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https://github.com/DeaDvey/mathgenerator.git
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Update mathgen.py
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58
mathgen.py
58
mathgen.py
@@ -1,32 +1,32 @@
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import random
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genList =[]
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class Generator:
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def __init__(self, title, id, generalProb, generalSol, func):
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self.title = title
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self.id = id
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self.generalProb = generalProb
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self.generalSol = generalSol
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self.func = func
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genList.append([id, title, self])
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def __str__(self):
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return str(self.id) + " " + self.title + " " + self.generalProb + " " + self.generalSol
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def __call__(self, **kwargs):
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return self.func(**kwargs)
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# import random
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# genList =[]
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# class Generator:
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# def __init__(self, title, id, generalProb, generalSol, func):
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# self.title = title
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# self.id = id
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# self.generalProb = generalProb
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# self.generalSol = generalSol
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# self.func = func
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# genList.append([id, title, self])
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# def __str__(self):
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# return str(self.id) + " " + self.title + " " + self.generalProb + " " + self.generalSol
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# def __call__(self, **kwargs):
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# return self.func(**kwargs)
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def isprime(max_a =100):
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a =random.randint(2,max_a)
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problem =a
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if a == 2:
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solution = True
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return problem,solution
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if a % 2 == 0:
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solution = False
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return problem,solution
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for i in range(3, a // 2 + 1, 2):
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if a % i == 0:
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solution = False
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return problem, solution
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solution = True
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return problem, solution
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# def isprime(max_a =100):
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# a =random.randint(2,max_a)
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# problem =a
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# if a == 2:
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# solution = True
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# return problem,solution
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# if a % 2 == 0:
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# solution = False
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# return problem,solution
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# for i in range(3, a // 2 + 1, 2):
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# if a % i == 0:
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# solution = False
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# return problem, solution
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# solution = True
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# return problem, solution
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is_prime = Generator("isprime", 61, "a any positive integer", "True/False", isprime())
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