easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

podiatrist

sonore

simonsiella

sordid

repetimini

pertinentia

shrimping

micromicrofarad

lubin

frampton

dulcetness

scleroderm

trahebarisque

apostoli

spinoglenoid

cayster

anthoni

hovis


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: bononian
cipher variations:
cpopojbo dqpqpkcp erqrqldq fsrsrmer gtstsnfs
hututogt ivuvuphu jwvwvqiv kxwxwrjw lyxyxskx
mzyzytly nazazumz obabavna pcbcbwob qdcdcxpc
rededyqd sfefezre tgfgfasf uhghgbtg vihihcuh
wjijidvi xkjkjewj ylklkfxk zmlmlgyl anmnmhzm

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: bononian
Cipher: ylmlmrzm

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: bononian
Cipher: AAAAB ABBAB ABBAA ABBAB ABBAA 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: bononian
cipher variations:
cpopojboerorozbogtotopboivovofbokxoxovbomzozolboqdodorbosfofohbo
uhohoxbowjojonboylolodboanonotbodqpqpkcpfspspacphupupqcpjwpwpgcp
lypypwcpnapapmcprepepscptgpgpicpvipipycpxkpkpocpzmpmpecpbopopucp
erqrqldqgtqtqbdqivqvqrdqkxqxqhdqmzqzqxdqobqbqndqsfqfqtdquhqhqjdq
wjqjqzdqylqlqpdqanqnqfdqcpqpqvdqfsrsrmerhururcerjwrwrserlyryrier
nararyerpcrcroertgrgruervirirkerxkrkraerzmrmrqerbororgerdqrqrwer
gtstsnfsivsvsdfskxsxstfsmzszsjfsobsbszfsqdsdspfsuhshsvfswjsjslfs
ylslsbfsansnsrfscpspshfsersrsxfshututogtjwtwtegtlytytugtnatatkgt
pctctagtretetqgtvititwgtxktktmgtzmtmtcgtbototsgtdqtqtigtfststygt
ivuvuphukxuxufhumzuzuvhuobubulhuqdudubhusfufurhuwjujuxhuylulunhu
anunudhucpuputhuerurujhugtutuzhujwvwvqivlyvyvgivnavavwivpcvcvmiv
revevcivtgvgvsivxkvkvyivzmvmvoivbovoveivdqvqvuivfsvsvkivhuvuvaiv
kxwxwrjwmzwzwhjwobwbwxjwqdwdwnjwsfwfwdjwuhwhwtjwylwlwzjwanwnwpjw
cpwpwfjwerwrwvjwgtwtwljwivwvwbjwlyxyxskxnaxaxikxpcxcxykxrexexokx
tgxgxekxvixixukxzmxmxakxboxoxqkxdqxqxgkxfsxsxwkxhuxuxmkxjwxwxckx
mzyzytlyobybyjlyqdydyzlysfyfyplyuhyhyflywjyjyvlyanynyblycpypyrly
eryryhlygtytyxlyivyvynlykxyxydlynazazumzpczczkmzrezezamztgzgzqmz
vizizgmzxkzkzwmzbozozcmzdqzqzsmzfszszimzhuzuzymzjwzwzomzlyzyzemz
obabavnaqdadalnasfafabnauhaharnawjajahnaylalaxnacpapadnaeraratna
gtatajnaivavaznakxaxapnamzazafnapcbcbwobrebebmobtgbgbcobvibibsob
xkbkbiobzmbmbyobdqbqbeobfsbsbuobhububkobjwbwbaoblybybqobnababgob
qdcdcxpcsfcfcnpcuhchcdpcwjcjctpcylclcjpcancnczpcercrcfpcgtctcvpc
ivcvclpckxcxcbpcmzczcrpcobcbchpcrededyqdtgdgdoqdvidideqdxkdkduqd
zmdmdkqdbododaqdfsdsdgqdhududwqdjwdwdmqdlydydcqdnadadsqdpcdcdiqd
sfefezreuheheprewjejefreylelevreanenelrecpepebregtetehreivevexre
kxexenremzezedreobebetreqdedejretgfgfasfvififqsfxkfkfgsfzmfmfwsf
bofofmsfdqfqfcsfhufufisfjwfwfysflyfyfosfnafafesfpcfcfusfrefefksf
uhghgbtgwjgjgrtgylglghtgangngxtgcpgpgntgergrgdtgivgvgjtgkxgxgztg
mzgzgptgobgbgftgqdgdgvtgsfgfgltgvihihcuhxkhkhsuhzmhmhiuhbohohyuh
dqhqhouhfshsheuhjwhwhkuhlyhyhauhnahahquhpchchguhrehehwuhtghghmuh
wjijidviylilitvianinijvicpipizvieriripvigtitifvikxixilvimzizibvi
obibirviqdidihvisfifixviuhihinvixkjkjewjzmjmjuwjbojojkwjdqjqjawj
fsjsjqwjhujujgwjlyjyjmwjnajajcwjpcjcjswjrejejiwjtgjgjywjvijijowj
ylklkfxkanknkvxkcpkpklxkerkrkbxkgtktkrxkivkvkhxkmzkzknxkobkbkdxk
qdkdktxksfkfkjxkuhkhkzxkwjkjkpxkzmlmlgylbololwyldqlqlmylfslslcyl
hululsyljwlwliylnalaloylpclcleylreleluyltglglkylvililaylxklklqyl
anmnmhzmcpmpmxzmermrmnzmgtmtmdzmivmvmtzmkxmxmjzmobmbmpzmqdmdmfzm
sfmfmvzmuhmhmlzmwjmjmbzmylmlmrzmbononiandqnqnyanfsnsnoanhununean
jwnwnuanlynynkanpcncnqanrenengantgngnwanvininmanxknkncanzmnmnsan

