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      • Theories of Religious Relationship and Christian-Buddhist Dialogue : A Christian Perspective

        Wang Zhicheng,Fu Yu 장로회신학대학교 2014 ASIA‒PACIFIC JOURNAL OF THEOLOGICAL STUDIES Vol.2 No.-

        This paper aims to examine the relationship between Buddhism and Christianity, especially the issue of how to see “the Other” through relationship theories of modern religions, e.g. Exclusivism, Inclusivism, Particularism, Pluralism and Comparativism. The exclusivists believe that conversion to Christianity is the only way for other religious adherents to salvation or liberation, thereby they deny the existence of identity among religious others, rendering the Christian-Buddhist Dialogue (CBD) impossible; the variant of Exclusivism-Particularism seeks to avoid the above impasse by making some room for dialogue through the distinction between language systems, the Otherness was translated into incommensurability arising from different languages; the Inclusivists subsume the Other as “Anonymous Christians” so that CBD turns into certain form of internal talk, the religious Others lose their own identities in this way; the pluralists respect the Other and their identities, then CBD enhances mutual understanding and enrichment for dialogue partners; the comparativists accept the Other and tries to go across the boundaries of religions, to be immered in the Other tradition and learn from the Other in the Other’s terminology and perspective. In this way, the understanding of one’s own tradition and faith are reinforced from the new insights.

      • KCI등재
      • KCI등재후보

        大学创业教育支持与导师制度对大学生创业意图影响关系中 :自我效能感的中介效果研究

        Wang Zhicheng,Kang Dongwei,Yang Mi lin 부산대학교 중국연구소 2017 Journal of China Studies Vol.20 No.3

        In the field of Chinese university students’ entrepreneurial intention, there is little previous studies concerns about the university educational support and entrepreneurial intention. In thi s research, we focus on whether the mentoring and university educational support have the positve effect to the sutdents’ entrepreneurial or not, the statistical population for the study includes the students from 4 universities in China. Among the 263 surveys distributed, 245 surveys were completed and usable. The relationship among the mentoring, university educational support, self-efficacy, and entrepreneurial intention are examined by the SPSS, AMOS, and Bootstrapping. Under the situation of mass entrepreneurship and innovation, the government and university should encourage their mind and good idea to become reality. So, how to develop their entrepreneurial intention is necessary to considered. In this research, the purpose of this study is to empirically investigate the effect of mentoring, university educational support on entrepreneurial intention in Chinese universities. The mediating role of self-efficacy in the relationship between mentoring, university educational support and entrepreneurial intention is analysed. The research results reveal that: firstly, mentoring, as well as university educational support has a positive significant relationship to self-efficacy. Secondly, Self-efficacy also positively relates to entrepreneurial intention. Thirdly, Self-efficacy mediated the relationship between mentoring, university educational support and entrepreneurial intention. Finally, Some practical recommendations to develop the entrepreneurial intention for Chinese university students were suggested. Since today’s youth are the potential entrepreneurs of the future, understanding their self-efficacy and entrepreneurial intention about contextual factors can be a contribution to the development for the literature, and an important step in designing a more effective policy mechanism in universities. Nowadays, reinforce the mentor system and university educational support for the graduates who have entrepreneurial intention is very necessary.

      • SCIESCOPUSKCI등재

        Channel and Gate Workfunction-Engineered CNTFETs for Low-Power and High-Speed Logic and Memory Applications

        Wang, Wei,Xu, Hongsong,Huang, Zhicheng,Zhang, Lu,Wang, Huan,Jiang, Sitao,Xu, Min,Gao, Jian The Institute of Electronics and Information Engin 2016 Journal of semiconductor technology and science Vol.16 No.1

        Carbon Nanotube Field-Effect Transistors (CNTFETs) have been studied as candidates for post Si CMOS owing to the better electrostatic control and high mobility. To enhance the immunity against short - channel effects (SCEs), the novel channel and gate engineered architectures have been proposed to improve CNTFETs performance. This work presents a comprehensive study of the influence of channel and gate engineering on the CNTFET switching, high frequency and circuit level performance of carbon nanotube field-effect transistors (CNTFETs). At device level, the effects of channel and gate engineering on the switching and high frequency characteristics for CNTFET have been theoretically investigated by using a quantum kinetic model. This model is based on two-dimensional non-equilibrium Green's functions (NEGF) solved self - consistently with Poisson's equations. It is revealed that hetero - material - gate and lightly doped drain and source CNTFET (HMG - LDDS - CNTFET) structure can significantly reduce leakage current, enhance control ability of the gate on channel, improve the switching speed, and is more suitable for use in low power, high frequency circuits. At circuit level, using the HSPICE with look - up table(LUT) based Verilog - A models, the impact of the channel and gate engineering on basic digital circuits (inverter, static random access memory cell) have been investigated systematically. The performance parameters of circuits have been calculated and the optimum metal gate workfunction combinations of ${\Phi}_{M1}/{\Phi}_{M2}$ have been concluded in terms of power consumption, average delay, stability, energy consumption and power - delay product (PDP). In addition, we discuss and compare the CNTFET-based circuit designs of various logic gates, including ternary and binary logic. Simulation results indicate that LDDS - HMG - CNTFET circuits with ternary logic gate design have significantly better performance in comparison with other structures.

