easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

tactlessly

propinquasque

narrowminded

livetrap

viriliter

croslin

retrogressing

gruelling

mancini

rufsuna

testisque

evexit

wampsville

retromandibular

antimycoticus

exhilarant

pascisque

majka


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: rednour
cipher variations:
sfeopvs tgfpqwt uhgqrxu vihrsyv wjistzw
xkjtuax ylkuvby zmlvwcz anmwxda bonxyeb
cpoyzfc dqpzagd erqabhe fsrbcif gtscdjg
hutdekh ivuefli jwvfgmj kxwghnk lyxhiol
mzyijpm nazjkqn obaklro pcblmsp qdcmntq

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: rednour
Cipher: ivwmlfi

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: rednour
Cipher: BAAAA AABAA AAABB ABBAA ABBAB BAABB BAAAA

Read more ...

 

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: rednour
cipher variations:
sfeopvsankorjaivqotxiqdwovlqylcoxzygtiozngwjuodpweraofde
mzgohrmuhmojfucpsoltckxyonhktgfpqwtbolpskbjwrpuyjrexpwmr
zmdpyazhujpaohxkvpeqxfsbpgefnahpisnvinpkgvdqtpmudlyzpoil
uhgqrxucpmqtlckxsqvzksfyqxnsaneqzbaivkqbpiylwqfrygtcqhfg
obiqjtowjoqlhweruqnvemzaqpjmvihrsyvdqnrumdlytrwaltgzryot
bofracbjwlrcqjzmxrgszhudrighpcjrkupxkprmixfsvrowfnabrqkn
wjistzwerosvnemzusxbmuhaszpucpgsbdckxmsdrkanyshtaivesjhi
qdkslvqylqsnjygtwspxgobcsrloxkjtuaxfsptwofnavtycnvibtaqv
dqhtcedlynteslboztiubjwftkijreltmwrzmrtokzhuxtqyhpcdtsmp
ylkuvbygtquxpgobwuzdowjcubrweriudfemzouftmcpaujvckxguljk
sfmunxsansuplaivyurziqdeutnqzmlvwczhurvyqhpcxvaepxkdvcsx
fsjvegfnapvgundqbvkwdlyhvmkltgnvoytbotvqmbjwzvsajrefvuor
anmwxdaivswzriqdywbfqylewdtygtkwfhgobqwhvoercwlxemziwnlm
uhowpzucpuwrnckxawtbksfgwvpsbonxyebjwtxasjrezxcgrzmfxeuz
hulxgihpcrxiwpfsdxmyfnajxomnvipxqavdqvxsodlybxucltghxwqt
cpoyzfckxuybtksfaydhsangyfvaivmyhjiqdsyjxqgteynzgobkypno
wjqyrbwerwytpemzcyvdmuhiyxrudqpzagdlyvzcultgbzeitbohzgwb
jwnzikjretzkyrhufzoahpclzqopxkrzscxfsxzuqfnadzwenvijzysv
erqabhemzwadvmuhcafjucpiahxckxoajlksfualzsivgapbiqdmarpq
ylsatdygtyavrgobeaxfowjkaztwfsrbcifnaxbewnvidbgkvdqjbiyd
lypbkmltgvbmatjwhbqcjrenbsqrzmtbuezhuzbwshpcfbygpxklbaux
gtscdjgobycfxowjechlwerkcjzemzqclnmuhwcnbukxicrdksfoctrs
anucvfaivacxtiqdgczhqylmcbvyhutdekhpczdgypxkfdimxfsldkaf
nardmonvixdocvlyjdseltgpdustbovdwgbjwbdyujrehdairzmndcwz
ivuefliqdaehzqylgejnygtmelbgobsenpowjyepdwmzketfmuhqevtu
cpwexhckxcezvksfiebjsanoedxajwvfgmjrebfiarzmhfkozhunfmch
pctfoqpxkzfqexnalfugnvirfwuvdqxfyidlydfawltgjfcktbopfeyb
kxwghnksfcgjbsaniglpaivogndiqdugprqylagrfyobmgvhowjsgxvw
erygzjemzegbxmuhkgdlucpqgfzclyxhioltgdhkctbojhmqbjwphoej
revhqsrzmbhsgzpcnhwipxkthywxfszhakfnafhcynvilhemvdqrhgad
mzyijpmuheilducpkinrckxqipfksfwirtsancithaqdoixjqyluizxy
gtaiblgobgidzowjmifnwersihbenazjkqnvifjmevdqljosdlyrjqgl
tgxjsutbodjuibrepjykrzmvjayzhubjcmhpchjeapxknjgoxfstjicf
obaklrowjgknfwermkptemzskrhmuhyktvucpekvjcsfqkzlsanwkbza
ivckdniqdikfbqylokhpygtukjdgpcblmspxkhlogxfsnlqufnatlsin
vizluwvdqflwkdtgrlamtboxlcabjwdleojrejlgcrzmpliqzhuvlkeh
qdcmntqylimphygtomrvgobumtjowjamvxwergmxleuhsmbnucpymdbc
kxemfpksfkmhdsanqmjraivwmlfirednourzmjnqizhupnswhpcvnukp
xkbnwyxfshnymfvitncovdqznecdlyfngqltglnietbornksbjwxnmgj

