easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

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levitational

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patheticalness

lymphangioma

steckley

sullz

corland

lustrauitque

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larry

holomorphosis


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: sebekia
cipher variations:
tfcfljb ugdgmkc vhehnld wifiome xjgjpnf
ykhkqog zlilrph amjmsqi bnkntrj colousk
dpmpvtl eqnqwum frorxvn gspsywo htqtzxp
iuruayq jvsvbzr kwtwcas lxuxdbt myvyecu
nzwzfdv oaxagew pbybhfx qczcigy rdadjhz

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: sebekia
Cipher: hvyvprz

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: sebekia
Cipher: BAAAB AABAA AAAAB AABAA ABAAB ABAAA AAAAA

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: sebekia
cipher variations:
tfcfljbdnenfzbnvgvzpbxdidtfbhlklnvbrtmthlbljqjvrbvrsrphb
fzuzjxbphwhdnbzpypxdbjxaxrtbugdgmkceofogacowhwaqcyejeugc
imlmowcsunuimcmkrkwscwstsqicgavakycqixieocaqzqyeckybysuc
vhehnldfpgphbdpxixbrdzfkfvhdjnmnpxdtvovjndnlslxtdxtutrjd
hbwblzdrjyjfpdbrarzfdlzcztvdwifiomegqhqiceqyjycseaglgwie
konoqyeuwpwkoeomtmyueyuvuskeicxcmaeskzkgqecsbsagemadauwe
xjgjpnfhrirjdfrzkzdtfbhmhxjflpoprzfvxqxlpfpnunzvfzvwvtlf
jdydnbftlalhrfdtctbhfnbebvxfykhkqogisjskegsalaeugciniykg
mqpqsagwyrymqgqovoawgawxwumgkezeocgumbmisgeuducigocfcwyg
zlilrphjtktlfhtbmbfvhdjojzlhnrqrtbhxzsznrhrpwpbxhbxyxvnh
lfafpdhvncnjthfvevdjhpdgdxzhamjmsqikulumgiucncgwiekpkami
osrsuciyataosisqxqcyicyzywoimgbgqeiwodokuigwfwekiqeheyai
bnkntrjlvmvnhjvdodhxjflqlbnjptstvdjzbubptjtryrdzjdzazxpj
nhchrfjxpeplvjhxgxfljrfifzbjcolouskmwnwoikwepeiykgmrmcok
qutuwekacvcqukuszseakeabayqkoidisgkyqfqmwkiyhygmksgjgack
dpmpvtlnxoxpjlxfqfjzlhnsndplrvuvxflbdwdrvlvtatfblfbcbzrl
pjejthlzrgrnxljzizhnlthkhbdleqnqwumoypyqkmygrgkamiotoeqm
swvwygmcexeswmwubugcmgcdcasmqkfkuimashsoymkajaiomuilicem
frorxvnpzqzrlnzhshlbnjpupfrntxwxzhndfyftxnxvcvhdnhdedbtn
rlglvjnbtitpznlbkbjpnvjmjdfngspsywoqarasmoaitimcokqvqgso
uyxyaioegzguyoywdwieoiefecuosmhmwkocujuqaomclckqowknkego
htqtzxprbsbtnpbjujndplrwrhtpvzyzbjpfhahvzpzxexjfpjfgfdvp
tninxlpdvkvrbpndmdlrpxlolfhpiuruayqsctcuoqckvkoeqmsxsiuq
wazackqgibiwaqayfykgqkghgewquojoymqewlwscqoenemsqympmgiq
jvsvbzrtdudvprdlwlpfrntytjvrxbabdlrhjcjxbrbzgzlhrlhihfxr
vpkpznrfxmxtdrpfofntrznqnhjrkwtwcasuevewqsemxmqgsouzukws
ycbcemsikdkycscahamismijigyswqlqaosgynyuesqgpgousaoroiks
lxuxdbtvfwfxrtfnynrhtpvavlxtzdcdfntjlelzdtdbibnjtnjkjhzt
xrmrbpthzozvftrhqhpvtbpspjltmyvyecuwgxgysugozosiuqwbwmyu
aedegoukmfmaeuecjcokuoklkiauysnscquiapawgusiriqwucqtqkmu
nzwzfdvxhyhztvhpaptjvrxcxnzvbfefhpvlngnbfvfdkdplvplmljbv
ztotdrvjbqbxhvtjsjrxvdrurlnvoaxagewyiziauwiqbqukwsydyoaw
cgfgiqwmohocgwgeleqmwqmnmkcwaupueswkcrcyiwuktksywesvsmow
pbybhfxzjajbvxjrcrvlxtzezpbxdhghjrxnpipdhxhfmfrnxrnonldx
bvqvftxldsdzjxvlultzxftwtnpxqczcigyakbkcwyksdswmyuafaqcy
eihiksyoqjqeiyigngsoysopomeycwrwguymeteakywmvmuayguxuoqy
rdadjhzblcldxzltetxnzvbgbrdzfjijltzprkrfjzjhohtpztpqpnfz
dxsxhvznfufblzxnwnvbzhvyvprzsebekiacmdmeyamufuyoawchcsea
gkjkmuaqslsgkakipiuqauqrqogaeytyiwaogvgcmayoxowcaiwzwqsa

