easy ciphers

Easy Ciphers Tools:
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praesentem

prezygapophysis

preoccupations

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mauriers

facessit

altopass

alcyonic

unexceptional

cuento

periarctic

harmlessly

begalled

mireturque

cliad

echinus


Caesar cipher

Caesar cipher, is one of the simplest and most widely known encryption techniques. The transformation can be represented by aligning two alphabets, the cipher alphabet is the plain alphabet rotated left or right by some number of positions.

When encrypting, a person looks up each letter of the message in the 'plain' line and writes down the corresponding letter in the 'cipher' line. Deciphering is done in reverse.
The encryption can also be represented using modular arithmetic by first transforming the letters into numbers, according to the scheme, A = 0, B = 1,..., Z = 25. Encryption of a letter x by a shift n can be described mathematically as

Plaintext: alberada
cipher variations:
bmcfsbeb cndgtcfc doehudgd epfivehe fqgjwfif
grhkxgjg hsilyhkh itjmzili juknajmj kvlobknk
lwmpclol mxnqdmpm nyorenqn ozpsforo paqtgpsp
qbruhqtq rcsvirur sdtwjsvs teuxktwt ufvyluxu
vgwzmvyv whxanwzw xiyboxax yjzcpyby zkadqzcz

Decryption is performed similarly,

(There are different definitions for the modulo operation. In the above, the result is in the range 0...25. I.e., if x+n or x-n are not in the range 0...25, we have to subtract or add 26.)
Read more ...
Atbash Cipher

Atbash is an ancient encryption system created in the Middle East. It was originally used in the Hebrew language.
The Atbash cipher is a simple substitution cipher that relies on transposing all the letters in the alphabet such that the resulting alphabet is backwards.
The first letter is replaced with the last letter, the second with the second-last, and so on.
An example plaintext to ciphertext using Atbash:
Plain: alberada
Cipher: zoyvizwz

Read more ...

 

Baconian Cipher

To encode a message, each letter of the plaintext is replaced by a group of five of the letters 'A' or 'B'. This replacement is done according to the alphabet of the Baconian cipher, shown below.
a   AAAAA   g    AABBA     m    ABABB   s    BAAAB     y    BABBA
b   AAAAB   h    AABBB     n    ABBAA   t    BAABA     z    BABBB
c   AAABA   i    ABAAA     o    ABBAB   u    BAABB 
d   AAABB   j    BBBAA     p    ABBBA   v    BBBAB
e   AABAA   k    ABAAB     q    ABBBB   w    BABAA
f   AABAB   l    ABABA     r    BAAAA   x    BABAB

Plain: alberada
Cipher: AAAAA ABABA AAAAB AABAA BAAAA AAAAA AAABB AAAAA

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Affine Cipher
In the affine cipher the letters of an alphabet of size m are first mapped to the integers in the range 0..m - 1. It then uses modular arithmetic to transform the integer that each plaintext letter corresponds to into another integer that correspond to a ciphertext letter. The encryption function for a single letter is

