92 lines
2.5 KiB
Matlab
92 lines
2.5 KiB
Matlab
% Angewandte Numerik 1, SoSe 2022
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% Uebungsblatt 01, Aufgabe 02: Darstellung natuerlicher Zahlen
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%
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% Testprogramm fuer die Funktion a = convert2basis(n, b)
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%
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% Letzte Aenderung: 22.04.2022
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%% Initialisierung
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clearvars;
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close all;
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clc;
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fprintf('\n');
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fprintf('Angewandte Numerik 1, Sommersemester 2022\n');
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fprintf('Uebungsblatt 1, Aufgabe 02: Darstellung natuerlicher Zahlen\n');
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fprintf('\n');
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%% Definition und Durchfuehrung der Testfaelle
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testfall = 0;
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while true % alle Testfaelle untersuchen
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testfall = testfall + 1; % naechster Testfall
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%% alle Testfaelle definieren
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switch testfall
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case 1 % Testfall 1: b = 2, n = 30
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b = 2;
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n = 30;
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a = [1 1 1 1 0];
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case 2 % Testfall 2: b = 2, n = 31
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b = 2;
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n = 31;
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a = [1 1 1 1 1];
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case 3 % Testfall 3: b = 2, n = 32
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b = 2;
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n = 32;
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a = [1 0 0 0 0 0];
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case 4 % Testfall 4: b = 2, n = 33
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b = 2;
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n = 33;
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a = [1 0 0 0 0 1];
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case 5 % Testfall 5: b = 2, n = 42
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b = 2;
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n = 42;
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a = [1 0 1 0 1 0];
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case 6 % Testfall 6: b = 2, n = 134110
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b = 2;
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n = 134110;
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a = [1 0 0 0 0 0 1 0 1 1 1 1 0 1 1 1 1 0];
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case 7 % Testfall 7: b = 8, n = 27
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b = 8;
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n = 27;
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a = [3 3];
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case 8 % Testfall 8: b = 8, n = 3652
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b = 8;
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n = 3652;
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a = [7 1 0 4];
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case 9 % Testfall 9: b = 8, n = 46807
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b = 8;
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n = 46807;
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a = [1 3 3 3 2 7];
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case 10 % Testfall 10: b = 10, n = 3121
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b = 10;
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n = 3121;
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a = [3 1 2 1];
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case 11 % Testfall 11: b = 10, n = 192310030133
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b = 10;
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n = 192310030133;
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a = [1 9 2 3 1 0 0 3 0 1 3 3];
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otherwise
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break; % keine Testfaelle mehr vorhanden
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end
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%% Testfall durchfuehren und Ergebnis ausgeben
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spezString = 'Testfall %2d (b = %2d, n = %12d): %s.\n';
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if max(abs(a - convert2basis(n, b))) == 0
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fprintf(spezString, testfall, b, n, 'Bestanden');
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else
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fprintf(2, spezString, testfall, b, n, 'Fehlgeschlagen')
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end
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end
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