added Zylinder (Aufgabe 1.1. 1 - 3)

This commit is contained in:
Patrice Matz 2017-10-19 22:02:23 +02:00
parent 4428772c64
commit 443e5f5f74
3 changed files with 392 additions and 0 deletions

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#include "stdafx.h"
#include <iostream>
#include <vector>
using namespace std;
void Zylinder();
long double Kreis_flacheninhalt(long double);
long double Zylinder_volumen(vector<long double>, vector<long double>);
long double Zylinder_masse(vector<long double>, vector<long double>, vector<long double>);
long double Zylinder_widerstand(vector<long double>, vector<long double>, vector<long double>);
int main()
{
char auswahl = 'a';
while(auswahl != 'e')
{
cout << "Was wollen Sie tun ?" << endl;
cout << "1 Berechungen an einem Zylinder" << endl;
cout << "e Beenden" << endl;
cin >> auswahl;
switch(auswahl)
{
case '1': Zylinder(); break;
default: cout << "Okay, bye"; break;
}
}
return 0;
}
void Zylinder()
{
vector<long double> zylinder_lange;
vector<long double> zylinder_durchmesser;
vector<long double> zylinder_dichte;
vector<long double> zylinder_widerstand;
char auswahl = 'j';
long double teil_lange;
long double teil_durchmesser;
long double teil_dichte;
long double teil_widerstand;
//Eingabe der Daten
while (auswahl == 'j')
{
//Reset der Variablen für den Durchlauf
teil_lange = 0;
teil_durchmesser = 0;
teil_dichte = 0;
teil_widerstand = 0;
cout << "Definieren Sie die Teilabschnitte des Zylinders" << endl;
cout << "Laenge: "; cin >> teil_lange; zylinder_lange.push_back(teil_lange);
cout << endl << "Durchmesser in mm: "; cin >> teil_durchmesser; zylinder_durchmesser.push_back(teil_durchmesser);
cout << endl << "Dichte in g/mm^3: "; cin >> teil_dichte; zylinder_dichte.push_back(teil_dichte);
cout << endl << "Spezifischer Widerstand in ohm * (mm^2) / m: "; cin >> teil_widerstand; zylinder_widerstand.push_back(teil_widerstand);
cout << "Gibt es weitere Teilbereiche? j/n "; cin >> auswahl;
}
auswahl = 'j';
//Berechungen
while(auswahl=='j')
{
cout << "Was wollen Sie berechnen?" << endl;
cout << "Volumen" << "\t" << "1" << endl;
cout << "Masse" << "\t" << "2" << endl;
cout << "Elektrischer Widerstand" << "\t" << "3" << endl;
cin >> auswahl;
switch (auswahl)
{
case '1': cout << Zylinder_volumen(zylinder_lange, zylinder_durchmesser) << " mm^3" << endl; break;
case '2': cout << Zylinder_masse(zylinder_lange, zylinder_durchmesser, zylinder_dichte) << " g" << endl; break;
case '3': cout << Zylinder_widerstand(zylinder_lange, zylinder_durchmesser, zylinder_dichte) << " ohm" << endl; break;
default: cout << "Okay, bye"; break;
}
cout << "Wollen Sie fortfahren? j/n "; cin >> auswahl;
}
}
long double Kreis_flacheninhalt(long double durchmesser)
{
return (durchmesser / 2)*(durchmesser / 2) * 3.14159265359;
}
long double Zylinder_volumen(vector<long double> langen, vector<long double> durchmesser)
{
long double Volumen = 0;
for(int i = 0; langen.size() != i; i++)
{
Volumen = Volumen + langen[i] * Kreis_flacheninhalt(durchmesser[i]);
}
return Volumen;
}
long double Zylinder_masse(vector<long double> langen, vector<long double> durchmesser, vector<long double> dichten)
{
long double masse = 0;
for (int i = 0; langen.size() != i; i++)
{
masse = masse + langen[i] * Kreis_flacheninhalt(durchmesser[i]) * dichten[i];
}
return masse;
}
long double Zylinder_widerstand(vector<long double> langen, vector<long double> durchmesser, vector<long double> widerstande)
{
long double widerstand = 0;
for (int i = 0; langen.size() != i; i++)
{
widerstand = widerstand + langen[i]* 1000 * Kreis_flacheninhalt(durchmesser[i]) * widerstande[i];
}
return widerstand;
}