easy ciphers

Easy Ciphers Tools:
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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: alderson
cipher variations:
bmefstpo cnfgtuqp doghuvrq ephivwsr fqijwxts
grjkxyut hsklyzvu itlmzawv jumnabxw kvnobcyx
lwopcdzy mxpqdeaz nyqrefba ozrsfgcb pastghdc
qbtuhied rcuvijfe sdvwjkgf tewxklhg ufxylmih
vgyzmnji whzanokj xiaboplk yjbcpqml zkcdqrnm

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: alderson
Cipher: zowvihlm

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: alderson
Cipher: AAAAA ABABA AAABB AABAA BAAAA BAAAB ABBAB 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: alderson
cipher variations: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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: alderson
Cipher: nyqrefba

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: alderson
Cipher: 1113415124344333

Extended Methods:
Method #1

Plaintext: alderson
method variations:
fqikwxtslvopbcyxqatughdcvfyzmnih

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
a l d e r s o n 
1 1 4 5 2 3 4 3 
1 3 1 1 4 4 3 3 
They are then read out in rows:
1145234313114433
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: alderson
Cipher: aymolatn

Read more ...
Method #3

Plaintext: alderson
method variations:
asvfotnc svfotnca vfotncas
fotncasv otncasvf tncasvfo
ncasvfot casvfotn