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: sebekia
Cipher: frorxvn

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: sebekia
Cipher: 34512151524211

Extended Methods:
Method #1

Plaintext: sebekia
method variations:
xkgkpofcpmputlhuruzyqnzwzedv

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
s e b e k i a 
3 5 2 5 5 4 1 
4 1 1 1 2 2 1 
They are then read out in rows:
35255414111221
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: sebekia
Cipher: xwuqafb

Read more ...
Method #3

Plaintext: sebekia
method variations:
yfvvrbl fvvrbly vvrblyf
vrblyfv rblyfvv blyfvvr
lyfvvrb

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: sebekia

all 5040 cipher variations:
sebekia sebekai sebeika sebeiak sebeaik sebeaki sebkeia sebkeai sebkiea sebkiae sebkaie
sebkaei sebikea sebikae sebieka sebieak sebiaek sebiake sebakie sebakei sebaike sebaiek
sebaeik sebaeki seebkia seebkai seebika seebiak seebaik seebaki seekbia seekbai seekiba
seekiab seekaib seekabi seeikba seeikab seeibka seeibak seeiabk seeiakb seeakib seeakbi
seeaikb seeaibk seeabik seeabki sekebia sekebai sekeiba sekeiab sekeaib sekeabi sekbeia
sekbeai sekbiea sekbiae sekbaie sekbaei sekibea sekibae sekieba sekieab sekiaeb sekiabe
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keebisa keebias keebais keebasi keesbia keesbai keesiba keesiab keesaib keesabi keeisba
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kesbaei kesibea kesibae kesieba kesieab kesiaeb kesiabe kesabie kesabei kesaibe kesaieb
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keiabse keiabes keiaebs keiaesb keaesib keaesbi keaeisb keaeibs keaebis keaebsi keaseib
keasebi keasieb keasibe keasbie keasbei keaiseb keaisbe keaiesb keaiebs keaibes keaibse
keabsie keabsei keabise keabies keabeis keabesi ksbeeia ksbeeai ksbeiea ksbeiae ksbeaie
ksbeaei ksbeeia ksbeeai ksbeiea ksbeiae ksbeaie ksbeaei ksbieea ksbieae ksbieea ksbieae
ksbiaee ksbiaee ksbaeie ksbaeei ksbaiee ksbaiee ksbaeie ksbaeei ksebeia ksebeai ksebiea
ksebiae ksebaie ksebaei kseebia kseebai kseeiba kseeiab kseeaib kseeabi kseieba kseieab
kseibea kseibae kseiabe kseiaeb kseaeib kseaebi kseaieb kseaibe kseabie kseabei kseebia
kseebai kseeiba kseeiab kseeaib kseeabi ksebeia ksebeai ksebiea ksebiae ksebaie ksebaei
kseibea kseibae kseieba kseieab kseiaeb kseiabe kseabie kseabei kseaibe kseaieb kseaeib
kseaebi ksieeba ksieeab ksiebea ksiebae ksieabe ksieaeb ksieeba ksieeab ksiebea ksiebae
ksieabe ksieaeb ksibeea ksibeae ksibeea ksibeae ksibaee ksibaee ksiaebe ksiaeeb ksiabee
ksiabee ksiaebe ksiaeeb ksaeeib ksaeebi ksaeieb ksaeibe ksaebie ksaebei ksaeeib ksaeebi