      • SCIESCOPUSKCI등재

        HOMOLOGY AND SERRE CLASS IN D(R)

        Zhicheng, Wang Korean Mathematical Society 2023 대한수학회보 Vol.60 No.1

        Let 𝓢 be a Serre class in the category of modules and 𝖆 an ideal of a commutative Noetherian ring R. We study the containment of Tor modules, Koszul homology and local homology in 𝓢 from below. With these results at our disposal, by specializing the Serre class to be Noetherian or zero, a handful of conclusions on Noetherianness and vanishing of the foregoing homology theories are obtained. We also determine when Tor<sup>R</sup><sub>𝓼+t</sub>(R/𝖆, X) ≅ Tor<sup>R</sup><sub>𝓼</sub>(R/𝖆, H<sup>𝖆</sup><sub>t</sub>(X)).

      • KCI등재

        Guaranteed Fault-estimation Algorithm Based on Interval Set Inversion Observer Filtering

        Ziyun Wang,Mengdi Zhang,Yuqian Chen,Yan Wang,Zhicheng Ji 제어·로봇·시스템학회 2022 International Journal of Control, Automation, and Vol.20 No.11

        A guaranteed fault-estimation algorithm based on interval set inversion observer filtering is proposed for linear discrete-time systems with unknown but bounded disturbance and noise. The minimal conservative interval observer is designed by minimizing the F-norm of the state error. Vector Boolean operations and dimensional operations are used to develop a new interval set inversion algorithm to further contract the guaranteed interval estimation results of the observer. The computational complexity, memory requirements, and accuracy of the proposed algorithm are also analyzed. Finally, simulation examples are provided to verify the efficiency and practicability of the proposed algorithm.

      • KCI등재

        The occurrence mechanism and influencing factors of fault-slip rockburst

        Kangyu Wang,Guangjian Liu,Zonglong Mu,Zhicheng Wang,Hao Zhou 한국지질과학협의회 2023 Geosciences Journal Vol.27 No.5

        No method can simulate the stress wave generated by fault slip in the previous numerical simulation of fault-slip rockburst. As a result, the radiation characteristics cannot be simulated realistically, which causes the unclear mechanism of fault-slip rockburst. Therefore, the mechanical-parameter steepest descent method and static-dynamic analysis method were proposed. Taking the 7301 working faces of Zhaolou Coal Mine as the engineering background, the work analyzed the radiation characteristics of slip stress waves and the evolution characteristics of stress, cracks, and energy in the surrounding rocks of roadway in the process of rockburst. Besides, the influence law of fault geometric properties on rockburst was studied. (1) The mechanical-parameter steepest descent method based on the Mohr-Coulomb criterion could realistically simulate the stress waves generated by fault slip. (2) The fault-slip stress waves had the radiation characteristics of the P and S waves. The vibration velocity around the source was anisotropic, and the velocities of the P and S waves were 1,449 and 833 m/s, respectively. The simulation results were similar to real data. (3) The whole process of rockburst induced by fault slip was simulated. The process of fault-slip rockburst existed at the stable stage, initial rockburst stage, and full-scale rockburst stage. The number of tension cracks during the calm period was used as precursor information for rockburst. (4) The geometric characteristics of faults determined the radiation intensity and radiation area of the fault-slip stress waves, which significantly affected rockburst. The rockburst risk was higher in the roadway in the main radiation area of the S wave. Mechanical-parameter steepest descent, a numerical simulation method, provides a reference for simulating stress waves generated by fault slip. The results provide a basis for understanding the occurrence mechanism of fault slip rockburst and predicting the fault slip rockburst in real engineering.