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: rednour
Cipher: erqabhe

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: rednour
Cipher: 24514133435424

Extended Methods:
Method #1

Plaintext: rednour
method variations:
wkistzwbpoxyebgutcdkgmzyhipm

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
r e d n o u r 
2 5 4 3 4 5 2 
4 1 1 3 3 4 4 
They are then read out in rows:
25434524113344
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: rednour
Cipher: woyrant

Read more ...
Method #3

Plaintext: rednour
method variations:
yqlsxii qlsxiiy lsxiiyq
sxiiyql xiiyqls iiyqlsx
iyqlsxi

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: rednour

all 5040 cipher variations:
rednour rednoru rednuor rednuro rednruo rednrou redonur redonru redounr redourn redorun
redornu reduonr reduorn redunor redunro redurno reduron redroun redronu redruon redruno
redrnuo redrnou rendour rendoru renduor renduro rendruo rendrou renodur renodru renoudr
renourd renorud renordu renuodr renuord renudor renudro renurdo renurod renroud renrodu
renruod renrudo renrduo renrdou reondur reondru reonudr reonurd reonrud reonrdu reodnur
reodnru reodunr reodurn reodrun reodrnu reoudnr reoudrn reoundr reounrd reournd reourdn
reordun reordnu reorudn reorund reornud reorndu reunodr reunord reundor reundro reunrdo
reunrod reuondr reuonrd reuodnr reuodrn reuordn reuornd reudonr reudorn reudnor reudnro
reudrno reudron reurodn reurond reurdon reurdno reurndo reurnod rernoud rernodu rernuod
rernudo rernduo rerndou reronud rerondu reround reroudn rerodun rerodnu reruond reruodn
rerunod rerundo rerudno rerudon rerdoun rerdonu rerduon rerduno rerdnuo rerdnou rdenour
rdenoru rdenuor rdenuro rdenruo rdenrou rdeonur rdeonru rdeounr rdeourn rdeorun rdeornu
rdeuonr rdeuorn rdeunor rdeunro rdeurno rdeuron rderoun rderonu rderuon rderuno rdernuo
rdernou rdneour rdneoru rdneuor rdneuro rdneruo rdnerou rdnoeur rdnoeru rdnouer rdnoure
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orrnued orrneud orrnedu orrdnue orrdneu orrdune orrduen orrdeun orrdenu orrudne orruden
orrunde orruned orruend orruedn orredun orrednu orreudn orreund orrenud orrendu orunrde
orunred orundre orunder orunedr orunerd orurnde orurned orurdne orurden oruredn orurend
orudrne orudren orudnre orudner orudenr orudern oruerdn oruernd oruedrn oruednr oruendr
oruenrd orenrud orenrdu orenurd orenudr orendur orendru orernud orerndu orerund orerudn
orerdun orerdnu oreurnd oreurdn oreunrd oreundr oreudnr oreudrn oredrun oredrnu oredurn
oredunr orednur orednru uednorr uednorr uednror uednrro uednrro uednror uedonrr uedonrr
uedornr uedorrn uedorrn uedornr uedronr uedrorn uedrnor uedrnro uedrrno uedrron uedrorn
uedronr uedrron uedrrno uedrnro uedrnor uendorr uendorr uendror uendrro uendrro uendror
uenodrr uenodrr uenordr uenorrd uenorrd uenordr uenrodr uenrord uenrdor uenrdro uenrrdo
