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| import sys | |
| from fractions import Fraction | |
| prog, name, reps, lead = sys.argv[:4] | |
| lead, reps = int(lead), int(reps) | |
| L = [Fraction(s) for s in sys.argv[4:]] | |
| L = L * reps | |
| pL = [] | |
| def add_invert(n,d): |
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| from matplotlib import pyplot as plt | |
| import sys, random | |
| N = int(sys.argv[1]) | |
| n = 100 | |
| L = list() | |
| for i in range(N): | |
| count = 0 | |
| prev = 0 |
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| from matplotlib import pyplot as plt | |
| import random | |
| N = 10000 | |
| n = 100 | |
| L = list() | |
| tL = list() | |
| v = 0 | |
| for i in range(N): |
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| from matplotlib import pyplot as plt | |
| import sys, random | |
| k = int(sys.argv[1]) | |
| N = 100000 | |
| L = list() | |
| for i in range(N): | |
| v = 0 |
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| import math, operator | |
| N = 1000 | |
| R = range(2,N) | |
| D = dict() | |
| for x in R: | |
| D[x] = x**2 | |
| def is_square(x): |
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| import math,sys | |
| try: | |
| N = int(sys.argv[1]) + 1 | |
| except: | |
| print('enter the last value') | |
| sys.exit() | |
| R = range(2,N) |
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| import math | |
| from operator import itemgetter | |
| t = math.pi | |
| N = 1000 | |
| def find_bounds(d): | |
| p = d*t | |
| m = int(p) | |
| n = m + 1 |
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| import sys, math | |
| try: | |
| r = int(sys.argv[1]) | |
| R = range(r) | |
| except: | |
| print('enter the number of cycles') | |
| sys.exit() | |
| def f(sin,cos): | |
| cot = cos/sin |
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| n = 5 | |
| s = 6 | |
| cot = 3**0.5 | |
| csc = 2 | |
| for i in range(n): | |
| Co = s/cot | |
| Ci = s/csc | |
| print(i + 1, '%3.6f' % Co, '%3.6f' % Ci) | |
| cot = cot + csc |
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| from fractions import Fraction | |
| N = 3 | |
| def f(x): | |
| h = Fraction(1,2) | |
| return h * (x + N/x) | |
| def g(x,y): | |
| return (x*y + N)/(x + y) |
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