easy ciphers

Easy Ciphers Tools:
cryptography lectures
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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: breslow
cipher variations:
csftmpx dtgunqy euhvorz fviwpsa gwjxqtb
hxkyruc iylzsvd jzmatwe kanbuxf lbocvyg
mcpdwzh ndqexai oerfybj pfsgzck qgthadl
rhuibem sivjcfn tjwkdgo ukxlehp vlymfiq
wmzngjr xnaohks yobpilt zpcqjmu aqdrknv

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.)
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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: breslow
Cipher: yivhold

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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: breslow

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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: breslow
cipher variations:

The decryption function is

where a - 1 is the modular multiplicative inverse of a modulo m. I.e., it satisfies the equation

The multiplicative inverse of a only exists if a and m are coprime. Hence without the restriction on a decryption might not be possible. It can be shown as follows that decryption function is the inverse of the encryption function,

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ROT13 Cipher
Applying ROT13 to a piece of text merely requires examining its alphabetic characters and replacing each one by the letter 13 places further along in the alphabet, wrapping back to the beginning if necessary. A becomes N, B becomes O, and so on up to M, which becomes Z, then the sequence continues at the beginning of the alphabet: N becomes A, O becomes B, and so on to Z, which becomes M. Only those letters which occur in the English alphabet are affected; numbers, symbols, whitespace, and all other characters are left unchanged. Because there are 26 letters in the English alphabet and 26 = 2 * 13, the ROT13 function is its own inverse:

ROT13(ROT13(x)) = x for any basic Latin-alphabet text x

An example plaintext to ciphertext using ROT13:

Plain: breslow
Cipher: oerfybj

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Polybius Square

A Polybius Square is a table that allows someone to translate letters into numbers. To give a small level of encryption, this table can be randomized and shared with the recipient. In order to fit the 26 letters of the alphabet into the 25 spots created by the table, the letters i and j are usually combined.
1 2 3 4 5
1 A B C D E
2 F G H I/J K
3 L M N O P
4 Q R S T U
5 V W X Y Z

Basic Form:
Plain: breslow
Cipher: 21245134134325

Extended Methods:
Method #1

Plaintext: breslow
method variations:

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

Read more ...
Method #3

Plaintext: breslow
method variations:
fyldshk yldshkf ldshkfy
dshkfyl shkfyld hkfylds