ksaeieb ksaeibe ksaebie ksaebei ksaieeb ksaiebe ksaieeb ksaiebe ksaibee ksaibee ksabeie
ksabeei ksabiee ksabiee ksabeie ksabeei kibesea kibesae kibeesa kibeeas kibeaes kibease
kibseea kibseae kibseea kibseae kibsaee kibsaee kibesea kibesae kibeesa kibeeas kibeaes
kibease kibasee kibasee kibaese kibaees kibaees kibaese kiebsea kiebsae kiebesa kiebeas
kiebaes kiebase kiesbea kiesbae kieseba kieseab kiesaeb kiesabe kieesba kieesab kieebsa
kieebas kieeabs kieeasb kieaseb kieasbe kieaesb kieaebs kieabes kieabse kisebea kisebae
kiseeba kiseeab kiseaeb kiseabe kisbeea kisbeae kisbeea kisbeae kisbaee kisbaee kisebea
kisebae kiseeba kiseeab kiseaeb kiseabe kisabee kisabee kisaebe kisaeeb kisaeeb kisaebe
kieesba kieesab kieebsa kieebas kieeabs kieeasb kieseba kieseab kiesbea kiesbae kiesabe
kiesaeb kiebsea kiebsae kiebesa kiebeas kiebaes kiebase kieasbe kieaseb kieabse kieabes
kieaebs kieaesb kiaeseb kiaesbe kiaeesb kiaeebs kiaebes kiaebse kiaseeb kiasebe kiaseeb
kiasebe kiasbee kiasbee kiaeseb kiaesbe kiaeesb kiaeebs kiaebes kiaebse kiabsee kiabsee
kiabese kiabees kiabees kiabese kabesie kabesei kabeise kabeies kabeeis kabeesi kabseie
kabseei kabsiee kabsiee kabseie kabseei kabisee kabisee kabiese kabiees kabiees kabiese
kabesie kabesei kabeise kabeies kabeeis kabeesi kaebsie kaebsei kaebise kaebies kaebeis
kaebesi kaesbie kaesbei kaesibe kaesieb kaeseib kaesebi kaeisbe kaeiseb kaeibse kaeibes
kaeiebs kaeiesb kaeesib kaeesbi kaeeisb kaeeibs kaeebis kaeebsi kasebie kasebei kaseibe
kaseieb kaseeib kaseebi kasbeie kasbeei kasbiee kasbiee kasbeie kasbeei kasibee kasibee
kasiebe kasieeb kasieeb kasiebe kasebie kasebei kaseibe kaseieb kaseeib kaseebi kaiesbe
kaieseb kaiebse kaiebes kaieebs kaieesb kaisebe kaiseeb kaisbee kaisbee kaisebe kaiseeb
kaibsee kaibsee kaibese kaibees kaibees kaibese kaiesbe kaieseb kaiebse kaiebes kaieebs
kaieesb kaeesib kaeesbi kaeeisb kaeeibs kaeebis kaeebsi kaeseib kaesebi kaesieb kaesibe
kaesbie kaesbei kaeiseb kaeisbe kaeiesb kaeiebs kaeibes kaeibse kaebsie kaebsei kaebise
kaebies kaebeis kaebesi iebeksa iebekas iebeska iebesak iebeask iebeaks iebkesa iebkeas
iebksea iebksae iebkase iebkaes iebskea iebskae iebseka iebseak iebsaek iebsake iebakse
iebakes iebaske iebasek iebaesk iebaeks ieebksa ieebkas ieebska ieebsak ieebask ieebaks
ieekbsa ieekbas ieeksba ieeksab ieekasb ieekabs ieeskba ieeskab ieesbka ieesbak ieesabk
ieesakb ieeaksb ieeakbs ieeaskb ieeasbk ieeabsk ieeabks iekebsa iekebas iekesba iekesab
iekeasb iekeabs iekbesa iekbeas iekbsea iekbsae iekbase iekbaes ieksbea ieksbae iekseba
iekseab ieksaeb ieksabe iekabse iekabes iekasbe iekaseb iekaesb iekaebs iesekba iesekab
