easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

heterochronic

impetrant

pertinebis

incusavissent

rafuse

penarth

cubicities

mutemque

outpreened

hibisci

fleeceless

schemery

carcinomas

abortusbovis

teutonique

barshai

nicko

harebrain


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: imbibes
cipher variations:
jncjcft kodkdgu lpelehv mqfmfiw nrgngjx
oshohky ptipilz qujqjma rvkrknb swlsloc
txmtmpd uynunqe vzovorf wapwpsg xbqxqth
ycryrui zdszsvj aetatwk bfubuxl cgvcvym
dhwdwzn eixexao fjyfybp gkzgzcq hlahadr

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: imbibes
Cipher: rnyryvh

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: imbibes
Cipher: ABAAA ABABB AAAAB ABAAA AAAAB AABAA BAAAB

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: imbibes
cipher variations:
jncjcftzlezendpjgpgvnfhifidxvfkvklhldmlmtrrzqrqjlhxshsrv
xvuxuzfntwnwhpdrydypztpataxjkodkdguamfafoeqkhqhwogijgjey
wglwlmimenmnussarsrkmiytitswywvyvagouxoxiqeszezqauqbubyk
lpelehvbngbgpfrlirixphjkhkfzxhmxmnjnfonovttbstslnjzujutx
zxwzwbhpvypyjrftafarbvrcvczlmqfmfiwcohchqgsmjsjyqiklilga
yinynokogpopwuuctutmokavkvuyayxaxciqwzqzksgubgbscwsdwdam
nrgngjxdpidirhtnktkzrjlmjmhbzjozoplphqpqxvvduvunplbwlwvz
bzybydjrxaralthvchctdxtexebnoshohkyeqjejsiuolulaskmnknic
akpapqmqirqrywwevwvoqmcxmxwacazczeksybsbmuiwdidueyufyfco
ptipilzfrkfktjvpmvmbtlnolojdblqbqrnrjsrszxxfwxwprndynyxb
dbadafltzctcnvjxejevfzvgzgdpqujqjmagslglukwqnwncumopmpke
cmrcrsosktstayygxyxqsoezozycecbebgmuadudowkyfkfwgawhaheq
rvkrknbhtmhmvlxroxodvnpqnqlfdnsdstptlutubzzhyzyrtpfapazd
fdcfchnvbevepxlzglgxhbxibifrswlslociuninwmyspypewoqrormg
eotetuqumvuvcaaizazsuqgbqbaegedgdiowcfwfqymahmhyicyjcjgs
txmtmpdjvojoxnztqzqfxprspsnhfpufuvrvnwvwdbbjabatvrhcrcbf
hfehejpxdgxgrznbinizjdzkdkhtuynunqekwpkpyoaurargyqstqtoi
gqvgvwswoxwxecckbcbuwsidsdcgigfifkqyehyhsaocjojakealeliu
vzovorflxqlqzpbvsbshzrturupjhrwhwxtxpyxyfddlcdcvxtjetedh
jhgjglrzfizitbpdkpkblfbmfmjvwapwpsgmyrmraqcwtctiasuvsvqk
isxixyuyqzyzgeemdedwyukfufeikihkhmsagjajucqelqlcmgcngnkw
xbqxqthnzsnsbrdxudujbtvwtwrljtyjyzvzrazahffnefexzvlgvgfj
ljilintbhkbkvdrfmrmdnhdoholxycryruioatotcseyvevkcuwxuxsm
kuzkzawasbabiggofgfyawmhwhgkmkjmjoucilclwesgnsneoiepipmy
zdszsvjpbupudtfzwfwldvxyvytnlvalabxbtcbcjhhpghgzbxnixihl
nlknkpvdjmdmxfthotofpjfqjqnzaetatwkqcvqveugaxgxmewyzwzuo
mwbmbcycudcdkiiqhihacyojyjimomlolqweknenyguipupgqkgrkroa
bfubuxlrdwrwfvhbyhynfxzaxavpnxcncdzdvedeljjrijibdzpkzkjn
pnmpmrxflofozhvjqvqhrlhslspbcgvcvymsexsxgwiczizogyabybwq
oydodeaewfefmkksjkjceaqlalkoqonqnsygmpgpaiwkrwrismitmtqc
dhwdwzntfytyhxjdajaphzbczcxrpzepefbfxgfgnlltklkdfbrmbmlp
rporotzhnqhqbjxlsxsjtnjunurdeixexaougzuziykebkbqiacdadys
qafqfgcgyhghommulmlegcsncnmqsqpspuaiorirckymtytkuokvovse
fjyfybpvhavajzlfclcrjbdebeztrbgrghdhzihipnnvmnmfhdtodonr
trqtqvbjpsjsdlznuzulvplwpwtfgkzgzcqwibwbkamgdmdskcefcfau
schshieiajijqoownongieupeposusrurwckqtktemaovavmwqmxqxug
hlahadrxjcxclbnhenetldfgdgbvtditijfjbkjkrppxopohjfvqfqpt
vtsvsxdlrulufnbpwbwnxrnyryvhimbibesykdydmcoifofumeghehcw
uejujkgkclklsqqypqpikgwrgrquwutwtyemsvmvgocqxcxoysozszwi