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: breslow

all 5040 cipher variations:
breslow breslwo bresolw bresowl breswol breswlo brelsow brelswo brelosw brelows brelwos
brelwso breolsw breolws breoslw breoswl breowsl breowls brewlos brewlso brewols brewosl
brewsol brewslo brselow brselwo brseolw brseowl brsewol brsewlo brsleow brslewo brsloew
brslowe brslwoe brslweo brsolew brsolwe brsoelw brsoewl brsowel brsowle brswloe brswleo
brswole brswoel brsweol brswelo brlseow brlsewo brlsoew brlsowe brlswoe brlsweo brlesow
brleswo brleosw brleows brlewos brlewso brloesw brloews brlosew brloswe brlowse brlowes
brlweos brlweso brlwoes brlwose brlwsoe brlwseo broslew broslwe broselw brosewl broswel
broswle brolsew brolswe brolesw brolews brolwes brolwse broelsw broelws broeslw broeswl
broewsl broewls browles browlse browels browesl browsel browsle brwsloe brwsleo brwsole
brwsoel brwseol brwselo brwlsoe brwlseo brwlose brwloes brwleos brwleso brwolse brwoles
brwosle brwosel brwoesl brwoels brwelos brwelso brweols brweosl brwesol brweslo berslow
berslwo bersolw bersowl berswol berswlo berlsow berlswo berlosw berlows berlwos berlwso
berolsw berolws beroslw beroswl berowsl berowls berwlos berwlso berwols berwosl berwsol
berwslo besrlow besrlwo besrolw besrowl besrwol besrwlo beslrow beslrwo beslorw beslowr
beslwor beslwro besolrw besolwr besorlw besorwl besowrl besowlr beswlor beswlro beswolr
besworl beswrol beswrlo belsrow belsrwo belsorw belsowr belswor belswro belrsow belrswo
belrosw belrows belrwos belrwso belorsw belorws belosrw beloswr belowsr belowrs belwros
belwrso belwors belwosr belwsor belwsro beoslrw beoslwr beosrlw beosrwl beoswrl beoswlr
beolsrw beolswr beolrsw beolrws beolwrs beolwsr beorlsw beorlws beorslw beorswl beorwsl
beorwls beowlrs beowlsr beowrls beowrsl beowsrl beowslr bewslor bewslro bewsolr bewsorl
bewsrol bewsrlo bewlsor bewlsro bewlosr bewlors bewlros bewlrso bewolsr bewolrs bewoslr
bewosrl beworsl beworls bewrlos bewrlso bewrols bewrosl bewrsol bewrslo bserlow bserlwo
bserolw bserowl bserwol bserwlo bselrow bselrwo bselorw bselowr bselwor bselwro bseolrw
bseolwr bseorlw bseorwl bseowrl bseowlr bsewlor bsewlro bsewolr bseworl bsewrol bsewrlo
bsrelow bsrelwo bsreolw bsreowl bsrewol bsrewlo bsrleow bsrlewo bsrloew bsrlowe bsrlwoe
bsrlweo bsrolew bsrolwe bsroelw bsroewl bsrowel bsrowle bsrwloe bsrwleo bsrwole bsrwoel
bsrweol bsrwelo bslreow bslrewo bslroew bslrowe bslrwoe bslrweo bslerow bslerwo bsleorw
bsleowr bslewor bslewro bsloerw bsloewr bslorew bslorwe bslowre bslower bslweor bslwero
bslwoer bslwore bslwroe bslwreo bsorlew bsorlwe bsorelw bsorewl bsorwel bsorwle bsolrew
bsolrwe bsolerw bsolewr bsolwer bsolwre bsoelrw bsoelwr bsoerlw bsoerwl bsoewrl bsoewlr
bsowler bsowlre bsowelr bsowerl bsowrel bsowrle bswrloe bswrleo bswrole bswroel bswreol
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bswoerl bswoelr bswelor bswelro bsweolr bsweorl bswerol bswerlo blesrow blesrwo blesorw
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blrewos blrewso blroesw blroews blrosew blroswe blrowse blrowes blrweos blrweso blrwoes
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blowrse blowers blowesr blowser blowsre blwsroe blwsreo blwsore blwsoer blwseor blwsero
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blwoers blweros blwerso blweors blweosr blwesor blwesro boeslrw boeslwr boesrlw boesrwl
