Turniej na impy (cav.)

Czwartek, 15 stycznia 2026

Wyniki z 27 ośrodków

do wyników...

pobierz rozkłady turnieju
    S K10
H AQJ94
D K9
C 9432
   
  S Q86
H 853
D 10864
C AQ6
S/- S A7432
H K76
D QJ75
C K
 
    S J95
H 102
D A32
C J10875
   
Liczba lew do wzięcia:
  NT S H D C    NT S H D C
N64858  E68585
S64858  W68585
Minimax: 3 C x N, -100
DeepFinesse ©1999 Wiliam Bailey

zapisliczba
wystąpień
kontraktliczba
wystąpień
% NS% EW
47013 C x S =110.38-10.37
15013 S E -314.77-4.75
14013 H N =14.64-4.63
100142 S E -283.62-3.61
3 S E -23
4 S E -23
8011 H N =13.25-3.24
50212 S E -1162.29-2.27
3 S E -15
-5073 C N -11-0.050.06
3 C S -15
4 C N -11
-8041 S E =4-1.021.04
-9022 D W =1-1.101.12
1 NT W =1
-10064 C x S -12-1.671.68
4 C N -23
4 C S -21
-110461 S E +12-1.681.70
2 S E =43
2 S W =1
-14052 S E +15-2.692.71
-30024 C x S -22-6.286.29
4TD
Kliknij na numer pary, żeby obejrzeć historię.
Kliknij na nagłówki kolumn, żeby zmienić sortowanie.
ośrodekrundaNSEWkontraktrozg.wistlew zapisIMP NSIMP EW
DS/1365 4 1 3 SE H10-1 502.29-2.27
DS/1365 3 2 2 SE H10= -110-1.681.70
DS/3806 18 21 2 SE H10= -110-1.681.70
DS/3807 22 9 3 CS S8-1 -50-0.050.06
DS/3808 17 11 4 C xS SQ-2 -300-6.286.29
DS/3809 16 14 2 SE H10-2 1003.62-3.61
DS/38010 7 10 2 SE H10= -110-1.681.70
DS/38011 19 15 3 CS SQ-1 -50-0.050.06
DS/38012 13 8 2 SE H10= -110-1.681.70
DS/38013 12 23 2 SE H10-1 502.29-2.27
DS/38014 24 20 2 SE H10= -110-1.681.70
DS/721 27 31 2 SE H10= -110-1.681.70
DS/722 25 34 4 CN DQ-2 -100-1.671.68
DS/723 30 35 2 SE H10= -110-1.681.70
DS/724 32 29 2 SE H10= -110-1.681.70
DS/727 26 28 2 SE H10= -110-1.681.70
KP/4642 53 52 2 SE H2= -110-1.681.70
KP/4643 51 48 1 SE H10= -80-1.021.04
KP/4644 49 44 2 SE H10-1 502.29-2.27
KP/4645 47 40 3 C xS SQ= 47010.38-10.37
KP/4646 45 54 3 SE H10-2 1003.62-3.61
KP/4647 50 43 2 SE H10-2 1003.62-3.61
KP/4648 46 41 2 SE H10-1 502.29-2.27
KP/4649 42 39 2 SE H10-2 1003.62-3.61
KP/5014 76 70 4 CN DQ-1 -50-0.050.06
KP/5013 65 71 4 SE H10-2 1003.62-3.61
KP/5012 63 67 4 C xS SQ-2 -300-6.286.29
KP/5011 60 68 2 SE H10= -110-1.681.70
KP/5010 58 57 3 SE DA-1 502.29-2.27
KP/509 59 62 2 SE H10= -110-1.681.70
KP/508 69 75 2 SE H10= -110-1.681.70
KP/507 61 74 4 C xS S6-1 -100-1.671.68
KP/506 66 73 2 SE H10= -110-1.681.70
KP/5180 82 80 2 SE -1 502.29-2.27
KP/5180 79 78 4 CN -2 -100-1.671.68
KP/5180 81 77 2 SE +1 -140-2.692.71
LB/3855 85 92 2 SE H10-1 502.29-2.27
LB/3856 88 89 4 SE H10-2 1003.62-3.61
LB/3857 94 91 2 SE H10= -110-1.681.70
LB/3858 93 87 2 SE H10+1 -140-2.692.71
LB/3859 86 90 2 SE H2-1 502.29-2.27
LB/5263 99 95 4 SE H10-2 1003.62-3.61
LB/5265 100 98 3 CS S8-1 -50-0.050.06
LB/5266 97 96 2 SE H10-1 502.29-2.27
LB/5267 102 101 2 SE H10-1 502.29-2.27
LD/4603 107 103 2 SE H10= -110-1.681.70
