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Welcome Hodhopper

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  • Welcome Hodhopper

    Hello Hodhopper and welcome to Legal Beagles.
    Please have a look round and if you need any help with anything give a shout, someone will soon be along to help you.
    If you have an ongoing claim, or a problem you need answers to, then you can start a thread in the appropriate forum. Once again if you need help doing this just ask.
    When you have settled in, if you feel like a chat we have the Legal Beagle Chatroom, or there is The Lamp Post for off topic threads. Hope to speak soon Enaid x
    __________________

  • #2
    Re: Welcome Hodhopper

    Hi There and Welcome to Legal Beagles

    Hopefully you will find all the help you need on the site.

    We have the Banks Forum for info regarding claims againt the banks

    We have the Lamp Post for light hearted off topic chat

    We have the OFT Case forum for the latest information on the Test Case

    We have the Chat Room for chatting to other members, maybe a quick question or two

    If you get stuck and want help, just shout

    There is a list of the Team Members HERE

    All in all, enjoy your stay

    PKea

    Comment


    • #3
      Re: Welcome Hodhopper

      Hi Thanks for the welcome. I have a few issues i'm going to be looking about getting some advice on so youi should be seeing more of me quite soon.

      Regards

      Hoddy

      Comment


      • #4
        Re: Welcome Hodhopper

        Welcome to Legal Beagles Hodhopper!

        We love a 'few issues' to sort out so start a thread in the relevant forum and share those worries.

        xxx

        "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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        Comment


        • #5
          Re: Welcome Hodhopper

          Welcome Hodhopper to the beagles forum.

          Comment

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