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: alderson

first 5040 cipher variations(40320 total)
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asenlrod asenlrdo asenlord asenlodr asenldor asenldro asenolrd asenoldr asenorld asenordl asenodrl
asenodlr asendlor asendlro asendolr asendorl asendrol asendrlo asredlon asredlno asredoln asredonl
asrednol asrednlo asreldon asreldno asrelodn asrelond asrelnod asrelndo asreoldn asreolnd asreodln
asreodnl asreondl asreonld asrenlod asrenldo asrenold asrenodl asrendol asrendlo asrdelon asrdelno
asrdeoln asrdeonl asrdenol asrdenlo asrdleon asrdleno asrdloen asrdlone asrdlnoe asrdlneo asrdolen
asrdolne asrdoeln asrdoenl asrdonel asrdonle asrdnloe asrdnleo asrdnole asrdnoel asrdneol asrdnelo
asrldeon asrldeno asrldoen asrldone asrldnoe asrldneo asrledon asrledno asrleodn asrleond asrlenod
asrlendo asrloedn asrloend asrloden asrlodne asrlonde asrloned asrlneod asrlnedo asrlnoed asrlnode
asrlndoe asrlndeo asrodlen asrodlne asrodeln asrodenl asrodnel asrodnle asrolden asroldne asroledn
asrolend asrolned asrolnde asroeldn asroelnd asroedln asroednl asroendl asroenld asronled asronlde
asroneld asronedl asrondel asrondle asrndloe asrndleo asrndole asrndoel asrndeol asrndelo asrnldoe
asrnldeo asrnlode asrnloed asrnleod asrnledo asrnolde asrnoled asrnodle asrnodel asrnoedl asrnoeld
asrnelod asrneldo asrneold asrneodl asrnedol asrnedlo aslerdon aslerdno aslerodn aslerond aslernod
aslerndo asledron asledrno asledorn asledonr aslednor aslednro asleodrn asleodnr asleordn asleornd
asleonrd asleondr aslendor aslendro aslenodr aslenord aslenrod aslenrdo aslredon aslredno aslreodn
aslreond aslrenod aslrendo aslrdeon aslrdeno aslrdoen aslrdone aslrdnoe aslrdneo aslroden aslrodne
aslroedn aslroend aslroned aslronde aslrndoe aslrndeo aslrnode aslrnoed aslrneod aslrnedo asldreon
asldreno asldroen asldrone asldrnoe asldrneo aslderon aslderno asldeorn asldeonr asldenor asldenro
asldoern asldoenr asldoren asldorne asldonre asldoner asldneor asldnero asldnoer asldnore asldnroe
asldnreo aslorden aslordne asloredn aslorend aslorned aslornde aslodren aslodrne aslodern aslodenr
aslodner aslodnre asloedrn asloednr asloerdn asloernd asloenrd asloendr aslonder aslondre aslonedr
aslonerd aslonred aslonrde aslnrdoe aslnrdeo aslnrode aslnroed aslnreod aslnredo aslndroe aslndreo
aslndore aslndoer aslndeor aslndero aslnodre aslnoder aslnorde aslnored aslnoerd aslnoedr aslnedor
aslnedro aslneodr aslneord aslnerod aslnerdo asoerldn asoerlnd asoerdln asoerdnl asoerndl asoernld
asoelrdn asoelrnd asoeldrn asoeldnr asoelndr asoelnrd asoedlrn asoedlnr asoedrln asoedrnl asoednrl
asoednlr asoenldr asoenlrd asoendlr asoendrl asoenrdl asoenrld asoreldn asorelnd asoredln asorednl
asorendl asorenld asorledn asorlend asorlden asorldne asorlnde asorlned asordlen asordlne asordeln
asordenl asordnel asordnle asornlde asornled asorndle asorndel asornedl asorneld asolredn asolrend
asolrden asolrdne asolrnde asolrned asolerdn asolernd asoledrn asolednr asolendr asolenrd asoldern
asoldenr asoldren asoldrne asoldnre asoldner asolnedr asolnerd asolnder asolndre asolnrde asolnred
asodrlen asodrlne asodreln asodrenl asodrnel asodrnle asodlren asodlrne asodlern asodlenr asodlner
asodlnre asodelrn asodelnr asoderln asodernl asodenrl asodenlr asodnler asodnlre asodnelr asodnerl
asodnrel asodnrle asonrlde asonrled asonrdle asonrdel asonredl asonreld asonlrde asonlred asonldre
asonlder asonledr asonlerd asondlre asondler asondrle asondrel asonderl asondelr asoneldr asonelrd
