easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

partialist

aeratis

superbissimum

quinquina

pajonal

keiffer

recurvirostra

vacatque

rebrick

volatileness

aprickle

gynecomorphous

khoanh

remseq

reexchanged

mimiambics

promerentque

mittebimus


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: perferrentque
cipher variations:
qfsgfssfourvf rgthgttgpvswg shuihuuhqwtxh tivjivvirxuyi ujwkjwwjsyvzj
vkxlkxxktzwak wlymlyyluaxbl xmznmzzmvbycm ynaonaanwczdn zobpobboxdaeo
apcqpccpyebfp bqdrqddqzfcgq cresreeragdhr dsftsffsbheis etgutggtcifjt
fuhvuhhudjgku gviwviivekhlv hwjxwjjwflimw ixkyxkkxgmjnx jylzyllyhnkoy
kzmazmmziolpz lanbannajpmqa mbocboobkqnrb ncpdcppclrosc odqedqqdmsptd

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: perferrentque
Cipher: kviuviivmgjfv

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: perferrentque
Cipher: ABBBA AABAA BAAAA AABAB AABAA BAAAA BAAAA AABAA ABBAA BAABA ABBBB BAABB AABAA

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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: perferrentque
cipher variations:
qfsgfssfourvfunaqnaanogxjnyviaviivosdxvcdqkdqqdoejldglyulyyloqpzlktgetggtocvntsjwyjwwjoahpjwreireeromndr
azmszmmzoytrzehuchuuhokzfhipcmpccpowftpmxkwxkkxoilhxrgthgttgpvswgvobrobbophykozwjbwjjwpteywderlerrepfkme
hmzvmzzmprqamluhfuhhupdwoutkxzkxxkpbiqkxsfjsffspnoesbantannapzusafivdivviplagijqdnqddqpxguqnylxyllypjmiy
shuihuuhqwtxhwpcspccpqizlpaxkcxkkxqufzxefsmfssfqglnfinawnaanqsrbnmvigviivqexpvulyalyylqcjrlytgktggtqopft
cbouboobqavtbgjwejwwjqmbhjkreoreerqyhvrozmyzmmzqknjztivjivvirxuyixqdtqddqrjamqbyldyllyrvgayfgtngttgrhmog
jobxobbortsconwjhwjjwrfyqwvmzbmzzmrdksmzuhluhhurpqgudcpvcppcrbwuchkxfkxxkrnciklsfpsffsrziwspanzannarloka
ujwkjwwjsyvzjyreureerskbnrczmezmmzswhbzghuohuuhsinphkpcypccpsutdpoxkixkkxsgzrxwnacnaanseltnavimviivsqrhv
edqwdqqdscxvdilyglyylsodjlmtgqtggtsajxtqboaboobsmplbvkxlkxxktzwakzsfvsffstlcosdanfannatxicahivpivvitjoqi
lqdzqddqtvueqpyljyllythasyxobdobbotfmuobwjnwjjwtrsiwferxerretdywejmzhmzzmtpekmnuhruhhutbkyurcpbcppctnqmc
wlymlyyluaxblatgwtggtumdptebogboobuyjdbijwqjwwjukprjmreareeruwvfrqzmkzmmzuibtzypcepccpugnvpcxkoxkkxustjx
gfsyfssfuezxfknainaanuqflnovisviivuclzvsdqcdqqduorndxmznmzzmvbycmbuhxuhhuvnequfcphcppcvzkecjkxrkxxkvlqsk
nsfbsffsvxwgsranlannavjcuazqdfqddqvhowqdylpyllyvtukyhgtzgttgvfayglobjobbovrgmopwjtwjjwvdmawterderrevpsoe
ynaonaanwczdncviyviivwofrvgdqidqqdwalfdklyslyylwmrtlotgctggtwyxhtsbomboobwkdvbaregreerwipxrezmqzmmzwuvlz
ihuahuuhwgbzhmpckpccpwshnpqxkuxkkxwenbxufsefssfwqtpfzobpobboxdaeodwjzwjjwxpgswherjerrexbmgelmztmzzmxnsum
puhduhhuxzyiutcpncppcxlewcbsfhsffsxjqysfanrannaxvwmajivbivvixhcainqdlqddqxtioqrylvyllyxfocyvgtfgttgxruqg
