan military device for sending orders to generals in the field. It is one of the oldest cipher devices for which we have a written description.

The historical claim is contested and should be stated as such. The classicist Thomas Kelly argued in the 1980s that the earliest references describe the scytale as a means of AUTHENTICATION — proving a message came from Sparta because it fitted your rod — rather than as a cipher for secrecy, and that the encryption interpretation may be a later reading. Both functions are plausible and the evidence is thin. The device is real; what the Spartans thought it was for is less certain than most popular accounts admit.

Transposition never went away. Columnar transposition was used seriously into the twentieth century, and the German ADFGVX cipher of the First World War combined substitution with transposition precisely because the two attack differently — frequency analysis breaks substitution, and anagramming breaks transposition, so doing both defeats each single technique.

The general lesson holds: a cipher's strength lives in the size of its key space and in whether it hides statistical structure. The scytale fails both tests, and it fails them for reasons a student can measure in twenty minutes with paper and a pencil.

재료

3

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