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14篇 您的检索式:作者名="Patrick Weber"
    题名 作者 年代 出处 被引量
1Large Unphosphorylated Aggregates as the Active Form of hsp27 Which Controls Intracellular Reactive Oxygen Species and Glutathione Levels and Generates a Protection against TNFα in NIH-3T3-ras Cells显示文摘Patrick Mehlen Eilen Hickey Lee A. Weber André-Patrick Arrigo 1997Biochemical and Biophysical Research Communications1997,,1:2
2Implementation of a quality improvement initiative in Belgian diabetic foot clinics: feasibility and initial results显示文摘Kris Doggen Kristien Van Acker Hilde Beele Isabelle Dumont Patricia Félix Patrick Lauwers Astrid Lavens Giovanni A. Matricali Caren Randon Eric Weber Viviane Van Casteren Frank Nobels 2014Diabetes Metab Res Rev2014,,5:1
3Expression of hypoxia-inducible genes in tumor cells显示文摘Stefan Kress Annette Stein Patrick Maurer Bernd Weber Jeannette Reichert Albrecht Buchmann Peter Huppert Michael Schwarz 1998Journal of Cancer Research and Clinical Oncology1998,,6:1
4构建完整工业ADC接口的微控制器和调制器显示文摘设计师们通常使用0mA~20mA和0V~10V的隔离输入作为工业应用控制的信号。由隔离电源、Analog Devices AD7400调制器内置隔离及Texaslnstruments MSP430微控制器共同为工业设计师要求的一种完整、隔离且可靠的模拟信号接口创建一种设计。其中精确的信号调节电路生成AD7400所需的较小的差分电压(图1),该电路可生成所需的200mV差分电压。为清晰起见,图中略去了过压二极管和保护电路。Patrick Weber Craig Windish 2007电子设计技术 EDN CHINA2007,14,10:1
5The impact of intraoperative culture on treatment and outcome in children with perforated appendicitis显示文摘Evan R Kokoska Mark L Silen Thomas F Tracy Patrick A Dillon Donald J Kennedy Thomas V Cradock Thomas R Weber 1999Journal of Pediatric Surgery1999,,5:1
6Bonding properties of metals aaodically bonded to glass显示文摘 Weber Patrick de Rooij Nicohas F 2004Bonding Sensors and Actuators A2004,114,:1
7Bonding properties of metals anodically bonded to glass 显示文摘Danick Briand Patrick Weber and NicolaasF deRooij 2004Sensor and Actuators A2004,114,23:1
8Editorial Assimilate Partitioning and Plant Development显示文摘Yong-Ling Ruan John W. Patrick Hans Weber 2010Molecular Plant2010,3,6:1
9Clinical progression and virological failure on highly active antiretroviral therapy in HIV-1 patients: a prospective cohort study显示文摘Bruno Ledergerber Matthias Egger Milos Opravil Amalio Telenti Bernard Hirschel Manuel Battegay Pietro Vernazza Philippe Sudre Markus Flepp Hansjakob Furrer Patrick Francioli Rainer Weber 1999The Lancet1999,,9156:1
10Bonding properitiess of metals anodically bonded to glass显示文摘Danick Briand Patrick Weber Nicolaas F de Rooij 2004Sensors and Actuators A2004,114,:1
11The Harmless Acute Pancreatitis Score: A Clinical Algorithm for Rapid Initial Stratification of Nonsevere Disease显示文摘Paul Georg Lankisch Bettina Weber–Dany Kathrin Hebel Patrick Maisonneuve Albert B. Lowenfels 2009Clinical Gastroenterology and Hepatology2009,,6:1
12Bonding properties of metals anodically bonded to glass 显示文摘Danick Briand Patrick Weber Nicolaas F de Rooij 2004Sensors and actuators A2004,114,:1
13Brominated flame retardant concentrations in sera from the Canadian Health Measures Survey (CHMS) from 2007 to 2009显示文摘Dorothea F.K. Rawn J. Jake Ryan Amy R. Sadler Wing-Fung Sun Dorcas Weber Patrick Laffey Douglas Haines Kristin Macey Jay Van Oostdam 2014Environment International2014,,:1
14Effective depth-of-penetration range due to hardness variation for different lots of nominally identical target material显示文摘The effect of small variations of target hardness on the depth of penetration for nominally identical target material has not been addressed systematically in publications yet and is often neglected. An investigation of this issue for laboratory-scale long rod projectiles penetrating into semi-infinite rolled-homogeneous-armor steel targets was conducted. The tungsten-heavy-alloy penetrators were of length 90 mm and diameter6 mm. Five lots of armor steel with a nominal hardness range of 280–330 BHN provided material for the targets. The pursued approach consisted of hardness testing of the targets, in total 17 ballistic experiments at velocities in between 1250 m/s and 1780 m/s and data analysis.A linear regression analysis of penetration vs. hardness shows that a target hardness increase within the given range of 280–330 BHN may result in a reduction of penetration depth of about 5.8 mm at constant velocity. This is equal to a change of-12% at an impact velocity of 1250 m/s. A multiple linear regression analysis included also the influence of yaw angle and impact velocity. It shows that small yaw angles and slight variations of impact velocities provide a smaller variation of the semi-infinite penetration depths than a variation of target hardness within a typical specification span of 50 BHN. For such a span a change in penetration of approximately-4.8 mm due to hardness variation is found, whereas 1°of yaw angle or-10 m/s of velocity variation gives a change of about-1.0 mm respectively-0.9 mm. For the given example, the overwhelming part of the variation is to be attributed to hardness effects – 4.8 mm out of 5.8 mm(83%). For nominally identical target material the target hardness thus influences the ballistic test results more severely than the typical scatter in impact conditions.Patrick FRUEH Andreas HEINE Karl Ernst WEBER Matthias WICKERT 2016Defence Technology(防务技术)2016,12,2:0
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