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: bononian
Cipher: obabavna

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: bononian
Cipher: 2143334333421133

Extended Methods:
Method #1

Plaintext: bononian
method variations:
gtstsofsmyxyxtlxrdcdcyqcwihihdvh

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
b o n o n i a n 
2 4 3 4 3 4 1 3 
1 3 3 3 3 2 1 3 
They are then read out in rows:
2434341313333213
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: bononian
Cipher: rssllnhl

Read more ...
Method #3

Plaintext: bononian
method variations:
qnsnsblh nsnsblhq snsblhqn
nsblhqns sblhqnsn blhqnsns
lhqnsnsb hqnsnsbl

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: bononian

first 5040 cipher variations(40320 total)
bononian bononina bononain bononani bononnai bononnia bonoinan bonoinna bonoiann bonoiann bonoinan
bonoinna bonoainn bonoainn bonoanin bonoanni bonoanni bonoanin bononian bononina bononain bononani
bononnai bononnia bonnoian bonnoina bonnoain bonnoani bonnonai bonnonia bonnioan bonniona bonniaon
bonniano bonninao bonninoa bonnaion bonnaino bonnaoin bonnaoni bonnanoi bonnanio bonnniao bonnnioa
bonnnaio bonnnaoi bonnnoai bonnnoia boninoan boninona boninaon boninano boninnao boninnoa bonionan
bonionna bonioann bonioann bonionan bonionna boniaonn boniaonn bonianon bonianno bonianno bonianon
boninoan boninona boninaon boninano boninnao boninnoa bonanion bonanino bonanoin bonanoni bonannoi
bonannio bonainon bonainno bonaionn bonaionn bonainon bonainno bonaoinn bonaoinn bonaonin bonaonni
bonaonni bonaonin bonanion bonanino bonanoin bonanoni bonannoi bonannio bonnniao bonnnioa bonnnaio
bonnnaoi bonnnoai bonnnoia bonninao bonninoa bonniano bonniaon bonnioan bonniona bonnaino bonnaion
bonnanio bonnanoi bonnaoni bonnaoin bonnoian bonnoina bonnoain bonnoani bonnonai bonnonia boonnian
boonnina boonnain boonnani boonnnai boonnnia booninan booninna booniann booniann booninan booninna
boonainn boonainn boonanin boonanni boonanni boonanin boonnian boonnina boonnain boonnani boonnnai
boonnnia boonnian boonnina boonnain boonnani boonnnai boonnnia booninan booninna booniann booniann
booninan booninna boonainn boonainn boonanin boonanni boonanni boonanin boonnian boonnina boonnain
boonnani boonnnai boonnnia booinnan booinnna booinann booinann booinnan booinnna booinnan booinnna
booinann booinann booinnan booinnna booiannn booiannn booiannn booiannn booiannn booiannn booinnan
booinnna booinann booinann booinnan booinnna booaninn booaninn booannin booannni booannni booannin
booainnn booainnn booainnn booainnn booainnn booainnn booaninn booaninn booannin booannni booannni
booannin booaninn booaninn booannin booannni booannni booannin boonnian boonnina boonnain boonnani
boonnnai boonnnia booninan booninna booniann booniann booninan booninna boonainn boonainn boonanin
boonanni boonanni boonanin boonnian boonnina boonnain boonnani boonnnai boonnnia bononian bononina
bononain bononani bononnai bononnia bonoinan bonoinna bonoiann bonoiann bonoinan bonoinna bonoainn
bonoainn bonoanin bonoanni bonoanni bonoanin bononian bononina bononain bononani bononnai bononnia
bonnoian bonnoina bonnoain bonnoani bonnonai bonnonia bonnioan bonniona bonniaon bonniano bonninao
bonninoa bonnaion bonnaino bonnaoin bonnaoni bonnanoi bonnanio bonnniao bonnnioa bonnnaio bonnnaoi
bonnnoai bonnnoia boninoan boninona boninaon boninano boninnao boninnoa bonionan bonionna bonioann
bonioann bonionan bonionna boniaonn boniaonn bonianon bonianno bonianno bonianon boninoan boninona
boninaon boninano boninnao boninnoa bonanion bonanino bonanoin bonanoni bonannoi bonannio bonainon
bonainno bonaionn bonaionn bonainon bonainno bonaoinn bonaoinn bonaonin bonaonni bonaonni bonaonin
