Individual Calculations March 2020
 Coppola, Claudio  Total change: -36.00  Rating chartPersonal card
 IV Abierto de Montevideo Copa Marcel Duchamp Montevideo URU 2020-02-08
RcRownchangeKK*chgGame
 2068 2314 5.50 9 -1.55 20 -31.00 
  Vieira, Alexandre Letizio 1914  * BRA0.501-0.4220-8.40 
  Alvarez, Miguel 1914  * URU1.0010.08201.60 
  Munoz Perez, Rolando c2095 CUB0.001-0.7820-15.60 
  Aguilar Samper, Valentin 1946 ARG1.0010.10202.00 
  Meza, Anahi wf2046 ARG0.501-0.3320-6.60 
  Soto, Nicolas 2002 URU1.0010.14202.80 
  Carvalho, Guillermo c2187 URU0.501-0.1720-3.40 
  Amura, Claudia wg2245 ARG0.001-0.6020-12.00 
  Contin, Daniel m2267 ITA1.0010.43208.60 
 * 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)
 
 Semifinal 2020 Montevideo URU 2020-02-21
RcRownchangeKK*chgGame
 2067 2314 6.00 8 -0.25 20 -5.00 
  Palacio, Enzo 1914  * URU0.001-0.9220-18.40 
  Blanco, Rudemar Ernesto 1914  * URU1.0010.08201.60 
  Larrea, Daniela wc1914  * URU1.0010.08201.60 
  Pichuaga, Juan Pablo c2030 URU1.0010.16203.20 
  Granara Barreto, Sebastian f2132 URU1.0010.26205.20 
  Dominguez, Facundo 2135 URU1.0010.27205.40 
  Lopez Azambuja, Nicolas f2310 URU0.501-0.0120-0.20 
  Carvalho, Guillermo c2187 URU0.501-0.1720-3.40 
 * 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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