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: imbibes
Cipher: vzovorf

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: imbibes
Cipher: 42232142215134

Extended Methods:
Method #1

Plaintext: imbibes
method variations:
orgogkxtwmtmpcybryruhdgwdwzn

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
i m b i b e s 
4 2 2 4 2 5 3 
2 3 1 2 1 1 4 
They are then read out in rows:
42242532312114
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: imbibes
Cipher: irwhcbq

Read more ...
Method #3

Plaintext: imbibes
method variations:
ghqgvlt hqgvltg qgvltgh
gvltghq vltghqg ltghqgv
tghqgvl

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: imbibes

all 5040 cipher variations:
imbibes imbibse imbiebs imbiesb imbiseb imbisbe imbbies imbbise imbbeis imbbesi imbbsei
imbbsie imbebis imbebsi imbeibs imbeisb imbesib imbesbi imbsbei imbsbie imbsebi imbseib
imbsieb imbsibe imibbes imibbse imibebs imibesb imibseb imibsbe imibbes imibbse imibebs
imibesb imibseb imibsbe imiebbs imiebsb imiebbs imiebsb imiesbb imiesbb imisbeb imisbbe
imisebb imisebb imisbeb imisbbe imbibes imbibse imbiebs imbiesb imbiseb imbisbe imbbies
imbbise imbbeis imbbesi imbbsei imbbsie imbebis imbebsi imbeibs imbeisb imbesib imbesbi
imbsbei imbsbie imbsebi imbseib imbsieb imbsibe imeibbs imeibsb imeibbs imeibsb imeisbb
imeisbb imebibs imebisb imebbis imebbsi imebsbi imebsib imebbis imebbsi imebibs imebisb
imebsib imebsbi imesbbi imesbib imesbbi imesbib imesibb imesibb imsibeb imsibbe imsiebb
imsiebb imsibeb imsibbe imsbieb imsbibe imsbeib imsbebi imsbbei imsbbie imsebib imsebbi
imseibb imseibb imsebib imsebbi imsbbei imsbbie imsbebi imsbeib imsbieb imsbibe ibmibes
ibmibse ibmiebs ibmiesb ibmiseb ibmisbe ibmbies ibmbise ibmbeis ibmbesi ibmbsei ibmbsie
ibmebis ibmebsi ibmeibs ibmeisb ibmesib ibmesbi ibmsbei ibmsbie ibmsebi ibmseib ibmsieb
ibmsibe ibimbes ibimbse ibimebs ibimesb ibimseb ibimsbe ibibmes ibibmse ibibems ibibesm
ibibsem ibibsme ibiebms ibiebsm ibiembs ibiemsb ibiesmb ibiesbm ibisbem ibisbme ibisebm
ibisemb ibismeb ibismbe ibbimes ibbimse ibbiems ibbiesm ibbisem ibbisme ibbmies ibbmise
ibbmeis ibbmesi ibbmsei ibbmsie ibbemis ibbemsi ibbeims ibbeism ibbesim ibbesmi ibbsmei
ibbsmie ibbsemi ibbseim ibbsiem ibbsime ibeibms ibeibsm ibeimbs ibeimsb ibeismb ibeisbm
ibebims ibebism ibebmis ibebmsi ibebsmi ibebsim ibembis ibembsi ibemibs ibemisb ibemsib
ibemsbi ibesbmi ibesbim ibesmbi ibesmib ibesimb ibesibm ibsibem ibsibme ibsiebm ibsiemb
ibsimeb ibsimbe ibsbiem ibsbime ibsbeim ibsbemi ibsbmei ibsbmie ibsebim ibsebmi ibseibm
ibseimb ibsemib ibsembi ibsmbei ibsmbie ibsmebi ibsmeib ibsmieb ibsmibe iibmbes iibmbse
iibmebs iibmesb iibmseb iibmsbe iibbmes iibbmse iibbems iibbesm iibbsem iibbsme iibebms
iibebsm iibembs iibemsb iibesmb iibesbm iibsbem iibsbme iibsebm iibsemb iibsmeb iibsmbe
iimbbes iimbbse iimbebs iimbesb iimbseb iimbsbe iimbbes iimbbse iimbebs iimbesb iimbseb
iimbsbe iimebbs iimebsb iimebbs iimebsb iimesbb iimesbb iimsbeb iimsbbe iimsebb iimsebb
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iibbesm iibbsem iibbsme iibebms iibebsm iibembs iibemsb iibesmb iibesbm iibsbem iibsbme
iibsebm iibsemb iibsmeb iibsmbe iiembbs iiembsb iiembbs iiembsb iiemsbb iiemsbb iiebmbs
