easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

adamski

baggot

apodictical

unlosable

microglia

astrit

saltlakecity

statuereque

suberu

outswim

diceroque

trahatis

glaucine

sittine

metanephrine

kientz

insurgently

neophytism


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: bayesian
cipher variations:
cbzftjbo dcagukcp edbhvldq feciwmer gfdjxnfs
hgekyogt ihflzphu jigmaqiv kjhnbrjw lkiocskx
mljpdtly nmkqeumz onlrfvna pomsgwob qpnthxpc
rqouiyqd srpvjzre tsqwkasf utrxlbtg vusymcuh
wvtzndvi xwuaoewj yxvbpfxk zywcqgyl azxdrhzm

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: bayesian
Cipher: yzbvhrzm

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: bayesian
Cipher: AAAAB AAAAA BABBA AABAA BAAAB ABAAA AAAAA ABBAA

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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: bayesian
cipher variations:
cbzftjboebvndzbogbrvnpboibndxfbokbjlhvbombftrlboqbxjlrbosbtrvhbo
ubpzfxbowblhpnboybhpzdboabdxjtbodcagukcpfcwoeacphcswoqcpjcoeygcp
lckmiwcpncgusmcprcykmscptcuswicpvcqagycpxcmiqocpzciqaecpbceykucp
edbhvldqgdxpfbdqidtxprdqkdpfzhdqmdlnjxdqodhvtndqsdzlntdqudvtxjdq
wdrbhzdqydnjrpdqadjrbfdqcdfzlvdqfeciwmerheyqgcerjeuyqserleqgaier
nemokyerpeiwuoerteamouervewuykerxesciaerzeoksqerbekscgerdegamwer
gfdjxnfsifzrhdfskfvzrtfsmfrhbjfsofnplzfsqfjxvpfsufbnpvfswfxvzlfs
yftdjbfsafpltrfscfltdhfsefhbnxfshgekyogtjgasiegtlgwasugtngsickgt
pgoqmagtrgkywqgtvgcoqwgtxgywamgtzguekcgtbgqmusgtdgmueigtfgicoygt
ihflzphukhbtjfhumhxbtvhuohtjdlhuqhprnbhushlzxrhuwhdprxhuyhzxbnhu
ahvfldhuchrnvthuehnvfjhughjdpzhujigmaqivlicukgivniycuwivpiukemiv
riqsocivtimaysivxieqsyivziaycoivbiwgmeivdisowuivfiowgkivhikeqaiv
kjhnbrjwmjdvlhjwojzdvxjwqjvlfnjwsjrtpdjwujnbztjwyjfrtzjwajbzdpjw
cjxhnfjwejtpxvjwgjpxhljwijlfrbjwlkiocskxnkewmikxpkaewykxrkwmgokx
tksuqekxvkocaukxzkgsuakxbkcaeqkxdkyiogkxfkuqywkxhkqyimkxjkmgsckx
mljpdtlyolfxnjlyqlbfxzlyslxnhplyultvrflywlpdbvlyalhtvblycldbfrly
elzjphlyglvrzxlyilrzjnlyklnhtdlynmkqeumzpmgyokmzrmcgyamztmyoiqmz
vmuwsgmzxmqecwmzbmiuwcmzdmecgsmzfmakqimzhmwsaymzjmsakomzlmoiuemz
onlrfvnaqnhzplnasndhzbnaunzpjrnawnvxthnaynrfdxnacnjvxdnaenfdhtna
gnblrjnainxtbznakntblpnamnpjvfnapomsgwobroiaqmobtoeiacobvoaqksob
xowyuiobzosgeyobdokwyeobfogeiuobhocmskobjoyucaobloucmqobnoqkwgob
qpnthxpcspjbrnpcupfjbdpcwpbrltpcypxzvjpcapthfzpceplxzfpcgphfjvpc
ipdntlpckpzvdbpcmpvdnrpcoprlxhpcrqouiyqdtqkcsoqdvqgkceqdxqcsmuqd
zqyawkqdbquigaqdfqmyagqdhqigkwqdjqeoumqdlqawecqdnqweosqdpqsmyiqd
srpvjzreurldtprewrhldfreyrdtnvrearzbxlrecrvjhbregrnzbhreirjhlxre
krfpvnremrbxfdreorxfptreqrtnzjretsqwkasfvsmeuqsfxsimegsfzseuowsf
bsacymsfdswkicsfhsoacisfjskimysflsgqwosfnscygesfpsygqusfrsuoaksf
utrxlbtgwtnfvrtgytjnfhtgatfvpxtgctbdzntgetxljdtgitpbdjtgktljnztg
mthrxptgotdzhftgqtzhrvtgstvpbltgvusymcuhxuogwsuhzukogiuhbugwqyuh
duceaouhfuymkeuhjuqcekuhlumkoauhnuisyquhpueaiguhruaiswuhtuwqcmuh
wvtzndviyvphxtviavlphjvicvhxrzvievdfbpvigvznlfvikvrdflvimvnlpbvi
ovjtzrviqvfbjhvisvbjtxviuvxrdnvixwuaoewjzwqiyuwjbwmqikwjdwiysawj
fwegcqwjhwaomgwjlwsegmwjnwomqcwjpwkuaswjrwgckiwjtwckuywjvwyseowj
yxvbpfxkaxrjzvxkcxnrjlxkexjztbxkgxfhdrxkixbpnhxkmxtfhnxkoxpnrdxk
qxlvbtxksxhdljxkuxdlvzxkwxztfpxkzywcqgylbyskawyldyoskmylfykaucyl
hygiesyljycqoiylnyugioylpyqoseylrymwcuyltyiemkylvyemwaylxyaugqyl
azxdrhzmcztlbxzmezptlnzmgzlbvdzmizhjftzmkzdrpjzmozvhjpzmqzrptfzm
sznxdvzmuzjfnlzmwzfnxbzmyzbvhrzmbayesiandaumcyanfaqumoanhamcwean
jaikguanlaesqkanpawikqanrasqugantaoyewanvakgomanxagoycanzacwisan

