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R3 on "W.a.t.m.i. statistical ideas of the past 50 years? " Andrew Gelman, Aki Vehtari(11)

Last updated at Posted at 2021-10-04

R3(References on References on References) on "W.a.t.m.i. (What are the most important) statistical ideas of the past 50 years? " Andrew Gelman, Aki Vehtari(11)

R3 on "W.a.t.m.i. (What are the most important) statistical ideas of the past 50 years? " Andrew Gelman, Aki Vehtari(0)
https://qiita.com/kaizen_nagoya/items/a8eac9afbf16d2188901

What are the most important statistical ideas of the past 50 years?
Andrew Gelman, Aki Vehtari
https://arxiv.org/abs/2012.00174

References

11

Besag, J. (1974). Spatial interaction and the statistical analysis of lattice systems (with discussion).
Journal of the Royal Statistical Society B 36, 192–236.

REFERENCIENSTHE DISCUSSION on 11

11.1

ATKINSONA,. C. (1969). The use of residuals as a concomitant variable. Biometrika, 56, 33-41.

11.2

BARTLETT,M, . S. (1938). The approximate recovery of information from field experiments with - large blocks. J. Agric. Sci., 28, 418-427.

Reference on 11.2

11.2.1

Some examples of statistical methods of research in agriculture and applied biology
M. Bartlett

11.2.2

A new method of arranging variety trials involving a large number of varieties
F. Yates
A new method of arranging variety trials involving large numbers of varieties is described. This type of arrangement, for which the name pseudo-factorial arrangement is proposed, enables the block… Expand
222

11.2.3

Some Aspects of the Time-Correlation Problem in Regard to Tests of Significance
M. Bartlett

11.2.4

Statistical Methods for Research Workers.
C. C. Grove, R. Fisher,Mathematics,1925

11.3

BARTLETT,M. S. (1974). Physical nearest-neighbour models and non-linear time-series, 111. Non-zero means and sub-critical temperatures. J. Appl. Prob. (in press).

11.4

BESAG,J,. E. and GLEAVEJS.,T. (1973). On the detection of spatial pattern in plant communities. BUN.Znt. Statist. Znst., 45, Book 1, 153-158.

11.5

CLIFFORD,P,. and SUDBURYA,. W. (1973). A model for spatial competition. Biometrika, 60, 581-588.

11.6

DALENIUS,T,., HAJEKJ,. and ZUBRZYCKSI., (1961). On plane sampling and related geometrical problems. Proc. 4th Berkeley Symp. Math. Prob., 1, 125-150.

11.7

FAIRFIELD,SMITH,H, . (1938). An empirical law describing heterogeneity in the yields of agricultural crops. J. Agric. Sci., 28, 1-23.

11.8

KENDALL,D,. G. (1959). Unitary dilations of one-parameter semi-groups of Markov transition operators, and the corresponding integral representations for Markov processes with a countable infinity of states. Proc. London Math. Soc. (3), 9, 417-431.

11.9

KUEERA,V, . (1974). The matrix equation AXSXB = C. SZAM J. Appl. Math., 26, 15-25.

11.10

QUENOLJILLE.M, H. (1949). Problems in plane sampling. Ann. Math. Statist., 20, 355-375.

11.1

WHITTLE,P,. (1956). On the variation of yield variance with plot size. Biometrika, 43, 337-343.

11.12

WHITTLE,P,(1962). Topographic correlation, power-law covariance functions, and diffusion. Biometrika, 49, 305-314.

参考資料(References)

Data Scientist の基礎(2)
https://qiita.com/kaizen_nagoya/items/8b2f27353a9980bf445c

岩波数学辞典 二つの版がCDに入ってお得
https://qiita.com/kaizen_nagoya/items/1210940fe2121423d777

岩波数学辞典
https://qiita.com/kaizen_nagoya/items/b37bfd303658cb5ee11e

アンの部屋(人名から学ぶ数学:岩波数学辞典)英語(24)
https://qiita.com/kaizen_nagoya/items/e02cbe23b96d5fb96aa1

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