uenrrod uenrord uenrodr uenrrod uenrrdo uenrdro uenrdor ueondrr ueondrr ueonrdr ueonrrd
ueonrrd ueonrdr ueodnrr ueodnrr ueodrnr ueodrrn ueodrrn ueodrnr ueordnr ueordrn ueorndr
ueornrd ueorrnd ueorrdn ueordrn ueordnr ueorrdn ueorrnd ueornrd ueorndr uernodr uernord
uerndor uerndro uernrdo uernrod uerondr ueronrd uerodnr uerodrn uerordn uerornd uerdonr
uerdorn uerdnor uerdnro uerdrno uerdron uerrodn uerrond uerrdon uerrdno uerrndo uerrnod
uernord uernodr uernrod uernrdo uerndro uerndor ueronrd uerondr uerornd uerordn uerodrn
uerodnr uerrond uerrodn uerrnod uerrndo uerrdno uerrdon uerdorn uerdonr uerdron uerdrno
uerdnro uerdnor udenorr udenorr udenror udenrro udenrro udenror udeonrr udeonrr udeornr
udeorrn udeorrn udeornr uderonr uderorn udernor udernro uderrno uderron uderorn uderonr
uderron uderrno udernro udernor udneorr udneorr udneror udnerro udnerro udneror udnoerr
udnoerr udnorer udnorre udnorre udnorer udnroer udnrore udnreor udnrero udnrreo udnrroe
udnrore udnroer udnrroe udnrreo udnrero udnreor udonerr udonerr udonrer udonrre udonrre
udonrer udoenrr udoenrr udoernr udoerrn udoerrn udoernr udorenr udorern udorner udornre
udorrne udorren udorern udorenr udorren udorrne udornre udorner udrnoer udrnore udrneor
udrnero udrnreo udrnroe udroner udronre udroenr udroern udroren udrorne udreonr udreorn
udrenor udrenro udrerno udreron udrroen udrrone udrreon udrreno udrrneo udrrnoe udrnore
udrnoer udrnroe udrnreo udrnero udrneor udronre udroner udrorne udroren udroern udroenr
udrrone udrroen udrrnoe udrrneo udrreno udrreon udreorn udreonr udreron udrerno udrenro
udrenor undeorr undeorr underor underro underro underor undoerr undoerr undorer undorre
undorre undorer undroer undrore undreor undrero undrreo undrroe undrore undroer undrroe
undrreo undrero undreor unedorr unedorr unedror unedrro unedrro unedror uneodrr uneodrr
uneordr uneorrd uneorrd uneordr unerodr unerord unerdor unerdro unerrdo unerrod unerord
unerodr unerrod unerrdo unerdro unerdor unoedrr unoedrr unoerdr unoerrd unoerrd unoerdr
unoderr unoderr unodrer unodrre unodrre unodrer unorder unordre unoredr unorerd unorred
unorrde unordre unorder unorrde unorred unorerd unoredr unreodr unreord unredor unredro
unrerdo unrerod unroedr unroerd unroder unrodre unrorde unrored unrdoer unrdore unrdeor
unrdero unrdreo unrdroe unrrode unrroed unrrdoe unrrdeo unrredo unrreod unreord unreodr
unrerod unrerdo unredro unredor unroerd unroedr unrored unrorde unrodre unroder unrroed
unrrode unrreod unrredo unrrdeo unrrdoe unrdore unrdoer unrdroe unrdreo unrdero unrdeor
uodnerr uodnerr uodnrer uodnrre uodnrre uodnrer uodenrr uodenrr uodernr uoderrn uoderrn
uodernr uodrenr uodrern uodrner uodrnre uodrrne uodrren uodrern uodrenr uodrren uodrrne
uodrnre uodrner uonderr uonderr uondrer uondrre uondrre uondrer uonedrr uonedrr uonerdr