boeswrl boeswlr boelsrw boelswr boelrsw boelrws boelwrs boelwsr boerlsw boerlws boerslw
boerswl boerwsl boerwls boewlrs boewlsr boewrls boewrsl boewsrl boewslr boselrw boselwr
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bworesl bworsel bworsle bwrsloe bwrsleo bwrsole bwrsoel bwrseol bwrselo bwrlsoe bwrlseo
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bwrelso bwreols bwreosl bwresol bwreslo rbeslow rbeslwo rbesolw rbesowl rbeswol rbeswlo
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resbwlo reslbow reslbwo reslobw reslowb reslwob reslwbo resolbw resolwb resoblw resobwl
resowbl resowlb reswlob reswlbo reswolb reswobl reswbol reswblo relsbow relsbwo relsobw
relsowb relswob relswbo relbsow relbswo relbosw relbows relbwos relbwso relobsw relobws
relosbw reloswb relowsb relowbs relwbos relwbso relwobs relwosb relwsob relwsbo reoslbw
reoslwb reosblw reosbwl reoswbl reoswlb reolsbw reolswb reolbsw reolbws reolwbs reolwsb
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rselobw rselowb rselwob rselwbo rseolbw rseolwb rseoblw rseobwl rseowbl rseowlb rsewlob
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rlebows rlebwos rlebwso rleobsw rleobws rleosbw rleoswb rleowsb rleowbs rlewbos rlewbso
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rlosewb rlosweb rloswbe rlobsew rlobswe rlobesw rlobews rlobwes rlobwse rloebsw rloebws
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roewbsl roewsbl roewslb roselbw roselwb roseblw rosebwl rosewbl rosewlb roslebw roslewb
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roswleb roswble roswbel roswebl roswelb rolsebw rolsewb rolsbew rolsbwe rolswbe rolsweb
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robswel robswle roblsew roblswe roblesw roblews roblwes roblwse robelsw robelws robeslw
robeswl robewsl robewls robwles robwlse robwels robwesl robwsel robwsle rowslbe rowsleb
rowsble rowsbel rowsebl rowselb rowlsbe rowlseb rowlbse rowlbes rowlebs rowlesb rowblse
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erbwslo ersblow ersblwo ersbolw ersbowl ersbwol ersbwlo erslbow erslbwo erslobw erslowb
erslwob erslwbo ersolbw ersolwb ersoblw ersobwl ersowbl ersowlb erswlob erswlbo erswolb
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erolsbw erolswb erolbsw erolbws erolwbs erolwsb eroblsw eroblws erobslw erobswl erobwsl
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erwosbl erwobsl erwobls erwblos erwblso erwbols erwbosl erwbsol erwbslo ebrslow ebrslwo
ebrsolw ebrsowl ebrswol ebrswlo ebrlsow ebrlswo ebrlosw ebrlows ebrlwos ebrlwso ebrolsw
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orbelws orbeslw orbeswl orbewsl orbewls orbwles orbwlse orbwels orbwesl orbwsel orbwsle
orwslbe orwsleb orwsble orwsbel orwsebl orwselb orwlsbe orwlseb orwlbse orwlbes orwlebs
orwlesb orwblse orwbles orwbsle orwbsel orwbesl orwbels orwelbs orwelsb orwebls orwebsl
orwesbl orweslb oerslbw oerslwb oersblw oersbwl oerswbl oerswlb oerlsbw oerlswb oerlbsw
oerlbws oerlwbs oerlwsb oerblsw oerblws oerbslw oerbswl oerbwsl oerbwls oerwlbs oerwlsb
oerwbls oerwbsl oerwsbl oerwslb oesrlbw oesrlwb oesrblw oesrbwl oesrwbl oesrwlb oeslrbw
oeslrwb oeslbrw oeslbwr oeslwbr oeslwrb oesblrw oesblwr oesbrlw oesbrwl oesbwrl oesbwlr
oeswlbr oeswlrb oeswblr oeswbrl oeswrbl oeswrlb oelsrbw oelsrwb oelsbrw oelsbwr oelswbr
oelswrb oelrsbw oelrswb oelrbsw oelrbws oelrwbs oelrwsb oelbrsw oelbrws oelbsrw oelbswr
