Least squares with non-normal data: estimating experimental variance functions
文献情報
Joel Tellinghuisen
Contrary to popular belief, the method of least squares (LS) does not require that the data have normally distributed (Gaussian) error for its validity. One practically important application of LS fitting that does not involve normal data is the estimation of data variance functions (VFE) from replicate statistics. If the raw data are normal, sampling estimates s2 of the variance σ2 are χ2 distributed. For small degrees of freedom, the χ2 distribution is strongly asymmetrical – exponential in the case of three replicates, for example. Monte Carlo computations for linear variance functions demonstrate that with proper weighting, the LS variance-function parameters remain unbiased, minimum-variance estimates of the true quantities. However, the parameters are strongly non-normal – almost exponential for some parameters estimated from s2 values derived from three replicates, for example. Similar LS estimates of standard deviation functions from estimated s values have a predictable and correctable bias stemming from the bias inherent in s as an estimator of σ. Because s2 and s have uncertainties proportional to their magnitudes, the VFE and SDFE fits require weighting as s−4 and s−2, respectively. However, these weights must be evaluated on the calculated functions rather than directly from the sampling estimates. The computation is thus iterative but usually converges in a few cycles, with remaining ‘weighting’ bias sufficiently small as to be of no practical consequence.
おすすめジャーナル

Russian Journal of Coordination Chemistry

Current Opinion in Solid State & Materials Science

Journal of Peptide Science

Nature Medicine

Chemical Communications

Saudi Pharmaceutical Journal

Current Opinion in Colloid & Interface Science

Russian Journal of Applied Chemistry

Crystallography Reports

Chemistry Education Research and Practice
関連文献
Order and disorder around Cr3+ in chromium doped persistent luminescent AB2O4 spinels
Neelima Basavaraju, Kaustubh R. Priolkar, Didier Gourier, Aurélie Bessière, Bruno Viana
DOI: 10.1039/C5CP01097G
Towards a comprehensive insight into efficient hydrogen production by self-assembled Ru(bpy)32+–polymer–Pt artificial photosystems
Huan Lin, Dan Liu, Jinlin Long, Zizhong Zhang, Huaqiang Zhuang, Yi Zheng, Xuxu Wang
DOI: 10.1039/C5CP00720H
Slow-to-fast transition of hydrogen bond dynamics in acetamide hydration shell formation
Francesco D'Amico, Gaia Camisasca, Filippo Bencivenga, Alessandro Gessini, Emiliano Principi, Riccardo Cucini, Claudio Masciovecchio
DOI: 10.1039/C5CP00486A
Ion density deviations in semipermeable ionic microcapsules
Qiyun Tang, Alan R. Denton
DOI: 10.1039/C5CP00974J
Magnetic diffusion anomaly at the Néel temperature of pyrrhotite, Fe1−xS
Lucy Rands
DOI: 10.1039/C4CP05389C
Spatial dispersion of lone electron pairs? – Experimental charge density of cubic arsenic(iii) oxide
Piotr A. Guńka, Zygmunt Gontarz, Janusz Zachara
DOI: 10.1039/C4CP05656F
Elucidating factors important for monovalent cation selectivity in enzymes: E. coli β-galactosidase as a model
Robert W. Wheatley, Douglas H. Juers, Bogdan B. Lev, Reuben E. Huber, Sergei Yu. Noskov
DOI: 10.1039/C4CP04952G
Dissociation of CO2 on rhodium nanoclusters (Rh13) in various structures supported on unzipped graphene oxide – a DFT study
Chun-Chih Chang, Jia-Jen Ho
DOI: 10.1039/C5CP01121C
p/n-Polarity of thiophene oligomers in photovoltaic cells: role of molecular vs. supramolecular properties
Anesh Gopal, Akinori Saeki, Shu Seki
DOI: 10.1039/C5CP01044F
Rydberg and valence state excitation dynamics: a velocity map imaging study involving the E–V state interaction in HBr
Dimitris Zaouris, Andreas Kartakoullis, Pavle Glodic, Peter C. Samartzis, Helgi Rafn Hróðmarsson, Ágúst Kvaran
DOI: 10.1039/C5CP00748H
こちらもおすすめ
4'-ブロモビフェニル-3-メトークシーディ.ActionBarはどのように保存すればよいですか?
4'-ブロモビフェニル-3-メトークシーディ.ActionBarは、冷暗所で、直射日光を避け、密栓の容器に保存し、遠隔場所に保管してください。温度は常温(0〜2...
2-異丙基フェニルヒドラジン塩酸塩とは何ですか?
2-異丙基フェニルヒドラジン塩酸塩は、CAS番号58928-82-8を有する化合物で、構造式はC11H14N2HClです。これは塩基性化合物であり、水に溶けやす...
5-(4-クロロフェニル)-4H-1,2,4-三氮唑-3-アミンを取り扱う際の実験室安全事項は何ですか?
5-(4-クロロフェニル)-4H-1,2,4-三氮唑-3-アミンは取り扱いに注意が必要です。PPEとして防塵マスク、ゴーグル、手袋を使用し、ドラフトチャンバーを...
去甲基雷贝拉唑硫醚はどのように合成されますか?
去甲基雷贝拉唑硫醚は、ベンジミダゾール硫化物と3-メチル-4-ピリジノールの反応によって合成されます。具体的には、2-チオキシドベンジミダゾールと3-メチル-4...
2-ブロモ-5-フロロ-N-(2-フェノールメチル)ベンゼンウレアは安全ですか?
2-ブロモ-5-フロロ-N-(2-フェノールメチル)ベンゼンウレアは、毒性や刺激性の実験データに基づき、適切な取扱いと防護措置を講じることで安全に使用できます。...
対甲苯磺酸酯-四聚乙二醇-四氢吡喃醚の物理化学的性質は何ですか?
対甲苯磺酸酯-四聚乙二醇-四氢吡喃醚のCAS番号は86259-89-4です。この化合物は無色の液体で、分子量は約724.8です。高濃度では溶血性が報告されており...
2-(3-(二氟甲基)-4-氟苯基)-4,4,5,5-四甲基-1,3,2-二噁硼戊環はどのように保存すればよいですか?
2-(3-(二氟甲基)-4-氟苯基)-4,4,5,5-四甲基-1,3,2-二噁硼戊環は、室温で暗い場所に保管し、直射日光から遠ざけ、容器は密閉状態で保存してくだ...
6-アミノ-5-クロロ-2-シクロプロピルピリミジンカルボン酸の代替品はありますか?
この化合物の代替品には、ピロリミジン酸やその類似物、またピロリミジンカルボン酸の他の異性体があります。これらの代替品は、特定の化学反応や目的に応じて選択すること...
5-クロロベンゾ[1,3]二オキセイン-4-アミンに適用される法規ガイドラインは何ですか?
5-クロロベンゾ[1,3]二オキセイン-4-アミンはCAS番号379228-45-2に該当します。この化合物はGHS分類でH314(接触により急性毒性がある)と...
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.
![3,7-Di(1,1':3',1''-terphenyl-5'-yl)-10,11,12,13-tetrahydrodiindeno[7,1-de:1',7'-fg][1,3,2]dioxaphosphocin-5-ol 5-oxide structure 3,7-Di(1,1':3',1''-terphenyl-5'-yl)-10,11,12,13-tetrahydrodiindeno[7,1-de:1',7'-fg][1,3,2]dioxaphosphocin-5-ol 5-oxide structure](https://static.chemtradehub.com/structs/135/1352810-38-8-3f10.webp)