iiebmsb iiebbms iiebbsm iiebsbm iiebsmb iiebbms iiebbsm iiebmbs iiebmsb iiebsmb iiebsbm
iiesbbm iiesbmb iiesbbm iiesbmb iiesmbb iiesmbb iismbeb iismbbe iismebb iismebb iismbeb
iismbbe iisbmeb iisbmbe iisbemb iisbebm iisbbem iisbbme iisebmb iisebbm iisembb iisembb
iisebmb iisebbm iisbbem iisbbme iisbebm iisbemb iisbmeb iisbmbe ibbimes ibbimse ibbiems
ibbiesm ibbisem ibbisme ibbmies ibbmise ibbmeis ibbmesi ibbmsei ibbmsie ibbemis ibbemsi
ibbeims ibbeism ibbesim ibbesmi ibbsmei ibbsmie ibbsemi ibbseim ibbsiem ibbsime ibibmes
ibibmse ibibems ibibesm ibibsem ibibsme ibimbes ibimbse ibimebs ibimesb ibimseb ibimsbe
ibiembs ibiemsb ibiebms ibiebsm ibiesbm ibiesmb ibismeb ibismbe ibisemb ibisebm ibisbem
ibisbme ibmibes ibmibse ibmiebs ibmiesb ibmiseb ibmisbe ibmbies ibmbise ibmbeis ibmbesi
ibmbsei ibmbsie ibmebis ibmebsi ibmeibs ibmeisb ibmesib ibmesbi ibmsbei ibmsbie ibmsebi
ibmseib ibmsieb ibmsibe ibeimbs ibeimsb ibeibms ibeibsm ibeisbm ibeismb ibemibs ibemisb
ibembis ibembsi ibemsbi ibemsib ibebmis ibebmsi ibebims ibebism ibebsim ibebsmi ibesmbi
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ibsebmi ibsbmei ibsbmie ibsbemi ibsbeim ibsbiem ibsbime iebibms iebibsm iebimbs iebimsb
iebismb iebisbm iebbims iebbism iebbmis iebbmsi iebbsmi iebbsim iebmbis iebmbsi iebmibs
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ieimbsb ieimbbs ieimbsb ieimsbb ieimsbb ieisbmb ieisbbm ieismbb ieismbb ieisbmb ieisbbm
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iemsbbi iemsbib iemsibb iemsibb iesibmb iesibbm iesimbb iesimbb iesibmb iesibbm iesbimb
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isibemb isibmeb isibmbe isibbem isibbme isibebm isibemb isibmeb isibmbe isiebbm isiebmb
isiebbm isiebmb isiembb isiembb isimbeb isimbbe isimebb isimebb isimbeb isimbbe isbibem
isbibme isbiebm isbiemb isbimeb isbimbe isbbiem isbbime isbbeim isbbemi isbbmei isbbmie
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isbmibe iseibbm iseibmb iseibbm iseibmb iseimbb iseimbb isebibm isebimb isebbim isebbmi
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isembib isemibb isemibb ismibeb ismibbe ismiebb ismiebb ismibeb ismibbe ismbieb ismbibe
ismbeib ismbebi ismbbei ismbbie ismebib ismebbi ismeibb ismeibb ismebib ismebbi ismbbei
ismbbie ismbebi ismbeib ismbieb ismbibe mibibes mibibse mibiebs mibiesb mibiseb mibisbe
mibbies mibbise mibbeis mibbesi mibbsei mibbsie mibebis mibebsi mibeibs mibeisb mibesib
mibesbi mibsbei mibsbie mibsebi mibseib mibsieb mibsibe miibbes miibbse miibebs miibesb
miibseb miibsbe miibbes miibbse miibebs miibesb miibseb miibsbe miiebbs miiebsb miiebbs
miiebsb miiesbb miiesbb miisbeb miisbbe miisebb miisebb miisbeb miisbbe mibibes mibibse
mibiebs mibiesb mibiseb mibisbe mibbies mibbise mibbeis mibbesi mibbsei mibbsie mibebis
mibebsi mibeibs mibeisb mibesib mibesbi mibsbei mibsbie mibsebi mibseib mibsieb mibsibe
mieibbs mieibsb mieibbs mieibsb mieisbb mieisbb miebibs miebisb miebbis miebbsi miebsbi
miebsib miebbis miebbsi miebibs miebisb miebsib miebsbi miesbbi miesbib miesbbi miesbib
miesibb miesibb misibeb misibbe misiebb misiebb misibeb misibbe misbieb misbibe misbeib
misbebi misbbei misbbie misebib misebbi miseibb miseibb misebib misebbi misbbei misbbie
misbebi misbeib misbieb misbibe mbiibes mbiibse mbiiebs mbiiesb mbiiseb mbiisbe mbibies
