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Within LTS Haskell 24.17 (ghc-9.10.3)
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- map :: (Double -> Double) -> Matrix -> Matrix- dense-linear-algebra - Statistics.Matrix - Apply function to every element of matrix 
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ihaskell IHaskellPrelude map f xs is the list obtained by applying f to each element of xs, i.e., map f [x1, x2, ..., xn] == [f x1, f x2, ..., f xn] map f [x1, x2, ...] == [f x1, f x2, ...] this means that map id == idExamples>>> map (+1) [1, 2, 3] [2,3,4] >>> map id [1, 2, 3] [1,2,3] >>> map (\n -> 3 * n + 1) [1, 2, 3] [4,7,10] 
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incipit-base Incipit.Base map f xs is the list obtained by applying f to each element of xs, i.e., map f [x1, x2, ..., xn] == [f x1, f x2, ..., f xn] map f [x1, x2, ...] == [f x1, f x2, ...] this means that map id == idExamples>>> map (+1) [1, 2, 3] [2,3,4] >>> map id [1, 2, 3] [1,2,3] >>> map (\n -> 3 * n + 1) [1, 2, 3] [4,7,10] 
- map :: (Int -> Int) -> IntSet -> IntSet- intern - Data.Interned.IntSet - O(n*min(n,W)). map f s is the set obtained by applying f to each element of s. It's worth noting that the size of the result may be smaller if, for some (x,y), x /= y && f x == f y 
- map :: (Representable a, Representable b) => (a % 1 -> b) -> List a % 1 -> Pool % 1 -> List b- linear-base - Foreign.List - No documentation available. 
- map :: (a -> b) -> ShareMap k a -> ShareMap k b- liquid-fixpoint - Data.ShareMap - No documentation available. 
- map :: (a -> b) -> AList a -> AList b- monad-par-extras - Control.Monad.Par.AList - The usual map operation. 
- map :: MonoidNull v2 => (v1 -> v2) -> MonoidMap k v1 -> MonoidMap k v2- monoidmap-internal - Data.MonoidMap.Internal - Applies a function to all non-null values of a MonoidMap. Satisfies the following properties for all functions f: - (get k m == mempty) ==> (get k (map f m) == mempty ) (get k m /= mempty) ==> (get k (map f m) == f (get k m)) - Conditional propertiesIf applying function f to mempty produces mempty, then the following additional properties hold:- (f mempty == mempty) ==> (∀ k. get k (map f m) == f (get k m)) - (f mempty == mempty) ==> (∀ g. map (f . g) m == map f (map g m)) 
- map :: (v1 -> v2) -> Map k v1 -> Map k v2- monoidmap-internal - Data.MonoidMap.Internal.RecoveredMap - No documentation available. 
- map :: (Key -> Key) -> IntMultiSet -> IntMultiSet- multiset - Data.IntMultiSet - O(n*log n). map f s is the multiset obtained by applying f to each element of s. 