bonanion bonanino bonanoin bonanoni bonannoi bonannio bonnniao bonnnioa bonnnaio bonnnaoi bonnnoai
bonnnoia bonninao bonninoa bonniano bonniaon bonnioan bonniona bonnaino bonnaion bonnanio bonnanoi
bonnaoni bonnaoin bonnoian bonnoina bonnoain bonnoani bonnonai bonnonia boionnan boionnna boionann
boionann boionnan boionnna boionnan boionnna boionann boionann boionnan boionnna boioannn boioannn
boioannn boioannn boioannn boioannn boionnan boionnna boionann boionann boionnan boionnna boinonan
boinonna boinoann boinoann boinonan boinonna boinnoan boinnona boinnaon boinnano boinnnao boinnnoa
boinanon boinanno boinaonn boinaonn boinanon boinanno boinnnao boinnnoa boinnano boinnaon boinnoan
boinnona boinnoan boinnona boinnaon boinnano boinnnao boinnnoa boinonan boinonna boinoann boinoann
boinonan boinonna boinaonn boinaonn boinanon boinanno boinanno boinanon boinnoan boinnona boinnaon
boinnano boinnnao boinnnoa boiannon boiannno boianonn boianonn boiannon boiannno boiannon boiannno
boianonn boianonn boiannon boiannno boiaonnn boiaonnn boiaonnn boiaonnn boiaonnn boiaonnn boiannon
boiannno boianonn boianonn boiannon boiannno boinnnao boinnnoa boinnano boinnaon boinnoan boinnona
boinnnao boinnnoa boinnano boinnaon boinnoan boinnona boinanno boinanon boinanno boinanon boinaonn
boinaonn boinonan boinonna boinoann boinoann boinonan boinonna boaoninn boaoninn boaonnin boaonnni
boaonnni boaonnin boaoinnn boaoinnn boaoinnn boaoinnn boaoinnn boaoinnn boaoninn boaoninn boaonnin
boaonnni boaonnni boaonnin boaoninn boaoninn boaonnin boaonnni boaonnni boaonnin boanoinn boanoinn
boanonin boanonni boanonni boanonin boanionn boanionn boaninon boaninno boaninno boaninon boannion
boannino boannoin boannoni boannnoi boannnio boannino boannion boannnio boannnoi boannoni boannoin
boainonn boainonn boainnon boainnno boainnno boainnon boaionnn boaionnn boaionnn boaionnn boaionnn
boaionnn boainonn boainonn boainnon boainnno boainnno boainnon boainonn boainonn boainnon boainnno
boainnno boainnon boannion boannino boannoin boannoni boannnoi boannnio boaninon boaninno boanionn
boanionn boaninon boaninno boanoinn boanoinn boanonin boanonni boanonni boanonin boannion boannino
boannoin boannoni boannnoi boannnio boannino boannion boannnio boannnoi boannoni boannoin boaninno
boaninon boaninno boaninon boanionn boanionn boannino boannion boannnio boannnoi boannoni boannoin
boanoinn boanoinn boanonin boanonni boanonni boanonin bononian bononina bononain bononani bononnai
bononnia bonoinan bonoinna bonoiann bonoiann bonoinan bonoinna bonoainn bonoainn bonoanin bonoanni
bonoanni bonoanin bononian bononina bononain bononani bononnai bononnia bonnoian bonnoina bonnoain
bonnoani bonnonai bonnonia bonnioan bonniona bonniaon bonniano bonninao bonninoa bonnaion bonnaino
bonnaoin bonnaoni bonnanoi bonnanio bonnniao bonnnioa bonnnaio bonnnaoi bonnnoai bonnnoia boninoan
boninona boninaon boninano boninnao boninnoa bonionan bonionna bonioann bonioann bonionan bonionna
boniaonn boniaonn bonianon bonianno bonianno bonianon boninoan boninona boninaon boninano boninnao
boninnoa bonanion bonanino bonanoin bonanoni bonannoi bonannio bonainon bonainno bonaionn bonaionn
bonainon bonainno bonaoinn bonaoinn bonaonin bonaonni bonaonni bonaonin bonanion bonanino bonanoin
bonanoni bonannoi bonannio bonnniao bonnnioa bonnnaio bonnnaoi bonnnoai bonnnoia bonninao bonninoa
bonniano bonniaon bonnioan bonniona bonnaino bonnaion bonnanio bonnanoi bonnaoni bonnaoin bonnoian
bonnoina bonnoain bonnoani bonnonai bonnonia bnoonian bnoonina bnoonain bnoonani bnoonnai bnoonnia
bnooinan bnooinna bnooiann bnooiann bnooinan bnooinna bnooainn bnooainn bnooanin bnooanni bnooanni
