Individual Calculations September 2019 |
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Wang, Kayson Total change: -24.00 | | |
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2019 Victorian Championship | Melbourne | AUS | 2019-06-16 |
Rc | Ro | w | n | change | K | K*chg | Game |
2013 | 1946 | 2.00 | 6 | -0.59 | 40 | -23.60 | |
| Poberezovsky, Daniel | | | 1792 | AUS | 1.00 | 1 | 0.29 | 40 | 11.60 | | Rujevic, Mirko | m | | 2154 | AUS | 0.50 | 1 | 0.27 | 40 | 10.80 | | Levi, Eddy L | f | | 2070 | AUS | 0.00 | 1 | -0.33 | 40 | -13.20 | | Goldenberg, Igor | m | | 2346 * | AUS | 0.00 | 1 | -0.08 | 40 | -3.20 | | Dissanayake, Himath | | | 1910 | SRI | 0.00 | 1 | -0.55 | 40 | -22.00 | | Zillmann, Shawn | | | 1808 | AUS | 0.50 | 1 | -0.19 | 40 | -7.60 | | * Rating difference of more than 400. Please read more at FIDE Handbook | Rc - average rating of rated opponents, Ro - rating of a player in a tournament, Rp - rating performance of an unrated player, W - points won in a tournament against rated opponents, N - total number of games against rated opponents, Change - change used for calculation according to formula, K - development coefficient, Kchg - rating change of a player calculated as (K * change) | | 2019 MCC Edwin Malitis Memorial | Melbourne | AUS | 2019-07-08 |
Rc | Ro | w | n | change | K | K*chg | Game |
1805 | 1946 | 4.00 | 6 | -0.01 | 40 | -0.40 | |
| Thadani, Aman Deepak | | | 1571 | AUS | 1.00 | 1 | 0.09 | 40 | 3.60 | | Dai, Cheng | | | 1767 | AUS | 1.00 | 1 | 0.27 | 40 | 10.80 | | Lacey, David | | | 1907 | AUS | 1.00 | 1 | 0.45 | 40 | 18.00 | | Beaumont, David | | | 1960 | AUS | 0.00 | 1 | -0.48 | 40 | -19.20 | | Jones, Alex | | | 1713 | AUS | 1.00 | 1 | 0.21 | 40 | 8.40 | | Abdollahnezhad, Chia | | | 1912 | IRI | 0.00 | 1 | -0.55 | 40 | -22.00 | | Rc - average rating of rated opponents, Ro - rating of a player in a tournament, Rp - rating performance of an unrated player, W - points won in a tournament against rated opponents, N - total number of games against rated opponents, Change - change used for calculation according to formula, K - development coefficient, Kchg - rating change of a player calculated as (K * change) | |
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