where modulus m is the size of the alphabet and a and b are the key of the cipher. The value a must be chosen such that a and m are coprime.
Considering the specific case of encrypting messages in English (i.e. m = 26), there are a total of 286 non-trivial affine ciphers, not counting the 26 trivial Caesar ciphers. This number comes from the fact there are 12 numbers that are coprime with 26 that are less than 26 (these are the possible values of a). Each value of a can have 26 different addition shifts (the b value) ; therefore, there are 12*26 or 312 possible keys.
Plaintext: alberada
cipher variations:
bmcfsbebbienabkbbegvibqbbaidqbwbbwklybcbbsmtgbibbkqjwbubbgsrebab
bcuzmbgbbywhubmbbuypcbsbbqaxkbybcndgtcfccjfobclccfhwjcrccbjercxc
cxlmzcdcctnuhcjcclrkxcvcchtsfcbccdvanchcczxivcnccvzqdctccrbylczc
doehudgddkgpcdmddgixkdsddckfsdyddymnadedduovidkddmslydwddiutgdcd
dewbodiddayjwdoddwareduddsczmdadepfiveheelhqdeneehjyleteedlgteze
eznobefeevpwjeleentmzexeejvuhedeefxcpejeebzkxepeexbsfeveetdanebe
fqgjwfiffmirefoffikzmfuffemhufaffaopcfgffwqxkfmffounafyffkwvifef
fgydqfkffcalyfqffyctgfwffuebofcfgrhkxgjggnjsfgpggjlangvggfnivgbg
gbpqdghggxrylgnggpvobgzgglxwjgfgghzerglggdbmzgrggzduhgxggvfcpgdg
hsilyhkhhoktghqhhkmbohwhhgojwhchhcqrehihhyszmhohhqwpchahhmyxkhgh
hiafshmhhecnahshhaevihyhhwgdqhehitjmziliipluhiriilncpixiihpkxidi
idrsfijiiztanipiirxqdibiinzylihiijbgtiniifdobitiibfwjiziixherifi
juknajmjjqmvijsjjmodqjyjjiqlyjejjestgjkjjaubojqjjsyrejcjjoazmjij
jkchujojjgepcjujjcgxkjajjyifsjgjkvlobknkkrnwjktkknperkzkkjrmzkfk
kftuhklkkbvcpkrkktzsfkdkkpbankjkkldivkpkkhfqdkvkkdhylkbkkzjgtkhk
lwmpclollsoxklulloqfslallksnalgllguvilmllcwdqlslluatglellqcbolkl
lmejwlqlligrelwlleizmlcllakhulilmxnqdmpmmtpylmvmmprgtmbmmltobmhm
mhvwjmnmmdxermtmmvbuhmfmmrdcpmlmmnfkxmrmmjhsfmxmmfjanmdmmblivmjm
nyorenqnnuqzmnwnnqshuncnnmupcninniwxknonneyfsnunnwcvingnnsedqnmn
noglynsnnkitgnynngkbonenncmjwnknozpsforoovranoxoortivodoonvqdojo
ojxylopoofzgtovooxdwjohootferonoophmzotooljuhozoohlcpofoodnkxolo
paqtgpsppwsbopyppsujwpeppowrepkppkyzmpqppgahupwppyexkpippugfspop
pqinapuppmkvipappimdqpgppeolypmpqbruhqtqqxtcpqzqqtvkxqfqqpxsfqlq
qlzanqrqqhbivqxqqzfylqjqqvhgtqpqqrjobqvqqnlwjqbqqjnerqhqqfpmzqnq
rcsvirurryudqrarruwlyrgrrqytgrmrrmaborsrricjwryrragzmrkrrwihurqr
rskpcrwrromxkrcrrkofsrirrgqnarorsdtwjsvsszversbssvxmzshssrzuhsns
snbcpstssjdkxszssbhanslssxjivsrsstlqdsxsspnylsdsslpgtsjsshrobsps
teuxktwttawfstcttwynatittsavitottocdqtuttkelytattcibotmttykjwtst
tumretyttqozmtettmqhutkttispctqtufvyluxuubxgtuduuxzobujuutbwjupu
upderuvuulfmzubuudjcpunuuzlkxutuuvnsfuzuurpanufuunrivuluujtqduru
vgwzmvyvvcyhuvevvyapcvkvvucxkvqvvqefsvwvvmgnavcvvekdqvovvamlyvuv
vwotgvavvsqbovgvvosjwvmvvkurevsvwhxanwzwwdzivwfwwzbqdwlwwvdylwrw
wrfgtwxwwnhobwdwwflerwpwwbnmzwvwwxpuhwbwwtrcpwhwwptkxwnwwlvsfwtw
xiyboxaxxeajwxgxxacrexmxxwezmxsxxsghuxyxxoipcxexxgmfsxqxxconaxwx
xyqvixcxxusdqxixxqulyxoxxmwtgxuxyjzcpybyyfbkxyhyybdsfynyyxfanyty
ythivyzyypjqdyfyyhngtyryydpobyxyyzrwjydyyvteryjyyrvmzypyynxuhyvy
zkadqzczzgclyzizzcetgzozzygbozuzzuijwzazzqkrezgzziohuzszzeqpczyz
zasxkzezzwufszkzzswnazqzzoyvizwzalberadaahdmzajaadfuhapaazhcpava
avjkxabaarlsfahaajpivataafrqdazaabtylafaaxvgtalaatxobaraapzwjaxa

The decryption function is

where a - 1 is the modular multiplicative inverse of a modulo m. I.e., it satisfies the equation

The multiplicative inverse of a only exists if a and m are coprime. Hence without the restriction on a decryption might not be possible. It can be shown as follows that decryption function is the inverse of the encryption function,

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ROT13 Cipher
Applying ROT13 to a piece of text merely requires examining its alphabetic characters and replacing each one by the letter 13 places further along in the alphabet, wrapping back to the beginning if necessary. A becomes N, B becomes O, and so on up to M, which becomes Z, then the sequence continues at the beginning of the alphabet: N becomes A, O becomes B, and so on to Z, which becomes M. Only those letters which occur in the English alphabet are affected; numbers, symbols, whitespace, and all other characters are left unchanged. Because there are 26 letters in the English alphabet and 26 = 2 * 13, the ROT13 function is its own inverse:

ROT13(ROT13(x)) = x for any basic Latin-alphabet text x


An example plaintext to ciphertext using ROT13:

Plain: alberada
Cipher: nyorenqn

Read more ...

