2025 CUMT 中国矿业大学 Python 编程实践 代码题解
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@[TOC]
Practice2
Practice2\1.py
1 | str = input() |
Practice2\10.py
1 | votes = [4, 7, 8, 1, 2, 2, 6, 2, 2, 1, 6, 8, 7, 4, 5, 5, 5, 8, 5, 5, 4, 2, 2, 6, 4] |
Practice2\11.py
1 | grades = {'J01':88,'J02':60,'J03':80,'J04':96,'J05':86,'J06':75,'J07':76,'J08':82} |
Practice2\12.py
1 | month_days = {1:31, 2:28, 3:31, 4:30, 5:31, 6:30, 7:31, 8:31, 9:30, 10:31, 11:30, 12:31} |
Practice2\2.py
1 | temp = float(input()) |
Practice2\3.py
1 | rate, base, year = input().split(',') |
Practice2\4.py
1 | input = input() |
Practice2\5.py
1 | input = input() |
Practice2\6.py
1 | input = input() |
Practice2\7.py
1 | input_str = list(input()) |
Practice2\8.py
1 | # scores = [] |
Practice2\9.py
1 | scores = eval(input()) |
Practice3
Practice3\1.py
1 | x1, y1, x2, y2 = map(float, input().split(',')) |
Practice3\10.py
1 | m1 = int(input()) |
Practice3\2.py
1 | pi = 3.14 |
Practice3\3.py
1 | n = int(input()) |
Practice3\4.py
1 | w = float(input()) |
Practice3\5.py
1 | salary = int(input()) |
Practice3\6.py
1 | a, b, c = map(float, input().split(',')) |
Practice3\7.py
1 | M = int(input()) |
Practice3\8.py
1 | year = int(input()) |
Practice3\9.py
1 | a, b, c = map(float, input().split(',')) |
Practice4
Practice4\1.py
1 | num = int(input()) |
Practice4\10.py
1 | for A in range(1, 10): |
Practice4\11.py
1 | M = int(input()) |
Practice4\12.py
1 | M = int(input()) |
Practice4\13.py
1 | eps = float(input()) |
Practice4\14.py
1 | import math |
Practice4\15.py
1 | a = float(input()) |
Practice4\2.py
1 | N = int(input()) |
Practice4\3.py
1 | n = int(input()) |
Practice4\4.py
1 | a, b, c = eval(input()) |
Practice4\5.py
1 | n = int(input()) |
Practice4\6.py
1 | n = int(input()) |
Practice4\7.py
1 | n = int(input()) |
Practice4\8.py
1 | n = int(input()) |
Practice4\9.py
1 | import math |
Practice5
Practice5\1.py
1 | def is_odd(num): |
Practice5\10.py
1 | def isSymmetrical(lst): |
Practice5\11.py
1 | # 递推法 |
Practice5\12.py
1 | def resolve(n,x): |
Practice5\2.py
1 | def passed(score): |
Practice5\3.py
1 | def string_num(ch): |
Practice5\4.py
1 | def coprime(a, b): |
Practice5\5.py
1 | def fib(n): |
Practice5\6.py
1 | def FacSum(n): |
Practice5\7.py
1 | def huiwen(num): |
Practice5\8.py
1 | def prime(n): |
Practice5\9.py
1 | def is_prime(n): |
Practice6
Practice6\1.py
1 | class BMI: |
Practice6\2.py
1 | class Vehicle: |
Practice6\3.py
1 | class Point: |
Practice7
Practice7\1.py
1 | s = input().strip() |
Practice7\2.py
1 | n = int(input()) |
Practice7\3.py
1 | m, n, k = int(input()), int(input()), int(input()) |
Practice7\4.py
1 | nums = list(map(int, input().split(','))) |
Practice7\5.py
1 | # 1 |
Practice7\6.py
1 | n = int(input()) |
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