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: bayesian
Cipher: onlrfvna

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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: bayesian
Cipher: 2111455134421133

Extended Methods:
Method #1

Plaintext: bayesian
method variations:
gfdkxofsmlipctlxrqouhyqcwvtzndvh

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
b a y e s i a n 
2 1 4 5 3 4 1 3 
1 1 5 1 4 2 1 3 
They are then read out in rows:
2145341311514213
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: bayesian
Cipher: byslaeil

Read more ...
Method #3

Plaintext: bayesian
method variations:
aqzltblh qzltblha zltblhaq
ltblhaqz tblhaqzl blhaqzlt
lhaqzltb haqzltbl

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: bayesian

first 5040 cipher variations(40320 total)
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bisnayea bisnaaye bisnaaey bisnaeay bisnaeya bisnaaye bisnaaey bisnayae bisnayea bisnaeya bisnaeay
bisneaay bisneaya bisneaay bisneaya bisneyaa bisneyaa biaesyan biaesyna biaesayn biaesany biaesnay
biaesnya biaeysan biaeysna biaeyasn biaeyans biaeynas biaeynsa biaeaysn biaeayns biaeasyn biaeasny
biaeansy biaeanys biaenyas biaenysa biaenays biaenasy biaensay biaensya biaseyan biaseyna biaseayn
biaseany biasenay biasenya biasyean biasyena biasyaen biasyane biasynae biasynea biasayen biasayne
biasaeyn biasaeny biasaney biasanye biasnyae biasnyea biasnaye biasnaey biasneay biasneya biaysean
biaysena biaysaen biaysane biaysnae biaysnea biayesan biayesna biayeasn biayeans biayenas biayensa
biayaesn biayaens biayasen biayasne biayanse biayanes biayneas biaynesa biaynaes biaynase biaynsae
biaynsea biaasyen biaasyne biaaseyn biaaseny biaasney biaasnye biaaysen biaaysne biaayesn biaayens
biaaynes biaaynse biaaeysn biaaeyns biaaesyn biaaesny biaaensy biaaenys biaanyes biaanyse biaaneys
biaanesy biaansey biaansye biansyae biansyea biansaye biansaey bianseay bianseya bianysae bianysea
bianyase bianyaes bianyeas bianyesa bianayse bianayes bianasye bianasey bianaesy bianaeys bianeyas
bianeysa bianeays bianeasy bianesay bianesya biaesayn biaesany biaesyan biaesyna biaesnya biaesnay
biaeasyn biaeasny biaeaysn biaeayns biaeanys biaeansy biaeyasn biaeyans biaeysan biaeysna biaeynsa
biaeynas biaenays biaenasy biaenyas biaenysa biaensya biaensay biaseayn biaseany biaseyan biaseyna
biasenya biasenay biasaeyn biasaeny biasayen biasayne biasanye biasaney biasyaen biasyane biasyean
biasyena biasynea biasynae biasnaye biasnaey biasnyae biasnyea biasneya biasneay biaaseyn biaaseny
biaasyen biaasyne biaasnye biaasney biaaesyn biaaesny biaaeysn biaaeyns biaaenys biaaensy biaayesn
biaayens biaaysen biaaysne biaaynse biaaynes biaaneys biaanesy biaanyes biaanyse biaansye biaansey
biaysaen biaysane biaysean biaysena biaysnea biaysnae biayasen biayasne biayaesn biayaens biayanes
biayanse biayeasn biayeans biayesan biayesna biayensa biayenas biaynaes biaynase biayneas biaynesa
