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论《骆驼祥子》中祥子的悲剧命运及其三维原因
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作者 程琳 《西安交通工程学院学术研究》 2023年第2期97-100,共4页
《骆驼祥子》是著名现实主义作家老舍先生的代表作品之一,也是我国现当代文学史上最优秀的长篇小说之一。整部小说通过描写小人物世界的悲欢,为我们展现出旧社会普通平民的生活图景。在作者笔下的主人公祥子是一个悲剧人物,从一开始对... 《骆驼祥子》是著名现实主义作家老舍先生的代表作品之一,也是我国现当代文学史上最优秀的长篇小说之一。整部小说通过描写小人物世界的悲欢,为我们展现出旧社会普通平民的生活图景。在作者笔下的主人公祥子是一个悲剧人物,从一开始对生活积极进取、勤劳善良,逐渐随落,到最后变得懒惰自私,甚至麻木不仁。这一系列的变化体现出当时在底层的民众真实的状态和生活的无奈,祥子代表着时代的缩影。本文结合《骆驼祥子》这部小说以及老舍先生个人成长经历,分析在当时的时代背景之下,祥子三起三落、跌宕起伏的人生之路。在此基础上,探讨导致祥子悲惨命运的三维原因。通过分析与探讨提供读者多角度的思考方向,也能更好地体会老舍先生所传递的情感。 展开更多
关键词 《骆驼祥子》 悲剧命运 三维原因
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Physicochemical bases for protein folding,dynamics,and protein-ligand binding 被引量:2
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作者 LI HuiMin XIE YueHui +1 位作者 LIU CiQuan LIU ShuQun 《Science China(Life Sciences)》 SCIE CAS 2014年第3期287-302,共16页
Proteins are essential parts of living organisms and participate in virtually every process within cells. As the genomlc sequences for increasing number of organisms are completed, research into how proteins can perfo... Proteins are essential parts of living organisms and participate in virtually every process within cells. As the genomlc sequences for increasing number of organisms are completed, research into how proteins can perform such a variety of functions has become much more intensive because the value of the genomic sequences relies on the accuracy of understanding the encoded gene products. Although the static three-dimensional structures of many proteins are known, the functions of proteins are ulti- mately governed by their dynamic characteristics, including the folding process, conformational fluctuations, molecular mo- tions, and protein-ligand interactions. In this review, the physicochemical principles underlying these dynamic processes are discussed in depth based on the free energy landscape (FEL) theory. Questions of why and how proteins fold into their native conformational states, why proteins are inherently dynamic, and how their dynamic personalities govern protein functions are answered. This paper will contribute to the understanding of structure-function relationship of proteins in the post-genome era of life science research. 展开更多
关键词 free energy landscape entropy-enthalpy non-complementarity RUGGEDNESS driving force thermodynamics kinetics
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