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CCJ for statute barred debt

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  • CCJ for statute barred debt

    Hi,

    I have had CCJ filed against my name in August 2019, I have only recently found out, as I have moved address in 2018, and have not received original documentation. I believe the debt is statute barred, as I have first defaulted in 2009, and have not paid anything towards it, or acknowledged the debt in writing. Would I have a chance in setting aside the CCJ if I apply to the court? Thank you.
    Tags: None

  • #2
    Yes, but you need to act fast. Make an application to set aside the CCJ. Guide here: https://legalbeagles.info/library/ho...-judgment-ccj/
    Register and we'll be able to support 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 )

    I am proud to have co-founded LegalBeagles in 2007

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    Comment


    • #3
      Hi, thank you,. I have now registered, what do I do next please?

      Comment


      • #4
        Firstly read the guide carefully - You need to contact the creditor/Claimant debt company and request that it is set aside by Consent. (Cost £100) If they don't agree to set aside by consent you need to make an Application N244 (Cost £255)
        "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

        Comment


        • #5
          Do I need to contact the claimant or can I go straight to applying to court? Do not want to delay it any further.

          Comment


          • #6
            Contacting the claimant is an important step to try to get it set aside by consent. They do sometimes agree if they accept they've sent it to wrong address.
            "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

            Comment


            • #7
              Thank you, I will.

              Comment


              • #8
                The link for the sample letter to claimant is not working. Please could you send me the working link, thank you.

                Comment


                • #9
                  https://legalbeagles.info/library/ho...-judgment-ccj/

                  Can you try again for me please. Are you on mobile or desktop?
                  "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

                  Comment


                  • #10
                    Desktop, when I click on the link for the sample letter, it does not open anything. Thank you

                    Comment


                    • #11
                      So the link I posted above works?
                      There should be four example documents visible without downloading, N244 form, Example Witness statement, example defence and draft order?
                      "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

                      Comment


                      • #12
                        The link times out On mobile samsung. its an error 524 timeout.

                        Comment


                        • #13
                          Thank you, I have now emailed the Claimant asking them to consent to removing the CCJ, and awaiting their response. I will continue preparing the rest of the documentation in case they do not consent. Thank you

                          Comment


                          • #14
                            No worries at all, happy to help. Just shout if you have any further questions. You may as well start preparing the application, witness statement and example defence to be well ready to move fast. Follow the letter up with a phone call, don't wait on them.
                            "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

                            Comment

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