biaynsea biaynsae biansaye biansaey biansyae biansyea bianseya bianseay bianasye bianasey bianayse
bianayes bianaeys bianaesy bianyase bianyaes bianysae bianysea bianyesa bianyeas bianeays bianeasy
bianeyas bianeysa bianesya bianesay binesaay binesaya binesaay binesaya binesyaa binesyaa bineasay
bineasya bineaasy bineaays bineayas bineaysa bineaasy bineaays bineasay bineasya bineaysa bineayas
bineyaas bineyasa bineyaas bineyasa bineysaa bineysaa binseaay binseaya binseaay binseaya binseyaa
binseyaa binsaeay binsaeya binsaaey binsaaye binsayae binsayea binsaaey binsaaye binsaeay binsaeya
binsayea binsayae binsyaae binsyaea binsyaae binsyaea binsyeaa binsyeaa binaseay binaseya binasaey
binasaye binasyae binasyea binaesay binaesya binaeasy binaeays binaeyas binaeysa binaaesy binaaeys
binaasey binaasye binaayse binaayes binayeas binayesa binayaes binayase binaysae binaysea binasaey
binasaye binaseay binaseya binasyea binasyae binaasey binaasye binaaesy binaaeys binaayes binaayse
binaeasy binaeays binaesay binaesya binaeysa binaeyas binayaes binayase binayeas binayesa binaysea
binaysae binysaae binysaea binysaae binysaea binyseaa binyseaa binyasae binyasea binyaase binyaaes
binyaeas binyaesa binyaase binyaaes binyasae binyasea binyaesa binyaeas binyeaas binyeasa binyeaas
binyeasa binyesaa binyesaa bayesian bayesina bayesain bayesani bayesnai bayesnia bayeisan bayeisna
bayeiasn bayeians bayeinas bayeinsa bayeaisn bayeains bayeasin bayeasni bayeansi bayeanis bayenias
bayenisa bayenais bayenasi bayensai bayensia bayseian bayseina bayseain bayseani baysenai baysenia
baysiean baysiena baysiaen baysiane baysinae baysinea baysaien baysaine baysaein baysaeni baysanei
baysanie baysniae baysniea baysnaie baysnaei baysneai baysneia bayisean bayisena bayisaen bayisane
bayisnae bayisnea bayiesan bayiesna bayieasn bayieans bayienas bayiensa bayiaesn bayiaens bayiasen
bayiasne bayianse bayianes bayineas bayinesa bayinaes bayinase bayinsae bayinsea bayasien bayasine
bayasein bayaseni bayasnei bayasnie bayaisen bayaisne bayaiesn bayaiens bayaines bayainse bayaeisn
bayaeins bayaesin bayaesni bayaensi bayaenis bayanies bayanise bayaneis bayanesi bayansei bayansie
baynsiae baynsiea baynsaie baynsaei baynseai baynseia baynisae baynisea bayniase bayniaes baynieas
bayniesa baynaise baynaies baynasie baynasei baynaesi baynaeis bayneias bayneisa bayneais bayneasi
baynesai baynesia baeysian baeysina baeysain baeysani baeysnai baeysnia baeyisan baeyisna baeyiasn
baeyians baeyinas baeyinsa baeyaisn baeyains baeyasin baeyasni baeyansi baeyanis baeynias baeynisa
baeynais baeynasi baeynsai baeynsia baesyian baesyina baesyain baesyani baesynai baesynia baesiyan
baesiyna baesiayn baesiany baesinay baesinya baesaiyn baesainy baesayin baesayni baesanyi baesaniy
baesniay baesniya baesnaiy baesnayi baesnyai baesnyia baeisyan baeisyna baeisayn baeisany baeisnay