asonedlr asonedrl asonerdl asonerld asnerlod asnerldo asnerold asnerodl asnerdol asnerdlo asnelrod
asnelrdo asnelord asnelodr asneldor asneldro asneolrd asneoldr asneorld asneordl asneodrl asneodlr
asnedlor asnedlro asnedolr asnedorl asnedrol asnedrlo asnrelod asnreldo asnreold asnreodl asnredol
asnredlo asnrleod asnrledo asnrloed asnrlode asnrldoe asnrldeo asnroled asnrolde asnroeld asnroedl
asnrodel asnrodle asnrdloe asnrdleo asnrdole asnrdoel asnrdeol asnrdelo asnlreod asnlredo asnlroed
asnlrode asnlrdoe asnlrdeo asnlerod asnlerdo asnleord asnleodr asnledor asnledro asnloerd asnloedr
asnlored asnlorde asnlodre asnloder asnldeor asnldero asnldoer asnldore asnldroe asnldreo asnorled
asnorlde asnoreld asnoredl asnordel asnordle asnolred asnolrde asnolerd asnoledr asnolder asnoldre
asnoelrd asnoeldr asnoerld asnoerdl asnoedrl asnoedlr asnodler asnodlre asnodelr asnoderl asnodrel
asnodrle asndrloe asndrleo asndrole asndroel asndreol asndrelo asndlroe asndlreo asndlore asndloer
asndleor asndlero asndolre asndoler asndorle asndorel asndoerl asndoelr asndelor asndelro asndeolr
asndeorl asnderol asnderlo aodersln aodersnl aoderlsn aoderlns aodernls aodernsl aodesrln aodesrnl
aodeslrn aodeslnr aodesnlr aodesnrl aodelsrn aodelsnr aodelrsn aodelrns aodelnrs aodelnsr aodenslr
aodensrl aodenlsr aodenlrs aodenrls aodenrsl aodresln aodresnl aodrelsn aodrelns aodrenls aodrensl
aodrseln aodrsenl aodrslen aodrslne aodrsnle aodrsnel aodrlsen aodrlsne aodrlesn aodrlens aodrlnes
aodrlnse aodrnsle aodrnsel aodrnlse aodrnles aodrnels aodrnesl aodsreln aodsrenl aodsrlen aodsrlne
aodsrnle aodsrnel aodserln aodsernl aodselrn aodselnr aodsenlr aodsenrl aodslern aodslenr aodslren
aodslrne aodslnre aodslner aodsnelr aodsnerl aodsnler aodsnlre aodsnrle aodsnrel aodlrsen aodlrsne
aodlresn aodlrens aodlrnes aodlrnse aodlsren aodlsrne aodlsern aodlsenr aodlsner aodlsnre aodlesrn
aodlesnr aodlersn aodlerns aodlenrs aodlensr aodlnser aodlnsre aodlnesr aodlners aodlnres aodlnrse
aodnrsle aodnrsel aodnrlse aodnrles aodnrels aodnresl aodnsrle aodnsrel aodnslre aodnsler aodnselr
aodnserl aodnlsre aodnlser aodnlrse aodnlres aodnlers aodnlesr aodneslr aodnesrl aodnelsr aodnelrs
aodnerls aodnersl aoedrsln aoedrsnl aoedrlsn aoedrlns aoedrnls aoedrnsl aoedsrln aoedsrnl aoedslrn
aoedslnr aoedsnlr aoedsnrl aoedlsrn aoedlsnr aoedlrsn aoedlrns aoedlnrs aoedlnsr aoednslr aoednsrl
aoednlsr aoednlrs aoednrls aoednrsl aoerdsln aoerdsnl aoerdlsn aoerdlns aoerdnls aoerdnsl aoersdln
aoersdnl aoersldn aoerslnd aoersnld aoersndl aoerlsdn aoerlsnd aoerldsn aoerldns aoerlnds aoerlnsd
aoernsld aoernsdl aoernlsd aoernlds aoerndls aoerndsl aoesrdln aoesrdnl aoesrldn aoesrlnd aoesrnld
aoesrndl aoesdrln aoesdrnl aoesdlrn aoesdlnr aoesdnlr aoesdnrl aoesldrn aoesldnr aoeslrdn aoeslrnd
aoeslnrd aoeslndr aoesndlr aoesndrl aoesnldr aoesnlrd aoesnrld aoesnrdl aoelrsdn aoelrsnd aoelrdsn
aoelrdns aoelrnds aoelrnsd aoelsrdn aoelsrnd aoelsdrn aoelsdnr aoelsndr aoelsnrd aoeldsrn aoeldsnr
aoeldrsn aoeldrns aoeldnrs aoeldnsr aoelnsdr aoelnsrd aoelndsr aoelndrs aoelnrds aoelnrsd aoenrsld
aoenrsdl aoenrlsd aoenrlds aoenrdls aoenrdsl aoensrld aoensrdl aoenslrd aoensldr aoensdlr aoensdrl
aoenlsrd aoenlsdr aoenlrsd aoenlrds aoenldrs aoenldsr aoendslr aoendsrl aoendlsr aoendlrs aoendrls
aoendrsl aoredsln aoredsnl aoredlsn aoredlns aorednls aorednsl aoresdln aoresdnl aoresldn aoreslnd
aoresnld aoresndl aorelsdn aorelsnd aoreldsn aoreldns aorelnds aorelnsd aorensld aorensdl aorenlsd
aorenlds aorendls aorendsl aordesln aordesnl aordelsn aordelns aordenls aordensl aordseln aordsenl