apcqpccpyebfpexkaxkkxyqhtxifskfssfycnhfmnaunaanyotvnqvieviivyazjvudqodqqdymfxdctgitggtykrztgbosboobywxnb
kjwcjwwjyidbjoremreeryujprszmwzmmzygpdzwhughuuhysvrhbqdrqddqzfcgqfylbyllyzriuyjgtlgttgzdoignobvobbozpuwo
rwjfwjjwzbakwverperrezngyeduhjuhhuzlsauhcptcppczxyoclkxdkxxkzjeckpsfnsffszvkqstanxannazhqeaxivhivviztwsi
cresreeragdhrgzmczmmzasjvzkhumhuuhaepjhopcwpccpaqvxpsxkgxkkxacblxwfsqfssfaohzfevikviivamtbvidqudqqdayzpd
mlyelyylakfdlqtgotggtawlrtuboyboobairfbyjwijwwjauxtjdsftsffsbheishandannabtkwalivnivvibfqkipqdxqddqbrwyq
tylhyllybdcmyxgtrgttgbpiagfwjlwjjwbnucwjerverrebzaqenmzfmzzmblgemruhpuhhubxmsuvcpzcppcbjsgczkxjkxxkbvyuk
etgutggtcifjtiboeboobculxbmjwojwwjcgrljqreyreercsxzruzmizmmzcednzyhushuuhcqjbhgxkmxkkxcovdxkfswfssfcabrf
onagnaancmhfnsviqviivcyntvwdqadqqdckthdalyklyylcwzvlfuhvuhhudjgkujcpfcppcdvmycnkxpkxxkdhsmkrsfzsffsdtyas
vanjannadfeoazivtivvidrkcihylnyllydpweylgtxgttgdbcsgpobhobbodnigotwjrwjjwdzouwxerberredluiebmzlmzzmdxawm
gviwviivekhlvkdqgdqqdewnzdolyqlyyleitnlstgatggteuzbtwbokboobegfpbajwujwwjesldjizmozmmzeqxfzmhuyhuuhecdth
qpcipccpeojhpuxksxkkxeapvxyfscfssfemvjfcnamnaaneybxnhwjxwjjwflimwlerherrefxoaepmzrmzzmfjuomtuhbuhhufvacu
xcplcppcfhgqcbkxvkxxkftmekjanpannafryganivzivvifdeuirqdjqddqfpkiqvyltyllyfbqwyzgtdgttgfnwkgdobnobbofzcyo
ixkyxkkxgmjnxmfsifssfgypbfqnasnaangkvpnuvicviivgwbdvydqmdqqdgihrdclywlyylgunflkboqboobgszhbojwajwwjgefvj
srekreergqljrwzmuzmmzgcrxzahuehuuhgoxlhepcopccpgadzpjylzyllyhnkoyngtjgttghzqcgrobtobbohlwqovwjdwjjwhxcew
zernerrehjisedmzxmzzmhvogmlcprcppchtaicpkxbkxxkhfgwktsflsffshrmksxanvannahdsyabivfivvihpymifqdpqddqhbeaq
kzmazmmziolpzohukhuuhiardhspcupccpimxrpwxkexkkxiydfxafsofssfikjtfenaynaaniwphnmdqsdqqdiubjdqlyclyylighxl
utgmtggtisnltybowboobietzbcjwgjwwjiqznjgreqreericfbrlanbannajpmqapivlivvijbseitqdvqddqjnysqxylfyllyjzegy
bgtpgttgjlkugfobzobbojxqionerterrejvckermzdmzzmjhiymvuhnuhhujtomuzcpxcppcjfuacdkxhkxxkjraokhsfrsffsjdgcs
mbocboobkqnrbqjwmjwwjkctfjurewreerkoztryzmgzmmzkafhzchuqhuuhkmlvhgpcapccpkyrjpofsufssfkwdlfsnaenaankijzn
wvioviivkupnvadqydqqdkgvbdelyilyylksbplitgstggtkehdtncpdcppclroscrkxnkxxkldugkvsfxsffslpauszanhannalbgia
divrivvilnmwihqdbqddqlzskqpgtvgttglxemgtobfobboljkaoxwjpwjjwlvqowberzerrelhwcefmzjmzzmltcqmjuhtuhhulfieu
odqedqqdmsptdslyolyylmevhlwtgytggtmqbvtaboiboobmchjbejwsjwwjmonxjirecreermatlrqhuwhuuhmyfnhupcgpccpmklbp
yxkqxkkxmwrpxcfsafssfmixdfgnaknaanmudrnkviuviivmgjfvperferrentquetmzpmzzmnfwimxuhzuhhunrcwubcpjcppcndikc
fkxtkxxknpoykjsfdsffsnbumsrivxivvinzgoivqdhqddqnlmcqzylryllynxsqydgtbgttgnjyeghoblobbonvesolwjvwjjwnhkgw

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,

Read more ...

