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个人利益与社会公共利益——关于斯密原理、布坎南公共选择理论与赫维茨机制设计理论的比较研究 被引量:20
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作者 钟晓敏 高琳 《财经论丛》 CSSCI 北大核心 2010年第1期19-24,共6页
亚当.斯密在18世纪开创了市场经济理论体系,布坎南的公共选择理论把斯密的理论体系扩展到政治市场,而赫维茨开创的机制设计理论则对斯密理论体系给予了现代解释与证明,并在此基础上提供了弥补市场机制缺陷的机制设计方法。透过分析,我... 亚当.斯密在18世纪开创了市场经济理论体系,布坎南的公共选择理论把斯密的理论体系扩展到政治市场,而赫维茨开创的机制设计理论则对斯密理论体系给予了现代解释与证明,并在此基础上提供了弥补市场机制缺陷的机制设计方法。透过分析,我们发现这三个理论具有很强的内在关联,贯穿它们的一根主线是:试图达到个人利益与社会公共利益激励兼容。 展开更多
关键词 斯密原理 布坎南公共选择理论 机制设计理论 个人利益 社会公共利益
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劳动分工的起源和制约——从斯密困境到广义斯密原理 被引量:33
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作者 陈平 《经济学(季刊)》 2002年第2期227-248,共22页
“斯密困境”指斯密理论(看不见的手)与斯密定理(劳动分工受到市场规模的限制)的不能兼容。本文用生态文化的非线性动力学模型描写市场竞争和劳动分工。斯密困境可以用稳定性和复杂性之间的消长关系来解释。“广义斯密原理”即劳动... “斯密困境”指斯密理论(看不见的手)与斯密定理(劳动分工受到市场规模的限制)的不能兼容。本文用生态文化的非线性动力学模型描写市场竞争和劳动分工。斯密困境可以用稳定性和复杂性之间的消长关系来解释。“广义斯密原理”即劳动分工受市场规、资源种类和环境涨落的三重限制,可解释历史上劳动分工发展的多样性。 展开更多
关键词 斯密困境” 广义斯密原理 劳动分工 复杂系统 资源限制 市场份额
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Ionization of Atoms and the Thomas-Fermi Model for the Electric Field in Crystal Planar Channels
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作者 LIUYing-Tai ZHANGQi-Ren 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第3期361-364,共4页
The electric field in the crystal planar channels is studied by the Thomas-Fermi method. The Thomas-Fermi equation and the corresponding boundary conditions are derived for the crystal planar channels. The numerical s... The electric field in the crystal planar channels is studied by the Thomas-Fermi method. The Thomas-Fermi equation and the corresponding boundary conditions are derived for the crystal planar channels. The numerical solution for the electric field in the channels between (110) planes of the single crystal silicon and the critical angles of channelling protons in them arc shown. Reasonable agreements with the experimental data are obtained. The results show that the Thomas-Fermi method for the crystal works well in this study, and a microscopic research of the channel electric field with the contribution of all atoms and the atomic ionization being taken into account is practical. 展开更多
关键词 ionization of atoms Thomas-Fermi method for the crystal electric field in channels
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Magnetic-structure coupling dynamic model of a ferromagnetic plate parallel moving in air-gap magnetic field 被引量:1
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作者 Yuda Hu Tianxiao Cao Mengxue Xie 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第10期145-155,共11页
Aiming at the air-gap magnetic field excited by wall armatures,Laplace’s partial differential equation of air-gap magnetic potential is achieved by means of the electromagnetic field theory.According to the magnetic ... Aiming at the air-gap magnetic field excited by wall armatures,Laplace’s partial differential equation of air-gap magnetic potential is achieved by means of the electromagnetic field theory.According to the magnetic boundary conditions and the method of separation of variables,the magnetic potential of the air-gap magnetic field is obtained.Based on the magnetization force model and Lorentz force of ferromagnetic thin-walled structures,and introducing the electromagnetic constitutive relations and boundary conditions,the calculation model of electromagnetic force of the soft ferromagnetic thin plate moving in air-gap magnetic field is established.Considering geometric nonlinearity,expressions of strain energy and kinetic energy of the elastic thin plate and the work of forces are given,respectively.The magnetic-structure coupling nonlinear vibration equations of ferromagnetic thin plate parallel moving in the air-gap magnetic field excited by armatures are obtained by using the Hamilton principle,which can be of the characterization of the system dynamics model with electro-magneto-velocity-mechanical interaction.Through numerical examples,primary resonance characteristics of the strip thin plate under the action of air-gap magnetic force are obtained.The results show that the two stable amplitude values will increase as amplitude of magnetic potential increases and thickness of air-gap decreases,and the amplitude’s multi-valued region will change due to the varieties of magnetic potential,air-gap and velocity.The model established in this paper is a theoretical reference for investigation on the multi-field coupling dynamic behaviors of structures moving in complex electromagnetic fields. 展开更多
关键词 Ferromagnetic thin plate Magnetic-structure coupling dynamics Air-gap magnetic field In-plane motion Magnetic potential equation
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