 

Polybius Square

A Polybius Square is a table that allows someone to translate letters into numbers. To give a small level of encryption, this table can be randomized and shared with the recipient. In order to fit the 26 letters of the alphabet into the 25 spots created by the table, the letters i and j are usually combined.
1 2 3 4 5
1 A B C D E
2 F G H I/J K
3 L M N O P
4 Q R S T U
5 V W X Y Z

Basic Form:
Plain: alberada
Cipher: 1113215124114111

Extended Methods:
Method #1

Plaintext: alberada
method variations:
fqgkwfiflvmpblolqarugqtqvfwzmvyv

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
a l b e r a d a 
1 1 2 5 2 1 4 1 
1 3 1 1 4 1 1 1 
They are then read out in rows:
1125214113114111
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: alberada
Cipher: awbdlada

Read more ...
Method #3

Plaintext: alberada
method variations:
ahvfdqaa hvfdqaaa vfdqaaah
fdqaaahv dqaaahvf qaaahvfd
aaahvfdq aahvfdqa

Read more ...[RUS] , [EN]

 

Permutation Cipher
In classical cryptography, a permutation cipher is a transposition cipher in which the key is a permutation. To apply a cipher, a random permutation of size E is generated (the larger the value of E the more secure the cipher). The plaintext is then broken into segments of size E and the letters within that segment are permuted according to this key.
In theory, any transposition cipher can be viewed as a permutation cipher where E is equal to the length of the plaintext; this is too cumbersome a generalisation to use in actual practice, however.
The idea behind a permutation cipher is to keep the plaintext characters unchanged, butalter their positions by rearrangement using a permutation
This cipher is defined as:
Let m be a positive integer, and K consist of all permutations of {1,...,m}
For a key (permutation) , define:
The encryption function
The decryption function
A small example, assuming m = 6, and the key is the permutation :

The first row is the value of i, and the second row is the corresponding value of (i)
The inverse permutation, is constructed by interchanging the two rows, andrearranging the columns so that the first row is in increasing order, Therefore, is:

Total variation formula:

