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Learn Challenge: Error Analysis and Convergence Behavior | Foundations of Numerical Computation
Numerical Methods for Scientific Computing with Python

bookChallenge: Error Analysis and Convergence Behavior

Task

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In this challenge, you will implement an adaptive numerical approximation of the exponential function (exe^x) using its Taylor series expansion.

Your implementation must:

  • Incrementally build the Taylor series approximation of (exe^x).
  • Track the current term, partial sum, and iteration count.
  • Compute the absolute error compared to the true value.
  • Stop when: the error is less than or equal to tol, or the number of terms reaches max_terms.
  • Return:
    • The final approximation.
    • The number of terms used.

Solution

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SectionΒ 1. ChapterΒ 5
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bookChallenge: Error Analysis and Convergence Behavior

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Task

Swipe to start coding

In this challenge, you will implement an adaptive numerical approximation of the exponential function (exe^x) using its Taylor series expansion.

Your implementation must:

  • Incrementally build the Taylor series approximation of (exe^x).
  • Track the current term, partial sum, and iteration count.
  • Compute the absolute error compared to the true value.
  • Stop when: the error is less than or equal to tol, or the number of terms reaches max_terms.
  • Return:
    • The final approximation.
    • The number of terms used.

Solution

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Everything was clear?

How can we improve it?

Thanks for your feedback!

SectionΒ 1. ChapterΒ 5
single

single

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