نتایج جستجو برای: supplementary materials

تعداد نتایج: 458604  

Journal: :Chemical communications 2004
Kazuhisa Fujimoto Natsuko Oimoto Kahori Katsuno Masahiko Inouye

Supplementary Information General Materials. The starting materials were all commercially available, and 1,4-bis(2hydroxyethoxy)-2-butyne (5b) and 2,4-hexadiyne-1,6-diol (8) were prepared according to the literature procedures. The cross-linking agents 3a, 3b, and 4b were reported previously, however, the physical and spectroscopic data of 4b were not described in the literature and were presen...

2016
AARON MEURER CHRISTOPHER P. SMITH MATTHEW ROCKLIN AMIT KUMAR SERGIU IVANOV JASON K. MOORE SARTAJ SINGH THILINA RATHNAYAKE SEAN VIG BRIAN E. GRANGER RICHARD P. MULLER FRANCESCO BONAZZI HARSH GUPTA SHIVAM VATS FREDRIK JOHANSSON FABIAN PEDREGOSA MATTHEW J. CURRY ROBERT CIMRMAN

AARON MEURER∗, CHRISTOPHER P. SMITH† , MATEUSZ PAPROCKI‡ , ONDŘEJ ČERTÍK§ , MATTHEW ROCKLIN¶, AMIT KUMAR‖, SERGIU IVANOV#, JASON K. MOORE††, SARTAJ SINGH‡‡, THILINA RATHNAYAKE§§, SEAN VIG¶¶ , BRIAN E. GRANGER‖‖, RICHARD P. MULLER## , FRANCESCO BONAZZI1, HARSH GUPTA2, SHIVAM VATS3, FREDRIK JOHANSSON4, FABIAN PEDREGOSA5, MATTHEW J. CURRY6, ASHUTOSH SABOO7, ISURU FERNANDO8, SUMITH9, ROBERT CIMRMAN...

2010
Xi-Nian Zuo Clare Kelly Adriana Di Martino Maarten Mennes Daniel S. Margulies Saroja Bangaru Rebecca Grzadzinski Alan C. Evans Yu-Feng Zang F. Xavier Castellanos Michael P. Milham

To support the findings reported in the manuscript Growing together and growing apart: Regional and sex differences in the lifespan developmental trajectories of functional homotopy, we conducted several supplementary analyses. These include (1) regression model selection using Akaike's Information Criterion (AIC); (2) examination of VMHC test-retest reliability; (3) comparability of findings a...

2014
Lu Jiang Deyu Meng Shoou-I Yu Zhenzhong Lan Shiguang Shan Alexander G. Hauptmann

This is the supplementary material for the paper entitled “Self-Paced Learning with Diversity”. The material is organized as follows: Section 1 gives the proof of Theorem 1. Section 2.1 and Section 2.2 present the detailed experimental settings and results on the MED (Multimedia Event Detection) dataset. Section 2.3 and Section 2.4 present the settings and detailed results on the Hollywood2 and...

2016
Mehmet Barlo Guilherme Carmona Hamid Sabourian

Claims A.1 to A.15 establish results needed to show that the strategy given in (28) is welldefined and subgame perfect. The first two claims establish some properties of the paths π̂, . . . , π̂. Claim A.1 For all i ∈ {0, . . . , n} and d, d′ ∈ N with d = d′: −B(1− δ) + δ(n+5)(T+1)Vd(π̂(d)) > B(1− δ) + δVd(π̂), (A.1) −B(1− δ) + δVd(π̂) > (1− δ)B + δVd(π̂), (A.2) −(1− δ)B + δVd(π̂) > (1− δ)B + δVd(π̂). ...

2016
Ben Adcock Daan Huybrechs

This document contains supplementary materials for the paper Frames and numerical approximation by B. Adcock & D. Huybrechs [3]. SM1 Example 1. Fourier frames for complex geometries Consider the frame (3.1) over a domain Ω ⊆ (−1, 1)d. SM1.1 The kernel of G We first characterize the kernel of the Gram operator: Proposition SM1.1. Let G be the Gram operator (2.7) of the frame (3.1). Then Ker(G) =...

2009
Xiaofeng Shao

0.1 Proofs of Theorems 4.1, 4.2 & 5.2 Proof of Theorem 4.1: Let bn = pn+ln, where pn = b √ nc. Define a block of observations as Bn(i) = i + bn(0, 1], i ∈ Z. We first divide Rn into non-overlapped blocks of observations. Let Kn = {k ∈ Z : Bn(bnk) ⊂ Rn} represents the index set of all complete blocks Bn(bnk) = bn(k + (0, 1]) lying inside Rn. For each k ∈ Kn, we further divide each block into lar...

2017
Tiesheng Wang Meisam Farajollahi Sebastian Henke Tongtong Zhu Sneha R. Bajpe Shijing Sun Jonathan S. Barnard June Sang Lee John D. W. Madden Anthony K. Cheetham Stoyan K. Smoukov

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