e = 2,718281828 , n - plaintext length

Plaintext: alberada

first 5040 cipher variations(40320 total)
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albeaard albedara albedaar albedraa albedraa albedara albedaar albeaadr albeaard albeadar albeadra
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aarlbeda aarlbead aarlbdea aarlbdae aarlbade aarlbaed aarlebda aarlebad aarledba aarledab aarleadb
aarleabd aarldeba aarldeab aarldbea aarldbae aarldabe aarldaeb aarlaedb aarlaebd aarladeb aarladbe
aarlabde aarlabed aardblea aardblae aardbela aardbeal aardbael aardbale aardlbea aardlbae aardleba
aardleab aardlaeb aardlabe aardelba aardelab aardebla aardebal aardeabl aardealb aardaleb aardalbe
aardaelb aardaebl aardabel aardable aarablde aarabled aarabdle aarabdel aarabedl aarabeld aaralbde
aaralbed aaraldbe aaraldeb aaraledb aaralebd aaradlbe aaradleb aaradble aaradbel aaradebl aaradelb
aaraeldb aaraelbd aaraedlb aaraedbl aaraebdl aaraebld aalerbda aalerbad aalerdba aalerdab aaleradb
aalerabd aalebrda aalebrad aalebdra aalebdar aalebadr aalebard aaledbra aaledbar aaledrba aaledrab
aaledarb aaledabr aaleabdr aaleabrd aaleadbr aaleadrb aaleardb aalearbd aalrebda aalrebad aalredba
aalredab aalreadb aalreabd aalrbeda aalrbead aalrbdea aalrbdae aalrbade aalrbaed aalrdbea aalrdbae
aalrdeba aalrdeab aalrdaeb aalrdabe aalrabde aalrabed aalradbe aalradeb aalraedb aalraebd aalbreda
aalbread aalbrdea aalbrdae aalbrade aalbraed aalberda aalberad aalbedra aalbedar aalbeadr aalbeard
aalbdera aalbdear aalbdrea aalbdrae aalbdare aalbdaer aalbaedr aalbaerd aalbader aalbadre aalbarde
aalbared aaldrbea aaldrbae aaldreba aaldreab aaldraeb aaldrabe aaldbrea aaldbrae aaldbera aaldbear
aaldbaer aaldbare aaldebra aaldebar aalderba aalderab aaldearb aaldeabr aaldaber aaldabre aaldaebr
aaldaerb aaldareb aaldarbe aalarbde aalarbed aalardbe aalardeb aalaredb aalarebd aalabrde aalabred
aalabdre aalabder aalabedr aalaberd aaladbre aaladber aaladrbe aaladreb aaladerb aaladebr aalaebdr
aalaebrd aalaedbr aalaedrb aalaerdb aalaerbd aaderlba aaderlab aaderbla aaderbal aaderabl aaderalb
aadelrba aadelrab aadelbra aadelbar aadelabr aadelarb aadeblra aadeblar aadebrla aadebral aadebarl
aadebalr aadealbr aadealrb aadeablr aadeabrl aadearbl aadearlb aadrelba aadrelab aadrebla aadrebal
aadreabl aadrealb aadrleba aadrleab aadrlbea aadrlbae aadrlabe aadrlaeb aadrblea aadrblae aadrbela
aadrbeal aadrbael aadrbale aadralbe aadraleb aadrable aadrabel aadraebl aadraelb aadlreba aadlreab
aadlrbea aadlrbae aadlrabe aadlraeb aadlerba aadlerab aadlebra aadlebar aadleabr aadlearb aadlbera
aadlbear aadlbrea aadlbrae aadlbare aadlbaer aadlaebr aadlaerb aadlaber aadlabre aadlarbe aadlareb
aadbrlea aadbrlae aadbrela aadbreal aadbrael aadbrale aadblrea aadblrae aadblera aadblear aadblaer
aadblare aadbelra aadbelar aadberla aadberal aadbearl aadbealr aadbaler aadbalre aadbaelr aadbaerl
aadbarel aadbarle aadarlbe aadarleb aadarble aadarbel aadarebl aadarelb aadalrbe aadalreb aadalbre
aadalber aadalebr aadalerb aadablre aadabler aadabrle aadabrel aadaberl aadabelr aadaelbr aadaelrb
aadaeblr aadaebrl aadaerbl aadaerlb aaaerldb aaaerlbd aaaerdlb aaaerdbl aaaerbdl aaaerbld aaaelrdb
aaaelrbd aaaeldrb aaaeldbr aaaelbdr aaaelbrd aaaedlrb aaaedlbr aaaedrlb aaaedrbl aaaedbrl aaaedblr
aaaebldr aaaeblrd aaaebdlr aaaebdrl aaaebrdl aaaebrld aaareldb aaarelbd aaaredlb aaaredbl aaarebdl
aaarebld aaarledb aaarlebd aaarldeb aaarldbe aaarlbde aaarlbed aaardleb aaardlbe aaardelb aaardebl
