23,793 research outputs found
羅近溪的「生生」思想探析 = The exploring of Luo Jin Xi’s “Sheng Sheng” thoughts
在羅近溪的思想中,「生生」一詞是主要的思想核心。而要追溯到生生一詞的出處,最早是出現在《周易》的「生生之謂易」與「天地大德曰生」。但《周易》中並沒有展開具體的討論。在宋代,儒學的代表如周敦頤、程顥、程頤等人,以「生生」來描述天地大德的表現,「生生」只是用來形容天地間生生不息的生命力。可以說,「生生」僅是涉及天地之德。 直到南宋朱熹才在其〈仁說〉,以「生生」構建了一個貫穿「天人關係」的思想體系。「生生」即是「生生之仁」,是貫穿天地間的仁德。明代王陽明則以「生生」來描繪太極的運作之理,也就是太極的「生生之理」。然而,羅近溪賦予了「生生」更豐富的意涵。在羅近溪的思想中,「生生」不僅限於形容天地之德,也是貫穿天人關係的「生生之理」,並且成為他思想體系中的樞紐概念,貫徹於天道個人倫實踐。由此可知,「生生」不僅是作為天地萬物本源的存在,而也落于日用實踐當中。作為天地萬物本源的存在,「生生」的表現層面在於無疆無盡的「費隱」;而「生生之源」也推動了乾坤、陰陽的運轉形成天地萬物。在實踐的層面上,「生生」是創造生命的所在。人也因為「生生」而創生,表現在「仁」、「壽」上。日用人倫方面,從個人的道德修養,如「不逾矩」、「一團和樂」等都是「生生」的具體實踐;家庭層面則是「孝弟慈」的發揮;社會國家的經世致用。這些都是儒家在《大學》提過的「齊家、治國、平天下」的最高理想。 Luo Jin Xi (know as Ru Fang, 1915-1588) , his school of Confucians thoughts represents Yang Ming School in late Ming Dynasty. He, as the heir of Yang Ming School in Tai Zhou, evolved his own school of thoughts in Xin Xue (Learn of Mind-heart). One of the keystones to understand his school of thoughts is Sheng Sheng(生生).Sheng Sheng appears in the earliest texts in history , Zhou Yi(《周易》). It says that Sheng Sheng means Yi(易). But it does not have further discussion. In Song Dynasty and Ming Dynasty, Sheng Sheng was used to describe the moral of heaven. Till Luo Jin Xi, he used Sheng Sheng to construct his school of thoughts. In his Confucian philosophy, Sheng Sheng has different layers of meanings. He used Sheng Sheng to build up heaven-man relationship. From Sheng Sheng , we can understand how this universe and our world were built. Moreover, Luo Jin Xi used Sheng Sheng to create his ethical philosophy, such as ‘seeking Ren(humanity)’and ‘Xiao Di Ci(Filial piety, fraternal duty, affection)’. The ultimate goal of his school of thoughts is to build up a harmonious society and country, which is also the idealistic world of Confucians thoughts. My thesis focuses on different layers of meanings of Sheng Sheng in Luo Jin Xi’s school of Confucians thoughts. In this thesis, I will have five chapters: (1) to explore the background of Luo Jin Xi’s study of Sheng Sheng,(2) to explore the different meaning of Sheng Sheng from Zhou Yi to Yang Ming and how it relates to Luo Jin Xi,(3)to explore how Sheng Sheng creates the world,(4)to explore the relationship of Sheng Sheng and daily moral practices,(5)conclusion.Bachelor of Art
Optimal beaconing control for epidemic routing in delay tolerant networks
Owing to the uncertainty of transmission opportunities between mobile nodes, the routing in delay-tolerant networks (DTNs) exploits the mechanism of opportunistic forwarding. Energy-efficient algorithms and policies for DTN are crucial to maximizing the message delivery probability while reducing the delivery cost. In this contribution, we investigate the problem of energy-efficient optimal beaconing control in a DTN. We model the message dissemination under variable beaconing rate with a continuous-time Markov model. Based on this model, we then formulate the optimization problem of the optimal beaconing control for epidemic routing and obtain the optimal threshold policy from the solution of this optimization problem. Furthermore, through extensive numerical results, we demonstrate that the proposed optimal threshold policy significantly outperforms the static policy with constant beaconing rate in terms of system energy consumption savings
Jin guang ming zui sheng wang jing 金 光 明 最 勝 王 經 [traduction de Yi jing].
Jin guang ming zui sheng wang jing 金 光 明 最 勝 王 經, traduction de Yi jingSuvarṇaprabhāsa-sūtra, traduction de Tan wu chan, cf. Jin guang ming jing.Suvarṇaprabhāsottamarāja-sūtra, trad. Yi jing, cf. Jin guang ming zui sheng wang jing.Suvarṇaprabhāsottamarāja-sūtraNumérisation effectuée à partir d'un document original.Juan 3, début manque, [pin 5]. T . 665, vol. 16, pp. 415 a 12-417 c. Bonne écriture calligraphique. Encre foncée. Caractères grattés et récrits. Quelques additions et corrections en surcharge à l'encre pâle, 28 colonnes par feuille, 16 à 18 caractères par colonne. Marges supérieures de 2,9à 3,1 cm, inférieures de mutilée 2,5 à 3,1 cm. Réglure
Jin guang ming zui sheng wang [jing] 金 光 明 最 勝 王 [經] trad. de Yi jing 義 淨.
