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\[LeftModified]   (Mathematica Character Name)
Unicode: F76B. Alias: Esc [ Esc. Letter-like form. Used in documenting control and command characters. key\[LeftModified]char\[RightModified] is used to indicate that char ...
\[LeftSkeleton]   (Mathematica Character Name)
Unicode: F761. Uninterpretable element.  n  is used on output to indicate n omitted pieces in an expression obtained from Short or Shallow. \[LeftSkeleton] indicates the ...
\[LessEqual]   (Mathematica Character Name)
Unicode: 2264. Alias: Esc <= Esc. Infix operator with built-in evaluation rules. x ≤ y is by default interpreted as LessEqual[x,y].
\[LongEqual]   (Mathematica Character Name)
Unicode: F7D9. Infix operator with built-in evaluation rules. x  y is by default interpreted as Equal[x,y] or x==y. \[LongEqual] is drawn longer than \[RawEqual]. Used as an ...
\[MediumSpace]   (Mathematica Character Name)
Unicode: 205F. Alias: Esc ␣␣ ␣ Esc. Spacing character. Width: 4/18 em. Interpreted by default just like an ordinary \[RawSpace]. Sometimes used in output as a separator ...
\[NegativeThinSpace]   (Mathematica Character Name)
Unicode: F382. Alias: Esc -␣␣  Esc. Negative spacing character. Used to bring characters on either side closer together. Width: -3/18 em. Interpreted by default just like an ...
\[NHacek]   (Mathematica Character Name)
Unicode: 0148. Alias: Esc nv Esc. Letter. Included in ISO Latin-2.
\[PartialD]   (Mathematica Character Name)
Unicode: 2202. Alias: Esc pd Esc. Prefix operator with built-in evaluation rules. ∂_xy is by default interpreted as D[y,x]. ∂ is used in mathematics to indicate boundary. Esc ...
\[Placeholder]   (Mathematica Character Name)
Unicode: F528. Alias: Esc pl Esc. Letter-like form. Used to indicate where expressions can be inserted in a form obtained by pasting the contents of a button. Not the same as ...
\[Product]   (Mathematica Character Name)
Unicode: 220F. Alias: Esc prod Esc. Compound operator with built-in evaluation rules. ∏_(i)^i_max(f) is by default interpreted as Product[f,{i,i_max}]. ∏_(i=i_min)^i_max(f) ...
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