oelbwsr oelbwrs oelwrbs oelwrsb oelwbrs oelwbsr oelwsbr oelwsrb oebslrw oebslwr oebsrlw
oebsrwl oebswrl oebswlr oeblsrw oeblswr oeblrsw oeblrws oeblwrs oeblwsr oebrlsw oebrlws
oebrslw oebrswl oebrwsl oebrwls oebwlrs oebwlsr oebwrls oebwrsl oebwsrl oebwslr oewslbr
oewslrb oewsblr oewsbrl oewsrbl oewsrlb oewlsbr oewlsrb oewlbsr oewlbrs oewlrbs oewlrsb
oewblsr oewblrs oewbslr oewbsrl oewbrsl oewbrls oewrlbs oewrlsb oewrbls oewrbsl oewrsbl
oewrslb oserlbw oserlwb oserblw oserbwl oserwbl oserwlb oselrbw oselrwb oselbrw oselbwr
oselwbr oselwrb oseblrw oseblwr osebrlw osebrwl osebwrl osebwlr osewlbr osewlrb osewblr
osewbrl osewrbl osewrlb osrelbw osrelwb osreblw osrebwl osrewbl osrewlb osrlebw osrlewb
osrlbew osrlbwe osrlwbe osrlweb osrblew osrblwe osrbelw osrbewl osrbwel osrbwle osrwlbe
osrwleb osrwble osrwbel osrwebl osrwelb oslrebw oslrewb oslrbew oslrbwe oslrwbe oslrweb
oslerbw oslerwb oslebrw oslebwr oslewbr oslewrb oslberw oslbewr oslbrew oslbrwe oslbwre
oslbwer oslwebr oslwerb oslwber oslwbre oslwrbe oslwreb osbrlew osbrlwe osbrelw osbrewl
osbrwel osbrwle osblrew osblrwe osblerw osblewr osblwer osblwre osbelrw osbelwr osberlw
osberwl osbewrl osbewlr osbwler osbwlre osbwelr osbwerl osbwrel osbwrle oswrlbe oswrleb
oswrble oswrbel oswrebl oswrelb oswlrbe oswlreb oswlbre oswlber oswlebr oswlerb oswblre
oswbler oswbrle oswbrel oswberl oswbelr oswelbr oswelrb osweblr oswebrl oswerbl oswerlb
olesrbw olesrwb olesbrw olesbwr oleswbr oleswrb olersbw olerswb olerbsw olerbws olerwbs
olerwsb olebrsw olebrws olebsrw olebswr olebwsr olebwrs olewrbs olewrsb olewbrs olewbsr
olewsbr olewsrb olserbw olserwb olsebrw olsebwr olsewbr olsewrb olsrebw olsrewb olsrbew
olsrbwe olsrwbe olsrweb olsbrew olsbrwe olsberw olsbewr olsbwer olsbwre olswrbe olswreb
olswbre olswber olswebr olswerb olrsebw olrsewb olrsbew olrsbwe olrswbe olrsweb olresbw
olreswb olrebsw olrebws olrewbs olrewsb olrbesw olrbews olrbsew olrbswe olrbwse olrbwes
olrwebs olrwesb olrwbes olrwbse olrwsbe olrwseb olbsrew olbsrwe olbserw olbsewr olbswer
olbswre olbrsew olbrswe olbresw olbrews olbrwes olbrwse olbersw olberws olbesrw olbeswr
olbewsr olbewrs olbwres olbwrse olbwers olbwesr olbwser olbwsre olwsrbe olwsreb olwsbre
olwsber olwsebr olwserb olwrsbe olwrseb olwrbse olwrbes olwrebs olwresb olwbrse olwbres
olwbsre olwbser olwbesr olwbers olwerbs olwersb olwebrs olwebsr olwesbr olwesrb obeslrw
obeslwr obesrlw obesrwl obeswrl obeswlr obelsrw obelswr obelrsw obelrws obelwrs obelwsr
oberlsw oberlws oberslw oberswl oberwsl oberwls obewlrs obewlsr obewrls obewrsl obewsrl
obewslr obselrw obselwr obserlw obserwl obsewrl obsewlr obslerw obslewr obslrew obslrwe
obslwre obslwer obsrlew obsrlwe obsrelw obsrewl obsrwel obsrwle obswlre obswler obswrle
obswrel obswerl obswelr oblserw oblsewr oblsrew oblsrwe oblswre oblswer oblesrw obleswr
oblersw oblerws oblewrs oblewsr oblresw oblrews oblrsew oblrswe oblrwse oblrwes oblwers
oblwesr oblwres oblwrse oblwsre oblwser obrslew obrslwe obrselw obrsewl obrswel obrswle
obrlsew obrlswe obrlesw obrlews obrlwes obrlwse obrelsw obrelws obreslw obreswl obrewsl
obrewls obrwles obrwlse obrwels obrwesl obrwsel obrwsle obwslre obwsler obwsrle obwsrel
obwserl obwselr obwlsre obwlser obwlrse obwlres obwlers obwlesr obwrlse obwrles obwrsle
obwrsel obwresl obwrels obwelrs obwelsr obwerls obwersl obwesrl obweslr oweslbr oweslrb