mbibise mbibeis mbibesi mbibsei mbibsie mbiebis mbiebsi mbieibs mbieisb mbiesib mbiesbi
mbisbei mbisbie mbisebi mbiseib mbisieb mbisibe mbiibes mbiibse mbiiebs mbiiesb mbiiseb
mbiisbe mbibies mbibise mbibeis mbibesi mbibsei mbibsie mbiebis mbiebsi mbieibs mbieisb
mbiesib mbiesbi mbisbei mbisbie mbisebi mbiseib mbisieb mbisibe mbbiies mbbiise mbbieis
mbbiesi mbbisei mbbisie mbbiies mbbiise mbbieis mbbiesi mbbisei mbbisie mbbeiis mbbeisi
mbbeiis mbbeisi mbbesii mbbesii mbbsiei mbbsiie mbbseii mbbseii mbbsiei mbbsiie mbeibis
mbeibsi mbeiibs mbeiisb mbeisib mbeisbi mbebiis mbebisi mbebiis mbebisi mbebsii mbebsii
mbeibis mbeibsi mbeiibs mbeiisb mbeisib mbeisbi mbesbii mbesbii mbesibi mbesiib mbesiib
mbesibi mbsibei mbsibie mbsiebi mbsieib mbsiieb mbsiibe mbsbiei mbsbiie mbsbeii mbsbeii
mbsbiei mbsbiie mbsebii mbsebii mbseibi mbseiib mbseiib mbseibi mbsibei mbsibie mbsiebi
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miiesbb miisbeb miisbbe miisebb miisebb miisbeb miisbbe mibibes mibibse mibiebs mibiesb
mibiseb mibisbe mibbies mibbise mibbeis mibbesi mibbsei mibbsie mibebis mibebsi mibeibs
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mieibbs mieibsb mieisbb mieisbb miebibs miebisb miebbis miebbsi miebsbi miebsib miebbis
miebbsi miebibs miebisb miebsib miebsbi miesbbi miesbib miesbbi miesbib miesibb miesibb
misibeb misibbe misiebb misiebb misibeb misibbe misbieb misbibe misbeib misbebi misbbei
misbbie misebib misebbi miseibb miseibb misebib misebbi misbbei misbbie misbebi misbeib
misbieb misbibe mbbiies mbbiise mbbieis mbbiesi mbbisei mbbisie mbbiies mbbiise mbbieis
mbbiesi mbbisei mbbisie mbbeiis mbbeisi mbbeiis mbbeisi mbbesii mbbesii mbbsiei mbbsiie
mbbseii mbbseii mbbsiei mbbsiie mbibies mbibise mbibeis mbibesi mbibsei mbibsie mbiibes
mbiibse mbiiebs mbiiesb mbiiseb mbiisbe mbieibs mbieisb mbiebis mbiebsi mbiesbi mbiesib
mbisieb mbisibe mbiseib mbisebi mbisbei mbisbie mbiibes mbiibse mbiiebs mbiiesb mbiiseb
mbiisbe mbibies mbibise mbibeis mbibesi mbibsei mbibsie mbiebis mbiebsi mbieibs mbieisb
mbiesib mbiesbi mbisbei mbisbie mbisebi mbiseib mbisieb mbisibe mbeiibs mbeiisb mbeibis
mbeibsi mbeisbi mbeisib mbeiibs mbeiisb mbeibis mbeibsi mbeisbi mbeisib mbebiis mbebisi
mbebiis mbebisi mbebsii mbebsii mbesibi mbesiib mbesbii mbesbii mbesibi mbesiib mbsiieb
mbsiibe mbsieib mbsiebi mbsibei mbsibie mbsiieb mbsiibe mbsieib mbsiebi mbsibei mbsibie
mbseiib mbseibi mbseiib mbseibi mbsebii mbsebii mbsbiei mbsbiie mbsbeii mbsbeii mbsbiei
mbsbiie mebibis mebibsi mebiibs mebiisb mebisib mebisbi mebbiis mebbisi mebbiis mebbisi
mebbsii mebbsii mebibis mebibsi mebiibs mebiisb mebisib mebisbi mebsbii mebsbii mebsibi
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bebiims bebiism bebimis bebimsi bebismi bebisim bebmiis bebmisi bebmiis bebmisi bebmsii
bebmsii bebsimi bebsiim bebsmii bebsmii bebsimi bebsiim beibims beibism beibmis beibmsi
beibsmi beibsim beiibms beiibsm beiimbs beiimsb beiismb beiisbm beimibs beimisb beimbis
beimbsi beimsbi beimsib beisimb beisibm beismib beismbi beisbmi beisbim beiibms beiibsm
beiimbs beiimsb beiismb beiisbm beibims beibism beibmis beibmsi beibsmi beibsim beimbis
beimbsi beimibs beimisb beimsib beimsbi beisbmi beisbim beismbi beismib beisimb beisibm