baeisnya baeiysan baeiysna baeiyasn baeiyans baeiynas baeiynsa baeiaysn baeiayns baeiasyn baeiasny
baeiansy baeianys baeinyas baeinysa baeinays baeinasy baeinsay baeinsya baeasiyn baeasiny baeasyin
baeasyni baeasnyi baeasniy baeaisyn baeaisny baeaiysn baeaiyns baeainys baeainsy baeayisn baeayins
baeaysin baeaysni baeaynsi baeaynis baeaniys baeanisy baeanyis baeanysi baeansyi baeansiy baensiay
baensiya baensaiy baensayi baensyai baensyia baenisay baenisya baeniasy baeniays baeniyas baeniysa
baenaisy baenaiys baenasiy baenasyi baenaysi baenayis baenyias baenyisa baenyais baenyasi baenysai
baenysia baseyian baseyina baseyain baseyani baseynai baseynia baseiyan baseiyna baseiayn baseiany
baseinay baseinya baseaiyn baseainy baseayin baseayni baseanyi baseaniy baseniay baseniya basenaiy
basenayi basenyai basenyia basyeian basyeina basyeain basyeani basyenai basyenia basyiean basyiena
basyiaen basyiane basyinae basyinea basyaien basyaine basyaein basyaeni basyanei basyanie basyniae
basyniea basynaie basynaei basyneai basyneia basiyean basiyena basiyaen basiyane basiynae basiynea
basieyan basieyna basieayn basieany basienay basienya basiaeyn basiaeny basiayen basiayne basianye
basianey basineay basineya basinaey basinaye basinyae basinyea basayien basayine basayein basayeni
basaynei basaynie basaiyen basaiyne basaieyn basaieny basainey basainye basaeiyn basaeiny basaeyin
basaeyni basaenyi basaeniy basaniey basaniye basaneiy basaneyi basanyei basanyie basnyiae basnyiea
basnyaie basnyaei basnyeai basnyeia basniyae basniyea basniaye basniaey basnieay basnieya basnaiye
basnaiey basnayie basnayei basnaeyi basnaeiy basneiay basneiya basneaiy basneayi basneyai basneyia
baiesyan baiesyna baiesayn baiesany baiesnay baiesnya baieysan baieysna baieyasn baieyans baieynas
baieynsa baieaysn baieayns baieasyn baieasny baieansy baieanys baienyas baienysa baienays baienasy
baiensay baiensya baiseyan baiseyna baiseayn baiseany baisenay baisenya baisyean baisyena baisyaen
baisyane baisynae baisynea baisayen baisayne baisaeyn baisaeny baisaney baisanye baisnyae baisnyea
baisnaye baisnaey baisneay baisneya baiysean baiysena baiysaen baiysane baiysnae baiysnea baiyesan
baiyesna baiyeasn baiyeans baiyenas baiyensa baiyaesn baiyaens baiyasen baiyasne baiyanse baiyanes
baiyneas baiynesa baiynaes baiynase baiynsae baiynsea baiasyen baiasyne baiaseyn baiaseny baiasney
baiasnye baiaysen baiaysne baiayesn baiayens baiaynes baiaynse baiaeysn baiaeyns baiaesyn baiaesny
baiaensy baiaenys baianyes baianyse baianeys baianesy baiansey baiansye bainsyae bainsyea bainsaye
bainsaey bainseay bainseya bainysae bainysea bainyase bainyaes bainyeas bainyesa bainayse bainayes
bainasye bainasey bainaesy bainaeys baineyas baineysa baineays baineasy bainesay bainesya baaesiyn
baaesiny baaesyin baaesyni baaesnyi baaesniy baaeisyn baaeisny baaeiysn baaeiyns baaeinys baaeinsy