bnooanin bnoonian bnoonina bnoonain bnoonani bnoonnai bnoonnia bnonoian bnonoina bnonoain bnonoani
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bnnionao bnnionoa bnniooan bnnioona bnnioaon bnnioano bnnionao bnnionoa bnniaoon bnniaono bnniaoon
bnniaono bnnianoo bnnianoo bnninoao bnninooa bnninaoo bnninaoo bnninoao bnninooa bnnaoion bnnaoino
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bnnnoiao bnnnoioa bnnnoaio bnnnoaoi bnnnooai bnnnooia bnnnioao bnnniooa bnnniaoo bnnniaoo bnnnioao
bnnniooa bnnnaioo bnnnaioo bnnnaoio bnnnaooi bnnnaooi bnnnaoio bnnnoiao bnnnoioa bnnnoaio bnnnoaoi
bnnnooai bnnnooia bnionoan bnionona bnionaon bnionano bnionnao bnionnoa bnioonan bnioonna bniooann
bniooann bnioonan bnioonna bnioaonn bnioaonn bnioanon bnioanno bnioanno bnioanon bnionoan bnionona
bnionaon bnionano bnionnao bnionnoa bninooan bninoona bninoaon bninoano bninonao bninonoa bninooan
bninoona bninoaon bninoano bninonao bninonoa bninaoon bninaono bninaoon bninaono bninanoo bninanoo
bninnoao bninnooa bninnaoo bninnaoo bninnoao bninnooa bnionoan bnionona bnionaon bnionano bnionnao
bnionnoa bnioonan bnioonna bniooann bniooann bnioonan bnioonna bnioaonn bnioaonn bnioanon bnioanno
bnioanno bnioanon bnionoan bnionona bnionaon bnionano bnionnao bnionnoa bnianoon bnianono bnianoon
bnianono bniannoo bniannoo bniaonon bniaonno bniaoonn bniaoonn bniaonon bniaonno bniaoonn bniaoonn
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binonoan binonona binonaon binonano binonnao binonnoa binoonan binoonna binooann binooann binoonan
binoonna binoaonn binoaonn binoanon binoanno binoanno binoanon binonoan binonona binonaon binonano
binonnao binonnoa binanoon binanono binanoon binanono binannoo binannoo binaonon binaonno binaoonn
binaoonn binaonon binaonno binaoonn binaoonn binaonon binaonno binaonno binaonon binanoon binanono
binanoon binanono binannoo binannoo binnnoao binnnooa binnnaoo binnnaoo binnnoao binnnooa binnonao
binnonoa binnoano binnoaon binnooan binnoona binnaono binnaoon binnanoo binnanoo binnaono binnaoon
binnooan binnoona binnoaon binnoano binnonao binnonoa bioonnan bioonnna bioonann bioonann bioonnan
bioonnna bioonnan bioonnna bioonann bioonann bioonnan bioonnna biooannn biooannn biooannn biooannn
biooannn biooannn bioonnan bioonnna bioonann bioonann bioonnan bioonnna biononan biononna bionoann
bionoann biononan biononna bionnoan bionnona bionnaon bionnano bionnnao bionnnoa bionanon bionanno
bionaonn bionaonn bionanon bionanno bionnnao bionnnoa bionnano bionnaon bionnoan bionnona bionnoan
bionnona bionnaon bionnano bionnnao bionnnoa biononan biononna bionoann bionoann biononan biononna
bionaonn bionaonn bionanon bionanno bionanno bionanon bionnoan bionnona bionnaon bionnano bionnnao
bionnnoa bioannon bioannno bioanonn bioanonn bioannon bioannno bioannon bioannno bioanonn bioanonn
bioannon bioannno bioaonnn bioaonnn bioaonnn bioaonnn bioaonnn bioaonnn bioannon bioannno bioanonn
bioanonn bioannon bioannno bionnnao bionnnoa bionnano bionnaon bionnoan bionnona bionnnao bionnnoa
bionnano bionnaon bionnoan bionnona bionanno bionanon bionanno bionanon bionaonn bionaonn biononan
biononna bionoann bionoann biononan biononna biaononn biaononn biaonnon biaonnno biaonnno biaonnon
biaoonnn biaoonnn biaoonnn biaoonnn biaoonnn biaoonnn biaononn biaononn biaonnon biaonnno biaonnno
biaonnon biaononn biaononn biaonnon biaonnno biaonnno biaonnon bianoonn bianoonn bianonon bianonno
bianonno bianonon bianoonn bianoonn bianonon bianonno bianonno bianonon biannoon biannono biannoon
biannono biannnoo biannnoo biannono biannoon biannnoo biannnoo biannono biannoon biaononn biaononn
biaonnon biaonnno biaonnno biaonnon biaoonnn biaoonnn biaoonnn biaoonnn biaoonnn biaoonnn biaononn
