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Good Luck Sappire And The Old Git Xxxxx

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  • Good Luck Sappire And The Old Git Xxxxx

    Just incase I don't get to speak to you in the morning, pass on our group hug to les, wish him all the luck in the world, all fingers, legs and in Tools case - ears, will be duly crossed.

    Not a religious person but for the third time in my life I'll say a little prayer tomorrow xxxx

    Lets us know as soon as you can hun xxx

    Jan
    Tags: ears, law, tomorrow

  • #2
    Re: Good Luck Sappire And The Old Git Xxxxx

    Good Luck and hopefully a positive response for all cases.

    Comment


    • #3
      Re: Good Luck Sappire And The Old Git Xxxxx

      ditto!!!!

      Rooting for you Saffy and the old git of course!!!!


      xxxxxxxxxxxxxxx

      Comment


      • #4
        Re: Good Luck Sappire And The Old Git Xxxxx

        We are all behind you and hope everything goes to plan.

        We will be on tenderhooks all day for you

        Paul

        Comment


        • #5
          Re: Good Luck Sappire And The Old Git Xxxxx

          Sapph, I hate this kind of thread as you know, but I love you and I hope everything will be ok xxxxx

          Comment


          • #6
            Re: Good Luck Sappire And The Old Git Xxxxx

            :lawnmover: and Sappy, all the very best of luck today, please don't go celebrating before you tell us the good news okidoki Enaid xxxxxxx

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            • #7
              Re: Good Luck Sappire And The Old Git Xxxxx

              Good luck Sapphire and Les.

              You'll be in my thoughts all day xxxx
              "Although scalar fields are Lorentz scalars, they may transform nontrivially under other symmetries, such as flavour or isospin. For example, the pion is invariant under the restricted Lorentz group, but is an isospin triplet (meaning it transforms like a three component vector under the SU(2) isospin symmetry). Furthermore, it picks up a negative phase under parity inversion, so it transforms nontrivially under the full Lorentz group; such particles are called pseudoscalar rather than scalar. Most mesons are pseudoscalar particles." (finally explained to a captivated Celestine by Professor Brian Cox on Wednesday 27th June 2012 )

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