owesblr owesbrl owesrbl owesrlb owelsbr owelsrb owelbsr owelbrs owelrbs owelrsb oweblsr
oweblrs owebslr owebsrl owebrsl owebrls owerlbs owerlsb owerbls owerbsl owersbl owerslb
owselbr owselrb owseblr owsebrl owserbl owserlb owslebr owslerb owslber owslbre owslrbe
owslreb owsbler owsblre owsbelr owsberl owsbrel owsbrle owsrlbe owsrleb owsrble owsrbel
owsrebl owsrelb owlsebr owlserb owlsber owlsbre owlsrbe owlsreb owlesbr owlesrb owlebsr
owlebrs owlerbs owlersb owlbesr owlbers owlbser owlbsre owlbrse owlbres owlrebs owlresb
owlrbes owlrbse owlrsbe owlrseb owbsler owbslre owbselr owbserl owbsrel owbsrle owblser
owblsre owblesr owblers owblres owblrse owbelsr owbelrs owbeslr owbesrl owbersl owberls
owbrles owbrlse owbrels owbresl owbrsel owbrsle owrslbe owrsleb owrsble owrsbel owrsebl
owrselb owrlsbe owrlseb owrlbse owrlbes owrlebs owrlesb owrblse owrbles owrbsle owrbsel
owrbesl owrbels owrelbs owrelsb owrebls owrebsl owresbl owreslb wreslob wreslbo wresolb
wresobl wresbol wresblo wrelsob wrelsbo wrelosb wrelobs wrelbos wrelbso wreolsb wreolbs
wreoslb wreosbl wreobsl wreobls wreblos wreblso wrebols wrebosl wrebsol wrebslo wrselob
wrselbo wrseolb wrseobl wrsebol wrseblo wrsleob wrslebo wrsloeb wrslobe wrslboe wrslbeo
wrsoleb wrsolbe wrsoelb wrsoebl wrsobel wrsoble wrsbloe wrsbleo wrsbole wrsboel wrsbeol
wrsbelo wrlseob wrlsebo wrlsoeb wrlsobe wrlsboe wrlsbeo wrlesob wrlesbo wrleosb wrleobs
wrlebos wrlebso wrloesb wrloebs wrloseb wrlosbe wrlobse wrlobes wrlbeos wrlbeso wrlboes
wrlbose wrlbsoe wrlbseo wrosleb wroslbe wroselb wrosebl wrosbel wrosble wrolseb wrolsbe
wrolesb wrolebs wrolbes wrolbse wroelsb wroelbs wroeslb wroesbl wroebsl wroebls wrobles
wroblse wrobels wrobesl wrobsel wrobsle wrbsloe wrbsleo wrbsole wrbsoel wrbseol wrbselo
wrblsoe wrblseo wrblose wrbloes wrbleos wrbleso wrbolse wrboles wrbosle wrbosel wrboesl
wrboels wrbelos wrbelso wrbeols wrbeosl wrbesol wrbeslo werslob werslbo wersolb wersobl
wersbol wersblo werlsob werlsbo werlosb werlobs werlbos werlbso werolsb werolbs weroslb
werosbl werobsl werobls werblos werblso werbols werbosl werbsol werbslo wesrlob wesrlbo
wesrolb wesrobl wesrbol wesrblo weslrob weslrbo weslorb weslobr weslbor weslbro wesolrb
wesolbr wesorlb wesorbl wesobrl wesoblr wesblor wesblro wesbolr wesborl wesbrol wesbrlo
welsrob welsrbo welsorb welsobr welsbor welsbro welrsob welrsbo welrosb welrobs welrbos
welrbso welorsb welorbs welosrb welosbr welobsr welobrs welbros welbrso welbors welbosr
welbsor welbsro weoslrb weoslbr weosrlb weosrbl weosbrl weosblr weolsrb weolsbr weolrsb
weolrbs weolbrs weolbsr weorlsb weorlbs weorslb weorsbl weorbsl weorbls weoblrs weoblsr
weobrls weobrsl weobsrl weobslr webslor webslro websolr websorl websrol websrlo weblsor
weblsro weblosr weblors weblros weblrso webolsr webolrs weboslr webosrl weborsl weborls
webrlos webrlso webrols webrosl webrsol webrslo wserlob wserlbo wserolb wserobl wserbol
wserblo wselrob wselrbo wselorb wselobr wselbor wselbro wseolrb wseolbr wseorlb wseorbl
wseobrl wseoblr wseblor wseblro wsebolr wseborl wsebrol wsebrlo wsrelob wsrelbo wsreolb
wsreobl wsrebol wsreblo wsrleob wsrlebo wsrloeb wsrlobe wsrlboe wsrlbeo wsroleb wsrolbe
wsroelb wsroebl wsrobel wsroble wsrbloe wsrbleo wsrbole wsrboel wsrbeol wsrbelo wslreob
wslrebo wslroeb wslrobe wslrboe wslrbeo wslerob wslerbo wsleorb wsleobr wslebor wslebro
wsloerb wsloebr wsloreb wslorbe wslobre wslober wslbeor wslbero wslboer wslbore wslbroe