uonerrd uonerrd uonerdr uonredr uonrerd uonrder uonrdre uonrrde uonrred uonrerd uonredr
uonrred uonrrde uonrdre uonrder uoendrr uoendrr uoenrdr uoenrrd uoenrrd uoenrdr uoednrr
uoednrr uoedrnr uoedrrn uoedrrn uoedrnr uoerdnr uoerdrn uoerndr uoernrd uoerrnd uoerrdn
uoerdrn uoerdnr uoerrdn uoerrnd uoernrd uoerndr uornedr uornerd uornder uorndre uornrde
uornred uorendr uorenrd uorednr uoredrn uorerdn uorernd uordenr uordern uordner uordnre
uordrne uordren uorredn uorrend uorrden uorrdne uorrnde uorrned uornerd uornedr uornred
uornrde uorndre uornder uorenrd uorendr uorernd uorerdn uoredrn uorednr uorrend uorredn
uorrned uorrnde uorrdne uorrden uordern uordenr uordren uordrne uordnre uordner urdnoer
urdnore urdneor urdnero urdnreo urdnroe urdoner urdonre urdoenr urdoern urdoren urdorne
urdeonr urdeorn urdenor urdenro urderno urderon urdroen urdrone urdreon urdreno urdrneo
urdrnoe urndoer urndore urndeor urndero urndreo urndroe urnoder urnodre urnoedr urnoerd
urnored urnorde urneodr urneord urnedor urnedro urnerdo urnerod urnroed urnrode urnreod
urnredo urnrdeo urnrdoe uronder urondre uronedr uronerd uronred uronrde urodner urodnre
urodenr urodern urodren urodrne uroednr uroedrn uroendr uroenrd uroernd uroerdn urorden
urordne uroredn urorend urorned urornde urenodr urenord urendor urendro urenrdo urenrod
ureondr ureonrd ureodnr ureodrn ureordn ureornd uredonr uredorn urednor urednro uredrno
uredron urerodn urerond urerdon urerdno urerndo urernod urrnoed urrnode urrneod urrnedo
urrndeo urrndoe urroned urronde urroend urroedn urroden urrodne urreond urreodn urrenod
urrendo urredno urredon urrdoen urrdone urrdeon urrdeno urrdneo urrdnoe urdnore urdnoer
urdnroe urdnreo urdnero urdneor urdonre urdoner urdorne urdoren urdoern urdoenr urdrone
urdroen urdrnoe urdrneo urdreno urdreon urdeorn urdeonr urderon urderno urdenro urdenor
urndore urndoer urndroe urndreo urndero urndeor urnodre urnoder urnorde urnored urnoerd
urnoedr urnrode urnroed urnrdoe urnrdeo urnredo urnreod urneord urneodr urnerod urnerdo
urnedro urnedor urondre uronder uronrde uronred uronerd uronedr urodnre urodner urodrne
urodren urodern urodenr urordne urorden urornde urorned urorend uroredn uroedrn uroednr
uroerdn uroernd uroenrd uroendr urrnode urrnoed urrndoe urrndeo urrnedo urrneod urronde
urroned urrodne urroden urroedn urroend urrdone urrdoen urrdnoe urrdneo urrdeno urrdeon
urreodn urreond urredon urredno urrendo urrenod urenord urenodr urenrod urenrdo urendro
urendor ureonrd ureondr ureornd ureordn ureodrn ureodnr urerond urerodn urernod urerndo
urerdno urerdon uredorn uredonr uredron uredrno urednro urednor rednour rednoru rednuor
rednuro rednruo rednrou redonur redonru redounr redourn redorun redornu reduonr reduorn
redunor redunro redurno reduron redroun redronu redruon redruno redrnuo redrnou rendour
