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14篇 您的检索式:作者名="Nianfu Yang"
    题名 作者 年代 出处 被引量
1Stochastic analysis of a general standby system with constant human error and arbitrary system repair rates显示文摘Nianfu Yang Dhillon B S 1995Microelectron Reliab1995,35,10:1
2Stochastic analysis of a general standby system with constant human error and arbitrary system repair rates 显示文摘Nianfu Yang Dhillon B S 1995Mi- cro electron Reliab1995,35,7:1
3Availability Analysis of a Repairable Standby Human-machine System显示文摘Yang Nianfu Dhillon B S 1995Microelectron Reliab1995,35,:1
4Availability of a man-machine system with critical and non-critical human error显示文摘Dhillon B S Nianfu Yang 1993Microelectron Reliab1993,33,:1
5Availbility analysis of a repairable standby human-machine system 显示文摘NIANFU YANG DHILLON B S 1995Microelectron Reliab1995,35,11:1
6Availability Analysis of a Repairable Standby Human-Machine System显示文摘 Dhillon B S 1995Microelectron Reliab1995,35,:1
7Availability analysis of a repairable standby human-machine system显示文摘Nianfu Yang Dhillon B S 1995Microelectron Reliab1995,35,:1
8Availbility analysis of a repairable standby human-machine system显示文摘Yang Nianfu Dhillon B S 1995Microelectron Reliab1995,35,11:1
9Availability analysis of a repairable standby human-machine system显示文摘Yang Nianfu Dhillon B S 1995Microelect:on Reliab1995,35,:1
10Availability analysis of a repairable standby human-machine system显示文摘Nianfu Yang Dhillon BS 1995Microelectron Reliab1995,35,:1
11Availabilith analysis of repairable standby human-machine system显示文摘Nianfu Yang Dhillon B S 1995Microelectron Reliab1995,35,:1
12Stochastic analysis of a general standby system with constant human error and arbitrary system repair rates显示文摘Yang Nianfu Dhillon B S 0,,:1
13Availability of a man-machine system with critical and non-critical human error显示文摘 Nianfu Yang 1993Microelectron Reliab1993,33,:1
14Temporal and spatial variations of carbon isotope signature reveal substantial contribution of bracts and internode assimilates to grain filling of japonica rice显示文摘Carbon isotope composition(δ^(13)C)of a plant organ is an inherent signature reflecting its physiological property,and thus is used as an integrative index in crop breeding.It is also a non-intrusive method for quantifying the relative contribution of different source organs to grain filling in cereals.Using the samples collected from two-year field and pot experiments with two nitrogen(N)fertilization treatments,we investigated the temporal and spatial variations of δ^(13)C in source organs of leaf,sheath,internode,and bracts,and in sink organ grain.Constitutive nature of δ^(13)C was uncovered,with an order of leaf(−27.84‰)Mengjiao Jiang Hongfa Xu Nianfu Yang Ganghua Li Yanfeng Ding Matthew J.Paul Zhenghui Liu 2021The Crop Journal2021,9,2:0
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