aordslen aordslne aordsnle aordsnel aordlsen aordlsne aordlesn aordlens aordlnes aordlnse aordnsle
aordnsel aordnlse aordnles aordnels aordnesl aorsdeln aorsdenl aorsdlen aorsdlne aorsdnle aorsdnel
aorsedln aorsednl aorseldn aorselnd aorsenld aorsendl aorsledn aorslend aorslden aorsldne aorslnde
aorslned aorsneld aorsnedl aorsnled aorsnlde aorsndle aorsndel aorldsen aorldsne aorldesn aorldens
aorldnes aorldnse aorlsden aorlsdne aorlsedn aorlsend aorlsned aorlsnde aorlesdn aorlesnd aorledsn
aorledns aorlends aorlensd aorlnsed aorlnsde aorlnesd aorlneds aorlndes aorlndse aorndsle aorndsel
aorndlse aorndles aorndels aorndesl aornsdle aornsdel aornslde aornsled aornseld aornsedl aornlsde
aornlsed aornldse aornldes aornleds aornlesd aornesld aornesdl aornelsd aornelds aornedls aornedsl
aoserdln aoserdnl aoserldn aoserlnd aosernld aoserndl aosedrln aosedrnl aosedlrn aosedlnr aosednlr
aosednrl aoseldrn aoseldnr aoselrdn aoselrnd aoselnrd aoselndr aosendlr aosendrl aosenldr aosenlrd
aosenrld aosenrdl aosredln aosrednl aosreldn aosrelnd aosrenld aosrendl aosrdeln aosrdenl aosrdlen
aosrdlne aosrdnle aosrdnel aosrlden aosrldne aosrledn aosrlend aosrlned aosrlnde aosrndle aosrndel
aosrnlde aosrnled aosrneld aosrnedl aosdreln aosdrenl aosdrlen aosdrlne aosdrnle aosdrnel aosderln
aosdernl aosdelrn aosdelnr aosdenlr aosdenrl aosdlern aosdlenr aosdlren aosdlrne aosdlnre aosdlner
aosdnelr aosdnerl aosdnler aosdnlre aosdnrle aosdnrel aoslrden aoslrdne aoslredn aoslrend aoslrned
aoslrnde aosldren aosldrne aosldern aosldenr aosldner aosldnre aosledrn aoslednr aoslerdn aoslernd
aoslenrd aoslendr aoslnder aoslndre aoslnedr aoslnerd aoslnred aoslnrde aosnrdle aosnrdel aosnrlde
aosnrled aosnreld aosnredl aosndrle aosndrel aosndlre aosndler aosndelr aosnderl aosnldre aosnlder
aosnlrde aosnlred aosnlerd aosnledr aosnedlr aosnedrl aosneldr aosnelrd aosnerld aosnerdl aolersdn
aolersnd aolerdsn aolerdns aolernds aolernsd aolesrdn aolesrnd aolesdrn aolesdnr aolesndr aolesnrd
aoledsrn aoledsnr aoledrsn aoledrns aolednrs aolednsr aolensdr aolensrd aolendsr aolendrs aolenrds
aolenrsd aolresdn aolresnd aolredsn aolredns aolrends aolrensd aolrsedn aolrsend aolrsden aolrsdne
aolrsnde aolrsned aolrdsen aolrdsne aolrdesn aolrdens aolrdnes aolrdnse aolrnsde aolrnsed aolrndse
aolrndes aolrneds aolrnesd aolsredn aolsrend aolsrden aolsrdne aolsrnde aolsrned aolserdn aolsernd
aolsedrn aolsednr aolsendr aolsenrd aolsdern aolsdenr aolsdren aolsdrne aolsdnre aolsdner aolsnedr
aolsnerd aolsnder aolsndre aolsnrde aolsnred aoldrsen aoldrsne aoldresn aoldrens aoldrnes aoldrnse
aoldsren aoldsrne aoldsern aoldsenr aoldsner aoldsnre aoldesrn aoldesnr aoldersn aolderns aoldenrs
aoldensr aoldnser aoldnsre aoldnesr aoldners aoldnres aoldnrse aolnrsde aolnrsed aolnrdse aolnrdes
aolnreds aolnresd aolnsrde aolnsred aolnsdre aolnsder aolnsedr aolnserd aolndsre aolndser aolndrse
aolndres aolnders aolndesr aolnesdr aolnesrd aolnedsr aolnedrs aolnerds aolnersd aonersld aonersdl
aonerlsd aonerlds aonerdls aonerdsl aonesrld aonesrdl aoneslrd aonesldr aonesdlr aonesdrl aonelsrd
aonelsdr aonelrsd aonelrds aoneldrs aoneldsr aonedslr aonedsrl aonedlsr aonedlrs aonedrls aonedrsl
aonresld aonresdl aonrelsd aonrelds aonredls aonredsl aonrseld aonrsedl aonrsled aonrslde aonrsdle
aonrsdel aonrlsed aonrlsde aonrlesd aonrleds aonrldes aonrldse aonrdsle aonrdsel aonrdlse aonrdles
aonrdels aonrdesl aonsreld aonsredl aonsrled aonsrlde aonsrdle aonsrdel aonserld aonserdl aonselrd
aonseldr aonsedlr aonsedrl aonslerd aonsledr aonslred aonslrde aonsldre aonslder aonsdelr aonsderl