aaardbel aaardble aaarblde aaarbled aaarbdle aaarbdel aaarbedl aaarbeld aaalredb aaalrebd aaalrdeb
aaalrdbe aaalrbde aaalrbed aaalerdb aaalerbd aaaledrb aaaledbr aaalebdr aaalebrd aaalderb aaaldebr
aaaldreb aaaldrbe aaaldbre aaaldber aaalbedr aaalberd aaalbder aaalbdre aaalbrde aaalbred aaadrleb
aaadrlbe aaadrelb aaadrebl aaadrbel aaadrble aaadlreb aaadlrbe aaadlerb aaadlebr aaadlber aaadlbre
aaadelrb aaadelbr aaaderlb aaaderbl aaadebrl aaadeblr aaadbler aaadblre aaadbelr aaadberl aaadbrel
aaadbrle aaabrlde aaabrled aaabrdle aaabrdel aaabredl aaabreld aaablrde aaablred aaabldre aaablder
aaabledr aaablerd aaabdlre aaabdler aaabdrle aaabdrel aaabderl aaabdelr aaabeldr aaabelrd aaabedlr
aaabedrl aaaberdl aaaberld adberala adberaal adberlaa adberlaa adberala adberaal adbearla adbearal
adbealra adbealar adbeaalr adbeaarl adbelara adbelaar adbelraa adbelraa adbelara adbelaar adbeaalr
adbeaarl adbealar adbealra adbearla adbearal adbreala adbreaal adbrelaa adbrelaa adbreala adbreaal
adbraela adbraeal adbralea adbralae adbraale adbraael adbrlaea adbrlaae adbrleaa adbrleaa adbrlaea
adbrlaae adbraale adbraael adbralae adbralea adbraela adbraeal adbarela adbareal adbarlea adbarlae
adbarale adbarael adbaerla adbaeral adbaelra adbaelar adbaealr adbaearl adbalera adbalear adbalrea
adbalrae adbalare adbalaer adbaaelr adbaaerl adbaaler adbaalre adbaarle adbaarel adblraea adblraae
adblreaa adblreaa adblraea adblraae adblarea adblarae adblaera adblaear adblaaer adblaare adbleara
adbleaar adbleraa adbleraa adbleara adbleaar adblaaer adblaare adblaear adblaera adblarea adblarae
adbarale adbarael adbarlae adbarlea adbarela adbareal adbaarle adbaarel adbaalre adbaaler adbaaelr
adbaaerl adbalare adbalaer adbalrae adbalrea adbalera adbalear adbaealr adbaearl adbaelar adbaelra
adbaerla adbaeral adebrala adebraal adebrlaa adebrlaa adebrala adebraal adebarla adebaral adebalra
adebalar adebaalr adebaarl adeblara adeblaar adeblraa adeblraa adeblara adeblaar adebaalr adebaarl
adebalar adebalra adebarla adebaral aderbala aderbaal aderblaa aderblaa aderbala aderbaal aderabla
aderabal aderalba aderalab aderaalb aderaabl aderlaba aderlaab aderlbaa aderlbaa aderlaba aderlaab
aderaalb aderaabl aderalab aderalba aderabla aderabal adearbla adearbal adearlba adearlab adearalb
adearabl adeabrla adeabral adeablra adeablar adeabalr adeabarl adealbra adealbar adealrba adealrab
adealarb adealabr adeaablr adeaabrl adeaalbr adeaalrb adeaarlb adeaarbl adelraba adelraab adelrbaa
adelrbaa adelraba adelraab adelarba adelarab adelabra adelabar adelaabr adelaarb adelbara adelbaar
adelbraa adelbraa adelbara adelbaar adelaabr adelaarb adelabar adelabra adelarba adelarab adearalb
adearabl adearlab adearlba adearbla adearbal adeaarlb adeaarbl adeaalrb adeaalbr adeaablr adeaabrl
adealarb adealabr adealrab adealrba adealbra adealbar adeabalr adeabarl adeablar adeablra adeabrla
adeabral adrebala adrebaal adreblaa adreblaa adrebala adrebaal adreabla adreabal adrealba adrealab
adreaalb adreaabl adrelaba adrelaab adrelbaa adrelbaa adrelaba adrelaab adreaalb adreaabl adrealab
adrealba adreabla adreabal adrbeala adrbeaal adrbelaa adrbelaa adrbeala adrbeaal adrbaela adrbaeal
adrbalea adrbalae adrbaale adrbaael adrblaea adrblaae adrbleaa adrbleaa adrblaea adrblaae adrbaale
adrbaael adrbalae adrbalea adrbaela adrbaeal adrabela adrabeal adrablea adrablae adrabale adrabael
adraebla adraebal adraelba adraelab adraealb adraeabl adraleba adraleab adralbea adralbae adralabe
