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  1. #141
    Raider of the lost time
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    Re: positions of numbers

    For eternal spiritual beings it is a great privilege to acquire a physical mortal body and to experience joy and pain out of the bond of being innocence forever.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  2. #142
    Raider of the lost time
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    Re: positions of numbers

    What is a sieve of Diophantus?
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  3. #143
    Moderator
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    Re: positions of numbers

    Quote Originally Posted by AntonioLao View Post
    For eternal spiritual beings it is a great privilege to acquire a physical mortal body and to experience joy and pain out of the bond of being innocence forever.
    Yes it most certainly is,and one we do very often.

    regards michael.
    Humilty,coupled with boldness,surprises truth to
    reveal herself?

  4. #144
    Raider of the lost time
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    Re: positions of numbers

    When you are back into the spiritual realm what's your chance coming back into this physical realm?
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

  5. #145
    Moderator
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    Re: positions of numbers

    Quote Originally Posted by AntonioLao View Post
    When you are back into the spiritual realm what's your chance coming back into this physical realm?
    A very good chance indeed,although I shall not be in a great hurry to return here.


    regards michael.
    Humilty,coupled with boldness,surprises truth to
    reveal herself?

  6. #146
    Raider of the lost time
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    Re: positions of numbers

    No book ads in this thread.
    Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: a(tr(t)=c²

 

 
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