結果
問題 | No.1141 田グリッド |
ユーザー | ntk-ta01 |
提出日時 | 2020-07-31 23:15:09 |
言語 | PyPy3 (7.3.15) |
結果 |
WA
|
実行時間 | - |
コード長 | 3,614 bytes |
コンパイル時間 | 213 ms |
コンパイル使用メモリ | 82,304 KB |
実行使用メモリ | 94,892 KB |
最終ジャッジ日時 | 2024-07-06 21:22:59 |
合計ジャッジ時間 | 11,147 ms |
ジャッジサーバーID (参考情報) |
judge1 / judge3 |
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テストケース
テストケース表示入力 | 結果 | 実行時間 実行使用メモリ |
---|---|---|
testcase_00 | AC | 32 ms
52,736 KB |
testcase_01 | AC | 31 ms
52,992 KB |
testcase_02 | AC | 33 ms
53,000 KB |
testcase_03 | AC | 36 ms
53,120 KB |
testcase_04 | AC | 36 ms
52,608 KB |
testcase_05 | AC | 33 ms
52,992 KB |
testcase_06 | AC | 33 ms
53,248 KB |
testcase_07 | AC | 33 ms
53,248 KB |
testcase_08 | AC | 72 ms
77,032 KB |
testcase_09 | AC | 64 ms
73,932 KB |
testcase_10 | AC | 69 ms
76,672 KB |
testcase_11 | AC | 62 ms
73,088 KB |
testcase_12 | AC | 77 ms
76,544 KB |
testcase_13 | AC | 345 ms
94,892 KB |
testcase_14 | AC | 402 ms
94,592 KB |
testcase_15 | AC | 327 ms
87,552 KB |
testcase_16 | AC | 325 ms
87,536 KB |
testcase_17 | AC | 334 ms
87,120 KB |
testcase_18 | AC | 479 ms
86,656 KB |
testcase_19 | AC | 465 ms
86,768 KB |
testcase_20 | AC | 445 ms
86,784 KB |
testcase_21 | AC | 325 ms
86,968 KB |
testcase_22 | AC | 330 ms
87,080 KB |
testcase_23 | AC | 333 ms
87,168 KB |
testcase_24 | WA | - |
testcase_25 | WA | - |
testcase_26 | WA | - |
testcase_27 | WA | - |
testcase_28 | WA | - |
testcase_29 | WA | - |
testcase_30 | WA | - |
testcase_31 | WA | - |
testcase_32 | WA | - |
testcase_33 | WA | - |
ソースコード
MOD = 10**9 + 7 class modint(): def __init__(self, value): self.value = value % MOD def __int__(self): return int(self.value) def __float__(self): return float(self.value) def __str__(self): return str(self.value) def __repr__(self): return str(self.value) def __add__(self, other): return (modint(self.value + other.value) if isinstance(other, modint) else modint(self.value + other)) def __sub__(self, other): return (modint(self.value - other.value) if isinstance(other, modint) else modint(self.value - other)) def __mul__(self, other): return (modint(self.value * other.value) if isinstance(other, modint) else modint(self.value * other)) def __truediv__(self, other): return (modint(self.value * pow(other.value, MOD - 2, MOD)) if isinstance(other, modint) else modint(self.value * pow(other, MOD - 2, MOD))) def __pow__(self, other): return (modint(pow(self.value, other.value, MOD)) if isinstance(other, modint) else modint(pow(self.value, other, MOD))) def __eq__(self, other): return (self.value == other.value if isinstance(other, modint) else self.value == (other % MOD)) def __ne__(self, other): return (self.value != other.value if isinstance(other, modint) else self.value != (other % MOD)) def __radd__(self, other): return (modint(other.value + self.value) if isinstance(other, modint) else modint(other + self.value)) def __rsub__(self, other): return (modint(other.value - self.value) if isinstance(other, modint) else modint(other - self.value)) def __rmul__(self, other): return (modint(other.value * self.value) if isinstance(other, modint) else modint(other * self.value)) def __rtruediv__(self, other): return (modint(other.value * pow(self.value, MOD - 2, MOD)) if isinstance(other, modint) else modint(other * pow(self.value, MOD - 2, MOD))) def __rpow__(self, other): return (modint(pow(other.value, self.value, MOD)) if isinstance(other, modint) else modint(pow(other, self.value, MOD))) def modinv(self): return modint(pow(self.value, MOD - 2, MOD)) def main(): H, W = (int(i) for i in input().split()) A = [[modint(int(i)) for i in input().split()] for j in range(H)] ans = modint(1) for h in range(H): for w in range(W): if A[h][w] != 0: ans *= A[h][w] pres_h = [1]*(H) pres_w = [1]*(W) zero_h = [] zero_w = [] for h in range(H): mul = modint(1) for w in range(W): if A[h][w] == 0: zero_h.append(h) break else: mul *= A[h][w] pres_h[h] = mul for w in range(W): mul = modint(1) for h in range(H): if A[h][w] == 0: zero_w.append(w) break else: mul *= A[h][w] pres_w[w] = mul zero_h = set(zero_h) zero_w = set(zero_w) Q = int(input()) for _ in range(Q): r, c = (int(i)-1 for i in input().split()) v = ans / pres_h[r] / pres_w[c] * A[r][c] if len(zero_h - {r}) + len(zero_w - {c}) > 0: print(0) else: print(v) if __name__ == '__main__': main()