Jin guang ming zui sheng wang jing 金 光 明 最 勝 王 經Suvarṇa-prabhāsa-uttamarāja-sūtraNumérisation effectuée à partir d'un document original.Car. jin 金 mutilé, dans le coin sup. gauche
Qin Jin liang sheng yan he fang yan bi jiao yan jiu /
Ben shu yi qin jin liang sheng huang he yan an fang yan de yu yin he ci hui wei zhu yao kao cha dui xiang, dui gai qu yu de fang yan shi shi jin xing miao xie, bi jiao, zai ci ji chu shang jin xing li lun de kao cha he jie shi = 本书以秦晋两省黄河沿岸方言的语音和词汇为 主要考察对象, 对该区域的方言事实进行描写, 比较, 在此基础上进行理论的考察和解释.Includes bibliographical references (pages 248-254).Ben shu yi qin jin liang sheng huang he yan an fang yan de yu yin he ci hui wei zhu yao kao cha dui xiang, dui gai qu yu de fang yan shi shi jin xing miao xie, bi jiao, zai ci ji chu shang jin xing li lun de kao cha he jie shi = 本书以秦晋两省黄河沿岸方言的语音和词汇为 主要考察对象, 对该区域的方言事实进行描写, 比较, 在此基础上进行理论的考察和解释
Nilotonia (Dartia) lii Yi, Jin & Guo 2009
116. Nilotonia (Dartia) lii Yi, Jin & Guo, 2009 Host/Habitat. Water. Distribution. Luyashan National Nature Reserve (Yi et al. 2009).Published as part of Ma, Min, Li, Sheng-Cai & Fan, Qing-Hai, 2015, Mites and ticks (Acari) in Shanxi Province, China: an annotated checklist, pp. 1-39 in Zootaxa 4006 (1) on page 20, DOI: 10.11646/zootaxa.4006.1.1, http://zenodo.org/record/28926
FIGURE 2 in Loropetalum axillare (Hamamelidaceae), a new species from Guangdong, China
FIGURE 2. Loropetalum subcordatum (Cultivated in South China Botanical Garden Guangzhou, Guangdong, China). A. Habitat. B. Branchlet. C. Branchlet. D. Leaves. E. Stipule. F. Petiole. G–L. Synflorescence. A–L: Photos by Zi-Chao Jin and You-Sheng Chen based on Z.C. Jin HZ202301 (IBSC).Published as part of <i>Jin, Zi-Chao, Xu, Lian-Sheng, Xu, Ye-Chun & Chen, You-Sheng, 2023, Loropetalum axillare (Hamamelidaceae), a new species from Guangdong, China, pp. 85-94 in Phytotaxa 622 (1)</i> on page 88, DOI: 10.11646/phytotaxa.622.1.6, <a href="http://zenodo.org/record/10145035">http://zenodo.org/record/10145035</a>
Spinirta Jin & Zhang 2020
Genus <i>Spinirta</i> Jin & Zhang, 2020 Chinese name <p>刺Żü属</p> Type species <p> <i>Spinirta jinyunshanensis</i> Jin & Zhang, 2020.</p>Published as part of <i>Wang, Lu-Yu, Irfan, Muhammad, Lu, Qian-Le, Zhang, Feng & Zhang, Zhi-Sheng, 2024, Six species of the spider genus Spinirta Jin & Zhang, 2020 from southern China (Araneae: Corinnidae), pp. 74-93 in European Journal of Taxonomy 917 (1)</i> on page 75, DOI: 10.5852/ejt.2024.917.2389, <a href="http://zenodo.org/record/10473449">http://zenodo.org/record/10473449</a>
A nanostructured composite material for hydrogen storage: design & analysis
Hydrogen has long been considered an ideal energy carrier for a sustainable energy economy, for both direct combustion and as a fuel for polymer-electrolyte fuel cells. One of the main challenges associated with the use of hydrogen is to find efficient methods of storage. Any method must be safe, reversible, cost-effective and practical. In this thesis, a general introduction to hydrogen energy and the hydrogen economy is provided, together with descriptions of incumbent and emerging storage methods. A mathematical framework for simulating sorption isotherms in microporous materials is developed. This framework provides explicit expressions for the excess, condensed, compressed and absolute hydrogen masses. Furthermore, key parameters such as the surface area and adsorption volume can be estimated (for the first time) using a single-step nonlinear regression analysis, with the use of any isotherm model. Values are derived for three classes of porous materials, showing consistency with experimental data. A novel composite consisting of titanate nanotubes decorated with nanostructured metal cyanide frameworks, e.g., cadmium ferricyanide (Cd3[Fe(CN)6]2), are synthesised. The equilibrium and kinetic hydrogen sorption properties of the titanate-nanotube/Cd3[Fe(CN)6]2 composite are studied at low, intermediate and high pressure (up to 150 bar), revealing uptake values of ca. 14 weight %, which compare favourably with known materials for hydrogen storage. The role of mass transport in the sorption process is investigated, including the effects of boundary-layer diffusion and intraparticle diffusion. The results suggest that the composite possesses good hydrogen mass transfer characteristics. The effects of the reaction environment during synthesis are explored and the samples are thoroughly characterised. Significant differences in the loading of Cd3[Fe(CN)6]2 on the titanate nanotubes are seen. Hydrogen and nitrogen sorption analyses reveal the role of the pore size distribution on the effective surface area for adsorption and, therefore, the hydrogen uptake
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