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Table 2 The 2 × 2 array for the χ2 calculation

From: Gene analogue finder: a GRID solution for finding functionally analogous gene products

  Terms present in gene product A Terms not present in gene product A
Terms present in gene product B O 11 = ( a l l t e r m s c o m m o n t o A a n d B ( 1 p ( t e r m ) ) ) MathType@MTEF@5@5@+=feaafiart1ev1aaatCvAUfKttLearuWrP9MDH5MBPbIqV92AaeXatLxBI9gBaebbnrfifHhDYfgasaacH8akY=wiFfYdH8Gipec8Eeeu0xXdbba9frFj0=OqFfea0dXdd9vqai=hGuQ8kuc9pgc9s8qqaq=dirpe0xb9q8qiLsFr0=vr0=vr0dc8meaabaqaciaacaGaaeqabaqabeGadaaakeaacqWGpbWtdaWgaaWcbaGaeGymaeJaeGymaedabeaakiabg2da9maabmaabaWaaabuaeaacqGGOaakcqaIXaqmcqGHsislcqWGWbaCcqGGOaakcqWG0baDcqWGLbqzcqWGYbGCcqWGTbqBcqGGPaqkcqGGPaqkaSabaeqabaGaemyyaeMaemiBaWMaemiBaWMaeeiiaaIaemiDaqNaemyzauMaemOCaiNaemyBa0Maem4CamhabaGaem4yamMaem4Ba8MaemyBa0MaemyBa0Maem4Ba8MaemOBa4gabaGaemiDaqNaem4Ba8MaeeiiaaIaemyqaeKaeeiiaaIaemyyaeMaemOBa4MaemizaqMaeeiiaaIaemOqaieaaeqaniabggHiLdaakiaawIcacaGLPaaaaaa@6050@ O 12 = ( a l l t e r m s p r e s e n t i n B b u t n o t i n A ( 1 p ( t e r m ) ) ) MathType@MTEF@5@5@+=feaafiart1ev1aaatCvAUfKttLearuWrP9MDH5MBPbIqV92AaeXatLxBI9gBaebbnrfifHhDYfgasaacH8akY=wiFfYdH8Gipec8Eeeu0xXdbba9frFj0=OqFfea0dXdd9vqai=hGuQ8kuc9pgc9s8qqaq=dirpe0xb9q8qiLsFr0=vr0=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@6A6E@
Terms not present in gene product B O 21 = ( a l l t e r m s p r e s e n t i n A b u t n o t i n B ( 1 p ( t e r m ) ) ) MathType@MTEF@5@5@+=feaafiart1ev1aaatCvAUfKttLearuWrP9MDH5MBPbIqV92AaeXatLxBI9gBaebbnrfifHhDYfgasaacH8akY=wiFfYdH8Gipec8Eeeu0xXdbba9frFj0=OqFfea0dXdd9vqai=hGuQ8kuc9pgc9s8qqaq=dirpe0xb9q8qiLsFr0=vr0=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@6A6E@ O 22 = ( a l l t e r m s ( 1 p ( t e r m ) ) a l l t e r m s i n A o r B ( 1 p ( t e r m ) ) ) MathType@MTEF@5@5@+=feaafiart1ev1aaatCvAUfKttLearuWrP9MDH5MBPbIqV92AaeXatLxBI9gBaebbnrfifHhDYfgasaacH8akY=wiFfYdH8Gipec8Eeeu0xXdbba9frFj0=OqFfea0dXdd9vqai=hGuQ8kuc9pgc9s8qqaq=dirpe0xb9q8qiLsFr0=vr0=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@71F5@
  1. The 2 × 2 array used for the χ2 – calculation to compare gene product A with gene product B.