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9篇 您的检索式:作者名="Jerad"
    题名 作者 年代 出处 被引量
1Postcolonoscopy Appendicitis显示文摘Moorman Matthew L Miller Jerad P Khanduja Karamjit S Price Phillip D 2010The American Surgeon2010,,8:1
2Comparison of atrial fibrillation inducibility by electrical stimulation of either the extrinsic or the intrinsic autonomic nervous systems显示文摘Yuan Zhang Benjamin J. Scherlag Zhibing Lu Guo-Dong Niu William S. Yamanashi Cameron Hogan Jerad Fields Muhammad Ghias Ralph Lazzara Warren M. Jackman Sunny Po 2009Journal of Interventional Cardiac Electrophysiology2009,,1:1
3Vascular Tumors of Bone显示文摘Jesse L. Hart Mark A. Edgar Jerad M. Gardner 2014Seminars in Diagnostic Pathology2014,,:1
4Flood frequency analysis for nonstationary annual peak records in an urban drainage basin显示文摘Gabriele Villarini James A. Smith Francesco Serinaldi Jerad Bales Paul D. Bates Witold F. Krajewski 2009Advances in Water Resources2009,,8:1
5The role of intuition and deliberative thinking in experts’ superior tactical decision-making显示文摘Jerad H. Moxley K. Anders Ericsson Neil Charness Ralf T. Krampe 2012Cognition2012,,1:1
6Metastatic lymph node ratio in advanced gastric carcinoma: A betterprognostic factor than number of metastatic lymph nodes?显示文摘So-Young Lee Ilseon Hwang Young-Soo Park Jerad Gardner Jae Ro 2010International Journal of Oncology2010,,6:1
7Critique of Howard's argument for innate limits of chess performance or why we need an account based on acquired skill and deliberate practice显示文摘ERICSSON K A JERAD H MOXLEYA 0,,:1
8低自噪声:迈向高性能MEMS麦克风应用的第一步显示文摘微机电系统(MEMS)麦克风具有MEMS器件的许多典型优势,包括超小尺寸、低功耗、性能稳定(不随时间和温度而变化)等。但是,这些麦克风的音频特性尚不足以满足某些设计要求,例如需要捕捉来自远处的声音或需要使用多个麦克风时。如今,高性能MEMS麦克风正在实现新的可能,许多声学专家会指出:自噪声是第一个需要考虑的特性。自噪声——您需要知道的事情任何麦克风都会产生一定水平的噪声,噪声源包括其电子电路、传感器元件和外壳等。Jerad Lewis Paul Schreier 2013今日电子2013,,1:0
9Paths to low-cost hydrogen energy at a scale for transportation applications in the USA and China via liquid-hydrogen distribution networks显示文摘The cost of delivered H2 using the liquid-distribution pathway will approach$4.3-8.0/kg in the USA and 26-52 RMB/kg in China by around 2030,assuming large-scale adoption.Historically,hydrogen as an industrial gas and a chemical feedstock has enjoyed a long and successful history.However,it has been slow to take off as an energy carrier for transportation,despite its benefits in energy diversity,security and environmental stewardship.A key reason for this lack of progress is that the cost is currently too high to displace petroleum-based fuels.This paper reviews the prospects for hydrogen as an energy carrier for transportation,clarifies the current drivers for cost in the USA and China,and shows the potential for a liquid-hydrogen supply chain to reduce the costs of delivered H2.Technical and economic trade-offs between individual steps in the supply chain(viz.production,transportation,refuelling)are examined and used to show that liquid-H2(LH2)distribution approaches offer a path to reducing the delivery cost of H2 to the point at which it could be competitive with gasoline and diesel fuel.Xianming Jimmy Li Jeffrey D.Allen Jerad A.Stager Anthony Y.Ku 2020Clean Energy2020,4,1:0
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