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Linganisha mbinu

Pitia mbinu ulizochagua bega kwa bega; safu zinazotofautiana zinaangaziwa.

V ya Cramér×Kipimo cha Chi-square cha Uhuru×Kipimo kamili cha Fisher×
NyanjaTakwimuTakwimuTakwimu
FamiliaHypothesis testHypothesis testHypothesis test
Mwaka wa asili194619001922
MwanzilishiHarald CramérKarl PearsonR. A. Fisher
AinaNonparametric association measureNonparametric test of associationExact test of independence for categorical data
Chanzo asiliaCramér, H. (1946). Mathematical Methods of Statistics. Princeton University Press. ISBN: 978-0691080420Pearson, K. (1900). On the criterion that a given system of deviations from the probable in the case of a correlated system of variables is such that it can be reasonably supposed to have arisen from random sampling. Philosophical Magazine, 50(302), 157–175. DOI ↗Fisher, R. A. (1922). On the interpretation of chi-squared from contingency tables, and the calculation of P. Journal of the Royal Statistical Society, 85(1), 87–94. DOI ↗
Majina mbadalacramers v, cramer v, phi coefficient (r×c), Cramer's V (İlişki Kuvveti)chi-squared test, Pearson's chi-square test, test of independence, ki-kare bağımsızlık testiFisher-Irwin test, exact test of independence, Fisher'ın Kesin Testi
Zinazohusiana322
MuhtasariCramer's V is a nonparametric effect-size statistic that measures the strength of association between two categorical variables on a scale from 0 to 1. Introduced by the Swedish mathematician Harald Cramér in his 1946 work Mathematical Methods of Statistics, it generalises the phi coefficient to tables of any size, making it the standard companion statistic to the chi-square test.The chi-square test of independence is a nonparametric hypothesis test that examines whether two categorical variables are associated by comparing observed and expected frequencies in a cross-tabulation. It rests on the chi-square criterion introduced by Karl Pearson in 1900.Fisher's exact test is a nonparametric exact-probability test of independence for small-sample contingency tables, introduced by R. A. Fisher in 1922. Rather than relying on a large-sample approximation, it computes the exact probability of the observed table directly from the hypergeometric distribution.
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ScholarGateLinganisha mbinu: Cramer's V · Chi-square test · Fisher's exact test. Imepatikana 2026-06-19 kutoka https://scholargate.app/sw/compare