biaononn biaonnon biaonnno biaonnno biaonnon biaononn biaononn biaonnon biaonnno biaonnno biaonnon
biannoon biannono biannoon biannono biannnoo biannnoo bianonon bianonno bianoonn bianoonn bianonon
bianonno bianoonn bianoonn bianonon bianonno bianonno bianonon biannoon biannono biannoon biannono
biannnoo biannnoo biannono biannoon biannnoo biannnoo biannono biannoon bianonno bianonon bianonno
bianonon bianoonn bianoonn biannono biannoon biannnoo biannnoo biannono biannoon bianoonn bianoonn
bianonon bianonno bianonno bianonon binonoan binonona binonaon binonano binonnao binonnoa binoonan
binoonna binooann binooann binoonan binoonna binoaonn binoaonn binoanon binoanno binoanno binoanon
binonoan binonona binonaon binonano binonnao binonnoa binnooan binnoona binnoaon binnoano binnonao
binnonoa binnooan binnoona binnoaon binnoano binnonao binnonoa binnaoon binnaono binnaoon binnaono
binnanoo binnanoo binnnoao binnnooa binnnaoo binnnaoo binnnoao binnnooa binonoan binonona binonaon
binonano binonnao binonnoa binoonan binoonna binooann binooann binoonan binoonna binoaonn binoaonn
binoanon binoanno binoanno binoanon binonoan binonona binonaon binonano binonnao binonnoa binanoon
binanono binanoon binanono binannoo binannoo binaonon binaonno binaoonn binaoonn binaonon binaonno
binaoonn binaoonn binaonon binaonno binaonno binaonon binanoon binanono binanoon binanono binannoo
binannoo binnnoao binnnooa binnnaoo binnnaoo binnnoao binnnooa binnonao binnonoa binnoano binnoaon
binnooan binnoona binnaono binnaoon binnanoo binnanoo binnaono binnaoon binnooan binnoona binnoaon
binnoano binnonao binnonoa banonion banonino banonoin banononi banonnoi banonnio banoinon banoinno
banoionn banoionn banoinon banoinno banooinn banooinn banoonin banoonni banoonni banoonin banonion
banonino banonoin banononi banonnoi banonnio bannoion bannoino bannooin bannooni bannonoi bannonio
bannioon banniono bannioon banniono banninoo banninoo bannoion bannoino bannooin bannooni bannonoi
bannonio bannnioo bannnioo bannnoio bannnooi bannnooi bannnoio baninoon baninono baninoon baninono
baninnoo baninnoo banionon banionno banioonn banioonn banionon banionno banioonn banioonn banionon
banionno banionno banionon baninoon baninono baninoon baninono baninnoo baninnoo banonion banonino
banonoin banononi banonnoi banonnio banoinon banoinno banoionn banoionn banoinon banoinno banooinn
banooinn banoonin banoonni banoonni banoonin banonion banonino banonoin banononi banonnoi banonnio
bannnioo bannnioo bannnoio bannnooi bannnooi bannnoio banninoo banninoo banniono bannioon bannioon
banniono bannoino bannoion bannonio bannonoi bannooni bannooin bannoion bannoino bannooin bannooni
bannonoi bannonio baonnion baonnino baonnoin baonnoni baonnnoi baonnnio baoninon baoninno baonionn
baonionn baoninon baoninno baonoinn baonoinn baononin baononni baononni baononin baonnion baonnino
baonnoin baonnoni baonnnoi baonnnio baonnion baonnino baonnoin baonnoni baonnnoi baonnnio baoninon
baoninno baonionn baonionn baoninon baoninno baonoinn baonoinn baononin baononni baononni baononin
baonnion baonnino baonnoin baonnoni baonnnoi baonnnio baoinnon baoinnno baoinonn baoinonn baoinnon
baoinnno baoinnon baoinnno baoinonn baoinonn baoinnon baoinnno baoionnn baoionnn baoionnn baoionnn
baoionnn baoionnn baoinnon baoinnno baoinonn baoinonn baoinnon baoinnno baooninn baooninn baoonnin
baoonnni baoonnni baoonnin baooinnn baooinnn baooinnn baooinnn baooinnn baooinnn baooninn baooninn
baoonnin baoonnni baoonnni baoonnin baooninn baooninn baoonnin baoonnni baoonnni baoonnin baonnion
baonnino baonnoin baonnoni baonnnoi baonnnio baoninon baoninno baonionn baonionn baoninon baoninno