adralaeb adraaelb adraaebl adraaleb adraalbe adraable adraabel adrlbaea adrlbaae adrlbeaa adrlbeaa
adrlbaea adrlbaae adrlabea adrlabae adrlaeba adrlaeab adrlaaeb adrlaabe adrleaba adrleaab adrlebaa
adrlebaa adrleaba adrleaab adrlaaeb adrlaabe adrlaeab adrlaeba adrlabea adrlabae adrabale adrabael
adrablae adrablea adrabela adrabeal adraable adraabel adraalbe adraaleb adraaelb adraaebl adralabe
adralaeb adralbae adralbea adraleba adraleab adraealb adraeabl adraelab adraelba adraebla adraebal
adaerbla adaerbal adaerlba adaerlab adaeralb adaerabl adaebrla adaebral adaeblra adaeblar adaebalr
adaebarl adaelbra adaelbar adaelrba adaelrab adaelarb adaelabr adaeablr adaeabrl adaealbr adaealrb
adaearlb adaearbl adarebla adarebal adarelba adarelab adarealb adareabl adarbela adarbeal adarblea
adarblae adarbale adarbael adarlbea adarlbae adarleba adarleab adarlaeb adarlabe adarable adarabel
adaralbe adaraleb adaraelb adaraebl adabrela adabreal adabrlea adabrlae adabrale adabrael adaberla
adaberal adabelra adabelar adabealr adabearl adablera adablear adablrea adablrae adablare adablaer
adabaelr adabaerl adabaler adabalre adabarle adabarel adalrbea adalrbae adalreba adalreab adalraeb
adalrabe adalbrea adalbrae adalbera adalbear adalbaer adalbare adalebra adalebar adalerba adalerab
adalearb adaleabr adalaber adalabre adalaebr adalaerb adalareb adalarbe adaarble adaarbel adaarlbe
adaarleb adaarelb adaarebl adaabrle adaabrel adaablre adaabler adaabelr adaaberl adaalbre adaalber
adaalrbe adaalreb adaalerb adaalebr adaaeblr adaaebrl adaaelbr adaaelrb adaaerlb adaaerbl adleraba
adleraab adlerbaa adlerbaa adleraba adleraab adlearba adlearab adleabra adleabar adleaabr adleaarb
adlebara adlebaar adlebraa adlebraa adlebara adlebaar adleaabr adleaarb adleabar adleabra adlearba
adlearab adlreaba adlreaab adlrebaa adlrebaa adlreaba adlreaab adlraeba adlraeab adlrabea adlrabae
adlraabe adlraaeb adlrbaea adlrbaae adlrbeaa adlrbeaa adlrbaea adlrbaae adlraabe adlraaeb adlrabae
adlrabea adlraeba adlraeab adlareba adlareab adlarbea adlarbae adlarabe adlaraeb adlaerba adlaerab
adlaebra adlaebar adlaeabr adlaearb adlabera adlabear adlabrea adlabrae adlabare adlabaer adlaaebr
adlaaerb adlaaber adlaabre adlaarbe adlaareb adlbraea adlbraae adlbreaa adlbreaa adlbraea adlbraae
adlbarea adlbarae adlbaera adlbaear adlbaaer adlbaare adlbeara adlbeaar adlberaa adlberaa adlbeara
adlbeaar adlbaaer adlbaare adlbaear adlbaera adlbarea adlbarae adlarabe adlaraeb adlarbae adlarbea
adlareba adlareab adlaarbe adlaareb adlaabre adlaaber adlaaebr adlaaerb adlabare adlabaer adlabrae
adlabrea adlabera adlabear adlaeabr adlaearb adlaebar adlaebra adlaerba adlaerab adaeralb adaerabl
adaerlab adaerlba adaerbla adaerbal adaearlb adaearbl adaealrb adaealbr adaeablr adaeabrl adaelarb
adaelabr adaelrab adaelrba adaelbra adaelbar adaebalr adaebarl adaeblar adaeblra adaebrla adaebral
adarealb adareabl adarelab adarelba adarebla adarebal adaraelb adaraebl adaraleb adaralbe adarable
adarabel adarlaeb adarlabe adarleab adarleba adarlbea adarlbae adarbale adarbael adarblae adarblea
adarbela adarbeal adaarelb adaarebl adaarleb adaarlbe adaarble adaarbel adaaerlb adaaerbl adaaelrb
adaaelbr adaaeblr adaaebrl adaalerb adaalebr adaalreb adaalrbe adaalbre adaalber adaabelr adaaberl
adaabler adaablre adaabrle adaabrel adalraeb adalrabe adalreab adalreba adalrbea adalrbae adalareb
adalarbe adalaerb adalaebr adalaber adalabre adalearb adaleabr adalerab adalerba adalebra adalebar