 

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: perferrentque
Cipher: cresreeragdhr

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: perferrentque
Cipher: 53512412512424513344145451

Extended Methods:
Method #1

Plaintext: perferrentque
method variations:
ukwlkwwksyvzkzpbqpbbpxdaepeugvuggucifkukzmazmmzholpz

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
p e r f e r r e n t q u e 
5 5 2 1 5 2 2 5 3 4 1 5 5 
3 1 4 2 1 4 4 1 3 4 4 4 1 
They are then read out in rows:
55215225341553142144134441
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: perferrentque
Cipher: zbkwsvpqbtltd

Read more ...
Method #3

Plaintext: perferrentque
method variations:
xfdwfiylsdyyv fdwfiylsdyyvx dwfiylsdyyvxf
wfiylsdyyvxfd fiylsdyyvxfdw iylsdyyvxfdwf
ylsdyyvxfdwfi lsdyyvxfdwfiy sdyyvxfdwfiyl
dyyvxfdwfiyls yyvxfdwfiylsd yvxfdwfiylsdy
vxfdwfiylsdyy

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: perferrentque

first 5040 cipher variations(6187239489 total)
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perfernuerqet perfernuerqte perfernuereqt perfernueretq perfernuerteq perfernuertqe perfernertque perfernertqeu perfernertuqe
perfernertueq perfernerteuq perfernertequ perfernerqtue perfernerqteu perfernerqute perfernerquet perfernerqeut perfernerqetu
perferneruqte perferneruqet perfernerutqe perferneruteq perferneruetq perfernerueqt perfernerequt perfernereqtu perfernereuqt
perfernereutq perferneretuq perferneretqu perfernetrque perfernetrqeu perfernetruqe perfernetrueq perfernetreuq perfernetrequ
perfernetqrue perfernetqreu perfernetqure perfernetquer perfernetqeur perfernetqeru perfernetuqre perfernetuqer perferneturqe
perfernetureq perfernetuerq perfernetueqr perfernetequr perferneteqru perferneteuqr perferneteurq perferneteruq perferneterqu
perferneqtrue perferneqtreu perferneqture perferneqtuer perferneqteur perferneqteru perferneqrtue perferneqrteu perferneqrute
perferneqruet perferneqreut perferneqretu perfernequrte perfernequret perfernequtre perfernequter perfernequetr perfernequert
perferneqerut perferneqertu perferneqeurt perferneqeutr perferneqetur perferneqetru perferneutqre perferneutqer perferneutrqe
perferneutreq perferneuterq perferneuteqr perferneuqtre perferneuqter perferneuqrte perferneuqret perferneuqert perferneuqetr
perferneurqte perferneurqet perferneurtqe perferneurteq perferneuretq perferneureqt perferneueqrt perferneueqtr perferneuerqt
perferneuertq perferneuetrq perferneuetqr perferneetqur perferneetqru perferneetuqr perferneeturq perferneetruq perferneetrqu
perferneeqtur perferneeqtru perferneequtr perferneequrt perferneeqrut perferneeqrtu perferneeuqtr perferneeuqrt perferneeutqr
perferneeutrq perferneeurtq perferneeurqt perferneerqut perferneerqtu perferneeruqt perferneerutq perferneertuq perferneertqu
perfertenrque perfertenrqeu perfertenruqe perfertenrueq perfertenreuq perfertenrequ perfertenqrue perfertenqreu perfertenqure
perfertenquer perfertenqeur perfertenqeru perfertenuqre perfertenuqer perfertenurqe perfertenureq perfertenuerq perfertenueqr
perfertenequr perferteneqru perferteneuqr perferteneurq perferteneruq perfertenerqu perferternque perferternqeu perferternuqe
perferternueq perferterneuq perferternequ perferterqnue perferterqneu perferterqune perferterquen perferterqeun perferterqenu
perferteruqne perferteruqen perferterunqe perferteruneq perferteruenq perferterueqn perferterequn perfertereqnu perfertereuqn
perfertereunq perferterenuq perferterenqu perferteqrnue perferteqrneu perferteqrune perferteqruen perferteqreun perferteqrenu