iesebka iesebak ieseabk ieseakb ieskeba ieskeab ieskbea ieskbae ieskabe ieskaeb iesbkea
iesbkae iesbeka iesbeak iesbaek iesbake iesakbe iesakeb iesabke iesabek iesaebk iesaekb
ieaeksb ieaekbs ieaeskb ieaesbk ieaebsk ieaebks ieakesb ieakebs ieakseb ieaksbe ieakbse
ieakbes ieaskeb ieaskbe ieasekb ieasebk ieasbek ieasbke ieabkse ieabkes ieabske ieabsek
ieabesk ieabeks ibeeksa ibeekas ibeeska ibeesak ibeeask ibeeaks ibekesa ibekeas ibeksea
ibeksae ibekase ibekaes ibeskea ibeskae ibeseka ibeseak ibesaek ibesake ibeakse ibeakes
ibeaske ibeasek ibeaesk ibeaeks ibeeksa ibeekas ibeeska ibeesak ibeeask ibeeaks ibekesa
ibekeas ibeksea ibeksae ibekase ibekaes ibeskea ibeskae ibeseka ibeseak ibesaek ibesake
ibeakse ibeakes ibeaske ibeasek ibeaesk ibeaeks ibkeesa ibkeeas ibkesea ibkesae ibkease
ibkeaes ibkeesa ibkeeas ibkesea ibkesae ibkease ibkeaes ibkseea ibkseae ibkseea ibkseae
ibksaee ibksaee ibkaese ibkaees ibkasee ibkasee ibkaese ibkaees ibsekea ibsekae ibseeka
ibseeak ibseaek ibseake ibskeea ibskeae ibskeea ibskeae ibskaee ibskaee ibsekea ibsekae
ibseeka ibseeak ibseaek ibseake ibsakee ibsakee ibsaeke ibsaeek ibsaeek ibsaeke ibaekse
ibaekes ibaeske ibaesek ibaeesk ibaeeks ibakese ibakees ibaksee ibaksee ibakese ibakees
ibaskee ibaskee ibaseke ibaseek ibaseek ibaseke ibaekse ibaekes ibaeske ibaesek ibaeesk
ibaeeks iebeksa iebekas iebeska iebesak iebeask iebeaks iebkesa iebkeas iebksea iebksae
iebkase iebkaes iebskea iebskae iebseka iebseak iebsaek iebsake iebakse iebakes iebaske
iebasek iebaesk iebaeks ieebksa ieebkas ieebska ieebsak ieebask ieebaks ieekbsa ieekbas
ieeksba ieeksab ieekasb ieekabs ieeskba ieeskab ieesbka ieesbak ieesabk ieesakb ieeaksb
ieeakbs ieeaskb ieeasbk ieeabsk ieeabks iekebsa iekebas iekesba iekesab iekeasb iekeabs
iekbesa iekbeas iekbsea iekbsae iekbase iekbaes ieksbea ieksbae iekseba iekseab ieksaeb
ieksabe iekabse iekabes iekasbe iekaseb iekaesb iekaebs iesekba iesekab iesebka iesebak
ieseabk ieseakb ieskeba ieskeab ieskbea ieskbae ieskabe ieskaeb iesbkea iesbkae iesbeka
iesbeak iesbaek iesbake iesakbe iesakeb iesabke iesabek iesaebk iesaekb ieaeksb ieaekbs
ieaeskb ieaesbk ieaebsk ieaebks ieakesb ieakebs ieakseb ieaksbe ieakbse ieakbes ieaskeb
ieaskbe ieasekb ieasebk ieasbek ieasbke ieabkse ieabkes ieabske ieabsek ieabesk ieabeks
ikbeesa ikbeeas ikbesea ikbesae ikbease ikbeaes ikbeesa ikbeeas ikbesea ikbesae ikbease
ikbeaes ikbseea ikbseae ikbseea ikbseae ikbsaee ikbsaee ikbaese ikbaees ikbasee ikbasee
ikbaese ikbaees ikebesa ikebeas ikebsea ikebsae ikebase ikebaes ikeebsa ikeebas ikeesba