adalbaer adalbare adalbear adalbera adalbrea adalbrae adabrale adabrael adabrlae adabrlea adabrela
adabreal adabarle adabarel adabalre adabaler adabaelr adabaerl adablare adablaer adablrae adablrea
adablera adablear adabealr adabearl adabelar adabelra adaberla adaberal aaberadl aaberald aaberdal
aaberdla aaberlda aaberlad aabeardl aabearld aabeadrl aabeadlr aabealdr aabealrd aabedarl aabedalr
aabedral aabedrla aabedlra aabedlar aabeladr aabelard aabeldar aabeldra aabelrda aabelrad aabreadl
aabreald aabredal aabredla aabrelda aabrelad aabraedl aabraeld aabradel aabradle aabralde aabraled
aabrdael aabrdale aabrdeal aabrdela aabrdlea aabrdlae aabrlade aabrlaed aabrldae aabrldea aabrleda
aabrlead aabaredl aabareld aabardel aabardle aabarlde aabarled aabaerdl aabaerld aabaedrl aabaedlr
aabaeldr aabaelrd aabaderl aabadelr aabadrel aabadrle aabadlre aabadler aabaledr aabalerd aabalder
aabaldre aabalrde aabalred aabdrael aabdrale aabdreal aabdrela aabdrlea aabdrlae aabdarel aabdarle
aabdaerl aabdaelr aabdaler aabdalre aabdearl aabdealr aabderal aabderla aabdelra aabdelar aabdlaer
aabdlare aabdlear aabdlera aabdlrea aabdlrae aablrade aablraed aablrdae aablrdea aablreda aablread
aablarde aablared aabladre aablader aablaedr aablaerd aabldare aabldaer aabldrae aabldrea aabldera
aabldear aableadr aableard aabledar aabledra aablerda aablerad aaebradl aaebrald aaebrdal aaebrdla
aaebrlda aaebrlad aaebardl aaebarld aaebadrl aaebadlr aaebaldr aaebalrd aaebdarl aaebdalr aaebdral
aaebdrla aaebdlra aaebdlar aaebladr aaeblard aaebldar aaebldra aaeblrda aaeblrad aaerbadl aaerbald
aaerbdal aaerbdla aaerblda aaerblad aaerabdl aaerabld aaeradbl aaeradlb aaeraldb aaeralbd aaerdabl
aaerdalb aaerdbal aaerdbla aaerdlba aaerdlab aaerladb aaerlabd aaerldab aaerldba aaerlbda aaerlbad
aaearbdl aaearbld aaeardbl aaeardlb aaearldb aaearlbd aaeabrdl aaeabrld aaeabdrl aaeabdlr aaeabldr
aaeablrd aaeadbrl aaeadblr aaeadrbl aaeadrlb aaeadlrb aaeadlbr aaealbdr aaealbrd aaealdbr aaealdrb
aaealrdb aaealrbd aaedrabl aaedralb aaedrbal aaedrbla aaedrlba aaedrlab aaedarbl aaedarlb aaedabrl
aaedablr aaedalbr aaedalrb aaedbarl aaedbalr aaedbral aaedbrla aaedblra aaedblar aaedlabr aaedlarb
aaedlbar aaedlbra aaedlrba aaedlrab aaelradb aaelrabd aaelrdab aaelrdba aaelrbda aaelrbad aaelardb
aaelarbd aaeladrb aaeladbr aaelabdr aaelabrd aaeldarb aaeldabr aaeldrab aaeldrba aaeldbra aaeldbar
aaelbadr aaelbard aaelbdar aaelbdra aaelbrda aaelbrad aarebadl aarebald aarebdal aarebdla aareblda
aareblad aareabdl aareabld aareadbl aareadlb aarealdb aarealbd aaredabl aaredalb aaredbal aaredbla
aaredlba aaredlab aareladb aarelabd aareldab aareldba aarelbda aarelbad aarbeadl aarbeald aarbedal
aarbedla aarbelda aarbelad aarbaedl aarbaeld aarbadel aarbadle aarbalde aarbaled aarbdael aarbdale
aarbdeal aarbdela aarbdlea aarbdlae aarblade aarblaed aarbldae aarbldea aarbleda aarblead aarabedl
aarabeld aarabdel aarabdle aarablde aarabled aaraebdl aaraebld aaraedbl aaraedlb aaraeldb aaraelbd
aaradebl aaradelb aaradbel aaradble aaradlbe aaradleb aaraledb aaralebd aaraldeb aaraldbe aaralbde
aaralbed aardbael aardbale aardbeal aardbela aardblea aardblae aardabel aardable aardaebl aardaelb
aardaleb aardalbe aardeabl aardealb aardebal aardebla aardelba aardelab aardlaeb aardlabe aardleab
aardleba aardlbea aardlbae aarlbade aarlbaed aarlbdae aarlbdea aarlbeda aarlbead aarlabde aarlabed
aarladbe aarladeb aarlaedb aarlaebd aarldabe aarldaeb aarldbae aarldbea aarldeba aarldeab aarleadb
