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https://github.com/DeaDvey/mathgenerator.git
synced 2025-11-28 14:35:23 +01:00
Merge branch 'master' into patch-2
This commit is contained in:
@@ -1,5 +1,6 @@
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import random
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import math
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import fractions
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genList = []
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@@ -419,6 +420,7 @@ def regularPolygonAngleFunc(minVal = 3,maxVal = 20):
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return problem, solution
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def combinationsFunc(maxlength=20):
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def factorial(a):
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d=1
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for i in range(a):
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@@ -427,6 +429,9 @@ def combinationsFunc(maxlength=20):
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return d
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a= random.randint(10,maxlength)
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b=random.randint(0,9)
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solution= int(factorial(a)/(factorial(b)*factorial(a-b)))
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problem= "Number of combinations from {} objects picked {} at a time ".format(a,b)
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@@ -532,6 +537,183 @@ def commonFactorsFunc(maxVal=100):
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solution = arr
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return problem, solution
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def intersectionOfTwoLinesFunc(
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minM=-10, maxM=10, minB=-10, maxB=10, minDenominator=1, maxDenominator=6
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):
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def generateEquationString(m, b):
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"""
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Generates an equation given the slope and intercept.
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It handles cases where m is fractional.
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It also ensures that we don't have weird signs such as y = mx + -b.
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"""
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if m[1] == 1:
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m = m[0]
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else:
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m = f"{m[0]}/{m[1]}"
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base = f"y = {m}x"
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if b > 0:
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return f"{base} + {b}"
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elif b < 0:
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return f"{base} - {b * -1}"
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else:
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return base
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def fractionToString(x):
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"""
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Converts the given fractions.Fraction into a string.
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"""
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if x.denominator == 1:
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x = x.numerator
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else:
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x = f"{x.numerator}/{x.denominator}"
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return x
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m1 = (random.randint(minM, maxM), random.randint(minDenominator, maxDenominator))
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m2 = (random.randint(minM, maxM), random.randint(minDenominator, maxDenominator))
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b1 = random.randint(minB, maxB)
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b2 = random.randint(minB, maxB)
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equation1 = generateEquationString(m1, b1)
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equation2 = generateEquationString(m2, b2)
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problem = "Find the point of intersection of the two lines: "
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problem += f"{equation1} and {equation2}"
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m1 = fractions.Fraction(*m1)
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m2 = fractions.Fraction(*m2)
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# if m1 == m2 then the slopes are equal
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# This can happen if both line are the same
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# Or if they are parallel
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# In either case there is no intersection
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if m1 == m2:
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solution = "No Solution"
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else:
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intersection_x = (b1 - b2) / (m2 - m1)
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intersection_y = ((m2 * b1) - (m1 * b2)) / (m2 - m1)
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solution = f"({fractionToString(intersection_x)}, {fractionToString(intersection_y)})"
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return problem, solution
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def permutationFunc(maxlength=20):
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a = random.randint(10,maxlength)
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b = random.randint(0,9)
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solution= int(math.factorial(a)/(math.factorial(a-b)))
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problem= "Number of Permutations from {} objects picked {} at a time = ".format(a,b)
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return problem, solution
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def vectorCrossFunc(minVal=-20, maxVal=20):
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a = [random.randint(minVal, maxVal) for i in range(3)]
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b = [random.randint(minVal, maxVal) for i in range(3)]
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c = [a[1]*b[2] - a[2]*b[1],
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a[2]*b[0] - a[0]*b[2],
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a[0]*b[1] - a[1]*b[0]]
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return str(a) + " X " + str(b) + " = ", str(c)
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def compareFractionsFunc(maxVal=10):
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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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d = random.randint(1, maxVal)
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while (a == b):
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b = random.randint(1, maxVal)
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while (c == d):
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d = random.randint(1, maxVal)
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first=a/b
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second=c/d
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if(first>second):
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solution=">"
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elif(first<second):
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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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return problem,solution
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def simpleInterestFunc(maxPrinciple = 10000, maxRate = 10, maxTime = 10):
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a = random.randint(1000, maxPrinciple)
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b = random.randint(1, maxRate)
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c = random.randint(1, maxTime)
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d = (a*b*c)/100
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problem = "Simple interest for a principle amount of " + str(a) +" dollars, " + str(b) + "% rate of interest and for a time period of " + str(c) + " years is = "