ikeesab ikeeasb ikeeabs ikeseba ikeseab ikesbea ikesbae ikesabe ikesaeb ikeaesb ikeaebs
ikeaseb ikeasbe ikeabse ikeabes ikeebsa ikeebas ikeesba ikeesab ikeeasb ikeeabs ikebesa
ikebeas ikebsea ikebsae ikebase ikebaes ikesbea ikesbae ikeseba ikeseab ikesaeb ikesabe
ikeabse ikeabes ikeasbe ikeaseb ikeaesb ikeaebs ikseeba ikseeab iksebea iksebae ikseabe
ikseaeb ikseeba ikseeab iksebea iksebae ikseabe ikseaeb iksbeea iksbeae iksbeea iksbeae
iksbaee iksbaee iksaebe iksaeeb iksabee iksabee iksaebe iksaeeb ikaeesb ikaeebs ikaeseb
ikaesbe ikaebse ikaebes ikaeesb ikaeebs ikaeseb ikaesbe ikaebse ikaebes ikaseeb ikasebe
ikaseeb ikasebe ikasbee ikasbee ikabese ikabees ikabsee ikabsee ikabese ikabees isbekea
isbekae isbeeka isbeeak isbeaek isbeake isbkeea isbkeae isbkeea isbkeae isbkaee isbkaee
isbekea isbekae isbeeka isbeeak isbeaek isbeake isbakee isbakee isbaeke isbaeek isbaeek
isbaeke isebkea isebkae isebeka isebeak isebaek isebake isekbea isekbae isekeba isekeab
isekaeb isekabe iseekba iseekab iseebka iseebak iseeabk iseeakb iseakeb iseakbe iseaekb
iseaebk iseabek iseabke iskebea iskebae iskeeba iskeeab iskeaeb iskeabe iskbeea iskbeae
iskbeea iskbeae iskbaee iskbaee iskebea iskebae iskeeba iskeeab iskeaeb iskeabe iskabee
iskabee iskaebe iskaeeb iskaeeb iskaebe iseekba iseekab iseebka iseebak iseeabk iseeakb
isekeba isekeab isekbea isekbae isekabe isekaeb isebkea isebkae isebeka isebeak isebaek
isebake iseakbe iseakeb iseabke iseabek iseaebk iseaekb isaekeb isaekbe isaeekb isaeebk
isaebek isaebke isakeeb isakebe isakeeb isakebe isakbee isakbee isaekeb isaekbe isaeekb
isaeebk isaebek isaebke isabkee isabkee isabeke isabeek isabeek isabeke iabekse iabekes
iabeske iabesek iabeesk iabeeks iabkese iabkees iabksee iabksee iabkese iabkees iabskee
iabskee iabseke iabseek iabseek iabseke iabekse iabekes iabeske iabesek iabeesk iabeeks
iaebkse iaebkes iaebske iaebsek iaebesk iaebeks iaekbse iaekbes iaeksbe iaekseb iaekesb
iaekebs iaeskbe iaeskeb iaesbke iaesbek iaesebk iaesekb iaeeksb iaeekbs iaeeskb iaeesbk
iaeebsk iaeebks iakebse iakebes iakesbe iakeseb iakeesb iakeebs iakbese iakbees iakbsee
iakbsee iakbese iakbees iaksbee iaksbee iaksebe iakseeb iakseeb iaksebe iakebse iakebes
iakesbe iakeseb iakeesb iakeebs iasekbe iasekeb iasebke iasebek iaseebk iaseekb iaskebe
iaskeeb iaskbee iaskbee iaskebe iaskeeb iasbkee iasbkee iasbeke iasbeek iasbeek iasbeke
iasekbe iasekeb iasebke iasebek iaseebk iaseekb iaeeksb iaeekbs iaeeskb iaeesbk iaeebsk
iaeebks iaekesb iaekebs iaekseb iaeksbe iaekbse iaekbes iaeskeb iaeskbe iaesekb iaesebk
iaesbek iaesbke iaebkse iaebkes iaebske iaebsek iaebesk iaebeks aebekis aebeksi aebeiks