baaeyisn baaeyins baaeysin baaeysni baaeynsi baaeynis baaeniys baaenisy baaenyis baaenysi baaensyi
baaensiy baaseiyn baaseiny baaseyin baaseyni baasenyi baaseniy baasieyn baasieny baasiyen baasiyne
baasinye baasiney baasyien baasyine baasyein baasyeni baasynei baasynie baasniye baasniey baasnyie
baasnyei baasneyi baasneiy baaiseyn baaiseny baaisyen baaisyne baaisnye baaisney baaiesyn baaiesny
baaieysn baaieyns baaienys baaiensy baaiyesn baaiyens baaiysen baaiysne baaiynse baaiynes baaineys
baainesy baainyes baainyse baainsye baainsey baaysien baaysine baaysein baayseni baaysnei baaysnie
baayisen baayisne baayiesn baayiens baayines baayinse baayeisn baayeins baayesin baayesni baayensi
baayenis baaynies baaynise baayneis baaynesi baaynsei baaynsie baansiye baansiey baansyie baansyei
baanseyi baanseiy baanisye baanisey baaniyse baaniyes baanieys baaniesy baanyise baanyies baanysie
baanysei baanyesi baanyeis baaneiys baaneisy baaneyis baaneysi baanesyi baanesiy banesiay banesiya
banesaiy banesayi banesyai banesyia baneisay baneisya baneiasy baneiays baneiyas baneiysa baneaisy
baneaiys baneasiy baneasyi baneaysi baneayis baneyias baneyisa baneyais baneyasi baneysai baneysia
banseiay banseiya banseaiy banseayi banseyai banseyia bansieay bansieya bansiaey bansiaye bansiyae
bansiyea bansaiey bansaiye bansaeiy bansaeyi bansayei bansayie bansyiae bansyiea bansyaie bansyaei
bansyeai bansyeia baniseay baniseya banisaey banisaye banisyae banisyea baniesay baniesya banieasy
banieays banieyas banieysa baniaesy baniaeys baniasey baniasye baniayse baniayes baniyeas baniyesa
baniyaes baniyase baniysae baniysea banasiey banasiye banaseiy banaseyi banasyei banasyie banaisey
banaisye banaiesy banaieys banaiyes banaiyse banaeisy banaeiys banaesiy banaesyi banaeysi banaeyis
banayies banayise banayeis banayesi banaysei banaysie banysiae banysiea banysaie banysaei banyseai
banyseia banyisae banyisea banyiase banyiaes banyieas banyiesa banyaise banyaies banyasie banyasei
banyaesi banyaeis banyeias banyeisa banyeais banyeasi banyesai banyesia bnyesiaa bnyesiaa bnyesaia
bnyesaai bnyesaai bnyesaia bnyeisaa bnyeisaa bnyeiasa bnyeiaas bnyeiaas bnyeiasa bnyeaisa bnyeaias
bnyeasia bnyeasai bnyeaasi bnyeaais bnyeaias bnyeaisa bnyeaais bnyeaasi bnyeasai bnyeasia bnyseiaa
bnyseiaa bnyseaia bnyseaai bnyseaai bnyseaia bnysieaa bnysieaa bnysiaea bnysiaae bnysiaae bnysiaea
bnysaiea bnysaiae bnysaeia bnysaeai bnysaaei bnysaaie bnysaiae bnysaiea bnysaaie bnysaaei bnysaeai
bnysaeia bnyiseaa bnyiseaa bnyisaea bnyisaae bnyisaae bnyisaea bnyiesaa bnyiesaa bnyieasa bnyieaas
bnyieaas bnyieasa bnyiaesa bnyiaeas bnyiasea bnyiasae bnyiaase bnyiaaes bnyiaeas bnyiaesa bnyiaaes
bnyiaase bnyiasae bnyiasea bnyasiea bnyasiae bnyaseia bnyaseai bnyasaei bnyasaie bnyaisea bnyaisae
bnyaiesa bnyaieas bnyaiaes bnyaiase bnyaeisa bnyaeias bnyaesia bnyaesai bnyaeasi bnyaeais bnyaaies