bemiibs bemiisb bemibis bemibsi bemisbi bemisib bemiibs bemiisb bemibis bemibsi bemisbi
bemisib bembiis bembisi bembiis bembisi bembsii bembsii bemsibi bemsiib bemsbii bemsbii
bemsibi bemsiib besiimb besiibm besimib besimbi besibmi besibim besiimb besiibm besimib
besimbi besibmi besibim besmiib besmibi besmiib besmibi besmbii besmbii besbimi besbiim
besbmii besbmii besbimi besbiim bsbiiem bsbiime bsbieim bsbiemi bsbimei bsbimie bsbiiem
bsbiime bsbieim bsbiemi bsbimei bsbimie bsbeiim bsbeimi bsbeiim bsbeimi bsbemii bsbemii
bsbmiei bsbmiie bsbmeii bsbmeii bsbmiei bsbmiie bsibiem bsibime bsibeim bsibemi bsibmei
bsibmie bsiibem bsiibme bsiiebm bsiiemb bsiimeb bsiimbe bsieibm bsieimb bsiebim bsiebmi
bsiembi bsiemib bsimieb bsimibe bsimeib bsimebi bsimbei bsimbie bsiibem bsiibme bsiiebm
bsiiemb bsiimeb bsiimbe bsibiem bsibime bsibeim bsibemi bsibmei bsibmie bsiebim bsiebmi
bsieibm bsieimb bsiemib bsiembi bsimbei bsimbie bsimebi bsimeib bsimieb bsimibe bseiibm
bseiimb bseibim bseibmi bseimbi bseimib bseiibm bseiimb bseibim bseibmi bseimbi bseimib
bsebiim bsebimi bsebiim bsebimi bsebmii bsebmii bsemibi bsemiib bsembii bsembii bsemibi
bsemiib bsmiieb bsmiibe bsmieib bsmiebi bsmibei bsmibie bsmiieb bsmiibe bsmieib bsmiebi
bsmibei bsmibie bsmeiib bsmeibi bsmeiib bsmeibi bsmebii bsmebii bsmbiei bsmbiie bsmbeii
bsmbeii bsmbiei bsmbiie embibis embibsi embiibs embiisb embisib embisbi embbiis embbisi
embbiis embbisi embbsii embbsii embibis embibsi embiibs embiisb embisib embisbi embsbii
embsbii embsibi embsiib embsiib embsibi emibbis emibbsi emibibs emibisb emibsib emibsbi
emibbis emibbsi emibibs emibisb emibsib emibsbi emiibbs emiibsb emiibbs emiibsb emiisbb
emiisbb emisbib emisbbi emisibb emisibb emisbib emisbbi embibis embibsi embiibs embiisb
embisib embisbi embbiis embbisi embbiis embbisi embbsii embbsii embibis embibsi embiibs
embiisb embisib embisbi embsbii embsbii embsibi embsiib embsiib embsibi emiibbs emiibsb
emiibbs emiibsb emiisbb emiisbb emibibs emibisb emibbis emibbsi emibsbi emibsib emibbis
emibbsi emibibs emibisb emibsib emibsbi emisbbi emisbib emisbbi emisbib emisibb emisibb
emsibib emsibbi emsiibb emsiibb emsibib emsibbi emsbiib emsbibi emsbiib emsbibi emsbbii
emsbbii emsibib emsibbi emsiibb emsiibb emsibib emsibbi emsbbii emsbbii emsbibi emsbiib
emsbiib emsbibi ebmibis ebmibsi ebmiibs ebmiisb ebmisib ebmisbi ebmbiis ebmbisi ebmbiis
ebmbisi ebmbsii ebmbsii ebmibis ebmibsi ebmiibs ebmiisb ebmisib ebmisbi ebmsbii ebmsbii
ebmsibi ebmsiib ebmsiib ebmsibi ebimbis ebimbsi ebimibs ebimisb ebimsib ebimsbi ebibmis
ebibmsi ebibims ebibism ebibsim ebibsmi ebiibms ebiibsm ebiimbs ebiimsb ebiismb ebiisbm
ebisbim ebisbmi ebisibm ebisimb ebismib ebismbi ebbimis ebbimsi ebbiims ebbiism ebbisim
ebbismi ebbmiis ebbmisi ebbmiis ebbmisi ebbmsii ebbmsii ebbimis ebbimsi ebbiims ebbiism
ebbisim ebbismi ebbsmii ebbsmii ebbsimi ebbsiim ebbsiim ebbsimi ebiibms ebiibsm ebiimbs
ebiimsb ebiismb ebiisbm ebibims ebibism ebibmis ebibmsi ebibsmi ebibsim ebimbis ebimbsi
ebimibs ebimisb ebimsib ebimsbi ebisbmi ebisbim ebismbi ebismib ebisimb ebisibm ebsibim
ebsibmi ebsiibm ebsiimb ebsimib ebsimbi ebsbiim ebsbimi ebsbiim ebsbimi ebsbmii ebsbmii
ebsibim ebsibmi ebsiibm ebsiimb ebsimib ebsimbi ebsmbii ebsmbii ebsmibi ebsmiib ebsmiib