baonoinn baonoinn baononin baononni baononni baononin baonnion baonnino baonnoin baonnoni baonnnoi
baonnnio banonion banonino banonoin banononi banonnoi banonnio banoinon banoinno banoionn banoionn
banoinon banoinno banooinn banooinn banoonin banoonni banoonni banoonin banonion banonino banonoin
banononi banonnoi banonnio bannoion bannoino bannooin bannooni bannonoi bannonio bannioon banniono
bannioon banniono banninoo banninoo bannoion bannoino bannooin bannooni bannonoi bannonio bannnioo
bannnioo bannnoio bannnooi bannnooi bannnoio baninoon baninono baninoon baninono baninnoo baninnoo
banionon banionno banioonn banioonn banionon banionno banioonn banioonn banionon banionno banionno
banionon baninoon baninono baninoon baninono baninnoo baninnoo banonion banonino banonoin banononi
banonnoi banonnio banoinon banoinno banoionn banoionn banoinon banoinno banooinn banooinn banoonin
banoonni banoonni banoonin banonion banonino banonoin banononi banonnoi banonnio bannnioo bannnioo
bannnoio bannnooi bannnooi bannnoio banninoo banninoo banniono bannioon bannioon banniono bannoino
bannoion bannonio bannonoi bannooni bannooin bannoion bannoino bannooin bannooni bannonoi bannonio
baionnon baionnno baiononn baiononn baionnon baionnno baionnon baionnno baiononn baiononn baionnon
baionnno baioonnn baioonnn baioonnn baioonnn baioonnn baioonnn baionnon baionnno baiononn baiononn
baionnon baionnno bainonon bainonno bainoonn bainoonn bainonon bainonno bainnoon bainnono bainnoon
bainnono bainnnoo bainnnoo bainonon bainonno bainoonn bainoonn bainonon bainonno bainnnoo bainnnoo
bainnono bainnoon bainnoon bainnono bainnoon bainnono bainnoon bainnono bainnnoo bainnnoo bainonon
bainonno bainoonn bainoonn bainonon bainonno bainoonn bainoonn bainonon bainonno bainonno bainonon
bainnoon bainnono bainnoon bainnono bainnnoo bainnnoo baionnon baionnno baiononn baiononn baionnon
baionnno baionnon baionnno baiononn baiononn baionnon baionnno baioonnn baioonnn baioonnn baioonnn
baioonnn baioonnn baionnon baionnno baiononn baiononn baionnon baionnno bainnnoo bainnnoo bainnono
bainnoon bainnoon bainnono bainnnoo bainnnoo bainnono bainnoon bainnoon bainnono bainonno bainonon
bainonno bainonon bainoonn bainoonn bainonon bainonno bainoonn bainoonn bainonon bainonno baooninn
baooninn baoonnin baoonnni baoonnni baoonnin baooinnn baooinnn baooinnn baooinnn baooinnn baooinnn
baooninn baooninn baoonnin baoonnni baoonnni baoonnin baooninn baooninn baoonnin baoonnni baoonnni
baoonnin baonoinn baonoinn baononin baononni baononni baononin baonionn baonionn baoninon baoninno
baoninno baoninon baonnion baonnino baonnoin baonnoni baonnnoi baonnnio baonnino baonnion baonnnio
baonnnoi baonnoni baonnoin baoinonn baoinonn baoinnon baoinnno baoinnno baoinnon baoionnn baoionnn
baoionnn baoionnn baoionnn baoionnn baoinonn baoinonn baoinnon baoinnno baoinnno baoinnon baoinonn
baoinonn baoinnon baoinnno baoinnno baoinnon baonnion baonnino baonnoin baonnoni baonnnoi baonnnio
baoninon baoninno baonionn baonionn baoninon baoninno baonoinn baonoinn baononin baononni baononni
baononin baonnion baonnino baonnoin baonnoni baonnnoi baonnnio baonnino baonnion baonnnio baonnnoi
baonnoni baonnoin baoninno baoninon baoninno baoninon baonionn baonionn baonnino baonnion baonnnio
baonnnoi baonnoni baonnoin baonoinn baonoinn baononin baononni baononni baononin banonion banonino
banonoin banononi banonnoi banonnio banoinon banoinno banoionn banoionn banoinon banoinno banooinn
banooinn banoonin banoonni banoonni banoonin banonion banonino banonoin banononi banonnoi banonnio
bannoion bannoino bannooin bannooni bannonoi bannonio bannioon banniono bannioon banniono banninoo