aonsdler aonsdlre aonsdrle aonsdrel aonlrsed aonlrsde aonlresd aonlreds aonlrdes aonlrdse aonlsred
aonlsrde aonlserd aonlsedr aonlsder aonlsdre aonlesrd aonlesdr aonlersd aonlerds aonledrs aonledsr
aonldser aonldsre aonldesr aonlders aonldres aonldrse aondrsle aondrsel aondrlse aondrles aondrels
aondresl aondsrle aondsrel aondslre aondsler aondselr aondserl aondlsre aondlser aondlrse aondlres
aondlers aondlesr aondeslr aondesrl aondelsr aondelrs aonderls aondersl andersol anderslo anderosl
anderols anderlos anderlso andesrol andesrlo andesorl andesolr andeslor andeslro andeosrl andeoslr
andeorsl andeorls andeolrs andeolsr andelsor andelsro andelosr andelors andelros andelrso andresol
andreslo andreosl andreols andrelos andrelso andrseol andrselo andrsoel andrsole andrsloe andrsleo
androsel androsle androesl androels androles androlse andrlsoe andrlseo andrlose andrloes andrleos
andrleso andsreol andsrelo andsroel andsrole andsrloe andsrleo andserol andserlo andseorl andseolr
andselor andselro andsoerl andsoelr andsorel andsorle andsolre andsoler andsleor andslero andsloer
andslore andslroe andslreo andorsel andorsle andoresl andorels andorles andorlse andosrel andosrle
andoserl andoselr andosler andoslre andoesrl andoeslr andoersl andoerls andoelrs andoelsr andolser
andolsre andolesr andolers andolres andolrse andlrsoe andlrseo andlrose andlroes andlreos andlreso
andlsroe andlsreo andlsore andlsoer andlseor andlsero andlosre andloser andlorse andlores andloers
andloesr andlesor andlesro andleosr andleors andleros andlerso anedrsol anedrslo anedrosl anedrols
anedrlos anedrlso anedsrol anedsrlo anedsorl anedsolr anedslor anedslro anedosrl anedoslr anedorsl
anedorls anedolrs anedolsr anedlsor anedlsro anedlosr anedlors anedlros anedlrso anerdsol anerdslo
anerdosl anerdols anerdlos anerdlso anersdol anersdlo anersodl anersold anerslod anersldo anerosdl
anerosld anerodsl anerodls anerolds anerolsd anerlsod anerlsdo anerlosd anerlods anerldos anerldso
anesrdol anesrdlo anesrodl anesrold anesrlod anesrldo anesdrol anesdrlo anesdorl anesdolr anesdlor
anesdlro anesodrl anesodlr anesordl anesorld anesolrd anesoldr anesldor anesldro aneslodr aneslord
aneslrod aneslrdo aneorsdl aneorsld aneordsl aneordls aneorlds aneorlsd aneosrdl aneosrld aneosdrl
aneosdlr aneosldr aneoslrd aneodsrl aneodslr aneodrsl aneodrls aneodlrs aneodlsr aneolsdr aneolsrd
aneoldsr aneoldrs aneolrds aneolrsd anelrsod anelrsdo anelrosd anelrods anelrdos anelrdso anelsrod
anelsrdo anelsord anelsodr anelsdor anelsdro anelosrd anelosdr anelorsd anelords anelodrs anelodsr
aneldsor aneldsro aneldosr aneldors aneldros aneldrso anredsol anredslo anredosl anredols anredlos
anredlso anresdol anresdlo anresodl anresold anreslod anresldo anreosdl anreosld anreodsl anreodls
anreolds anreolsd anrelsod anrelsdo anrelosd anrelods anreldos anreldso anrdesol anrdeslo anrdeosl
anrdeols anrdelos anrdelso anrdseol anrdselo anrdsoel anrdsole anrdsloe anrdsleo anrdosel anrdosle
anrdoesl anrdoels anrdoles anrdolse anrdlsoe anrdlseo anrdlose anrdloes anrdleos anrdleso anrsdeol
anrsdelo anrsdoel anrsdole anrsdloe anrsdleo anrsedol anrsedlo anrseodl anrseold anrselod anrseldo
anrsoedl anrsoeld anrsodel anrsodle anrsolde anrsoled anrsleod anrsledo anrsloed anrslode anrsldoe
anrsldeo anrodsel anrodsle anrodesl anrodels anrodles anrodlse anrosdel anrosdle anrosedl anroseld
anrosled anroslde anroesdl anroesld anroedsl anroedls anroelds anroelsd anrolsed anrolsde anrolesd
anroleds anroldes anroldse anrldsoe anrldseo anrldose anrldoes anrldeos anrldeso anrlsdoe anrlsdeo