      • KCI등재

        Channel and Gate Workfunction-Engineered CNTFETs for Low-Power and High-Speed Logic and Memory Applications

        Wei Wang,Hongsong Xu,Zhicheng Huang,Lu Zhang,Huan Wang,Sitao Jiang,Min Xu,Jian Gao 대한전자공학회 2016 Journal of semiconductor technology and science Vol.16 No.1

        Carbon Nanotube Field-Effect Transistors (CNTFETs) have been studied as candidates for post Si CMOS owing to the better electrostatic control and high mobility. To enhance the immunity against short - channel effects (SCEs), the novel channel and gate engineered architectures have been proposed to improve CNTFETs performance. This work presents a comprehensive study of the influence of channel and gate engineering on the CNTFET switching, high frequency and circuit level performance of carbon nanotube field-effect transistors (CNTFETs). At device level, the effects of channel and gate engineering on the switching and high frequency characteristics for CNTFET have been theoretically investigated by using a quantum kinetic model. This model is based on two-dimensional non-equilibrium Green’s functions (NEGF) solved self - consistently with Poisson’s equations. It is revealed that hetero -material - gate and lightly doped drain and source CNTFET (HMG - LDDS - CNTFET) structure can significantly reduce leakage current, enhance control ability of the gate on channel, improve the switching speed, and is more suitable for use in low power, high frequency circuits. At circuit level, using the HSPICE with look - up table(LUT) based Verilog - A models, the impact of the channel and gate engineering on basic digital circuits (inverter, static random access memory cell) have been investigated systematically. The performance parameters of circuits have been calculated and the optimum metal gate workfunction combinations of ФM1/ФM2 have been concluded in terms of power consumption, average delay, stability, energy consumption and power - delay product (PDP). In addition, we discuss and compare the CNTFET-based circuit designs of various logic gates, including ternary and binary logic. Simulation results indicate that LDDS - HMG - CNTFET circuits with ternary logic gate design have significantly better performance in comparison with other structures.

      • SCISCIESCOPUS

        Systematic characterization of A-to-I RNA editing hotspots in microRNAs across human cancers

        Wang, Yumeng,Xu, Xiaoyan,Yu, Shuangxing,Jeong, Kang Jin,Zhou, Zhicheng,Han, Leng,Tsang, Yiu Huen,Li, Jun,Chen, Hu,Mangala, Lingegowda S.,Yuan, Yuan,Eterovic, A. Karina,Lu, Yiling,Sood, Anil K.,Scott, Cold Spring Harbor Laboratory Press 2017 Genome research Vol.27 No.7

        <P>RNA editing, a widespread post-transcriptional mechanism, has emerged as a new player in cancer biology. Recent studies have reported key roles for individual miRNA editing events, but a comprehensive picture of miRNA editing in human cancers remains largely unexplored. Here, we systematically characterized the miRNA editing profiles of 8595 samples across 20 cancer types from miRNA sequencing data of The Cancer Genome Atlas and identified 19 adenosine-to-inosine (A-to-I) RNA editing hotspots. We independently validated 15 of them by perturbation experiments in several cancer cell lines. These miRNA editing events show extensive correlations with key clinical variables (e.g., tumor subtype, disease stage, and patient survival time) and other molecular drivers. Focusing on the RNA editing hotspot in miR-200b, a key tumor metastasis suppressor, we found that the miR-200b editing level correlates with patient prognosis opposite to the pattern observed for the wild-type miR-200b expression. We further experimentally showed that, in contrast to wild-type miRNA, the edited miR-200b can promote cell invasion and migration through its impaired ability to inhibit <I>ZEB1/ZEB2</I> and acquired concomitant ability to repress new targets, including <I>LIFR</I>, a well-characterized metastasis suppressor. Our study highlights the importance of miRNA editing in gene regulation and suggests its potential as a biomarker for cancer prognosis and therapy.</P>

      • KCI등재

        Interaction Matrix Based Analysis and Asymptotic Cooperative Control of Multi-agent Systems

        Zhicheng Hou,Jianxin Xu,Gong Zhang,Weijun Wang,Changsoo Han 제어·로봇·시스템학회 2020 International Journal of Control, Automation, and Vol.18 No.5

        In this paper, we investigate a decentralized asymptotic cooperative control problem of multi-agent systems with leader-follower configuration. We firstly develop a new method using a proposed “interaction matrix” for the analysis of cooperation convergence of multi-agent systems, i.e. both consensus of the agents states and trajectory tracking of the whole group can be instantaneously concluded only by observing the minimum eigenvalue of the interaction matrix. For a multi-agent system, the external given desired trajectory can be partially obtained (through sensing or detecting) by the leaders, but higher-order derivatives such as acceleration and jerk of the desired trajectory cannot be obtained. In this case, by using some conventional control methods, the trajectory tracking performance is always not satisfactory when a trajectory varies aggressively w.r.t. time. For the sake of asymptotic tracking of an arbitrary given external trajectory of a multi-agent system, we develop a nonlinear cooperative controller based on the robust integral of signum of cooperative error (RISCE) technique, where the interaction matrix is used. The simulation results show asymptotic convergence of cooperation by using the proposed control, and better performance compared to composited nonlinear feedback based PD (CNF-PD) control.

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