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11篇 您的检索式:作者名="Robert TN"
    题名 作者 年代 出处 被引量
1Clinical challenges in the pharmacologic management of agitation显示文摘ANTHONY TN SCOTT LZ ROBERT WR 2010Primary Psychi- atry2010,17,8:1
2Ligand binding and co - activator assembly of the peroxisome proliferator - activated receptor - γ显示文摘Robert TN Bruce Wisely G Stefan W 1998Nature1998,395,:1
3A comparison of peritonitis rates from the United States renal data system database:CAPD versus continuous cycling peritoneal dialysis patients显示文摘Oo TN Roberts TL Collins AJ 2005Am J Kidney Dis2005,45,37:1
4Preecampsia:An endothelial cell disorder显示文摘Roberts JM Taylor TN Music TJ 1989Am J Obstet Gynecol1989,161,5:1
5A comparison of peritonitis rates from the United States Renal Data System database: CAPD versus continuous cycling peritoneal dialysis patients 显示文摘Oo TN Roberts TL Collins AJ 2005Am J Kidney Dis2005,45,2:1
6A comparison of peritonitis rates from the United States renal data system database:CAPD ver- sus continuous cycling peritoneal dialysis patients 显示文摘Oo TN Robert s TL Collins AJ 2005American Journal of Kidney Diseases2005,45,2:1
7Pancreatitis and parotitis following therapy with L-asparaginase显示文摘Craig TN Robert Wilkinson Kelly Woodruff 1999International Pediatrics1999,14,1:1
8High-performance motion control of an induction motor with magnetic saturation 显示文摘Robert TN John C 1999IEEE Trans Contorl Systems Technology1999,7,3:1
9A comparison of peritonitis rates from the United States Renal Data System database:CAPD versus continuous cycling peritoneal dialysis patients显示文摘Oo TN Roberts TL Collins AJ 2005Am J Kidney Dis2005,45,:1
10A comparison of peri-ton iris rates from the United States Renal Data System database:CAPD versus continuous cycling peritoneal dialysis patients显示文摘Oo TN Roberts TL Collirrs AJ 2005Am J Kidney Dis2005,45,2:1
11Inverse Heat Conduction and Data-Type Issues for Advanced Diagnostic Analysis显示文摘It is well-known that the local heating/cooling rate implicitly drives the quality and stability of the projection associated with an inverse heat conduction analysis. However, contemporary studies involving inverse heat conduction for heat treatment processes and defense related applications normally use either temperature or strain data. An illustration is presented indicating the merit of using a device capable of either measuring or deducing the heating/cooling rate. Armed with this knowledge certainly suggests that the direct measurement or deduction of the heating/cooling rate can provide a means for developing an alternative and potentially more accurate projection than based on temperature data. A brief theoretical description is offered illustrating that a first-order thermocouple compensation model used in conjunction with an inverse analysis produces a representative prediction of the heating/cooling rate. The presented analysis also offers additional insight into the choice of optimal time-series truncation used by quasi-analytic methods. Using the compensation model, the heating/cooling rate of the desired surface is obtained using the 'best' interpretation of the collected thermocouple data. A mathematical formalism is developed and some representative results are presented. Finally, a new mathematical discovery that allows for the time-local temperature errors to be estimated with a high degree of accuracy is briefly elucidated.J.I. Frankel 1.Professor and Robert M. Condra Professor, Mechanical and Aerospace Engineering and Engineering Science Department, University of Tennessee, Knoxville, TN 37996-2210 2000Journal of Shanghai Jiaotong university(Science)2000,5,1:0
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