feat: introduction/serie_1.py advanced. docs: README altered. feat: requirements.txt added

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git-sandro 2026-02-24 23:09:15 +01:00
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commit 88f29d1f52
3 changed files with 84 additions and 6 deletions

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Repository for CDS-404 Numerische Methoden
Required libraries:
* numpy

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#%%
# Numpy initialisieren
import numpy as np
import matplotlib.pyplot as plt
#%%
print("Aufgabe 2")
print(f"a) {1/3}")
@ -25,5 +28,81 @@ print(f"k) {1 / np.arctan(34.1)}")
print(f"l) {np.power(np.array([np.e]), -3.34)}")
print(f"m) {np.e}")
print(f"n) {np.log(13.2)}")
print(f"o) ")
print(f"p) ")
print(f"o) {np.log10(23)}")
print(f"p) {np.log2(69.6)}")
# %%
print("Aufgabe 7")
# Parameter
a = 12.3, b = 8.14, pr = 3, ME = "cm"
# Berechnungen
c = np.sqrt(a**2+b**2)
# Ausgabe
print("----------------------------------------------------------------------")
print(__file__)
print("----------------------------------------------------------------------")
print(f"Seite a = {a:#.{pr}g} {ME}")
print(f"Seite b = {b:#.{pr}g} {ME}")
print(f"Seite c = {c:#.{pr}g} {ME}")
print("----------------------------------------------------------------------")
# %%
print("Aufgabe 7.d)")
# Parameter
a = 0.85e3; pr_a = 2; sc_a = 1.0e-3; ME_a = "km";\
b = 234; pr_b = 3; sc_b = 1.0; ME_b = "m";\
pr_c = 2; sc_c = 1.0e-3; ME_c = "km";\
# Berechnungen
c = np.sqrt(a**2+b**2)
# Ausgabe
print("----------------------------------------------------------------------")
print(__file__)
print("----------------------------------------------------------------------")
print(f"Seite a = {a*sc_a:#.{pr_a}g} {ME_a}")
print(f"Seite b = {b*sc_b:#.{pr_b}g} {ME_b}")
print(f"Seite c = {c*sc_c:#.{pr_c}g} {ME_c}")
print("----------------------------------------------------------------------")
# %%
print("Aufgabe 8")
# Python konfigurieren
plt.close("all")
plt.rcParams["figure.figsize"] = (7.03,15)
plt.rcParams["font.size"] = 9
plt.rcParams["font.family"] = "serif"
plt.rcParams["text.usetex"] = False
# Parameter
x_0 = 0
x_E = 4
N = 201
lw = 3
fig = 1
# Funktionen
def f(x):
y = 3/(1+x)
return y
def g(x):
y = x/2
return y
# Daten
x_data = np.linspace(x_0, x_E, N)
f_data = f(x_data)
g_data = g(x_data)
# pltot
fh = plt.figure(fig)
plt.plot(x_data, f_data, linewidth = lw, label = r"$f$")
plt.plot(x_data, g_data, "--", linewidth = lw, label = r"$g$")
plt.xlabel(r"$x$")
plt.ylabel(r"$y$")
plt.legend()
plt.grid(visible=True)
plt.axis("image")

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requirements.txt Normal file
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numpy
matplotlib