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8a3c1847ee
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e0c8405e4b
1 changed files with 15 additions and 46 deletions
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@ -6,7 +6,7 @@ import os, sys, termios, tty, time, random
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from math import sin, cos, tan, sqrt
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from math import sin, cos, tan, sqrt
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from time import sleep
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from time import sleep
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######################################################
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def berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe):
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def berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe):
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x = 0
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x = 0
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y = x**2
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y = x**2
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@ -17,7 +17,6 @@ def berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigk
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jupiter = 24
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jupiter = 24
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gravitation = erde
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gravitation = erde
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startwinkel = startwinkel * deg2rad
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startwinkel = startwinkel * deg2rad
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cowlength = len(cow) + 1
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# Calculate time of flight
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# Calculate time of flight
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flugdauer = startgeschwindigkeit * sin(startwinkel) / gravitation
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flugdauer = startgeschwindigkeit * sin(startwinkel) / gravitation
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@ -39,63 +38,33 @@ def berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigk
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y = (-(gravitation / (2 * startgeschwindigkeit**2 * cos(startwinkel) ** 2)) * x**2) + (tan(startwinkel) * x + starthoehe)
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y = (-(gravitation / (2 * startgeschwindigkeit**2 * cos(startwinkel) ** 2)) * x**2) + (tan(startwinkel) * x + starthoehe)
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# Ensure, that nothing has to be drawn outside the viewport
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# Ensure, that nothing has to be drawn outside the viewport
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if y <= ymax and y >= ymin:
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if y < ymax and y > ymin:
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# Stash awa the coordinates into scala, which will be returned
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# Stash awa the coordinates into scala, which will be returned
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scala += [x, int((y * 100 + 50) / 100)]
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scala += [x, int(y * 10 + 5) / 10]
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else:
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else:
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scala += [0, 0]
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scala += [x, 0]
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xold = x
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xold = x
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return scala
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return scala
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######################################################
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# berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe):
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# berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe):
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# set position of cursor
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def curpos(x, y):
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print("\033[%d;%dH" % (ymax - y, x), end="", flush=True)
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cow = "🦝"
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# Randomly choose a cow
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cowlength = len(cow)
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cows = "🐵🐒🦍🦧🐕🐯🦝🐩🐅🐴🐎🦄🦌🐗🐂🐃🐄🐪🐫🦙🦒🐹🦘🦡🐧🕊️ 🦅🦆🦉🐍🦎🐊🦜🦚🦩🐲🐉🦕"
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xmax = 157
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cowlistlength = len(cows)
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ymax = 38
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cow = cows[random.randint(0, cowlistlength - 1)]
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ymin = 0
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xmin = 0
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xold = xmin
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# pi is not defined by default
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# pi is not defined by default
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pi = 3.1416
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pi = 3.1416
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deg2rad = pi / 180
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deg2rad = pi / 180
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# Needed: find our screensize. We are in textmode here
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termsize_xy = os.get_terminal_size()
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### I m p o r t a n t p a r a m e t e r s ###
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# X-Resolution of the display
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xmax = termsize_xy[0] - 1
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xsteps = xmax
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xsteps = xmax
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ymax = termsize_xy[1]
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wurfweite = 0
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ymin = 0
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startwinkel = 34
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xmin = 0
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startgeschwindigkeit = 23
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startwinkel = 34
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startgeschwindigkeit = 31
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starthoehe = 0
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starthoehe = 0
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###
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print(berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe))
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# needed for erasing ol position
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xold = xmin
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yold = ymin
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x = xmin
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y = xmin
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# Call the function, which calculates the coordinates)
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ergebnis = berechneflugbahn(cow, xmin, xmax, ymin, ymax, startwinkel, startgeschwindigkeit, starthoehe)
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# here we draw the cow
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for count in range(xmin, len(ergebnis), 2):
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xold, yold = x, y
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x, y = ergebnis[count], ergebnis[count + 1]
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curpos(x, y)
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print(cow, end="")
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curpos(xold, yold)
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bla = input("CR please...")
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