perferteqnrue perferteqnreu perferteqnure perferteqnuer perferteqneur perferteqneru perfertequnre perfertequner perfertequrne
perfertequren perfertequern perfertequenr perferteqenur perferteqenru perferteqeunr perferteqeurn perferteqerun perferteqernu
perferteurqne perferteurqen perferteurnqe perferteurneq perferteurenq perferteureqn perferteuqrne perferteuqren perferteuqnre
perferteuqner perferteuqenr perferteuqern perferteunqre perferteunqer perferteunrqe perferteunreq perferteunerq perferteuneqr
perferteueqnr perferteueqrn perferteuenqr perferteuenrq perferteuernq perferteuerqn perferteerqun perferteerqnu perferteeruqn
perferteerunq perferteernuq perferteernqu perferteeqrun perferteeqrnu perferteequrn perferteequnr perferteeqnur perferteeqnru
perferteeuqrn perferteeuqnr perferteeurqn perferteeurnq perferteeunrq perferteeunqr perferteenqur perferteenqru perferteenuqr
perferteenurq perferteenruq perferteenrqu perfertnerque perfertnerqeu perfertneruqe perfertnerueq perfertnereuq perfertnerequ
perfertneqrue perfertneqreu perfertnequre perfertnequer perfertneqeur perfertneqeru perfertneuqre perfertneuqer perfertneurqe
perfertneureq perfertneuerq perfertneueqr perfertneequr perfertneeqru perfertneeuqr perfertneeurq perfertneeruq perfertneerqu
perfertnreque perfertnreqeu perfertnreuqe perfertnreueq perfertnreeuq perfertnreequ perfertnrqeue perfertnrqeeu perfertnrquee
perfertnrquee perfertnrqeue perfertnrqeeu perfertnruqee perfertnruqee perfertnrueqe perfertnrueeq perfertnrueeq perfertnrueqe
perfertnreque perfertnreqeu perfertnreuqe perfertnreueq perfertnreeuq perfertnreequ perfertnqreue perfertnqreeu perfertnqruee
perfertnqruee perfertnqreue perfertnqreeu perfertnqerue perfertnqereu perfertnqeure perfertnqeuer perfertnqeeur perfertnqeeru
perfertnquere perfertnqueer perfertnquree perfertnquree perfertnquere perfertnqueer perfertnqeeur perfertnqeeru perfertnqeuer
perfertnqeure perfertnqerue perfertnqereu perfertnurqee perfertnurqee perfertnureqe perfertnureeq perfertnureeq perfertnureqe
perfertnuqree perfertnuqree perfertnuqere perfertnuqeer perfertnuqeer perfertnuqere perfertnueqre perfertnueqer perfertnuerqe
perfertnuereq perfertnueerq perfertnueeqr perfertnueqer perfertnueqre perfertnueeqr perfertnueerq perfertnuereq perfertnuerqe
perfertnerque perfertnerqeu perfertneruqe perfertnerueq perfertnereuq perfertnerequ perfertneqrue perfertneqreu perfertnequre
perfertnequer perfertneqeur perfertneqeru perfertneuqre perfertneuqer perfertneurqe perfertneureq perfertneuerq perfertneueqr
perfertneequr perfertneeqru perfertneeuqr perfertneeurq perfertneeruq perfertneerqu perfertrneque perfertrneqeu perfertrneuqe
perfertrneueq perfertrneeuq perfertrneequ perfertrnqeue perfertrnqeeu perfertrnquee perfertrnquee perfertrnqeue perfertrnqeeu
perfertrnuqee perfertrnuqee perfertrnueqe perfertrnueeq perfertrnueeq perfertrnueqe perfertrneque perfertrneqeu perfertrneuqe
perfertrneueq perfertrneeuq perfertrneequ perfertrenque perfertrenqeu perfertrenuqe perfertrenueq perfertreneuq perfertrenequ
perfertreqnue perfertreqneu perfertrequne perfertrequen perfertreqeun perfertreqenu perfertreuqne perfertreuqen perfertreunqe
perfertreuneq perfertreuenq perfertreueqn perfertreequn perfertreeqnu perfertreeuqn perfertreeunq perfertreenuq perfertreenqu
perfertrqenue perfertrqeneu perfertrqeune perfertrqeuen perfertrqeeun perfertrqeenu perfertrqneue perfertrqneeu perfertrqnuee
perfertrqnuee perfertrqneue perfertrqneeu perfertrqunee perfertrqunee perfertrquene perfertrqueen perfertrqueen perfertrquene
