equality in $p$-adic analysis Announcing the arrival of Valued Associate #679: Cesar Manara Planned maintenance scheduled April 23, 2019 at 00:00UTC (8:00pm US/Eastern)On changing from '<' to '$le$' when taking limits (with norm $|bullet|_p$)Can one show a beginning student how to use the $p$-adics to solve a problem?Roadmap to $p$-adic numbers: where a self-learner should look for referencesUnderstanding $p$-adic fieldsHow to calculate $log_p x$ in p-adic analysis?Definition of singular solution of $f(mathbfx) = 0$ in $p$-adic integersEquivalent norms on a field differ only by a powerBasic question on p-adic numbersWhy do exist conjugate units such that…chain of inequalities with $p$-adic anaysis

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equality in $p$-adic analysis



Announcing the arrival of Valued Associate #679: Cesar Manara
Planned maintenance scheduled April 23, 2019 at 00:00UTC (8:00pm US/Eastern)On changing from '<' to '$le$' when taking limits (with norm $|bullet|_p$)Can one show a beginning student how to use the $p$-adics to solve a problem?Roadmap to $p$-adic numbers: where a self-learner should look for referencesUnderstanding $p$-adic fieldsHow to calculate $log_p x$ in p-adic analysis?Definition of singular solution of $f(mathbfx) = 0$ in $p$-adic integersEquivalent norms on a field differ only by a powerBasic question on p-adic numbersWhy do exist conjugate units such that…chain of inequalities with $p$-adic anaysis










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$begingroup$


I'm reading a paper of recurrences sequences and I could not understand why the equality mentioned in the underlined lines in the image. I think that it has to do with $p$-adic analysis. If someone has a clue or an answer, I would appreciate it very much. I have added some more information



enter image description hereenter image description here










share|cite|improve this question











$endgroup$
















    1












    $begingroup$


    I'm reading a paper of recurrences sequences and I could not understand why the equality mentioned in the underlined lines in the image. I think that it has to do with $p$-adic analysis. If someone has a clue or an answer, I would appreciate it very much. I have added some more information



    enter image description hereenter image description here










    share|cite|improve this question











    $endgroup$














      1












      1








      1





      $begingroup$


      I'm reading a paper of recurrences sequences and I could not understand why the equality mentioned in the underlined lines in the image. I think that it has to do with $p$-adic analysis. If someone has a clue or an answer, I would appreciate it very much. I have added some more information



      enter image description hereenter image description here










      share|cite|improve this question











      $endgroup$




      I'm reading a paper of recurrences sequences and I could not understand why the equality mentioned in the underlined lines in the image. I think that it has to do with $p$-adic analysis. If someone has a clue or an answer, I would appreciate it very much. I have added some more information



      enter image description hereenter image description here







      p-adic-number-theory






      share|cite|improve this question















      share|cite|improve this question













      share|cite|improve this question




      share|cite|improve this question








      edited Mar 27 at 20:00







      Jose Luis Orozco Gonzales

















      asked Mar 27 at 19:27









      Jose Luis Orozco GonzalesJose Luis Orozco Gonzales

      586




      586




















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