bnyaaise bnyaaeis bnyaaesi bnyaasei bnyaasie bnyasiae bnyasiea bnyasaie bnyasaei bnyaseai bnyaseia
bnyaisae bnyaisea bnyaiase bnyaiaes bnyaieas bnyaiesa bnyaaise bnyaaies bnyaasie bnyaasei bnyaaesi
bnyaaeis bnyaeias bnyaeisa bnyaeais bnyaeasi bnyaesai bnyaesia bneysiaa bneysiaa bneysaia bneysaai
bneysaai bneysaia bneyisaa bneyisaa bneyiasa bneyiaas bneyiaas bneyiasa bneyaisa bneyaias bneyasia
bneyasai bneyaasi bneyaais bneyaias bneyaisa bneyaais bneyaasi bneyasai bneyasia bnesyiaa bnesyiaa
bnesyaia bnesyaai bnesyaai bnesyaia bnesiyaa bnesiyaa bnesiaya bnesiaay bnesiaay bnesiaya bnesaiya
bnesaiay bnesayia bnesayai bnesaayi bnesaaiy bnesaiay bnesaiya bnesaaiy bnesaayi bnesayai bnesayia
bneisyaa bneisyaa bneisaya bneisaay bneisaay bneisaya bneiysaa bneiysaa bneiyasa bneiyaas bneiyaas
bneiyasa bneiaysa bneiayas bneiasya bneiasay bneiaasy bneiaays bneiayas bneiaysa bneiaays bneiaasy
bneiasay bneiasya bneasiya bneasiay bneasyia bneasyai bneasayi bneasaiy bneaisya bneaisay bneaiysa
bneaiyas bneaiays bneaiasy bneayisa bneayias bneaysia bneaysai bneayasi bneayais bneaaiys bneaaisy
bneaayis bneaaysi bneaasyi bneaasiy bneasiay bneasiya bneasaiy bneasayi bneasyai bneasyia bneaisay
bneaisya bneaiasy bneaiays bneaiyas bneaiysa bneaaisy bneaaiys bneaasiy bneaasyi bneaaysi bneaayis
bneayias bneayisa bneayais bneayasi bneaysai bneaysia bnseyiaa bnseyiaa bnseyaia bnseyaai bnseyaai
bnseyaia bnseiyaa bnseiyaa bnseiaya bnseiaay bnseiaay bnseiaya bnseaiya bnseaiay bnseayia bnseayai
bnseaayi bnseaaiy bnseaiay bnseaiya bnseaaiy bnseaayi bnseayai bnseayia bnsyeiaa bnsyeiaa bnsyeaia
bnsyeaai bnsyeaai bnsyeaia bnsyieaa bnsyieaa bnsyiaea bnsyiaae bnsyiaae bnsyiaea bnsyaiea bnsyaiae
bnsyaeia bnsyaeai bnsyaaei bnsyaaie bnsyaiae bnsyaiea bnsyaaie bnsyaaei bnsyaeai bnsyaeia bnsiyeaa
bnsiyeaa bnsiyaea bnsiyaae bnsiyaae bnsiyaea bnsieyaa bnsieyaa bnsieaya bnsieaay bnsieaay bnsieaya
bnsiaeya bnsiaeay bnsiayea bnsiayae bnsiaaye bnsiaaey bnsiaeay bnsiaeya bnsiaaey bnsiaaye bnsiayae
bnsiayea bnsayiea bnsayiae bnsayeia bnsayeai bnsayaei bnsayaie bnsaiyea bnsaiyae bnsaieya bnsaieay
bnsaiaey bnsaiaye bnsaeiya bnsaeiay bnsaeyia bnsaeyai bnsaeayi bnsaeaiy bnsaaiey bnsaaiye bnsaaeiy
bnsaaeyi bnsaayei bnsaayie bnsayiae bnsayiea bnsayaie bnsayaei bnsayeai bnsayeia bnsaiyae bnsaiyea
bnsaiaye bnsaiaey bnsaieay bnsaieya bnsaaiye bnsaaiey bnsaayie bnsaayei bnsaaeyi bnsaaeiy bnsaeiay
bnsaeiya bnsaeaiy bnsaeayi bnsaeyai bnsaeyia bniesyaa bniesyaa bniesaya bniesaay bniesaay bniesaya
bnieysaa bnieysaa bnieyasa bnieyaas bnieyaas bnieyasa bnieaysa bnieayas bnieasya bnieasay bnieaasy
bnieaays bnieayas bnieaysa bnieaays bnieaasy bnieasay bnieasya bniseyaa bniseyaa bniseaya bniseaay
bniseaay bniseaya bnisyeaa bnisyeaa bnisyaea bnisyaae bnisyaae bnisyaea bnisayea bnisayae bnisaeya
bnisaeay bnisaaey bnisaaye bnisayae bnisayea bnisaaye bnisaaey bnisaeay bnisaeya bniyseaa bniyseaa