rendoru renduor renduro rendruo rendrou renodur renodru renoudr renourd renorud renordu
renuodr renuord renudor renudro renurdo renurod renroud renrodu renruod renrudo renrduo
renrdou reondur reondru reonudr reonurd reonrud reonrdu reodnur reodnru reodunr reodurn
reodrun reodrnu reoudnr reoudrn reoundr reounrd reournd reourdn reordun reordnu reorudn
reorund reornud reorndu reunodr reunord reundor reundro reunrdo reunrod reuondr reuonrd
reuodnr reuodrn reuordn reuornd reudonr reudorn reudnor reudnro reudrno reudron reurodn
reurond reurdon reurdno reurndo reurnod rernoud rernodu rernuod rernudo rernduo rerndou
reronud rerondu reround reroudn rerodun rerodnu reruond reruodn rerunod rerundo rerudno
rerudon rerdoun rerdonu rerduon rerduno rerdnuo rerdnou rdenour rdenoru rdenuor rdenuro
rdenruo rdenrou rdeonur rdeonru rdeounr rdeourn rdeorun rdeornu rdeuonr rdeuorn rdeunor
rdeunro rdeurno rdeuron rderoun rderonu rderuon rderuno rdernuo rdernou rdneour rdneoru
rdneuor rdneuro rdneruo rdnerou rdnoeur rdnoeru rdnouer rdnoure rdnorue rdnoreu rdnuoer
rdnuore rdnueor rdnuero rdnureo rdnuroe rdnroue rdnroeu rdnruoe rdnrueo rdnreuo rdnreou
rdoneur rdoneru rdonuer rdonure rdonrue rdonreu rdoenur rdoenru rdoeunr rdoeurn rdoerun
rdoernu rdouenr rdouern rdouner rdounre rdourne rdouren rdoreun rdorenu rdoruen rdorune
rdornue rdorneu rdunoer rdunore rduneor rdunero rdunreo rdunroe rduoner rduonre rduoenr
rduoern rduoren rduorne rdueonr rdueorn rduenor rduenro rduerno rdueron rduroen rdurone
rdureon rdureno rdurneo rdurnoe rdrnoue rdrnoeu rdrnuoe rdrnueo rdrneuo rdrneou rdronue
rdroneu rdroune rdrouen rdroeun rdroenu rdruone rdruoen rdrunoe rdruneo rdrueno rdrueon
rdreoun rdreonu rdreuon rdreuno rdrenuo rdrenou rndeour rndeoru rndeuor rndeuro rnderuo
rnderou rndoeur rndoeru rndouer rndoure rndorue rndoreu rnduoer rnduore rndueor rnduero
rndureo rnduroe rndroue rndroeu rndruoe rndrueo rndreuo rndreou rnedour rnedoru rneduor
rneduro rnedruo rnedrou rneodur rneodru rneoudr rneourd rneorud rneordu rneuodr rneuord
rneudor rneudro rneurdo rneurod rneroud rnerodu rneruod rnerudo rnerduo rnerdou rnoedur
rnoedru rnoeudr rnoeurd rnoerud rnoerdu rnodeur rnoderu rnoduer rnodure rnodrue rnodreu
rnouder rnoudre rnouedr rnouerd rnoured rnourde rnordue rnordeu rnorude rnorued rnoreud
rnoredu rnueodr rnueord rnuedor rnuedro rnuerdo rnuerod rnuoedr rnuoerd rnuoder rnuodre
rnuorde rnuored rnudoer rnudore rnudeor rnudero rnudreo rnudroe rnurode rnuroed rnurdoe
rnurdeo rnuredo rnureod rnreoud rnreodu rnreuod rnreudo rnreduo rnredou rnroeud rnroedu
rnroued rnroude rnrodue rnrodeu rnruoed rnruode rnrueod rnruedo rnrudeo rnrudoe rnrdoue
rnrdoeu rnrduoe rnrdueo rnrdeuo rnrdeou rodneur rodneru rodnuer rodnure rodnrue rodnreu
rodenur rodenru rodeunr rodeurn roderun rodernu roduenr roduern roduner rodunre rodurne