perfertrqenue perfertrqeneu perfertrqeune perfertrqeuen perfertrqeeun perfertrqeenu perfertrueqne perfertrueqen perfertruenqe
perfertrueneq perfertrueenq perfertrueeqn perfertruqene perfertruqeen perfertruqnee perfertruqnee perfertruqene perfertruqeen
perfertrunqee perfertrunqee perfertruneqe perfertruneeq perfertruneeq perfertruneqe perfertrueqne perfertrueqen perfertruenqe
perfertrueneq perfertrueenq perfertrueeqn perfertreequn perfertreeqnu perfertreeuqn perfertreeunq perfertreenuq perfertreenqu
perfertreqeun perfertreqenu perfertrequen perfertrequne perfertreqnue perfertreqneu perfertreuqen perfertreuqne perfertreueqn
perfertreuenq perfertreuneq perfertreunqe perfertrenque perfertrenqeu perfertrenuqe perfertrenueq perfertreneuq perfertrenequ
perfertqnreue perfertqnreeu perfertqnruee perfertqnruee perfertqnreue perfertqnreeu perfertqnerue perfertqnereu perfertqneure
perfertqneuer perfertqneeur perfertqneeru perfertqnuere perfertqnueer perfertqnuree perfertqnuree perfertqnuere perfertqnueer
perfertqneeur perfertqneeru perfertqneuer perfertqneure perfertqnerue perfertqnereu perfertqrneue perfertqrneeu perfertqrnuee
perfertqrnuee perfertqrneue perfertqrneeu perfertqrenue perfertqreneu perfertqreune perfertqreuen perfertqreeun perfertqreenu
perfertqruene perfertqrueen perfertqrunee perfertqrunee perfertqruene perfertqrueen perfertqreeun perfertqreenu perfertqreuen
perfertqreune perfertqrenue perfertqreneu perfertqernue perfertqerneu perfertqerune perfertqeruen perfertqereun perfertqerenu
perfertqenrue perfertqenreu perfertqenure perfertqenuer perfertqeneur perfertqeneru perfertqeunre perfertqeuner perfertqeurne
perfertqeuren perfertqeuern perfertqeuenr perfertqeenur perfertqeenru perfertqeeunr perfertqeeurn perfertqeerun perfertqeernu
perfertqurene perfertqureen perfertqurnee perfertqurnee perfertqurene perfertqureen perfertquerne perfertqueren perfertquenre
perfertquener perfertqueenr perfertqueern perfertqunere perfertquneer perfertqunree perfertqunree perfertqunere perfertquneer
perfertqueenr perfertqueern perfertquener perfertquenre perfertquerne perfertqueren perfertqereun perfertqerenu perfertqeruen
perfertqerune perfertqernue perfertqerneu perfertqeerun perfertqeernu perfertqeeurn perfertqeeunr perfertqeenur perfertqeenru
perfertqeuern perfertqeuenr perfertqeuren perfertqeurne perfertqeunre perfertqeuner perfertqeneur perfertqeneru perfertqenuer
perfertqenure perfertqenrue perfertqenreu perfertunrqee perfertunrqee perfertunreqe perfertunreeq perfertunreeq perfertunreqe
perfertunqree perfertunqree perfertunqere perfertunqeer perfertunqeer perfertunqere perfertuneqre perfertuneqer perfertunerqe
perfertunereq perfertuneerq perfertuneeqr perfertuneqer perfertuneqre perfertuneeqr perfertuneerq perfertunereq perfertunerqe
perferturnqee perferturnqee perferturneqe perferturneeq perferturneeq perferturneqe perferturqnee perferturqnee perferturqene
perferturqeen perferturqeen perferturqene perfertureqne perfertureqen perferturenqe perfertureneq perfertureenq perfertureeqn
perfertureqen perfertureqne perfertureeqn perfertureenq perfertureneq perferturenqe perfertuqrnee perfertuqrnee perfertuqrene
perfertuqreen perfertuqreen perfertuqrene perfertuqnree perfertuqnree perfertuqnere perfertuqneer perfertuqneer perfertuqnere
perfertuqenre perfertuqener perfertuqerne perfertuqeren perfertuqeern perfertuqeenr perfertuqener perfertuqenre perfertuqeenr
perfertuqeern perfertuqeren perfertuqerne perfertuerqne perfertuerqen perfertuernqe perfertuerneq perfertuerenq perfertuereqn
