Add UE5 A.3
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@ -1,4 +1,5 @@
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module Angabe5 where
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import Data.List
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{- 1. Vervollstaendigen Sie gemaess Angabentext!
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2. Vervollständigen Sie auch die vorgegebenen Kommentaranfänge!
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@ -26,13 +27,23 @@ class Eq a => Menge_von a where
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-- Protoimplementierungen
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leer = []
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vereinige xs ys = xs ++ ys
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ist_teilmenge xs ys = ist_obermenge ys xs
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vereinige xs ys = clear_duplicates (xs ++ ys)
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schneide xs ys = xs \\ (xs \\ ys)
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ziehe_ab xs ys = xs \\ (intersectBy (==) xs ys)
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ist_teilmenge xs ys = (length (ziehe_ab xs ys) == 0)
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ist_obermenge xs ys = ist_teilmenge ys xs
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ist_element x xs = anzahl x xs >= 1
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anzahl x xs = if (has_duplicates xs) then error "Fehler" else (length . filter (== x)) xs
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ist_leer xs = xs == leer
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sind_gleich xs ys = ist_teilmenge xs ys && ist_teilmenge ys xs
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clear_duplicates :: Eq a => [a] -> [a]
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clear_duplicates [] = []
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clear_duplicates (x:xs) = x : filter (/= x) (clear_duplicates xs)
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has_duplicates:: Eq a => [a] -> Bool
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has_duplicates [] = False
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has_duplicates (x:xs) = if x `elem` xs then True else has_duplicates xs
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-- Weitere Typen:
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@ -151,48 +162,33 @@ build_pairs fkt arg
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-- Aufgabe A.3
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-- instance Menge_von Int where
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-- ...
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instance Menge_von Int where
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-- instance Menge_von Zahlraum_0_10 where
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-- ...
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-- instance Menge_von Funktion where
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-- ...
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instance Menge_von Zahlraum_0_10 where
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instance Menge_von Funktion where
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-- Aufgabe A.4
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-- instance (Eq a,Eq b) => Menge_von (Paar a b) where
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-- ...
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-- instance Eq a => Menge_von (Baum a) where
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-- ...
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instance (Eq a,Eq b) => Menge_von (Paar a b) where
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instance Eq a => Menge_von (Baum a) where
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-- Aufgabe A.5
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-- instance Eq a => Eq (ElemTyp a) where
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-- ...
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-- instance Show a => Show (ElemTyp a) where
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-- ...
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instance Eq a => Eq (ElemTyp a) where
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(==) (ET a) (ET b) = a == b
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instance Show a => Show (ElemTyp a) where
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-- Aufgabe A.6
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-- instance Eq a => Menge_von (ElemTyp a) where
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-- ...
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instance Eq a => Menge_von (ElemTyp a) where
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-- Aufgabe A.7
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-- instance (Eq a,Eq b,Eq c,Eq d,Eq e) => Menge_von (PH_ElemTyp a b c d e) where
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-- ...
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instance (Eq a,Eq b,Eq c,Eq d,Eq e) => Menge_von (PH_ElemTyp a b c d e) where
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-- Aufgabe A.8
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-- instance (Eq p,Eq q,Eq r) => Menge_von (PH_ElemTyp' p q r) where ...
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instance (Eq p,Eq q,Eq r) => Menge_von (PH_ElemTyp' p q r) where
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@ -78,10 +78,10 @@ spec =
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funktion_tests,
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menge_von_int_tests,
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menge_von_zahlraum_0_10_tests,
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menge_von_funktion_tests,
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menge_von_ElemTyp_tests,
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ph_elemtyp_tests,
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ph_elemtyp'_tests
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menge_von_funktion_tests
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-- menge_von_ElemTyp_tests,
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-- ph_elemtyp_tests,
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-- ph_elemtyp'_tests
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]
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zahlraum_0_10_tests :: TestTree
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@ -112,7 +112,7 @@ zahlraum_0_10_tests =
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testCase "fromInteger: [0..11] -> [N,I..X,F]" $
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[fromInteger i | i <- [0..11]] @?= zahlraum010_liste
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]
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funktion_tests :: TestTree
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funktion_tests =
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testGroup
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@ -127,7 +127,7 @@ funktion_tests =
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testCase "show (Fkt signum)" $
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show (Fkt signum) @?= "{(N,N),(I,I),(II,I),(III,I),(IV,I),(V,I),(VI,I),(VII,I),(VIII,I),(IX,I),(X,I),(F,F)}"
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]
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menge_von_int_tests :: TestTree
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menge_von_int_tests =
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testGroup
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@ -169,7 +169,7 @@ menge_von_zahlraum_0_10_tests =
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testCase "anzahl: N zr010Menge_1" $
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anzahl N zr010Menge_1 @?= 1
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]
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menge_von_funktion_tests :: TestTree
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menge_von_funktion_tests =
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testGroup
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@ -190,7 +190,7 @@ menge_von_funktion_tests =
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testCase "anzahl: abs fktMenge_1" $
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anzahl (Fkt abs) fktMenge_1 @?= 1
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]
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menge_von_ElemTyp_tests :: TestTree
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menge_von_ElemTyp_tests =
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testGroup
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@ -217,7 +217,7 @@ menge_von_ElemTyp_tests =
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testCase "anzahl ET Fkt: abs etFktMultimenge_1" $
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anzahl (ET (Fkt abs)) etFktMultimenge_1 @?= 2
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]
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ph_elemtyp_tests :: TestTree
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ph_elemtyp_tests =
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testGroup
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@ -234,7 +234,7 @@ ph_elemtyp_tests =
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testCase "ist_obermenge: phETMenge_1 phETMenge_4" $
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ist_obermenge phETMenge_1 phETMenge_4 @?= False-}
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]
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ph_elemtyp'_tests :: TestTree
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ph_elemtyp'_tests =
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testGroup
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