roduren rodreun rodrenu rodruen rodrune rodrnue rodrneu rondeur ronderu ronduer rondure
rondrue rondreu ronedur ronedru roneudr roneurd ronerud ronerdu ronuedr ronuerd ronuder
ronudre ronurde ronured ronreud ronredu ronrued ronrude ronrdue ronrdeu roendur roendru
roenudr roenurd roenrud roenrdu roednur roednru roedunr roedurn roedrun roedrnu roeudnr
roeudrn roeundr roeunrd roeurnd roeurdn roerdun roerdnu roerudn roerund roernud roerndu
rounedr rounerd rounder roundre rounrde rounred rouendr rouenrd rouednr rouedrn rouerdn
rouernd roudenr roudern roudner roudnre roudrne roudren rouredn rourend rourden rourdne
rournde rourned rorneud rornedu rornued rornude rorndue rorndeu rorenud rorendu roreund
roreudn roredun rorednu roruend roruedn roruned rorunde rorudne roruden rordeun rordenu
rorduen rordune rordnue rordneu rudnoer rudnore rudneor rudnero rudnreo rudnroe rudoner
rudonre rudoenr rudoern rudoren rudorne rudeonr rudeorn rudenor rudenro ruderno ruderon
rudroen rudrone rudreon rudreno rudrneo rudrnoe rundoer rundore rundeor rundero rundreo
rundroe runoder runodre runoedr runoerd runored runorde runeodr runeord runedor runedro
runerdo runerod runroed runrode runreod runredo runrdeo runrdoe ruonder ruondre ruonedr
ruonerd ruonred ruonrde ruodner ruodnre ruodenr ruodern ruodren ruodrne ruoednr ruoedrn
ruoendr ruoenrd ruoernd ruoerdn ruorden ruordne ruoredn ruorend ruorned ruornde ruenodr
ruenord ruendor ruendro ruenrdo ruenrod rueondr rueonrd rueodnr rueodrn rueordn rueornd
ruedonr ruedorn ruednor ruednro ruedrno ruedron ruerodn ruerond ruerdon ruerdno ruerndo
ruernod rurnoed rurnode rurneod rurnedo rurndeo rurndoe ruroned ruronde ruroend ruroedn
ruroden rurodne rureond rureodn rurenod rurendo ruredno ruredon rurdoen rurdone rurdeon
rurdeno rurdneo rurdnoe rrdnoue rrdnoeu rrdnuoe rrdnueo rrdneuo rrdneou rrdonue rrdoneu
rrdoune rrdouen rrdoeun rrdoenu rrduone rrduoen rrdunoe rrduneo rrdueno rrdueon rrdeoun
rrdeonu rrdeuon rrdeuno rrdenuo rrdenou rrndoue rrndoeu rrnduoe rrndueo rrndeuo rrndeou
rrnodue rrnodeu rrnoude rrnoued rrnoeud rrnoedu rrnuode rrnuoed rrnudoe rrnudeo rrnuedo
rrnueod rrneoud rrneodu rrneuod rrneudo rrneduo rrnedou rrondue rrondeu rronude rronued
rroneud rronedu rrodnue rrodneu rrodune rroduen rrodeun rrodenu rroudne rrouden rrounde
rrouned rrouend rrouedn rroedun rroednu rroeudn rroeund rroenud rroendu rrunode rrunoed
rrundoe rrundeo rrunedo rruneod rruonde rruoned rruodne rruoden rruoedn rruoend rrudone
rrudoen rrudnoe rrudneo rrudeno rrudeon rrueodn rrueond rruedon rruedno rruendo rruenod
rrenoud rrenodu rrenuod rrenudo rrenduo rrendou rreonud rreondu rreound rreoudn rreodun
rreodnu rreuond rreuodn rreunod rreundo rreudno rreudon rredoun rredonu rreduon rreduno
rrednuo rrednou

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History of cryptography
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