aebeisk aebesik aebeski aebkeis aebkesi aebkies aebkise aebksie aebksei aebikes aebikse
aebieks aebiesk aebisek aebiske aebskie aebskei aebsike aebsiek aebseik aebseki aeebkis
aeebksi aeebiks aeebisk aeebsik aeebski aeekbis aeekbsi aeekibs aeekisb aeeksib aeeksbi
aeeikbs aeeiksb aeeibks aeeibsk aeeisbk aeeiskb aeeskib aeeskbi aeesikb aeesibk aeesbik
aeesbki aekebis aekebsi aekeibs aekeisb aekesib aekesbi aekbeis aekbesi aekbies aekbise
aekbsie aekbsei aekibes aekibse aekiebs aekiesb aekiseb aekisbe aeksbie aeksbei aeksibe
aeksieb aekseib aeksebi aeiekbs aeieksb aeiebks aeiebsk aeiesbk aeieskb aeikebs aeikesb
aeikbes aeikbse aeiksbe aeikseb aeibkes aeibkse aeibeks aeibesk aeibsek aeibske aeiskbe
aeiskeb aeisbke aeisbek aeisebk aeisekb aesekib aesekbi aeseikb aeseibk aesebik aesebki
aeskeib aeskebi aeskieb aeskibe aeskbie aeskbei aesikeb aesikbe aesiekb aesiebk aesibek
aesibke aesbkie aesbkei aesbike aesbiek aesbeik aesbeki abeekis abeeksi abeeiks abeeisk
abeesik abeeski abekeis abekesi abekies abekise abeksie abeksei abeikes abeikse abeieks
abeiesk abeisek abeiske abeskie abeskei abesike abesiek abeseik abeseki abeekis abeeksi
abeeiks abeeisk abeesik abeeski abekeis abekesi abekies abekise abeksie abeksei abeikes
abeikse abeieks abeiesk abeisek abeiske abeskie abeskei abesike abesiek abeseik abeseki
abkeeis abkeesi abkeies abkeise abkesie abkesei abkeeis abkeesi abkeies abkeise abkesie
abkesei abkiees abkiese abkiees abkiese abkisee abkisee abkseie abkseei abksiee abksiee
abkseie abkseei abiekes abiekse abieeks abieesk abiesek abieske abikees abikese abikees
abikese abiksee abiksee abiekes abiekse abieeks abieesk abiesek abieske abiskee abiskee
abiseke abiseek abiseek abiseke absekie absekei abseike abseiek abseeik abseeki abskeie
abskeei abskiee abskiee abskeie abskeei absikee absikee absieke absieek absieek absieke
absekie absekei abseike abseiek abseeik abseeki aebekis aebeksi aebeiks aebeisk aebesik
aebeski aebkeis aebkesi aebkies aebkise aebksie aebksei aebikes aebikse aebieks aebiesk
aebisek aebiske aebskie aebskei aebsike aebsiek aebseik aebseki aeebkis aeebksi aeebiks
aeebisk aeebsik aeebski aeekbis aeekbsi aeekibs aeekisb aeeksib aeeksbi aeeikbs aeeiksb
aeeibks aeeibsk aeeisbk aeeiskb aeeskib aeeskbi aeesikb aeesibk aeesbik aeesbki aekebis
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aekibes aekibse aekiebs aekiesb aekiseb aekisbe aeksbie aeksbei aeksibe aeksieb aekseib
aeksebi aeiekbs aeieksb aeiebks aeiebsk aeiesbk aeieskb aeikebs aeikesb aeikbes aeikbse
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aeisbek aeisebk aeisekb aesekib aesekbi aeseikb aeseibk aesebik aesebki aeskeib aeskebi
