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Proof
# | User | Rating |
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1 | tourist | 4009 |
2 | jiangly | 3823 |
3 | Benq | 3738 |
4 | Radewoosh | 3633 |
5 | jqdai0815 | 3620 |
6 | orzdevinwang | 3529 |
7 | ecnerwala | 3446 |
8 | Um_nik | 3396 |
9 | ksun48 | 3390 |
10 | gamegame | 3386 |
# | User | Contrib. |
---|---|---|
1 | cry | 167 |
2 | Um_nik | 163 |
3 | maomao90 | 162 |
3 | atcoder_official | 162 |
5 | adamant | 159 |
6 | -is-this-fft- | 158 |
7 | awoo | 157 |
8 | TheScrasse | 154 |
9 | Dominater069 | 153 |
9 | nor | 153 |
EDYOOCATIONAL CONTESNT #3
Let $$$y_1$$$ be a point on the coordinate plane where $$$y_1$$$ is more optimal than some $$$y_j$$$.
This can only be true if $$$y_1 \cdot y_j \equiv 2 \text{ }(\text{mod } 10^9 + 7)$$$.
left as an exersise for the reader lol
Rev. | Lang. | By | When | Δ | Comment | |
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en1 | mahmoud_osama08 | 2024-04-07 16:33:32 | 621 | Initial revision (published) |
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