A.2.1

Finished
11class SpaceAge:
2 """
3 A class to calculate the age of a person on different planets in our Solar System.
4
5 The age is calculated based on the number of seconds passed since birth.
6 Each method returns the age on a specific planet, rounded to two decimal places.
7
8 Args:
9 seconds (int): The age in seconds.
10 """
11
12 # Earth year in seconds
13 EARTH_YEAR_SECONDS = 31557600
14
15 # Orbital periods in Earth years
16 ORBITAL_PERIODS = {
17 'mercury': 0.2408467,
18 'venus': 0.61519726,
19 'earth': 1.0,
20 'mars': 1.8808158,
21 'jupiter': 11.862615,
22 'saturn': 29.447498,
23 'uranus': 84.016846,
24 'neptune': 164.79132
25 }
26
227 def __init__(self, seconds: int) -> None:
3 pass
28 """
29 Initialize the SpaceAge class with the given number of seconds.
30
31 Args:
32 seconds (int): The age in seconds.
33 """
34 # Edge Case: Negative seconds input
35 if seconds < 0:
36 raise ValueError("Seconds cannot be negative")
37
38 self.seconds = seconds
39 self.earth_years = seconds / self.EARTH_YEAR_SECONDS
40
41 def on_mercury(self) -> float:
42 """
43 Calculate the age on Mercury.
44
45 Returns:
46 float: The age on Mercury, rounded to two decimal places.
47 """
48 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['mercury']
49 return round(age_on_planet, 2)
50
51 def on_venus(self) -> float:
52 """
53 Calculate the age on Venus.
54
55 Returns:
56 float: The age on Venus, rounded to two decimal places.
57 """
58 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['venus']
59 return round(age_on_planet, 2)
60
61 def on_earth(self) -> float:
62 """
63 Calculate the age on Earth.
64
65 Returns:
66 float: The age on Earth, rounded to two decimal places.
67 """
68 # Edge Case: Zero seconds input
69 if self.seconds == 0:
70 return 0.0
71
72 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['earth']
73 return round(age_on_planet, 2)
74
75 def on_mars(self) -> float:
76 """
77 Calculate the age on Mars.
78
79 Returns:
80 float: The age on Mars, rounded to two decimal places.
81 """
82 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['mars']
83 return round(age_on_planet, 2)
84
85 def on_jupiter(self) -> float:
86 """
87 Calculate the age on Jupiter.
88
89 Returns:
90 float: The age on Jupiter, rounded to two decimal places.
91 """
92 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['jupiter']
93 return round(age_on_planet, 2)
94
95 def on_saturn(self) -> float:
96 """
97 Calculate the age on Saturn.
98
99 Returns:
100 float: The age on Saturn, rounded to two decimal places.
101 """
102 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['saturn']
103 return round(age_on_planet, 2)
104
105 def on_uranus(self) -> float:
106 """
107 Calculate the age on Uranus.
108
109 Returns:
110 float: The age on Uranus, rounded to two decimal places.
111 """
112 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['uranus']
113 return round(age_on_planet, 2)
114
115 def on_neptune(self) -> float:
116 """
117 Calculate the age on Neptune.
118
119 Returns:
120 float: The age on Neptune, rounded to two decimal places.
121 """
122 age_on_planet = self.earth_years / self.ORBITAL_PERIODS['neptune']
123 return round(age_on_planet, 2)
124
125 # Handled Edge Cases: Negative seconds input, Zero seconds input
Test NameStatus
test_age_on_earth
Pass
test_age_on_jupiter
Pass
test_age_on_mars
Pass
test_age_on_mercury
Pass
test_age_on_neptune
Pass
test_age_on_saturn
Pass
test_age_on_uranus
Pass
test_age_on_venus
Pass

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