ebsmibi eibmbis eibmbsi eibmibs eibmisb eibmsib eibmsbi eibbmis eibbmsi eibbims eibbism
eibbsim eibbsmi eibibms eibibsm eibimbs eibimsb eibismb eibisbm eibsbim eibsbmi eibsibm
eibsimb eibsmib eibsmbi eimbbis eimbbsi eimbibs eimbisb eimbsib eimbsbi eimbbis eimbbsi
eimbibs eimbisb eimbsib eimbsbi eimibbs eimibsb eimibbs eimibsb eimisbb eimisbb eimsbib
eimsbbi eimsibb eimsibb eimsbib eimsbbi eibmbis eibmbsi eibmibs eibmisb eibmsib eibmsbi
eibbmis eibbmsi eibbims eibbism eibbsim eibbsmi eibibms eibibsm eibimbs eibimsb eibismb
eibisbm eibsbim eibsbmi eibsibm eibsimb eibsmib eibsmbi eiimbbs eiimbsb eiimbbs eiimbsb
eiimsbb eiimsbb eiibmbs eiibmsb eiibbms eiibbsm eiibsbm eiibsmb eiibbms eiibbsm eiibmbs
eiibmsb eiibsmb eiibsbm eiisbbm eiisbmb eiisbbm eiisbmb eiismbb eiismbb eismbib eismbbi
eismibb eismibb eismbib eismbbi eisbmib eisbmbi eisbimb eisbibm eisbbim eisbbmi eisibmb
eisibbm eisimbb eisimbb eisibmb eisibbm eisbbim eisbbmi eisbibm eisbimb eisbmib eisbmbi
ebbimis ebbimsi ebbiims ebbiism ebbisim ebbismi ebbmiis ebbmisi ebbmiis ebbmisi ebbmsii
ebbmsii ebbimis ebbimsi ebbiims ebbiism ebbisim ebbismi ebbsmii ebbsmii ebbsimi ebbsiim
ebbsiim ebbsimi ebibmis ebibmsi ebibims ebibism ebibsim ebibsmi ebimbis ebimbsi ebimibs
ebimisb ebimsib ebimsbi ebiimbs ebiimsb ebiibms ebiibsm ebiisbm ebiismb ebismib ebismbi
ebisimb ebisibm ebisbim ebisbmi ebmibis ebmibsi ebmiibs ebmiisb ebmisib ebmisbi ebmbiis
ebmbisi ebmbiis ebmbisi ebmbsii ebmbsii ebmibis ebmibsi ebmiibs ebmiisb ebmisib ebmisbi
ebmsbii ebmsbii ebmsibi ebmsiib ebmsiib ebmsibi ebiimbs ebiimsb ebiibms ebiibsm ebiisbm
ebiismb ebimibs ebimisb ebimbis ebimbsi ebimsbi ebimsib ebibmis ebibmsi ebibims ebibism
ebibsim ebibsmi ebismbi ebismib ebisbmi ebisbim ebisibm ebisimb ebsimib ebsimbi ebsiimb
ebsiibm ebsibim ebsibmi ebsmiib ebsmibi ebsmiib ebsmibi ebsmbii ebsmbii ebsimib ebsimbi
ebsiimb ebsiibm ebsibim ebsibmi ebsbmii ebsbmii ebsbimi ebsbiim ebsbiim ebsbimi eibibms
eibibsm eibimbs eibimsb eibismb eibisbm eibbims eibbism eibbmis eibbmsi eibbsmi eibbsim
eibmbis eibmbsi eibmibs eibmisb eibmsib eibmsbi eibsbmi eibsbim eibsmbi eibsmib eibsimb
eibsibm eiibbms eiibbsm eiibmbs eiibmsb eiibsmb eiibsbm eiibbms eiibbsm eiibmbs eiibmsb
eiibsmb eiibsbm eiimbbs eiimbsb eiimbbs eiimbsb eiimsbb eiimsbb eiisbmb eiisbbm eiismbb
eiismbb eiisbmb eiisbbm eibibms eibibsm eibimbs eibimsb eibismb eibisbm eibbims eibbism
eibbmis eibbmsi eibbsmi eibbsim eibmbis eibmbsi eibmibs eibmisb eibmsib eibmsbi eibsbmi
eibsbim eibsmbi eibsmib eibsimb eibsibm eimibbs eimibsb eimibbs eimibsb eimisbb eimisbb
eimbibs eimbisb eimbbis eimbbsi eimbsbi eimbsib eimbbis eimbbsi eimbibs eimbisb eimbsib
eimbsbi eimsbbi eimsbib eimsbbi eimsbib eimsibb eimsibb eisibmb eisibbm eisimbb eisimbb
eisibmb eisibbm eisbimb eisbibm eisbmib eisbmbi eisbbmi eisbbim eismbib eismbbi eismibb
eismibb eismbib eismbbi eisbbmi eisbbim eisbmbi eisbmib eisbimb eisbibm esbibim esbibmi
esbiibm esbiimb esbimib esbimbi esbbiim esbbimi esbbiim esbbimi esbbmii esbbmii esbibim
esbibmi esbiibm esbiimb esbimib esbimbi esbmbii esbmbii esbmibi esbmiib esbmiib esbmibi
esibbim esibbmi esibibm esibimb esibmib esibmbi esibbim esibbmi esibibm esibimb esibmib
esibmbi esiibbm esiibmb esiibbm esiibmb esiimbb esiimbb esimbib esimbbi esimibb esimibb