aeskieb aeskibe aeskbie aeskbei aesikeb aesikbe aesiekb aesiebk aesibek aesibke aesbkie
aesbkei aesbike aesbiek aesbeik aesbeki akbeeis akbeesi akbeies akbeise akbesie akbesei
akbeeis akbeesi akbeies akbeise akbesie akbesei akbiees akbiese akbiees akbiese akbisee
akbisee akbseie akbseei akbsiee akbsiee akbseie akbseei akebeis akebesi akebies akebise
akebsie akebsei akeebis akeebsi akeeibs akeeisb akeesib akeesbi akeiebs akeiesb akeibes
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akieebs akieesb akiebes akiebse akiesbe akieseb akieebs akieesb akiebes akiebse akiesbe
akieseb akibees akibese akibees akibese akibsee akibsee akisebe akiseeb akisbee akisbee
akisebe akiseeb akseeib akseebi akseieb akseibe aksebie aksebei akseeib akseebi akseieb
akseibe aksebie aksebei aksieeb aksiebe aksieeb aksiebe aksibee aksibee aksbeie aksbeei
aksbiee aksbiee aksbeie aksbeei aibekes aibekse aibeeks aibeesk aibesek aibeske aibkees
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aibskee aibskee aibseke aibseek aibseek aibseke aiebkes aiebkse aiebeks aiebesk aiebsek
aiebske aiekbes aiekbse aiekebs aiekesb aiekseb aieksbe aieekbs aieeksb aieebks aieebsk
aieesbk aieeskb aieskeb aieskbe aiesekb aiesebk aiesbek aiesbke aikebes aikebse aikeebs
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aiebkes aiebkse aiebeks aiebesk aiebsek aiebske aieskbe aieskeb aiesbke aiesbek aiesebk
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aisbeek aisbeek aisbeke asbekie asbekei asbeike asbeiek asbeeik asbeeki asbkeie asbkeei
asbkiee asbkiee asbkeie asbkeei asbikee asbikee asbieke asbieek asbieek asbieke asbekie
asbekei asbeike asbeiek asbeeik asbeeki asebkie asebkei asebike asebiek asebeik asebeki
asekbie asekbei asekibe asekieb asekeib asekebi aseikbe aseikeb aseibke aseibek aseiebk
aseiekb aseekib aseekbi aseeikb aseeibk aseebik aseebki askebie askebei askeibe askeieb
askeeib askeebi askbeie askbeei askbiee askbiee askbeie askbeei askibee askibee askiebe
askieeb askieeb askiebe askebie askebei askeibe askeieb askeeib askeebi asiekbe asiekeb
asiebke asiebek asieebk asieekb asikebe asikeeb asikbee asikbee asikebe asikeeb asibkee
asibkee asibeke asibeek asibeek asibeke asiekbe asiekeb asiebke asiebek asieebk asieekb
aseekib aseekbi aseeikb aseeibk aseebik aseebki asekeib asekebi asekieb asekibe asekbie
asekbei aseikeb aseikbe aseiekb aseiebk aseibek aseibke asebkie asebkei asebike asebiek
asebeik asebeki

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History of cryptography
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