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solve <- function(n) { | |
result <- largeSubtract(largeAdd(sumMultiple(n, 3), sumMultiple(n, 5)), sumMultiple(n, 15)) | |
} | |
right <- function (string, char){ | |
substr(string,nchar(string)-(char-1),nchar(string)) | |
} | |
left <- function (string,char){ | |
substr(string,1,char) |
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def sumMultiple(n, k): | |
n -= n % k | |
return (n + k) * int(n / k) >> 1 | |
def solve(N): | |
result = sumMultiple(N, 3) + sumMultiple(N, 5) - sumMultiple(N, 15) | |
return result | |
T = int(input()) |
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cache = {} | |
def calc(n, blank): | |
if blank < 0: | |
return 0; | |
if blank in cache: | |
return cache[blank]; | |
value = 1 |
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import numpy as np | |
def solve(): | |
mat = [[np.inf] * 100 for _ in range(100)] | |
for i in range(100): | |
mat[i][i] = 0 | |
n, m, k = [int(x) for x in input().split()] | |
s = [0] * (k+2) |
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import numpy as np | |
def solve(): | |
mat = [[np.inf] * 100 for _ in range(100)] | |
for i in range(100): | |
mat[i][i] = 0 | |
n, m, k = [int(x) for x in input().split()] | |
s = [0] * (k+2) |
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t = int(input()) | |
x = [[0] * 100 for _ in range(200)] | |
def solve(): | |
(n, r) = map(lambda x: int(x), input().split()) | |
x = [0] * n | |
y = [0] * n | |
sol = [set() for _ in range(n*n)] |
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def solve(): | |
(n, m) = map(lambda x: int(x), input().split()) | |
now = []; | |
cost = 0 | |
for i in range(n): | |
c = list(map(lambda x: int(x), input().split())) | |
c.sort() | |
count = 0 | |
for x in c: | |
count += 1 |