esimbib esimbbi esbibim esbibmi esbiibm esbiimb esbimib esbimbi esbbiim esbbimi esbbiim
esbbimi esbbmii esbbmii esbibim esbibmi esbiibm esbiimb esbimib esbimbi esbmbii esbmbii
esbmibi esbmiib esbmiib esbmibi esiibbm esiibmb esiibbm esiibmb esiimbb esiimbb esibibm
esibimb esibbim esibbmi esibmbi esibmib esibbim esibbmi esibibm esibimb esibmib esibmbi
esimbbi esimbib esimbbi esimbib esimibb esimibb esmibib esmibbi esmiibb esmiibb esmibib
esmibbi esmbiib esmbibi esmbiib esmbibi esmbbii esmbbii esmibib esmibbi esmiibb esmiibb
esmibib esmibbi esmbbii esmbbii esmbibi esmbiib esmbiib esmbibi smbibei smbibie smbiebi
smbieib smbiieb smbiibe smbbiei smbbiie smbbeii smbbeii smbbiei smbbiie smbebii smbebii
smbeibi smbeiib smbeiib smbeibi smbibei smbibie smbiebi smbieib smbiieb smbiibe smibbei
smibbie smibebi smibeib smibieb smibibe smibbei smibbie smibebi smibeib smibieb smibibe
smiebbi smiebib smiebbi smiebib smieibb smieibb smiibeb smiibbe smiiebb smiiebb smiibeb
smiibbe smbibei smbibie smbiebi smbieib smbiieb smbiibe smbbiei smbbiie smbbeii smbbeii
smbbiei smbbiie smbebii smbebii smbeibi smbeiib smbeiib smbeibi smbibei smbibie smbiebi
smbieib smbiieb smbiibe smeibbi smeibib smeibbi smeibib smeiibb smeiibb smebibi smebiib
smebbii smebbii smebibi smebiib smebbii smebbii smebibi smebiib smebiib smebibi smeibbi
smeibib smeibbi smeibib smeiibb smeiibb smiibeb smiibbe smiiebb smiiebb smiibeb smiibbe
smibieb smibibe smibeib smibebi smibbei smibbie smiebib smiebbi smieibb smieibb smiebib
smiebbi smibbei smibbie smibebi smibeib smibieb smibibe sbmibei sbmibie sbmiebi sbmieib
sbmiieb sbmiibe sbmbiei sbmbiie sbmbeii sbmbeii sbmbiei sbmbiie sbmebii sbmebii sbmeibi
sbmeiib sbmeiib sbmeibi sbmibei sbmibie sbmiebi sbmieib sbmiieb sbmiibe sbimbei sbimbie
sbimebi sbimeib sbimieb sbimibe sbibmei sbibmie sbibemi sbibeim sbibiem sbibime sbiebmi
sbiebim sbiembi sbiemib sbieimb sbieibm sbiibem sbiibme sbiiebm sbiiemb sbiimeb sbiimbe
sbbimei sbbimie sbbiemi sbbieim sbbiiem sbbiime sbbmiei sbbmiie sbbmeii sbbmeii sbbmiei
sbbmiie sbbemii sbbemii sbbeimi sbbeiim sbbeiim sbbeimi sbbimei sbbimie sbbiemi sbbieim
sbbiiem sbbiime sbeibmi sbeibim sbeimbi sbeimib sbeiimb sbeiibm sbebimi sbebiim sbebmii
sbebmii sbebimi sbebiim sbembii sbembii sbemibi sbemiib sbemiib sbemibi sbeibmi sbeibim
sbeimbi sbeimib sbeiimb sbeiibm sbiibem sbiibme sbiiebm sbiiemb sbiimeb sbiimbe sbibiem
sbibime sbibeim sbibemi sbibmei sbibmie sbiebim sbiebmi sbieibm sbieimb sbiemib sbiembi
sbimbei sbimbie sbimebi sbimeib sbimieb sbimibe sibmbei sibmbie sibmebi sibmeib sibmieb
sibmibe sibbmei sibbmie sibbemi sibbeim sibbiem sibbime sibebmi sibebim sibembi sibemib
sibeimb sibeibm sibibem sibibme sibiebm sibiemb sibimeb sibimbe simbbei simbbie simbebi
simbeib simbieb simbibe simbbei simbbie simbebi simbeib simbieb simbibe simebbi simebib
simebbi simebib simeibb simeibb simibeb simibbe simiebb simiebb simibeb simibbe sibmbei
sibmbie sibmebi sibmeib sibmieb sibmibe sibbmei sibbmie sibbemi sibbeim sibbiem sibbime
sibebmi sibebim sibembi sibemib sibeimb sibeibm sibibem sibibme sibiebm sibiemb sibimeb
sibimbe siembbi siembib siembbi siembib siemibb siemibb siebmbi siebmib siebbmi siebbim
siebibm siebimb siebbmi siebbim siebmbi siebmib siebimb siebibm sieibbm sieibmb sieibbm