perfertueqrne perfertueqren perfertueqnre perfertueqner perfertueqenr perfertueqern perfertuenqre perfertuenqer perfertuenrqe
perfertuenreq perfertuenerq perfertueneqr perfertueeqnr perfertueeqrn perfertueenqr perfertueenrq perfertueernq perfertueerqn
perfertuerqen perfertuerqne perfertuereqn perfertuerenq perfertuerneq perfertuernqe perfertueqren perfertueqrne perfertueqern
perfertueqenr perfertueqner perfertueqnre perfertueeqrn perfertueeqnr perfertueerqn perfertueernq perfertueenrq perfertueenqr
perfertuenqer perfertuenqre perfertueneqr perfertuenerq perfertuenreq perfertuenrqe perfertenrque perfertenrqeu perfertenruqe
perfertenrueq perfertenreuq perfertenrequ perfertenqrue perfertenqreu perfertenqure perfertenquer perfertenqeur perfertenqeru
perfertenuqre perfertenuqer perfertenurqe perfertenureq perfertenuerq perfertenueqr perfertenequr perferteneqru perferteneuqr
perferteneurq perferteneruq perfertenerqu perferternque perferternqeu perferternuqe perferternueq perferterneuq perferternequ
perferterqnue perferterqneu perferterqune perferterquen perferterqeun perferterqenu perferteruqne perferteruqen perferterunqe
perferteruneq perferteruenq perferterueqn perferterequn perfertereqnu perfertereuqn perfertereunq perferterenuq perferterenqu
perferteqrnue perferteqrneu perferteqrune perferteqruen perferteqreun perferteqrenu perferteqnrue perferteqnreu perferteqnure
perferteqnuer perferteqneur perferteqneru perfertequnre perfertequner perfertequrne perfertequren perfertequern perfertequenr
perferteqenur perferteqenru perferteqeunr perferteqeurn perferteqerun perferteqernu perferteurqne perferteurqen perferteurnqe
perferteurneq perferteurenq perferteureqn perferteuqrne perferteuqren perferteuqnre perferteuqner perferteuqenr perferteuqern
perferteunqre perferteunqer perferteunrqe perferteunreq perferteunerq perferteuneqr perferteueqnr perferteueqrn perferteuenqr
perferteuenrq perferteuernq perferteuerqn perferteerqun perferteerqnu perferteeruqn perferteerunq perferteernuq perferteernqu
perferteeqrun perferteeqrnu perferteequrn perferteequnr perferteeqnur perferteeqnru perferteeuqrn perferteeuqnr perferteeurqn
perferteeurnq perferteeunrq perferteeunqr perferteenqur perferteenqru perferteenuqr perferteenurq perferteenruq perferteenrqu
perferqentrue perferqentreu perferqenture perferqentuer perferqenteur perferqenteru perferqenrtue perferqenrteu perferqenrute
perferqenruet perferqenreut perferqenretu perferqenurte perferqenuret perferqenutre perferqenuter perferqenuetr perferqenuert
perferqenerut perferqenertu perferqeneurt perferqeneutr perferqenetur perferqenetru perferqetnrue perferqetnreu perferqetnure
perferqetnuer perferqetneur perferqetneru perferqetrnue perferqetrneu perferqetrune perferqetruen perferqetreun perferqetrenu
perferqeturne perferqeturen perferqetunre perferqetuner perferqetuenr perferqetuern perferqeterun perferqeternu perferqeteurn
perferqeteunr perferqetenur perferqetenru perferqertnue perferqertneu perferqertune perferqertuen perferqerteun perferqertenu
perferqerntue perferqernteu perferqernute perferqernuet perferqerneut perferqernetu perferqerunte perferqerunet perferqerutne
perferqeruten perferqeruetn perferqeruent perferqerenut perferqerentu perferqereunt perferqereutn perferqeretun perferqeretnu
perferqeutrne perferqeutren perferqeutnre perferqeutner perferqeutenr perferqeutern perferqeurtne perferqeurten perferqeurnte
perferqeurnet perferqeurent perferqeuretn perferqeunrte perferqeunret perferqeuntre perferqeunter perferqeunetr perferqeunert