banninoo bannoion bannoino bannooin bannooni bannonoi bannonio bannnioo bannnioo bannnoio bannnooi
bannnooi bannnoio baninoon baninono baninoon baninono baninnoo baninnoo banionon banionno banioonn
banioonn banionon banionno banioonn banioonn banionon banionno banionno banionon baninoon baninono
baninoon baninono baninnoo baninnoo banonion banonino banonoin banononi banonnoi banonnio banoinon
banoinno banoionn banoionn banoinon banoinno banooinn banooinn banoonin banoonni banoonni banoonin
banonion banonino banonoin banononi banonnoi banonnio bannnioo bannnioo bannnoio bannnooi bannnooi
bannnoio banninoo banninoo banniono bannioon bannioon banniono bannoino bannoion bannonio bannonoi
bannooni bannooin bannoion bannoino bannooin bannooni bannonoi bannonio bnnoniao bnnonioa bnnonaio
bnnonaoi bnnonoai bnnonoia bnnoinao bnnoinoa bnnoiano bnnoiaon bnnoioan bnnoiona bnnoaino bnnoaion
bnnoanio bnnoanoi bnnoaoni bnnoaoin bnnooian bnnooina bnnooain bnnooani bnnoonai bnnoonia bnnnoiao
bnnnoioa bnnnoaio bnnnoaoi bnnnooai bnnnooia bnnnioao bnnniooa bnnniaoo bnnniaoo bnnnioao bnnniooa
bnnnaioo bnnnaioo bnnnaoio bnnnaooi bnnnaooi bnnnaoio bnnnoiao bnnnoioa bnnnoaio bnnnoaoi bnnnooai
bnnnooia bnninoao bnninooa bnninaoo bnninaoo bnninoao bnninooa bnnionao bnnionoa bnnioano bnnioaon
bnniooan bnnioona bnniaono bnniaoon bnnianoo bnnianoo bnniaono bnniaoon bnniooan bnnioona bnnioaon
bnnioano bnnionao bnnionoa bnnanioo bnnanioo bnnanoio bnnanooi bnnanooi bnnanoio bnnainoo bnnainoo
bnnaiono bnnaioon bnnaioon bnnaiono bnnaoino bnnaoion bnnaonio bnnaonoi bnnaooni bnnaooin bnnaoion
bnnaoino bnnaooin bnnaooni bnnaonoi bnnaonio bnnoniao bnnonioa bnnonaio bnnonaoi bnnonoai bnnonoia
bnnoinao bnnoinoa bnnoiano bnnoiaon bnnoioan bnnoiona bnnoaino bnnoaion bnnoanio bnnoanoi bnnoaoni
bnnoaoin bnnooian bnnooina bnnooain bnnooani bnnoonai bnnoonia bnonniao bnonnioa bnonnaio bnonnaoi
bnonnoai bnonnoia bnoninao bnoninoa bnoniano bnoniaon bnonioan bnoniona bnonaino bnonaion bnonanio
bnonanoi bnonaoni bnonaoin bnonoian bnonoina bnonoain bnonoani bnononai bnononia bnonniao bnonnioa
bnonnaio bnonnaoi bnonnoai bnonnoia bnoninao bnoninoa bnoniano bnoniaon bnonioan bnoniona bnonaino
bnonaion bnonanio bnonanoi bnonaoni bnonaoin bnonoian bnonoina bnonoain bnonoani bnononai bnononia
bnoinnao bnoinnoa bnoinano bnoinaon bnoinoan bnoinona bnoinnao bnoinnoa bnoinano bnoinaon bnoinoan
bnoinona bnoianno bnoianon bnoianno bnoianon bnoiaonn bnoiaonn bnoionan bnoionna bnoioann bnoioann
bnoionan bnoionna bnoanino bnoanion bnoannio bnoannoi bnoanoni bnoanoin bnoainno bnoainon bnoainno
bnoainon bnoaionn bnoaionn bnoanino bnoanion bnoannio bnoannoi bnoanoni bnoanoin bnoaoinn bnoaoinn
bnoaonin bnoaonni bnoaonni bnoaonin bnoonian bnoonina bnoonain bnoonani bnoonnai bnoonnia bnooinan
bnooinna bnooiann bnooiann bnooinan bnooinna bnooainn bnooainn bnooanin bnooanni bnooanni bnooanin
bnoonian bnoonina bnoonain bnoonani bnoonnai bnoonnia bnnoniao bnnonioa bnnonaio bnnonaoi bnnonoai
bnnonoia bnnoinao bnnoinoa bnnoiano bnnoiaon bnnoioan bnnoiona bnnoaino bnnoaion bnnoanio bnnoanoi
bnnoaoni bnnoaoin bnnooian bnnooina bnnooain bnnooani bnnoonai bnnoonia bnnnoiao bnnnoioa bnnnoaio
bnnnoaoi bnnnooai bnnnooia bnnnioao bnnniooa bnnniaoo bnnniaoo bnnnioao bnnniooa bnnnaioo bnnnaioo
bnnnaoio bnnnaooi bnnnaooi bnnnaoio bnnnoiao bnnnoioa bnnnoaio bnnnoaoi bnnnooai bnnnooia bnninoao
bnninooa bnninaoo bnninaoo bnninoao bnninooa bnnionao bnnionoa bnnioano bnnioaon bnniooan bnnioona
bnniaono bnniaoon bnnianoo bnnianoo bnniaono bnniaoon bnniooan bnnioona bnnioaon bnnioano bnnionao
bnnionoa bnnanioo bnnanioo bnnanoio bnnanooi bnnanooi bnnanoio bnnainoo bnnainoo bnnaiono bnnaioon
