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Some defines:
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<math>\,m=\left[ \begin{array}{ccc} x & y & z \end{array} \right] \,</math> is the message
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<math>\,A=\left[ \begin{array}{ccc} a_{11} & a_{12} & a_{13} \\ a_{21} & a_{22} & a_{23} \\ a_{31} & a_{32} & a_{33} \end{array} \right] \,</math> is the encryption matrix
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<math>\,e=\left[ \begin{array}{ccc} s & t & u \end{array} \right] \,</math> is the encrypted message

Revision as of 20:39, 17 September 2008

Some defines:

$ \,m=\left[ \begin{array}{ccc} x & y & z \end{array} \right] \, $ is the message

$ \,A=\left[ \begin{array}{ccc} a_{11} & a_{12} & a_{13} \\ a_{21} & a_{22} & a_{23} \\ a_{31} & a_{32} & a_{33} \end{array} \right] \, $ is the encryption matrix

$ \,e=\left[ \begin{array}{ccc} s & t & u \end{array} \right] \, $ is the encrypted message

Alumni Liaison

Prof. Math. Ohio State and Associate Dean
Outstanding Alumnus Purdue Math 2008

Jeff McNeal