132,436 research outputs found
Desiforda Zhang, Qiao & Cheng
Desiforda Zhang, Qiao & Cheng, in Zhang 1999 = Pemphigus Hartig 1839 Type material of Desiforda echinochloaphaga was examined and found to be a typical Pemphigus.Published as part of Victor, Eastop, F. & Blackman, Roger L., 2005, Some new synonyms in Aphididae (Hemiptera: Sternorrhyncha), pp. 1-36 in Zootaxa 1089 on page 11, DOI: 10.5281/zenodo.27334
sou-cheng-choi/GAIL_Dev:
GAIL is a suite of algorithms for integration problems in one, many, and infinite dimensions, and whose answers are guaranteed to be correct. GAIL is created, developed, and maintained by Fred Hickernell (Illinois Institute of Technology), Sou-Cheng Choi (University of Chicago and Argonne National Laboratory), and their collaborators including Yuhan Ding (IIT), Lan Jiang (IIT), and Yizhi Zhang (IIT)
Gansuceratoikiscum Wang, Cheng & Zhang 2010
Gansuceratoikiscum Wang, Cheng & Zhang, 2010 Gansuceratoikiscum Wang, Cheng & Zhang, 2010: 48. TYPE SPECIES. — Gansuceratoikiscum guanzhuangensis Wang, Cheng & Zhang, 2010 (Wang et al. 2010: 473, pl. 1, fig. 11). AGE AND LOCATION OF TYPE MATERIAL. — Sandbian, Upper Ordovician, Pingliang Formation, Gansu Province, China. TAXON CODE. — 015. STATUS. — Valid. DIAGNOSIS. — “Six rod-like primary spines positioned in eccentric place. The pairs of caveal ribs are paired on the dorsal rod of the a-rod; The patagial tissue is present on one lateral side of the i-rod. A single row of arches (or by-spines) connect the primary spines, forming a simple cortical shell.”(Wang et al. 2010: 48). REMARKS This genus differs from Protoceratoikiscum in that it has a framework composed of 6 rods connecting to a median bar. Ceratoikisum has 3 rods (a, b, intersector) that cross to form a triangle. It differs from Protoceratoikiscum in that it possesses row of arches that connect the primary rods to form a subcircular shell, and the rods join in an eccentric position in Gansuceratoikiscum.Published as part of Noble, Paula, Aitchison, Jonathan C., Danelian, Taniel, Dumitrica, Paulian, Maletz, Jörg, Suzuki, Noritoshi, Cuvelier, Jessie, Caridroit, Martial & O'Dogherty, Luis, 2017, Taxonomy of Paleozoic radiolarian genera, pp. 419-502 in Geodiversitas 39 (3) on page 424, DOI: 10.5252/g2017n3a4, http://zenodo.org/record/520658
Light People: Professor Cheng Zhang
Editorial Nanophotonics has emerged as a cutting-edge interdisciplinary research field today. Its primary objective is to leverage the interaction between light and matter at the wavelength and sub-wavelength scales, with the purpose of designing and manufacturing miniaturized, multifunctional, and high-performance optical devices and systems. Professor Cheng Zhang from Huazhong University of Science and Technology has dedicated his career to nanophotonic device research. His work encompasses a wide range of areas, including plasmonic devices, optical metamaterials, and metasurfaces. Through the design of innovative artificial electromagnetic structures and the exploration of emerging nanofabrication techniques, Professor Cheng Zhang has effectively achieved versatile control over various properties of electromagnetic waves, including amplitude, phase, and polarization states. Furthermore, his research extends to the continuous exploration of novel optical phenomena, aimed at realizing high-performance engineering applications. In this edition of Light People, we will take you deep into the world of Professor Cheng Zhang, a young scientist exemplifying the spirit of innovation, relentless improvement, and unwavering pursuit of excellence. You will discover how he has overcome numerous challenges in the realm of nanophotonic research
Correction: Zhang et al. The Impact of Green Financial Policy on the Regional Economic Development Level and AQI—Evidence from Zhejiang Province, China. Sustainability 2023, 15, 4068
Regarding the author correction request, it has been clarified that the original paper was composed by Daping Zhang, Pinzhen Cheng, Minxing Wang, Zhenming Chen and Lufei Huang [...
Amnifleckia Zhang, Fleck, Huang, Nel, Ren, Cheng & Lin, 2006, n. gen.
Genus Amnifleckia n. gen. Zhang, Ren, and Cheng Type species. Amnifleckia guttata n. sp. Zhang, Ren, and Cheng, Other species. Amnifleckia splendida n. sp. Etymology. After the Latin word “Amni” (meaning “river”) for the paleoenvironment with mountain streams and Günther Freck, which described the first Isophlebioid dragonfly from China. Diagnosis. Wings rather long and narrow; fore wing distinctly longer than hind wing (by about 9 percent); no cross-veins between Ax 1 and Ax 2; discoidal and subdiscoidal areas free in both pairs of wings; fore wing discoidal space basally opened, unlike the closed discoidal space in hind wing; subdiscoidal space free, large, transverse and posteriorly limited by AA; gaff long; CuA very short; pterostigmata basally recessed, with at least two cross-veins below; fore wing pterostigma distinctly shorter than that of hind wing; IR 2 distinctly originating from RP.Published as part of Zhang, Bing-Lan, Fleck, Gunther, Huang, Di-Ying, Nel, André, Ren, Dong, Cheng, Xiao-Dong & Lin, Qi-Bin, 2006, New isophlebioid dragonflies (Odonata: Isophlebioptera: Campterophlebiidae) from the Middle Jurassic of China, pp. 51-68 in Zootaxa 1339 on page 53, DOI: 10.5281/zenodo.17436
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