Individual Calculations February 2015 |
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Fletcher, Andrew Total change: 10.80 | | |
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Canterbury Summer Swiss 2014 | Melbourne | AUS | 2014-12-27 |
Rc | Ro | w | n | change | K | K*chg | Game |
1743 | 1848 | 3.00 | 5 | -0.07 | 40 | -2.80 | |
| Bourmistrov, Denis | | | 2158 | AUS | 0.00 | 1 | -0.14 | 40 | -5.60 | | Chew Lee, Alanna | | | 1577 | AUS | 0.50 | 1 | -0.33 | 40 | -13.20 | | Lim, Christopher | | | 1448 * | AUS | 1.00 | 1 | 0.08 | 40 | 3.20 | | Zou, Brendan | | | 1577 | AUS | 1.00 | 1 | 0.17 | 40 | 6.80 | | Penrose, Justin | | | 1955 | AUS | 0.50 | 1 | 0.15 | 40 | 6.00 | | * 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) | | 2015 MCC Australia Day Weekender | Melbourne | AUS | 2015-01-23 |
Rc | Ro | w | n | change | K | K*chg | Game |
1875 | 1848 | 3.00 | 6 | 0.34 | 40 | 13.60 | |
| Scott, Ridley | | | 1448 * | AUS | 1.00 | 1 | 0.08 | 40 | 3.20 | | Raine, Marcus | | | 1983 | AUS | 0.50 | 1 | 0.18 | 40 | 7.20 | | Nguyen, Hoai Nam | | | 2019 | VIE | 0.50 | 1 | 0.23 | 40 | 9.20 | | Plaganyi, Gyula | | | 1937 | AUS | 1.00 | 1 | 0.62 | 40 | 24.80 | | Dizdarevic, Mehmedalija | | | 1928 | BIH | 0.00 | 1 | -0.39 | 40 | -15.60 | | Fasakin, Oladoyin | | | 1936 | NGR | 0.00 | 1 | -0.38 | 40 | -15.20 | | * 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) | |
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