anrlsode anrlsoed anrlseod anrlsedo anrlosde anrlosed anrlodse anrlodes anrloeds anrloesd anrlesod
anrlesdo anrleosd anrleods anrledos anrledso anserdol anserdlo anserodl anserold anserlod anserldo
ansedrol ansedrlo ansedorl ansedolr ansedlor ansedlro anseodrl anseodlr anseordl anseorld anseolrd
anseoldr anseldor anseldro anselodr anselord anselrod anselrdo ansredol ansredlo ansreodl ansreold
ansrelod ansreldo ansrdeol ansrdelo ansrdoel ansrdole ansrdloe ansrdleo ansrodel ansrodle ansroedl
ansroeld ansroled ansrolde ansrldoe ansrldeo ansrlode ansrloed ansrleod ansrledo ansdreol ansdrelo
ansdroel ansdrole ansdrloe ansdrleo ansderol ansderlo ansdeorl ansdeolr ansdelor ansdelro ansdoerl
ansdoelr ansdorel ansdorle ansdolre ansdoler ansdleor ansdlero ansdloer ansdlore ansdlroe ansdlreo
ansordel ansordle ansoredl ansoreld ansorled ansorlde ansodrel ansodrle ansoderl ansodelr ansodler
ansodlre ansoedrl ansoedlr ansoerdl ansoerld ansoelrd ansoeldr ansolder ansoldre ansoledr ansolerd
ansolred ansolrde anslrdoe anslrdeo anslrode anslroed anslreod anslredo ansldroe ansldreo ansldore
ansldoer ansldeor ansldero anslodre ansloder anslorde anslored ansloerd ansloedr ansledor ansledro
ansleodr ansleord anslerod anslerdo anoersdl anoersld anoerdsl anoerdls anoerlds anoerlsd anoesrdl
anoesrld anoesdrl anoesdlr anoesldr anoeslrd anoedsrl anoedslr anoedrsl anoedrls anoedlrs anoedlsr
anoelsdr anoelsrd anoeldsr anoeldrs anoelrds anoelrsd anoresdl anoresld anoredsl anoredls anorelds
anorelsd anorsedl anorseld anorsdel anorsdle anorslde anorsled anordsel anordsle anordesl anordels
anordles anordlse anorlsde anorlsed anorldse anorldes anorleds anorlesd anosredl anosreld anosrdel
anosrdle anosrlde anosrled anoserdl anoserld anosedrl anosedlr anoseldr anoselrd anosderl anosdelr
anosdrel anosdrle anosdlre anosdler anosledr anoslerd anoslder anosldre anoslrde anoslred anodrsel
anodrsle anodresl anodrels anodrles anodrlse anodsrel anodsrle anodserl anodselr anodsler anodslre
anodesrl anodeslr anodersl anoderls anodelrs anodelsr anodlser anodlsre anodlesr anodlers anodlres
anodlrse anolrsde anolrsed anolrdse anolrdes anolreds anolresd anolsrde anolsred anolsdre anolsder
anolsedr anolserd anoldsre anoldser anoldrse anoldres anolders anoldesr anolesdr anolesrd anoledsr
anoledrs anolerds anolersd anlersod anlersdo anlerosd anlerods anlerdos anlerdso anlesrod anlesrdo
anlesord anlesodr anlesdor anlesdro anleosrd anleosdr anleorsd anleords anleodrs anleodsr anledsor
anledsro anledosr anledors anledros anledrso anlresod anlresdo anlreosd anlreods anlredos anlredso
anlrseod anlrsedo anlrsoed anlrsode anlrsdoe anlrsdeo anlrosed anlrosde anlroesd anlroeds anlrodes
anlrodse anlrdsoe anlrdseo anlrdose anlrdoes anlrdeos anlrdeso anlsreod anlsredo anlsroed anlsrode
anlsrdoe anlsrdeo anlserod anlserdo anlseord anlseodr anlsedor anlsedro anlsoerd anlsoedr anlsored
anlsorde anlsodre anlsoder anlsdeor anlsdero anlsdoer anlsdore anlsdroe anlsdreo anlorsed anlorsde
anloresd anloreds anlordes anlordse anlosred anlosrde anloserd anlosedr anlosder anlosdre anloesrd
anloesdr anloersd anloerds anloedrs anloedsr anlodser anlodsre anlodesr anloders anlodres anlodrse
anldrsoe anldrseo anldrose anldroes anldreos anldreso anldsroe anldsreo anldsore anldsoer anldseor
anldsero anldosre anldoser anldorse anldores anldoers anldoesr anldesor anldesro anldeosr anldeors
anlderos anlderso

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History of cryptography
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