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Law Students 31st March onwards

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  • Law Students 31st March onwards

    Dear LegalBeagles Community
    Thank you to all of you who help out and make life fairer place for everyone. Especially during the current Covid 19 crisis, it is brilliant to see the help and support continue during uncertain times.
    Over the next five weeks, we will have a bit of extra help because we have seven law students undertaking work experience on the forum to build their experience of working with frontline legal problems.
    They will be easy to recognise, we've unimaginatively titled them Law Student 1-7
    Please give them any support you can spare, hopefully over the next few weeks they can learn a lot from this community.
    Thank you
    "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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  • #2
    This week and next - Our Law Students trainees are tackling questions older than 48hrs unanswered but less than 6 months old, in case any of you notice historic posts receiving responses. If you think a student has given a good reply, a 'thank post' click would be most appreciated to help us monitor how well they are doing.
    Thanks all X*
    "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 )

    I am proud to have co-founded LegalBeagles in 2007

    If we have helped you we'd appreciate it if you can leave a review on our Trust Pilot page

    If you wish to book an appointment with me to discuss your credit agreement, please email kate@legalbeaglesgroup. com

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