Timeline for Defining boundary conditions for spline interpolation via the Euler–Maclaurin formula
Current License: CC BY-SA 4.0
9 events
when toggle format | what | by | license | comment | |
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Sep 23, 2020 at 17:44 | history | edited | YCor | CC BY-SA 4.0 |
removed capitals from title (the question was bumped anyway)
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S Sep 23, 2020 at 14:00 | history | edited | R.P. |
minor copyediting, improved formatting, added "splines" tag
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S Sep 23, 2020 at 14:00 | history | suggested | gmvh | CC BY-SA 4.0 |
minor copyediting, improved formatting, added "splines" tag
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Sep 23, 2020 at 13:00 | review | Suggested edits | |||
S Sep 23, 2020 at 14:00 | |||||
Oct 13, 2018 at 15:50 | history | edited | Michael Hardy | CC BY-SA 4.0 |
MathJax improvements
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Oct 12, 2018 at 5:07 | comment | added | Manfred Weis | @MichaelHardy unfortunately I don't have the chance to do frequent mathematical type setting and thus lack some expertise in that respect. I will adopt your suggested formatting, which looks much nicer. | |
Oct 11, 2018 at 18:32 | comment | added | Michael Hardy | Why do you format this as $$\begin{align} I\quad:=&&\int_m^nf(x) \, dx;\ m,n\in\mathbb{Z}\\ \\ S\quad:=&&\sum_{k=m}^n f(k) \\ \\ D\quad:=&&\left\lbrace \frac{d^j}{dx^j} f(m) \right\rbrace \cup \left\lbrace \frac{d^j}{dx^j} f(n) \right\rbrace \end{align}$$ rather than as seen below? $$\begin{align} I\quad:=& \quad \int_m^nf(x) \, dx;\ m,n\in\mathbb{Z}\\ \\ S\quad:=& \quad \sum_{k=m}^n f(k) \\ \\ D\quad:=&\quad \left\lbrace \frac{d^j}{dx^j} f(m) \right\rbrace \cup \left\lbrace \frac{d^j}{dx^j} f(n) \right\rbrace \end{align}$$ | |
Oct 11, 2018 at 18:29 | history | edited | Michael Hardy | CC BY-SA 4.0 |
added 37 characters in body
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Sep 30, 2018 at 12:46 | history | asked | Manfred Weis | CC BY-SA 4.0 |