sieibmb sieimbb sieimbb siimbeb siimbbe siimebb siimebb siimbeb siimbbe siibmeb siibmbe
siibemb siibebm siibbem siibbme siiebmb siiebbm siiembb siiembb siiebmb siiebbm siibbem
siibbme siibebm siibemb siibmeb siibmbe sbbimei sbbimie sbbiemi sbbieim sbbiiem sbbiime
sbbmiei sbbmiie sbbmeii sbbmeii sbbmiei sbbmiie sbbemii sbbemii sbbeimi sbbeiim sbbeiim
sbbeimi sbbimei sbbimie sbbiemi sbbieim sbbiiem sbbiime sbibmei sbibmie sbibemi sbibeim
sbibiem sbibime sbimbei sbimbie sbimebi sbimeib sbimieb sbimibe sbiembi sbiemib sbiebmi
sbiebim sbieibm sbieimb sbiimeb sbiimbe sbiiemb sbiiebm sbiibem sbiibme sbmibei sbmibie
sbmiebi sbmieib sbmiieb sbmiibe sbmbiei sbmbiie sbmbeii sbmbeii sbmbiei sbmbiie sbmebii
sbmebii sbmeibi sbmeiib sbmeiib sbmeibi sbmibei sbmibie sbmiebi sbmieib sbmiieb sbmiibe
sbeimbi sbeimib sbeibmi sbeibim sbeiibm sbeiimb sbemibi sbemiib sbembii sbembii sbemibi
sbemiib sbebmii sbebmii sbebimi sbebiim sbebiim sbebimi sbeimbi sbeimib sbeibmi sbeibim
sbeiibm sbeiimb sbiimeb sbiimbe sbiiemb sbiiebm sbiibem sbiibme sbimieb sbimibe sbimeib
sbimebi sbimbei sbimbie sbiemib sbiembi sbieimb sbieibm sbiebim sbiebmi sbibmei sbibmie
sbibemi sbibeim sbibiem sbibime sebibmi sebibim sebimbi sebimib sebiimb sebiibm sebbimi
sebbiim sebbmii sebbmii sebbimi sebbiim sebmbii sebmbii sebmibi sebmiib sebmiib sebmibi
sebibmi sebibim sebimbi sebimib sebiimb sebiibm seibbmi seibbim seibmbi seibmib seibimb
seibibm seibbmi seibbim seibmbi seibmib seibimb seibibm seimbbi seimbib seimbbi seimbib
seimibb seimibb seiibmb seiibbm seiimbb seiimbb seiibmb seiibbm sebibmi sebibim sebimbi
sebimib sebiimb sebiibm sebbimi sebbiim sebbmii sebbmii sebbimi sebbiim sebmbii sebmbii
sebmibi sebmiib sebmiib sebmibi sebibmi sebibim sebimbi sebimib sebiimb sebiibm semibbi
semibib semibbi semibib semiibb semiibb sembibi sembiib sembbii sembbii sembibi sembiib
sembbii sembbii sembibi sembiib sembiib sembibi semibbi semibib semibbi semibib semiibb
semiibb seiibmb seiibbm seiimbb seiimbb seiibmb seiibbm seibimb seibibm seibmib seibmbi
seibbmi seibbim seimbib seimbbi seimibb seimibb seimbib seimbbi seibbmi seibbim seibmbi
seibmib seibimb seibibm sibibem sibibme sibiebm sibiemb sibimeb sibimbe sibbiem sibbime
sibbeim sibbemi sibbmei sibbmie sibebim sibebmi sibeibm sibeimb sibemib sibembi sibmbei
sibmbie sibmebi sibmeib sibmieb sibmibe siibbem siibbme siibebm siibemb siibmeb siibmbe
siibbem siibbme siibebm siibemb siibmeb siibmbe siiebbm siiebmb siiebbm siiebmb siiembb
siiembb siimbeb siimbbe siimebb siimebb siimbeb siimbbe sibibem sibibme sibiebm sibiemb
sibimeb sibimbe sibbiem sibbime sibbeim sibbemi sibbmei sibbmie sibebim sibebmi sibeibm
sibeimb sibemib sibembi sibmbei sibmbie sibmebi sibmeib sibmieb sibmibe sieibbm sieibmb
sieibbm sieibmb sieimbb sieimbb siebibm siebimb siebbim siebbmi siebmbi siebmib siebbim
siebbmi siebibm siebimb siebmib siebmbi siembbi siembib siembbi siembib siemibb siemibb
simibeb simibbe simiebb simiebb simibeb simibbe simbieb simbibe simbeib simbebi simbbei
simbbie simebib simebbi simeibb simeibb simebib simebbi simbbei simbbie simbebi simbeib
simbieb simbibe

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History of cryptography
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