Example #1
0
def test_module():

    print("***** Geometry Calculator *****\n", '### menu ###\n',
          'p - perimeter\n', 'a - area\n', 'v - volume\n', 'b - busbar\n',
          'pytha - pythagorean theorem\n')

    user_menu = str(input())

    if user_menu == 'p':

        import perimeter as p

        print(
            "### perimeter - shape ###\nYou can type\nsquare, rectangle, circle, triangle, parrelleogram, circular sector, trapezoid\n"
        )

        shape = str(input())

        if shape == 'square':

            print("type - s")
            s = int(input())
            print(p.square(s))

        elif shape == 'rectangle':

            print("type - a, b")
            a = int(input())
            b = int(input())
            print(p.rectangle(a, b))

        elif shape == 'circle':

            print("type - r")
            r = int(input())
            print(p.circle(r))

        elif shape == 'triangle':

            print("type - a, b, c")
            a = int(input())
            b = int(input())
            c = int(input())
            print(p.triangle(a, b, c))

        elif shape == 'parallelogram':

            print("type - a, b")
            a = int(input())
            b = int(input())
            print(p.parallelogram(a, b))

        elif shape == 'circular sector':

            print("type - r, seta")
            r = int(input())
            seta = int(input())
            print(p.circular_sector(r, seta))

        elif shape == 'trapezoid':

            print("type - a, b, c, d")
            a = int(input())
            b = int(input())
            c = int(input())
            d = int(input())
            print(p.trapezoid(a, b, c, d))

    elif user_menu == 'a':

        import area as ar

        print(
            "### area - shape ###\nYou can type\nsquare, rectangle, circle, triangle, parallelogram, circular sector, circular ring, trapezoid, rectangular box, right circular cone, cube, cylinder\n"
        )

        shape = str(input())

        if shape == 'square':

            print("type - s")
            s = int(input())
            print(ar.square(s))

        elif shape == 'rectangle':

            print("type - a, b")
            a = int(input())
            b = int(input())
            print(ar.rectangle(a, b))

        elif shape == 'circle':

            print("type - r")
            r = int(input())
            print(ar.circle(r))

        elif shape == 'triangle':

            print("type - b, h")
            b = int(input())
            h = int(input())
            print(ar.triangle(b, h))

        elif shape == 'parallelogram':

            print("type - b, h")
            b = int(input())
            h = int(input())
            print(ar.parallelogram(b, h))

        elif shape == 'circular sector':

            print("type - r, seta")
            r = int(input())
            seta = int(input())
            print(ar.circular_sector(r, seta))

        elif shape == 'circular ring':

            print("type - R, r")
            R = int(input())
            r = int(input())
            print(ar.circular_ring(R, r))

        elif shape == 'trapezoid':

            print("type - h, a, b")
            h = int(input())
            a = int(input())
            b = int(input())
            print(ar.trapezoid(h, a, b))

        elif shape == 'rectangular box':

            print("type - a, b, c")
            a = int(input())
            b = int(input())
            c = int(input())
            print(ar.rectangular_box(a, b, c))

        elif shape == 'right circular cone':

            print("type - r, s")
            r = int(input())
            s = int(input())
            print(ar.right_circular_cone(r, s))

        elif shape == 'cube':

            print("type - l")
            l = int(input())
            print(ar.cube(l))

        elif shape == 'cylinder':

            print("type - r, h")
            r = int(input())
            h = int(input())
            print(ar.cylinder(r, h))

    elif user_menu == 'v':

        import volume as v

        print(
            "### volume - shape ###\nYou can type\nsphere, rectangular box, right circular cone, cube, cylinder, frustum of a cone\n"
        )

        shape = str(input())

        if shape == 'sphere':

            print("type - r")
            r = int(input())
            print(v.sphere(r))

        elif shape == 'rectangular box':

            print("type - a, b, c")
            a = int(input())
            b = int(input())
            c = int(input())
            print(v.rectangular_box(a, b, c))

        elif shape == 'right circular cone':

            print("type - r, h")
            r = int(input())
            h = int(input())
            print(v.right_circular_cone(r, h))

        elif shape == 'cube':

            print("type - l")
            l = int(input())
            print(v.cube(l))

        elif shape == 'cylinder':

            print("type - r, h")
            r = int(input())
            h = int(input())
            print(v.cyliner(r, h))

        elif shape == 'frustum of a cone':

            print("type - r, R, h")
            r = int(input())
            R = int(input())
            h = int(input())
            print(v.frustum_of_a_cone(r, R, h))

    elif user_menu == 'pytha':

