404 research outputs found

    Now I know my ABCs : U.S.-China policy on AI, big data, and cloud computing

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    For more about the East-West Center, see http://www.eastwestcenter.org/Artificial Intelligence (AI), Big Data, and Cloud Computing (ABC) have generated unprecedented opportunities and challenges for economic competitiveness, national security, and law and order, as well as the future of work. ABC policies and practices have become contentious issues in U.S.-China bilateral relations. Pundits see a U.S.-China AI race and are already debating which country will win. Kaifu Lee, the CEO of Sinovation Ventures, believes that China will exceed the United States in AI in about five years. Others argue that China will never catch up. This essay focuses on two issues: the comparative ABC strengths of the United States and China in data and research and development (R&D); and the emerging ABC policies and practices in the two nations. Empirical analysis suggests that the United States and China lead in different areas. Compared to China's top-down, whole-of-government, national-strategy approach, the U.S. ABC policy has been less articulated but is evolving

    US-China technology competition is about "self transcendence"

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    For more about the East-West Center, see http://www.eastwestcenter.org/Dr. Wenhong Chen, Visiting Fellow at the East-West Center, explains that "In the pursuit of the Chinese Dream — a narrative of the great rejuvenation of the Chinese people — China has been purposefully and skillfully developing AI, Big Data, and Cloud Computing.

    Magnetostructural Transformation and Magnetoresponsive Properties of MnNiGe1-xSnx Alloys

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    The martensitic and magnetic phase transformations in MnNiGe1-xSnx (0 \leq x \leq 0.200) alloys were investigated using X-ray diffraction (XRD), differential thermal analysis (DTA) and magnetization measurements. Results indicate that the increasing Sn substitution in MnNiGe1-xSnx results in (i) decrease of martensitic transformation temperature from 460 to 100 K and (ii) conversion of AFM spiral to antiparallel AFM strcuture in martensite. Based on these, the remarkable magnetic-field-induced PM/spiral-AFM and FM/AFM magnetostructural transformations and, large positive and negative magnetocaloric effects are obtained. The magnetoresponsive effects of MnNiGe1-xSnx alloys are enhanced by Sn substitution. A structural and magnetic phase diagram of MnNiGe1-xSnx alloys has been proposed.Comment: 3 pages and 4 figure

    Half-titanocene 5-t-butyl-2-(1-(arylimino)methyl)quinolin-8-olate chlorides: Synthesis, characterization and ethylene (co-) polymerization behavior

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    A series of half-titanocene chloride complexes bearing 5-t-butyl-2-(1-(arylimino)methyl)quinolin-8-olate ligands (L), CpTiLCl₂, has been synthesized in acceptable yields by the stoichiometric reaction of CpTiCl₃ with the respective potassium 5-t-butyl-2-(1-(arylimino)methyl)quinolin-8-olate. All half-titanocene complexes were fully characterized by elemental analysis and NMR spectroscopy, and the molecular structures of the representative complexes C1 and C2 were confirmed as pseudo octahedral at titanium by single-crystal X-ray diffraction. When activated with methylaluminoxane (MAO) or modified methylaluminoxane (MMAO), all titanium complexes exhibited good activities (up to 4.8 × 10⁵ g mol⁻¹(Ti) h⁻¹) towards ethylene polymerization. The obtained polyethylene exhibited ultra-high molecular weight (up to 11.82 × 10⁵ g mol⁻¹) with narrow polydispersity. Furthermore, effective co-polymerization of ethylene with 1-hexene or 1-octene was achieved with several percentages of co-monomer incorporation in the resultant polyethylenes
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