mirror of
https://github.com/DeaDvey/mathgenerator.git
synced 2025-11-28 06:25:23 +01:00
Added latex and cleaned wording on all basic_math generators
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@@ -1,14 +1,17 @@
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from .__init__ import *
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def absoluteDifferenceFunc(maxA=100, maxB=100):
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def absoluteDifferenceFunc(maxA=100, maxB=100, style='raw'):
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a = random.randint(-1 * maxA, maxA)
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b = random.randint(-1 * maxB, maxB)
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absDiff = abs(a - b)
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problem = "Absolute difference between numbers " + \
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str(a) + " and " + str(b) + " = "
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solution = absDiff
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if style == 'latex':
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problem = "\\(|" + str(a) + "-" + str(b) + "|=\\)"
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solution = f"\\({absDiff}\\)"
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else:
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problem = "|" + str(a) + "-" + str(b) + "|="
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solution = absDiff
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return problem, solution
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@@ -1,7 +1,7 @@
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from .__init__ import *
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def compareFractionsFunc(maxVal=10):
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def compareFractionsFunc(maxVal=10, style='raw'):
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a = random.randint(1, maxVal)
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b = random.randint(1, maxVal)
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c = random.randint(1, maxVal)
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@@ -21,8 +21,11 @@ def compareFractionsFunc(maxVal=10):
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solution = "<"
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else:
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solution = "="
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problem = f"Which symbol represents the comparison between {a}/{b} and {c}/{d}?"
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if style == 'latex':
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problem = f"Which symbol represents the comparison between \\(\\frac{{{a}}}{{{b}}}\\) and \\(\\frac{{{c}}}{{{d}}}\\)?"
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else:
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problem = f"Which symbol represents the comparison between {a}/{b} and {c}/{d}?"
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return problem, solution
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@@ -1,12 +1,16 @@
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from .__init__ import *
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def cubeRootFunc(minNo=1, maxNo=1000):
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def cubeRootFunc(minNo=1, maxNo=1000, style='raw'):
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b = random.randint(minNo, maxNo)
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a = b**(1 / 3)
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problem = "cuberoot of " + str(b) + " upto 2 decimal places is:"
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solution = str(round(a, 2))
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if style == 'latex':
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problem = f"\\(\\sqrt[3]{{{b}}}=\\)"
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solution = "\\(" + str(round(a, 2)) + "\\)"
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else:
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problem = "What is the cube root of " + str(b) + " up to 2 decimal places?"
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solution = str(round(a, 2))
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return problem, solution
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@@ -1,12 +1,16 @@
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from .__init__ import *
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def exponentiationFunc(maxBase=20, maxExpo=10):
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def exponentiationFunc(maxBase=20, maxExpo=10, style='raw'):
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base = random.randint(1, maxBase)
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expo = random.randint(1, maxExpo)
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problem = f"{base}^{expo} ="
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solution = str(base**expo)
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if style == 'latex':
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problem = f"\\({base}^{{{expo}}}\\)"
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solution = "\\(" + str(base**expo) + "\\)"
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else:
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problem = f"{base}^{expo} ="
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solution = str(base**expo)
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return problem, solution
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@@ -3,18 +3,18 @@ from .__init__ import *
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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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problem = f"Is {a} prime?"
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if a == 2:
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solution = True
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solution = "Yes"
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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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solution = "No"
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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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solution = "No"
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return (problem, solution)
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solution = True
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solution = "Yes"
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return (problem, solution)
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@@ -7,7 +7,7 @@ def percentageFunc(maxValue=99, maxpercentage=99):
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problem = f"What is {a}% of {b}?"
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percentage = a / 100 * b
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formatted_float = "{:.2f}".format(percentage)
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solution = f"Required percentage = {formatted_float}%"
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solution = f"{formatted_float}"
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return problem, solution
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@@ -1,16 +1,18 @@
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from .__init__ import *
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def powerOfPowersFunc(maxBase=50, maxPower=10):
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def powerOfPowersFunc(maxBase=50, maxPower=10, style='raw'):
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base = random.randint(1, maxBase)
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power1 = random.randint(1, maxPower)
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power2 = random.randint(1, maxPower)
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step = power1 * power2
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problem = "The {base}^{power1}^{power2} = ".format(base=base,
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power1=power1,
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power2=power2)
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solution = str(base) + '^' + str(step)
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if style == 'latex':
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problem = "Simplify \\(" + str(base) + "^{" + str(power1) + "^{" + str(power2) + "}}\\)"
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solution = f"\\({base}^{{{step}}}\\)"
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else:
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problem = f"Simplify {base}^{power1}^{power2}="
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solution = str(base) + '^' + str(step)
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return problem, solution
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