        import pythagorean as pytha

        print(
            "### pythagorean - shape ###\nYou can type\npythagorean theorem\n")

        shape = str(input())

        if shape == 'pythagorean theorem':

            print("type - a, b")
            a = int(input())
            b = int(input())
            print(pytha.pythagorean_theorem(a, b))

    elif user_menu == 'b':

        import busbar as bb

        print("### busbar - shape ###\nYou can type\nright circular cone\n")

        shape = str(input())

        if shape == 'right circular cone':

            print("type - r, h")
            r = int(input())
            h = int(input())
            print(bb.right_circular_cone(r, h))
Example #2
0
def main():
    circle(5)
    square(5)
    rectangle(10, 2)
    traingle(5, 4)
    """c(5)
Example #3
0
#!/usr/local/bin/python

import area

print('Area of circle, radius 10 =', area.circle(10))
Example #4
0
from area import square,rectangle,triangle,circle
square(10)
rectangle(2,5)
circle(4)
triangle(2,4)

list1=[101,981,'abcd','xyz','m','aman']
list2=['aman','shekhar',100.45,98.2]
list3=[101,981,'abcd','xyz','m',6]
print cmp(list1,list2)
print cmp(list2,list1)
Example #5
0
def main():
    x = float(input('원의 지름을 입력해 주세요: '))
    print('지름이 {}인 원의 면적은 {}입니다.\n'.format(x, area.circle(x)))

    y = float(input('정사각형의 변의 길이를 입력해 주세요: '))
    print('변의 길이가 {}인 정사각형의 면적은 {}입니다.'.format(y, area.square(y)))
Example #6
0
    return math.sqrt(p * (p - a) * (p - b) * (p - c))


def rect(w, h):
    """
    求矩形的面积
    w: 矩形的宽
    h: 矩形的高
    return: 面积
    """
    return w * h


def trape(top, bottom, h):
    """
    求矩形的面积
    top: 梯形的上底
    bottom: 梯形的下底
    h: 梯形的高
    return: 面积
    """
    return (top + bottom) * h / 2


if __name__ == "__main__":
    import area
    print('半径为5的圆面积:', area.circle(5))
    print('三边为3,4,5的三角形面积:', area.triangle(3, 4, 5))
    print('宽为5,高为10的矩形面积:', area.rect(5, 10))
    print('上底为5,下底为10, 高为8的梯形面积:', area.trape(5, 10, 8))
import strutility as st
import area
import packages.mdiv as md
lst = list([])

for i in range(2):
    suls = list([])
    for j in range(2):
        data = eval(input("Enter The Employee ID and Name"))
        suls.append(data)
    lst.append(suls)

size = 0
lst1 = []
lst = ["james", "anna", "king", "smith", "kimberlee"]
for i in lst:
    size = len(i)
    lst1.append(size)
print(lst1)

area.triangle(2, 2)
area.circle(34)
area.cube(32)
area.cylinder(34, 56)
st.concat("devesf", "bhushan")
st.length("devesf", "bhushan")
st.upperlowerpro("devesf", "bhushan")
md.division(12, 8)
Example #8
0
        print("type - a : width / b : height")
        s = int(input("s :"))
        print(ar.square(s))

    elif shape == 'rectangle':

        print("type - a : width / b : height")
        a = int(input("a :"))
        b = int(input("b :"))
        print(ar.rectangle(a, b))

    elif shape == 'circle':

        print("type - r : radius")
        r = int(input("r :"))
        print(ar.circle(r))

    elif shape == 'triangle':

        print("type - b : base / h : height")
        b = int(input("b :"))
        h = int(input("h :"))
        print(ar.triangle(b, h))

    elif shape == 'parallelogram':

        print("type - b : base / h : height")
        b = int(input("b :"))
        h = int(input("h :"))
        print(ar.parallelogram(b, h))
Example #9
0
from area import circle, square

circle(10)  # 314.0
square(5)  # 25
Example #10
0
import area

print('Area of rectangle of 2:1 is ', end='')
print(area.rectangle(2, 1))

print('Area of Circle of radius 3 is ', end='')
print(area.circle(3))

print('Area of triangle with base 4 and height 5 is ', end='')
print(area.triangle(4, 5))

print('Surface area of sphere with radius 7 is ', end='')
print(area.sphere(7))
Example #11
0
 def test_area(self):
     self.assertEqual(triangle(3,2),3.0)
     self.assertEqual(rectangle(2,3),6.0)
     self.assertEqual(circle(5),78.53981633974483)
     self.assertEqual(square(4),16)