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solution = round(d, 2)
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return problem, solution
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def matrixMultiplicationFunc(maxVal=100):
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m= random.randint(2, 10)
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n= random.randint(2, 10)
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k= random.randint(2, 10)
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#generate matrices a and b
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a=[]
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for r in range(m):
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a.append([])
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for c in range(n):
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a[r].append(random.randint(-maxVal,maxVal))
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b=[]
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for r in range(n):
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b.append([])
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for c in range(k):
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b[r].append(random.randint(-maxVal, maxVal))
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res= []
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a_string= matrixMultiplicationFuncHelper(a)
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b_string= matrixMultiplicationFuncHelper(b)
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for r in range(m):
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res.append([])
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for c in range(k):
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temp= 0
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for t in range(n):
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temp+=a[r][t]*b[t][c]
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res[r].append(temp)
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problem= f"Multiply \n{a_string}\n and \n\n{b_string}" #consider using a, b instead of a_string, b_string if the problem doesn't look right
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solution= matrixMultiplicationFuncHelper(res)
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return problem, solution
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def matrixMultiplicationFuncHelper(inp):
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m= len(inp)
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n= len(inp[0])
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string= ""
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for i in range(m):
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for j in range(n):
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string+=f"{inp[i][j]: 6d}"
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string+=" "
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string+="\n"
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return string
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def cubeRootFunc(minNo = 1, maxNo = 1000):
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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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return problem, solution
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def powerRuleIntegrationFunc(maxCoef = 10, maxExp = 10, maxTerms = 5):
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numTerms = random.randint(1, maxTerms)
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problem = ""
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solution = ""
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for i in range(numTerms):
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if i > 0:
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problem += " + "
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solution += " + "
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coefficient = random.randint(1, maxCoef)
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exponent = random.randint(1, maxExp)
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problem += str(coefficient) + "x^" + str(exponent)
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solution += "("+str(coefficient) +"/"+str(exponent) +")x^" + str(exponent +1)
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solution = solution + " + c"
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return problem, solution
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def fourthAngleOfQuadriFunc(maxAngle = 180):
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angle1 = random.randint(1, maxAngle)
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angle2 = random.randint(1, 240-angle1)
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angle3 = random.randint(1, 340-(angle1 + angle2))
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sum_ = angle1 + angle2 + angle3
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angle4 = 360 - sum_
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problem = f"Fourth angle of quadrilateral with angles {angle1} , {angle2}, {angle3} ="
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solution = angle4
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return problem, solution
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def quadraticEquation(maxVal=100):
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a = random.randint(1,maxVal)
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c = random.randint(1,maxVal)
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@@ -543,6 +725,7 @@ def quadraticEquation(maxVal=100):
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solution = str([(-b+D)/(2*a),(-b-D)/(2*a)])
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return problem,solution
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# || Class Instances
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#Format is:
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@@ -589,4 +772,13 @@ volumeCylinderGen = Generator("Volume of cylinder", 37, "Volume of cylinder with
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surfaceAreaConeGen = Generator("Surface Area of cone", 38, "Surface area of cone with height = a units and radius = b units is","c units^2", surfaceAreaCone)
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volumeConeGen = Generator("Volume of cone", 39, "Volume of cone with height = a units and radius = b units is","c units^3", volumeCone)
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commonFactors = Generator("Common Factors", 40, "Common Factors of {a} and {b} = ","[c, d, ...]",commonFactorsFunc)
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quadraticEquationSolve = Generator("Quadratic Equation", 41, "Find the zeros {x1,x2} of the quadratic equation ax^2+bx+c=0", "x1,x2", quadraticEquation)
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intersectionOfTwoLines = Generator("Intersection of Two Lines", 41, "Find the point of intersection of the two lines: y = m1*x + b1 and y = m2*x + b2", "(x, y)", intersectionOfTwoLinesFunc)
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permutations= Generator("Permutations",42, "Total permutations of 4 objects at a time from 10 objects is","5040", permutationFunc)
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vectorCross = Generator("Cross Product of 2 Vectors", 43, "a X b = ", "c", vectorCrossFunc)
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compareFractions=Generator("Compare Fractions",44,"Which symbol represents the comparison between a/b and c/d?",">/</=",compareFractionsFunc)
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simpleInterest = Generator("Simple Interest", 45, "Simple interest for a principle amount of a dollars, b% rate of interest and for a time period of c years is = ", "d dollars", simpleInterestFunc)
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matrixMultiplication = Generator("Multiplication of two matrices", 46, "Multiply two matrices A and B", "C", matrixMultiplicationFunc)
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CubeRoot = Generator("Cube Root",47,"Cuberoot of a upto 2 decimal places is","b",cubeRootFunc)
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powerRuleIntegration = Generator("Power Rule Integration", 48, "nx^m=", "(n/m)x^(m+1)", powerRuleIntegrationFunc)
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fourthAngleOfQuadrilateral = Generator("Fourth Angle of Quadrilateral",49,"Fourth angle of Quadrilateral with angles a,b,c =","angle4",fourthAngleOfQuadriFunc)
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quadraticEquationSolve = Generator("Quadratic Equation", 50, "Find the zeros {x1,x2} of the quadratic equation ax^2+bx+c=0", "x1,x2", quadraticEquation)
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