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461“…The tandem network formation was exemplarily demonstrated with the photoinitator 2-hydroxy-2-methylpropiophenone (HMPP) and pentaerythritol tetraacrylate (PETA), a commercially available, tetrafunctional vinyl crosslinker. …”
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462por Fassi, Farida“…The ATLAS experiment at the LHC at CERN is recording and simulating several 10's of PetaBytes of data per year. The ATLAS Computing Model was designed around the concepts of Grid Computing. …”
Publicado 2015
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463por Fassi, Farida“…The ATLAS experiment at the LHC at CERN is recording and simulating several 10's of PetaBytes of data per year. The ATLAS Computing Model was designed around the concepts of Grid Computing. …”
Publicado 2015
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464“…In addition, compared to C. minutum, two large deletions of 453 bp and 878 bp were found in the IGS regions of petA-psbI and rrn16-trnV-GAC of C. latealatum cp genome, respectively.…”
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465por Auchincloss, Andrea H., Zerges, William, Perron, Karl, Girard-Bascou, Jacqueline, Rochaix, Jean-David“…The middle part of the Tbc2 protein displays partial amino acid sequence identity with Crp1, a protein from Zea mays that is implicated in the processing and translation of the chloroplast petA and petD RNAs. The Tbc2 protein is enriched in chloroplast stromal subfractions and is associated with a 400-kD protein complex that appears to play a role in the translation of specifically the psbC mRNA.…”
Publicado 2002
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466por Jiang, Dan, Zhao, Zhenyu, Zhang, Teng, Zhong, Wenhao, Liu, Chunsheng, Yuan, Qingjun, Huang, Luqi“…Comparative analyses of three Scutellaria chloroplast genomes revealed six variable regions (trnH-psbA, trnK-rps16, petN-psbM, trnT-trnL, petA-psbJ, and ycf1) that could be used as DNA barcodes. …”
Publicado 2017
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467“…A modified one-pot synthesis method is presented for producing FePt nanoparticles in large volumes and 3D printing of helical microswimmers made from biocompatible trimethy- lolpropane ethoxylate triacrylate (PETA) polymer with embedded FePt nanoparticles. The 30 μm long helical magnetic microswimmers are able to swim at speeds of over five body lengths per second at 200 Hz, making them the fastest helical swimmer in the tens of micrometer length scale at the corresponding low- magnitude actuation fields of 5-10 mT. …”
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468“…Sequence differences between the two Stylidium plastomes were 5011 sites, including 2166 variable sites and 2845 indels, with the petA-psbJ spacer the most variable region, followed by the trnK(UUU)-matK intron and trnG(UUG)-rps16 spacer.…”
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469por Gao, Yu, Zhao, Hongwei, Chen, Guang, Peng, Qi, Liu, Yingying, Song, Fei, Liu, Qingquan“…Pentaerythritol tetraacrylate (PETA) was used as the crosslinked agent. A comparative comb-like polycarboxylate superplasticizer (comb-like-PC) was prepared under the same reaction conditions. …”
Publicado 2022
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470por Amoiridis, Vasileios“…The pipelines have been designed in a way that they can build the Vivado and the PetaLinux projects. They can build the CentOS 8 root filesystem and also deploy the boot images to the TFTP and NFS servers. …”
Publicado 2022
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471por Zhu, Wenhui, Wu, Yanran, Zhang, Yiyan, Sukhanov, Andrey A., Chu, Yuqi, Zhang, Xue, Zhao, Jianzhang, Voronkova, Violeta K.“…RB-TEMPO was used as a photoinitiator for the photopolymerization of pentaerythritol triacrylate (PETA). These studies are useful for the design of heavy atom-free triplet photosensitizers, the study of the ISC, and the electron spin dynamics of the radical-chromophore systems upon photoexcitation.…”
Publicado 2023
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472por Wang, Jie, Liao, Xuezhu, Li, Yongyao, Ye, Yuanjun, Xing, Guoming, Kan, Shenglong, Nie, Liyun, Li, Sen, Tembrock, Luke R., Wu, Zhiqiang“…The Ka/Ks values of most genes were less than 1, and only two genes had Ka/Ks values above 1, which were rps15 (1.15), and ndhl (1.13) with petA equal to 1. The sequence divergence between different varieties of C. alismatifolia was large, and the percentage of variation in coding regions was lower than that in the non-coding regions. …”
Publicado 2023
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473“…The speedup and the parallelization ratio of Platypus in the QM and QM/MM calculations were assessed for a bacteriochlorophyll dimer in the photosynthetic reaction center (DIMER) on the K computer, a massively parallel computer achieving 10 PetaFLOPs with 705,024 cores. Platypus exhibited the increase in speedup up to 20,000 core processors at the HF/cc‐pVDZ and B3LYP/cc‐pVDZ, and up to 10,000 core processors by the CASCI(16,16)/6‐31G** calculations. …”
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474“…We observed that four genes (ndhA, ndhK, petA, and ycf1) were subject to positive selection. …”
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475por Zhou, Jianguo, Cui, Yingxian, Chen, Xinlian, Li, Ying, Xu, Zhichao, Duan, Baozhong, Li, Yonghua, Song, Jingyuan, Yao, Hui“…These differences include the ycf1 gene and intergenic regions, such as rpoB-trnC, trnD-trnT, petA-psbJ, psbE-petL, and ccsA-ndhD. These regions are hypervariable regions, which can be used as specific DNA barcodes. …”
Publicado 2018
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476por Ge, Yu, Dong, Xiangshu, Wu, Bin, Wang, Nan, Chen, Di, Chen, Haihong, Zou, Minghong, Xu, Zining, Tan, Lin, Zhan, Rulin“…Three highly variable regions (trnC-GCA-petN, petN-psbM, and petA-psbJ) were identified as highly informative markers. …”
Publicado 2019
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477por Kim, Seon-Hee, Yang, JiYoung, Park, Jongsun, Yamada, Takayuki, Maki, Masayuki, Kim, Seung-Chul“…Six highly variable noncoding regions (psbC/trnS, petA/psbJ, trnS/trnG, trnC/petN, ycf4/cemA, and rpl3/rpl22) were identified between S. nipponicus and S. renifolius and 14 hot-spot regions were also identified at the subfamily level. …”
Publicado 2019
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478“…Due to the resultant collective motion of relativistic charged particles around the central axis, strong spin current densities of [Formula: see text] peta-ampere/[Formula: see text] are produced with a few tens of nm size, generating megatesla-order magnetic fields. …”
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479“…Comparative analyses revealed 95-129 simple sequence repeats (SSRs) and eleven highly variable regions (trnK-rbcL, rbcL-atpB, ndhJ-trnF, trnL-trnT, psbD-rpoB, accD-cemA, petA-psbL, psbE-petL, rps11-rps19, ndhF-ccsA, and rps15-ycf1) among six Desmodieae species. …”
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480“…The chirped pulse amplification technique has enabled the generation of pulses of a few femtosecond duration with peak powers multi-Tera and Peta–Watt in the near infrared. Its implementation to realize even shorter pulse duration, higher energy, and higher repetition rate laser systems relies on overcoming the limitations imposed by laser damage of critical components. …”
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