bnnaioon bnnaiono bnnaoino bnnaoion bnnaonio bnnaonoi bnnaooni bnnaooin bnnaoion bnnaoino bnnaooin
bnnaooni bnnaonoi bnnaonio bnnoniao bnnonioa bnnonaio bnnonaoi bnnonoai bnnonoia bnnoinao bnnoinoa
bnnoiano bnnoiaon bnnoioan bnnoiona bnnoaino bnnoaion bnnoanio bnnoanoi bnnoaoni bnnoaoin bnnooian
bnnooina bnnooain bnnooani bnnoonai bnnoonia bnionnao bnionnoa bnionano bnionaon bnionoan bnionona
bnionnao bnionnoa bnionano bnionaon bnionoan bnionona bnioanno bnioanon bnioanno bnioanon bnioaonn
bnioaonn bnioonan bnioonna bniooann bniooann bnioonan bnioonna bninonao bninonoa bninoano bninoaon
bninooan bninoona bninnoao bninnooa bninnaoo bninnaoo bninnoao bninnooa bninanoo bninanoo bninaono
bninaoon bninaoon bninaono bninonao bninonoa bninoano bninoaon bninooan bninoona bninnoao bninnooa
bninnaoo bninnaoo bninnoao bninnooa bninonao bninonoa bninoano bninoaon bninooan bninoona bninaono
bninaoon bninanoo bninanoo bninaono bninaoon bninooan bninoona bninoaon bninoano bninonao bninonoa
bniannoo bniannoo bnianono bnianoon bnianoon bnianono bniannoo bniannoo bnianono bnianoon bnianoon
bnianono bniaonno bniaonon bniaonno bniaonon bniaoonn bniaoonn bniaonon bniaonno bniaoonn bniaoonn
bniaonon bniaonno bnionnao bnionnoa bnionano bnionaon bnionoan bnionona bnionnao bnionnoa bnionano
bnionaon bnionoan bnionona bnioanno bnioanon bnioanno bnioanon bnioaonn bnioaonn bnioonan bnioonna
bniooann bniooann bnioonan bnioonna bnaonino bnaonion bnaonnio bnaonnoi bnaononi bnaonoin bnaoinno
bnaoinon bnaoinno bnaoinon bnaoionn bnaoionn bnaonino bnaonion bnaonnio bnaonnoi bnaononi bnaonoin
bnaooinn bnaooinn bnaoonin bnaoonni bnaoonni bnaoonin bnanoino bnanoion bnanonio bnanonoi bnanooni
bnanooin bnaniono bnanioon bnaninoo bnaninoo bnaniono bnanioon bnannioo bnannioo bnannoio bnannooi
bnannooi bnannoio bnanoino bnanoion bnanonio bnanonoi bnanooni bnanooin bnainono bnainoon bnainnoo
bnainnoo bnainono bnainoon bnaionno bnaionon bnaionno bnaionon bnaioonn bnaioonn bnainono bnainoon
bnainnoo bnainnoo bnainono bnainoon bnaioonn bnaioonn bnaionon bnaionno bnaionno bnaionon bnannioo
bnannioo bnannoio bnannooi bnannooi bnannoio bnaninoo bnaninoo bnaniono bnanioon bnanioon bnaniono
bnanoino bnanoion bnanonio bnanonoi bnanooni bnanooin bnanoion bnanoino bnanooin bnanooni bnanonoi
bnanonio bnaonino bnaonion bnaonnio bnaonnoi bnaononi bnaonoin bnaoinno bnaoinon bnaoinno bnaoinon
bnaoionn bnaoionn bnaonino bnaonion bnaonnio bnaonnoi bnaononi bnaonoin bnaooinn bnaooinn bnaoonin
bnaoonni bnaoonni bnaoonin bnoonian bnoonina bnoonain bnoonani bnoonnai bnoonnia bnooinan bnooinna
bnooiann bnooiann bnooinan bnooinna bnooainn bnooainn bnooanin bnooanni bnooanni bnooanin bnoonian
bnoonina bnoonain bnoonani bnoonnai bnoonnia bnonoian bnonoina bnonoain bnonoani bnononai bnononia
bnonioan bnoniona bnoniaon bnoniano bnoninao bnoninoa bnonaion bnonaino bnonaoin bnonaoni bnonanoi
bnonanio bnonniao bnonnioa bnonnaio bnonnaoi bnonnoai bnonnoia bnoinoan bnoinona bnoinaon bnoinano
bnoinnao bnoinnoa bnoionan bnoionna bnoioann bnoioann bnoionan bnoionna bnoiaonn bnoiaonn bnoianon
bnoianno bnoianno bnoianon bnoinoan bnoinona bnoinaon bnoinano bnoinnao bnoinnoa bnoanion bnoanino
bnoanoin bnoanoni bnoannoi bnoannio bnoainon bnoainno bnoaionn bnoaionn bnoainon bnoainno bnoaoinn
bnoaoinn bnoaonin bnoaonni bnoaonni bnoaonin bnoanion bnoanino bnoanoin bnoanoni bnoannoi bnoannio
bnonniao bnonnioa bnonnaio bnonnaoi bnonnoai bnonnoia bnoninao bnoninoa bnoniano bnoniaon bnonioan
bnoniona bnonaino bnonaion bnonanio bnonanoi bnonaoni bnonaoin bnonoian bnonoina bnonoain bnonoani
bnononai bnononia

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History of cryptography
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