Optimization of the distance











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Assume $f:[0,1]longrightarrow mathbb{R}^{n}$ is continuous (not necessrily differentaable or Lipschitzian) and let $Pinmathbb{R}^{n}$. What algorithm/procedure do yoiu think is "faster" to compute $d(P,f(I))$? What about some optimization algorithm?



Many thanks in advance for your comments and suggestions.










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    up vote
    0
    down vote

    favorite












    Assume $f:[0,1]longrightarrow mathbb{R}^{n}$ is continuous (not necessrily differentaable or Lipschitzian) and let $Pinmathbb{R}^{n}$. What algorithm/procedure do yoiu think is "faster" to compute $d(P,f(I))$? What about some optimization algorithm?



    Many thanks in advance for your comments and suggestions.










    share|cite|improve this question


























      up vote
      0
      down vote

      favorite









      up vote
      0
      down vote

      favorite











      Assume $f:[0,1]longrightarrow mathbb{R}^{n}$ is continuous (not necessrily differentaable or Lipschitzian) and let $Pinmathbb{R}^{n}$. What algorithm/procedure do yoiu think is "faster" to compute $d(P,f(I))$? What about some optimization algorithm?



      Many thanks in advance for your comments and suggestions.










      share|cite|improve this question















      Assume $f:[0,1]longrightarrow mathbb{R}^{n}$ is continuous (not necessrily differentaable or Lipschitzian) and let $Pinmathbb{R}^{n}$. What algorithm/procedure do yoiu think is "faster" to compute $d(P,f(I))$? What about some optimization algorithm?



      Many thanks in advance for your comments and suggestions.







      calculus optimization






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      share|cite|improve this question













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      share|cite|improve this question








      edited Nov 25 at 7:55

























      asked Nov 24 at 16:54









      user123043

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