wslbreo wsorleb wsorlbe wsorelb wsorebl wsorbel wsorble wsolreb wsolrbe wsolerb wsolebr
wsolber wsolbre wsoelrb wsoelbr wsoerlb wsoerbl wsoebrl wsoeblr wsobler wsoblre wsobelr
wsoberl wsobrel wsobrle wsbrloe wsbrleo wsbrole wsbroel wsbreol wsbrelo wsblroe wsblreo
wsblore wsbloer wsbleor wsblero wsbolre wsboler wsborle wsborel wsboerl wsboelr wsbelor
wsbelro wsbeolr wsbeorl wsberol wsberlo wlesrob wlesrbo wlesorb wlesobr wlesbor wlesbro
wlersob wlersbo wlerosb wlerobs wlerbos wlerbso wleorsb wleorbs wleosrb wleosbr wleobsr
wleobrs wlebros wlebrso wlebors wlebosr wlebsor wlebsro wlserob wlserbo wlseorb wlseobr
wlsebor wlsebro wlsreob wlsrebo wlsroeb wlsrobe wlsrboe wlsrbeo wlsoreb wlsorbe wlsoerb
wlsoebr wlsober wlsobre wlsbroe wlsbreo wlsbore wlsboer wlsbeor wlsbero wlrseob wlrsebo
wlrsoeb wlrsobe wlrsboe wlrsbeo wlresob wlresbo wlreosb wlreobs wlrebos wlrebso wlroesb
wlroebs wlroseb wlrosbe wlrobse wlrobes wlrbeos wlrbeso wlrboes wlrbose wlrbsoe wlrbseo
wlosreb wlosrbe wloserb wlosebr wlosber wlosbre wlorseb wlorsbe wloresb wlorebs wlorbes
wlorbse wloersb wloerbs wloesrb wloesbr wloebsr wloebrs wlobres wlobrse wlobers wlobesr
wlobser wlobsre wlbsroe wlbsreo wlbsore wlbsoer wlbseor wlbsero wlbrsoe wlbrseo wlbrose
wlbroes wlbreos wlbreso wlborse wlbores wlbosre wlboser wlboesr wlboers wlberos wlberso
wlbeors wlbeosr wlbesor wlbesro woeslrb woeslbr woesrlb woesrbl woesbrl woesblr woelsrb
woelsbr woelrsb woelrbs woelbrs woelbsr woerlsb woerlbs woerslb woersbl woerbsl woerbls
woeblrs woeblsr woebrls woebrsl woebsrl woebslr woselrb woselbr woserlb woserbl wosebrl
woseblr woslerb woslebr woslreb woslrbe woslbre woslber wosrleb wosrlbe wosrelb wosrebl
wosrbel wosrble wosblre wosbler wosbrle wosbrel wosberl wosbelr wolserb wolsebr wolsreb
wolsrbe wolsbre wolsber wolesrb wolesbr wolersb wolerbs wolebrs wolebsr wolresb wolrebs
wolrseb wolrsbe wolrbse wolrbes wolbers wolbesr wolbres wolbrse wolbsre wolbser worsleb
worslbe worselb worsebl worsbel worsble worlseb worlsbe worlesb worlebs worlbes worlbse
worelsb worelbs woreslb woresbl worebsl worebls worbles worblse worbels worbesl worbsel
worbsle wobslre wobsler wobsrle wobsrel wobserl wobselr woblsre woblser woblrse woblres
woblers woblesr wobrlse wobrles wobrsle wobrsel wobresl wobrels wobelrs wobelsr woberls
wobersl wobesrl wobeslr wbeslor wbeslro wbesolr wbesorl wbesrol wbesrlo wbelsor wbelsro
wbelosr wbelors wbelros wbelrso wbeolsr wbeolrs wbeoslr wbeosrl wbeorsl wbeorls wberlos
wberlso wberols wberosl wbersol wberslo wbselor wbselro wbseolr wbseorl wbserol wbserlo
wbsleor wbslero wbsloer wbslore wbslroe wbslreo wbsoler wbsolre wbsoelr wbsoerl wbsorel
wbsorle wbsrloe wbsrleo wbsrole wbsroel wbsreol wbsrelo wblseor wblsero wblsoer wblsore
wblsroe wblsreo wblesor wblesro wbleosr wbleors wbleros wblerso wbloesr wbloers wbloser
wblosre wblorse wblores wblreos wblreso wblroes wblrose wblrsoe wblrseo wbosler wboslre
wboselr wboserl wbosrel wbosrle wbolser wbolsre wbolesr wbolers wbolres wbolrse wboelsr
wboelrs wboeslr wboesrl wboersl wboerls wborles wborlse wborels wboresl wborsel wborsle
wbrsloe wbrsleo wbrsole wbrsoel wbrseol wbrselo wbrlsoe wbrlseo wbrlose wbrloes wbrleos
wbrleso wbrolse wbroles wbrosle wbrosel wbroesl wbroels wbrelos wbrelso wbreols wbreosl
wbresol wbreslo

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History of cryptography
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