perferqeuernt perferqeuertn perferqeuenrt perferqeuentr perferqeuetnr perferqeuetrn perferqeetrun perferqeetrnu perferqeeturn
perferqeetunr perferqeetnur perferqeetnru perferqeertun perferqeertnu perferqeerutn perferqeerunt perferqeernut perferqeerntu
perferqeeurtn perferqeeurnt perferqeeutrn perferqeeutnr perferqeeuntr perferqeeunrt perferqeenrut perferqeenrtu perferqeenurt
perferqeenutr perferqeentur perferqeentru perferqnetrue perferqnetreu perferqneture perferqnetuer perferqneteur perferqneteru
perferqnertue perferqnerteu perferqnerute perferqneruet perferqnereut perferqneretu perferqneurte perferqneuret perferqneutre
perferqneuter perferqneuetr perferqneuert perferqneerut perferqneertu perferqneeurt perferqneeutr perferqneetur perferqneetru
perferqnterue perferqntereu perferqnteure perferqnteuer perferqnteeur perferqnteeru perferqntreue perferqntreeu perferqntruee
perferqntruee perferqntreue perferqntreeu perferqnturee perferqnturee perferqntuere perferqntueer perferqntueer perferqntuere
perferqnterue perferqntereu perferqnteure perferqnteuer perferqnteeur perferqnteeru perferqnrteue perferqnrteeu perferqnrtuee
perferqnrtuee perferqnrteue perferqnrteeu perferqnretue perferqnreteu perferqnreute perferqnreuet perferqnreeut perferqnreetu
perferqnruete perferqnrueet perferqnrutee perferqnrutee perferqnruete perferqnrueet perferqnreeut perferqnreetu perferqnreuet
perferqnreute perferqnretue perferqnreteu perferqnutree perferqnutree perferqnutere perferqnuteer perferqnuteer perferqnutere
perferqnurtee perferqnurtee perferqnurete perferqnureet perferqnureet perferqnurete perferqnuerte perferqnueret perferqnuetre
perferqnueter perferqnueetr perferqnueert perferqnueret perferqnuerte perferqnueert perferqnueetr perferqnueter perferqnuetre
perferqnetrue perferqnetreu perferqneture perferqnetuer perferqneteur perferqneteru perferqnertue perferqnerteu perferqnerute
perferqneruet perferqnereut perferqneretu perferqneurte perferqneuret perferqneutre perferqneuter perferqneuetr perferqneuert
perferqneerut perferqneertu perferqneeurt perferqneeutr perferqneetur perferqneetru perferqtnerue perferqtnereu perferqtneure
perferqtneuer perferqtneeur perferqtneeru perferqtnreue perferqtnreeu perferqtnruee perferqtnruee perferqtnreue perferqtnreeu
perferqtnuree perferqtnuree perferqtnuere perferqtnueer perferqtnueer perferqtnuere perferqtnerue perferqtnereu perferqtneure
perferqtneuer perferqtneeur perferqtneeru perferqtenrue perferqtenreu perferqtenure perferqtenuer perferqteneur perferqteneru
perferqternue perferqterneu perferqterune perferqteruen perferqtereun perferqterenu perferqteurne perferqteuren perferqteunre
perferqteuner perferqteuenr perferqteuern perferqteerun perferqteernu perferqteeurn perferqteeunr perferqteenur perferqteenru
perferqtrenue perferqtreneu perferqtreune perferqtreuen perferqtreeun perferqtreenu perferqtrneue perferqtrneeu perferqtrnuee
perferqtrnuee perferqtrneue perferqtrneeu perferqtrunee perferqtrunee perferqtruene perferqtrueen perferqtrueen perferqtruene
perferqtrenue perferqtreneu perferqtreune perferqtreuen perferqtreeun perferqtreenu perferqtuerne perferqtueren perferqtuenre
perferqtuener perferqtueenr perferqtueern perferqturene perferqtureen perferqturnee perferqturnee perferqturene perferqtureen
perferqtunree perferqtunree perferqtunere perferqtuneer perferqtuneer perferqtunere perferqtuerne perferqtueren perferqtuenre
perferqtuener perferqtueenr perferqtueern perferqteerun perferqteernu perferqteeurn perferqteeunr perferqteenur perferqteenru
