• called μ's (ミューズ, Myūzu, pronounced "muse") to attract new students. Once they successfully prevent Otonokizaka Academy from closing, the girls from μ's set...
    62 KB (6,158 words) - 02:16, 19 September 2024
  • Thumbnail for Logistic distribution
    μ , s ) = ∂ F ( x ; μ , s ) ∂ x = e − ( x − μ ) / s s ( 1 + e − ( x − μ ) / s ) 2 = 1 s ( e ( x − μ ) / ( 2 s ) + e − ( x − μ ) / ( 2 s ) ) 2 = 1 4 s...
    13 KB (1,766 words) - 19:59, 5 October 2024
  • where μ ( f > t ) = μ ( { s : f ( s ) > t } ) {\displaystyle \mu (f>t)=\mu (\{s:f(s)>t\})} denotes the measure of the set ( f > t ) := { sS : f ( s ) >...
    69 KB (12,904 words) - 12:28, 4 October 2024
  • Thumbnail for Scanning tunneling microscope
    following general form ψ μ S ( t ) = ψ μ S exp ⁡ ( − i ℏ E μ S t ) , {\displaystyle \psi _{\mu }^{\text{S}}(t)=\psi _{\mu }^{\text{S}}\exp \left(-{\frac {i}{\hbar...
    47 KB (7,166 words) - 23:26, 29 June 2024
  • integral, | ∫ S f d μ − ∫ S f n d μ | = | ∫ S ( f − f n ) d μ | ≤ ∫ S | f − f n | d μ . {\displaystyle \left|\int _{S}{f\,d\mu }-\int _{S}{f_{n}\,d\mu...
    13 KB (2,208 words) - 23:11, 5 October 2024
  • Thumbnail for Log-normal distribution
    = e μ 1 + σ 1 2 2 e μ 2 + σ 2 2 2 ) : e ( ( μ ^ 1 − μ ^ 2 + 1 2 S 1 2 − 1 2 S 2 2 ) ± z 1 − α 2 S 1 2 n 1 + S 2 2 n 2 + S 1 4 2 ( n 1 − 1 ) + S 2 4 2...
    80 KB (11,823 words) - 06:13, 28 September 2024
  • S ⊆ G {\displaystyle S\subseteq G} and all g ∈ G {\displaystyle g\in G} one has μ ( g S ) = μ ( S ) . {\displaystyle \mu (gS)=\mu (S).} A measure μ {\displaystyle...
    31 KB (5,359 words) - 00:45, 26 September 2024
  • } are defined as follows: β = μ s μ o {\displaystyle \beta ={\frac {\mu _{s}}{\mu _{o}}}} where: μ s {\textstyle \mu _{s}} is the mean of the simulated...
    2 KB (329 words) - 03:17, 11 February 2024
  • Thumbnail for Bell-shaped function
    raised-cosine filter f ( x ; μ , s ) = { 1 2 s [ 1 + cos ⁡ ( x − μ s π ) ] for  μs ≤ x ≤ μ + s , 0 otherwise. {\displaystyle f(x;\mu ,s)={\begin{cases}{\frac...
    4 KB (505 words) - 18:00, 18 December 2023
  • d μ = sup sS F ( f ) ∫ X s d μ ≤ sup sS F ( g ) ∫ X s d μ = ∫ X g d μ . {\displaystyle \int _{X}f\,d\mu =\sup _{s\in {\rm {SF}}(f)}\int _{X}s\,d\mu...
    24 KB (5,489 words) - 16:58, 27 September 2024