LD/4605 108 106 2 SE H10-2 1003.62-3.61
LD/4606 105 104 2 SE H10-1 502.29-2.27
LD/4784 120 114 2 SE H10-2 1003.62-3.61
LD/4785 121 118 3 SE H10-1 502.29-2.27
LD/4787 119 112 2 SE H10= -110-1.681.70
LD/4788 117 116 2 SE H10= -110-1.681.70
LD/4789 111 115 2 SE H10= -110-1.681.70
LD/4786 113 122 2 SE S5+1 -140-2.692.71
MA/1264 155 152 2 SE H10= -110-1.681.70
MA/1265 146 151 2 SE H10= -110-1.681.70
MA/1266 149 156 2 SE H10+1 -140-2.692.71
MA/1267 147 145 2 SE H2= -110-1.681.70
MA/1268 150 157 2 SE H10= -110-1.681.70
MA/1269 158 153 2 SE H10= -110-1.681.70
MA/5035 164 163 2 SE H10-1 502.29-2.27
MA/5035 162 159 2 SE H10= -110-1.681.70
MA/5035 161 160 4 C xS SQ-1 -100-1.671.68
MA/863 167 166 2 SE H10= -110-1.681.70
MA/865 172 168 4 CN DQ-2 -100-1.671.68
MA/866 171 169 1 NTW HQ= -90-1.101.12
MA/867 165 170 2 SE H10= -110-1.681.70
PD/3694 192 190 1 SE H10+1 -110-1.681.70
PD/3695 196 187 2 SE H10= -110-1.681.70
PD/3696 185 191 2 SE H10-2 1003.62-3.61
PD/3697 194 197 TD 1.201.20
PD/3698 189 188 2 SE H10-1 502.29-2.27
PD/3699 198 193 2 SE H10= -110-1.681.70
SL/5255 199 201 2 SE H10= -110-1.681.70
SL/5255 203 200 1 SE H10= -80-1.021.04
SL/5255 204 202 2 SE H10-1 502.29-2.27
WP/4035 225 224 2 SE H10+1 -140-2.692.71
WP/4036 237 228 2 SE H10-2 1003.62-3.61
WP/4037 242 238 2 SE H10= -110-1.681.70
WP/4038 240 236 2 SE H10-1 502.29-2.27
WP/4039 241 233 2 SE H10= -110-1.681.70
WP/40310 231 230 2 SE H10-1 502.29-2.27
WP/40311 235 229 3 SE H2-3 1504.77-4.75
WP/40312 227 234 TD -1.681.20
WP/40313 232 226 3 SE H2-2 1003.62-3.61
WP/40314 223 239 3 CN DQ-1 -50-0.050.06
WP/4397 252 245 2 SW H10= -110-1.681.70
WP/4397 246 258 4 CS S8-2 -100-1.671.68
WP/4397 250 256 2 SE H10= -110-1.681.70
WP/4397 248 249 3 CS S6-1 -50-0.050.06
WP/4397 253 251 2 SE H10= -110-1.681.70
WP/4397 244 255 2 SE H10= -110-1.681.70
WP/4397 257 254 2 SE H10-1 502.29-2.27
WP/4397 243 247 2 SE H10= -110-1.681.70
WP/5073 263 259 3 SE H10-1 502.29-2.27
WP/5075 264 262 2 DW C3= -90-1.101.12
WP/5076 261 260 2 SE H10= -110-1.681.70
WP/5077 266 265 2 SE H10-1 502.29-2.27
ZP/3081 269 273 2 SE H10= -110-1.681.70
ZP/3082 267 276 2 SE H10= -110-1.681.70
ZP/3083 272 277 1 SE H10= -80-1.021.04
ZP/3084 274 271 TD -1.20-1.20
ZP/3087 268 270 1 SE H10+1 -110-1.681.70
ZP/3785 283 290 3 CS S8-1 -50-0.050.06
ZP/3786 286 287 2 SE H10= -110-1.681.70
ZP/3788 291 285 1 HN SA= 803.25-3.24
ZP/3789 284 288 1 SE H10= -80-1.021.04
ZP/4335 293 300 2 SE DA= -110-1.681.70
ZP/4336 296 297 3 SE H10-1 502.29-2.27
ZP/4337 302 299 3 SE H10-2 1003.62-3.61
ZP/4338 301 295 2 SE H10= -110-1.681.70
ZP/4339 294 298 TD 1.201.20
ZP/5013 307 303 2 SE H10= -110-1.681.70
ZP/5015 308 306 2 SE H10-2 1003.62-3.61
ZP/5016 305 304 3 HN CK= 1404.64-4.63