aarleabd aarledab aarledba aarlebda aarlebad aaaerbdl aaaerbld aaaerdbl aaaerdlb aaaerldb aaaerlbd
aaaebrdl aaaebrld aaaebdrl aaaebdlr aaaebldr aaaeblrd aaaedbrl aaaedblr aaaedrbl aaaedrlb aaaedlrb
aaaedlbr aaaelbdr aaaelbrd aaaeldbr aaaeldrb aaaelrdb aaaelrbd aaarebdl aaarebld aaaredbl aaaredlb
aaareldb aaarelbd aaarbedl aaarbeld aaarbdel aaarbdle aaarblde aaarbled aaardbel aaardble aaardebl
aaardelb aaardleb aaardlbe aaarlbde aaarlbed aaarldbe aaarldeb aaarledb aaarlebd aaabredl aaabreld
aaabrdel aaabrdle aaabrlde aaabrled aaaberdl aaaberld aaabedrl aaabedlr aaabeldr aaabelrd aaabderl
aaabdelr aaabdrel aaabdrle aaabdlre aaabdler aaabledr aaablerd aaablder aaabldre aaablrde aaablred
aaadrbel aaadrble aaadrebl aaadrelb aaadrleb aaadrlbe aaadbrel aaadbrle aaadberl aaadbelr aaadbler
aaadblre aaadebrl aaadeblr aaaderbl aaaderlb aaadelrb aaadelbr aaadlber aaadlbre aaadlebr aaadlerb
aaadlreb aaadlrbe aaalrbde aaalrbed aaalrdbe aaalrdeb aaalredb aaalrebd aaalbrde aaalbred aaalbdre
aaalbder aaalbedr aaalberd aaaldbre aaaldber aaaldrbe aaaldreb aaalderb aaaldebr aaalebdr aaalebrd
aaaledbr aaaledrb aaalerdb aaalerbd aaderabl aaderalb aaderbal aaderbla aaderlba aaderlab aadearbl
aadearlb aadeabrl aadeablr aadealbr aadealrb aadebarl aadebalr aadebral aadebrla aadeblra aadeblar
aadelabr aadelarb aadelbar aadelbra aadelrba aadelrab aadreabl aadrealb aadrebal aadrebla aadrelba
aadrelab aadraebl aadraelb aadrabel aadrable aadralbe aadraleb aadrbael aadrbale aadrbeal aadrbela
aadrblea aadrblae aadrlabe aadrlaeb aadrlbae aadrlbea aadrleba aadrleab aadarebl aadarelb aadarbel
aadarble aadarlbe aadarleb aadaerbl aadaerlb aadaebrl aadaeblr aadaelbr aadaelrb aadaberl aadabelr
aadabrel aadabrle aadablre aadabler aadalebr aadalerb aadalber aadalbre aadalrbe aadalreb aadbrael
aadbrale aadbreal aadbrela aadbrlea aadbrlae aadbarel aadbarle aadbaerl aadbaelr aadbaler aadbalre
aadbearl aadbealr aadberal aadberla aadbelra aadbelar aadblaer aadblare aadblear aadblera aadblrea
aadblrae aadlrabe aadlraeb aadlrbae aadlrbea aadlreba aadlreab aadlarbe aadlareb aadlabre aadlaber
aadlaebr aadlaerb aadlbare aadlbaer aadlbrae aadlbrea aadlbera aadlbear aadleabr aadlearb aadlebar
aadlebra aadlerba aadlerab aaleradb aalerabd aalerdab aalerdba aalerbda aalerbad aaleardb aalearbd
aaleadrb aaleadbr aaleabdr aaleabrd aaledarb aaledabr aaledrab aaledrba aaledbra aaledbar aalebadr
aalebard aalebdar aalebdra aalebrda aalebrad aalreadb aalreabd aalredab aalredba aalrebda aalrebad
aalraedb aalraebd aalradeb aalradbe aalrabde aalrabed aalrdaeb aalrdabe aalrdeab aalrdeba aalrdbea
aalrdbae aalrbade aalrbaed aalrbdae aalrbdea aalrbeda aalrbead aalaredb aalarebd aalardeb aalardbe
aalarbde aalarbed aalaerdb aalaerbd aalaedrb aalaedbr aalaebdr aalaebrd aaladerb aaladebr aaladreb
aaladrbe aaladbre aaladber aalabedr aalaberd aalabder aalabdre aalabrde aalabred aaldraeb aaldrabe
aaldreab aaldreba aaldrbea aaldrbae aaldareb aaldarbe aaldaerb aaldaebr aaldaber aaldabre aaldearb
aaldeabr aalderab aalderba aaldebra aaldebar aaldbaer aaldbare aaldbear aaldbera aaldbrea aaldbrae
aalbrade aalbraed aalbrdae aalbrdea aalbreda aalbread aalbarde aalbared aalbadre aalbader aalbaedr
aalbaerd aalbdare aalbdaer aalbdrae aalbdrea aalbdera aalbdear aalbeadr aalbeard aalbedar aalbedra
aalberda aalberad

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History of cryptography
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