bniysaea bniysaae bniysaae bniysaea bniyesaa bniyesaa bniyeasa bniyeaas bniyeaas bniyeasa bniyaesa
bniyaeas bniyasea bniyasae bniyaase bniyaaes bniyaeas bniyaesa bniyaaes bniyaase bniyasae bniyasea
bniasyea bniasyae bniaseya bniaseay bniasaey bniasaye bniaysea bniaysae bniayesa bniayeas bniayaes
bniayase bniaeysa bniaeyas bniaesya bniaesay bniaeasy bniaeays bniaayes bniaayse bniaaeys bniaaesy
bniaasey bniaasye bniasyae bniasyea bniasaye bniasaey bniaseay bniaseya bniaysae bniaysea bniayase
bniayaes bniayeas bniayesa bniaayse bniaayes bniaasye bniaasey bniaaesy bniaaeys bniaeyas bniaeysa
bniaeays bniaeasy bniaesay bniaesya bnaesiya bnaesiay bnaesyia bnaesyai bnaesayi bnaesaiy bnaeisya
bnaeisay bnaeiysa bnaeiyas bnaeiays bnaeiasy bnaeyisa bnaeyias bnaeysia bnaeysai bnaeyasi bnaeyais
bnaeaiys bnaeaisy bnaeayis bnaeaysi bnaeasyi bnaeasiy bnaseiya bnaseiay bnaseyia bnaseyai bnaseayi
bnaseaiy bnasieya bnasieay bnasiyea bnasiyae bnasiaye bnasiaey bnasyiea bnasyiae bnasyeia bnasyeai
bnasyaei bnasyaie bnasaiye bnasaiey bnasayie bnasayei bnasaeyi bnasaeiy bnaiseya bnaiseay bnaisyea
bnaisyae bnaisaye bnaisaey bnaiesya bnaiesay bnaieysa bnaieyas bnaieays bnaieasy bnaiyesa bnaiyeas
bnaiysea bnaiysae bnaiyase bnaiyaes bnaiaeys bnaiaesy bnaiayes bnaiayse bnaiasye bnaiasey bnaysiea
bnaysiae bnayseia bnayseai bnaysaei bnaysaie bnayisea bnayisae bnayiesa bnayieas bnayiaes bnayiase
bnayeisa bnayeias bnayesia bnayesai bnayeasi bnayeais bnayaies bnayaise bnayaeis bnayaesi bnayasei
bnayasie bnaasiye bnaasiey bnaasyie bnaasyei bnaaseyi bnaaseiy bnaaisye bnaaisey bnaaiyse bnaaiyes
bnaaieys bnaaiesy bnaayise bnaayies bnaaysie bnaaysei bnaayesi bnaayeis bnaaeiys bnaaeisy bnaaeyis
bnaaeysi bnaaesyi bnaaesiy bnaesiay bnaesiya bnaesaiy bnaesayi bnaesyai bnaesyia bnaeisay bnaeisya
bnaeiasy bnaeiays bnaeiyas bnaeiysa bnaeaisy bnaeaiys bnaeasiy bnaeasyi bnaeaysi bnaeayis bnaeyias
bnaeyisa bnaeyais bnaeyasi bnaeysai bnaeysia bnaseiay bnaseiya bnaseaiy bnaseayi bnaseyai bnaseyia
bnasieay bnasieya bnasiaey bnasiaye bnasiyae bnasiyea bnasaiey bnasaiye bnasaeiy bnasaeyi bnasayei
bnasayie bnasyiae bnasyiea bnasyaie bnasyaei bnasyeai bnasyeia bnaiseay bnaiseya bnaisaey bnaisaye
bnaisyae bnaisyea bnaiesay bnaiesya bnaieasy bnaieays bnaieyas bnaieysa bnaiaesy bnaiaeys bnaiasey
bnaiasye bnaiayse bnaiayes bnaiyeas bnaiyesa bnaiyaes bnaiyase bnaiysae bnaiysea bnaasiey bnaasiye
bnaaseiy bnaaseyi bnaasyei bnaasyie bnaaisey bnaaisye bnaaiesy bnaaieys bnaaiyes bnaaiyse bnaaeisy
bnaaeiys bnaaesiy bnaaesyi bnaaeysi bnaaeyis bnaayies bnaayise bnaayeis bnaayesi bnaaysei bnaaysie
bnaysiae bnaysiea bnaysaie bnaysaei bnayseai bnayseia bnayisae bnayisea bnayiase bnayiaes bnayieas
bnayiesa bnayaise bnayaies bnayasie bnayasei bnayaesi bnayaeis bnayeias bnayeisa bnayeais bnayeasi
bnayesai bnayesia

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History of cryptography
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