perferqtereun perferqterenu perferqteruen perferqterune perferqternue perferqterneu perferqteuren perferqteurne perferqteuern
perferqteuenr perferqteuner perferqteunre perferqtenrue perferqtenreu perferqtenure perferqtenuer perferqteneur perferqteneru
perferqrnteue perferqrnteeu perferqrntuee perferqrntuee perferqrnteue perferqrnteeu perferqrnetue perferqrneteu perferqrneute
perferqrneuet perferqrneeut perferqrneetu perferqrnuete perferqrnueet perferqrnutee perferqrnutee perferqrnuete perferqrnueet
perferqrneeut perferqrneetu perferqrneuet perferqrneute perferqrnetue perferqrneteu perferqrtneue perferqrtneeu perferqrtnuee
perferqrtnuee perferqrtneue perferqrtneeu perferqrtenue perferqrteneu perferqrteune perferqrteuen perferqrteeun perferqrteenu
perferqrtuene perferqrtueen perferqrtunee perferqrtunee perferqrtuene perferqrtueen perferqrteeun perferqrteenu perferqrteuen
perferqrteune perferqrtenue perferqrteneu perferqretnue perferqretneu perferqretune perferqretuen perferqreteun perferqretenu
perferqrentue perferqrenteu perferqrenute perferqrenuet perferqreneut perferqrenetu perferqreunte perferqreunet perferqreutne
perferqreuten perferqreuetn perferqreuent perferqreenut perferqreentu perferqreeunt perferqreeutn perferqreetun perferqreetnu
perferqrutene perferqruteen perferqrutnee perferqrutnee perferqrutene perferqruteen perferqruetne perferqrueten perferqruente
perferqruenet perferqrueent perferqrueetn perferqrunete perferqruneet perferqruntee perferqruntee perferqrunete perferqruneet
perferqrueent perferqrueetn perferqruenet perferqruente perferqruetne perferqrueten perferqreteun perferqretenu perferqretuen
perferqretune perferqretnue perferqretneu perferqreetun perferqreetnu perferqreeutn perferqreeunt perferqreenut perferqreentu
perferqreuetn perferqreuent perferqreuten perferqreutne perferqreunte perferqreunet perferqreneut perferqrenetu perferqrenuet
perferqrenute perferqrentue perferqrenteu perferquntree perferquntree perferquntere perferqunteer perferqunteer perferquntere
perferqunrtee perferqunrtee perferqunrete perferqunreet perferqunreet perferqunrete perferqunerte perferquneret perferqunetre
perferquneter perferquneetr perferquneert perferquneret perferqunerte perferquneert perferquneetr perferquneter perferqunetre
perferqutnree perferqutnree perferqutnere perferqutneer perferqutneer perferqutnere perferqutrnee perferqutrnee perferqutrene
perferqutreen perferqutreen perferqutrene perferquterne perferquteren perferqutenre perferqutener perferquteenr perferquteern
perferquteren perferquterne perferquteern perferquteenr perferqutener perferqutenre perferqurtnee perferqurtnee perferqurtene
perferqurteen perferqurteen perferqurtene perferqurntee perferqurntee perferqurnete perferqurneet perferqurneet perferqurnete
perferqurente perferqurenet perferquretne perferqureten perferqureetn perferqureent perferqurenet perferqurente perferqureent
perferqureetn perferqureten perferquretne perferquetrne perferquetren perferquetnre perferquetner perferquetenr perferquetern
perferquertne perferquerten perferquernte perferquernet perferquerent perferqueretn perferquenrte perferquenret perferquentre
perferquenter perferquenetr perferquenert perferqueernt perferqueertn perferqueenrt perferqueentr perferqueetnr perferqueetrn
perferquetren perferquetrne perferquetern perferquetenr perferquetner perferquetnre perferquerten perferquertne perferqueretn
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History of cryptography
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