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SCI期刊论文阅读与写作:工科:engineering

SCI期刊论文阅读与写作:工科:engineering

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  • ISBN:9787576337433
  • 装帧:一般轻型纸
  • 册数:暂无
  • 重量:暂无
  • 开本:26cm
  • 页数:362页
  • 出版时间:2024-03-01
  • 条形码:9787576337433 ; 978-7-5763-3743-3

内容简介

本书聚焦典型工科领域尤其是材料科学学科,选取权威国际SCI期刊刊发的研究论文作为素材,引导学生观察剖析论文摘要、引言、方法、结果与讨论、结论等章节的交际意图、篇章结构、修辞策略以及显著多用的词汇语法、短语、句法、语义和语用特征。

目录

Unit 1 Research Article Titles and Abstracts Text Ⅰ Highly Stable Tungsten Disulfide Supported on a Self-Standing Nickel Phosphide Foam As a Hybrid Electrocatalyst for Efficient Electrolytic Hydrogen Evolution Text Ⅱ Measuring the Competition Between Bimolecular Charge Recombination and Charge Transport in Organic Solar Cells Under Operating Conditions Text Ⅲ Fabrication of Graphene Oxide and Hyperbranched Polyurethane Composite Via in Situ Polymerization with Improved Mechanical and Dielectric Properties Unit 2 Introduction Sections Text Ⅰ Architected Cellular Piezoelectric Metamaterials: Thermo-Electro-Mechanical Properties Text Ⅱ Eddy Current Induced Dynamic Deformation Behaviors of Aluminum Alloy During EMF: Modeling and Quantitative Characterization Text Ⅲ Full-field Measurement With Nanometric Accuracy of 3D Superficial Displacements by Digital Profile Correlation: A Powerful Tool for Mechanics of Materials Unit 3 Methods Sections Text Ⅰ Live Imaging of Label-Free Graphene Oxide Reveals Critical Factors Causing Oxidative-Stress-Mediated Cellular Responses Text Ⅱ Lab Manual: Rockwell Hardness Test Text Ⅲ Mixed Surface Chemistry: An Approach to Highly Luminescent Biocompatible Amphiphilic Silicon Nanocrystals Unit 4 Results and Discussion Sections Text Ⅰ Determination and Modeling of Mechanical Properties for Graphene Nanoplatelet/Epoxy Composites Text Ⅱ A New Type of Vibration Isolator Based on Magnetorheological Elastomer Text Ⅲ Improvement of S355G10+N Steel Weldability in Water Environment by Temper Bead Welding Unit 5 Conclusion Sections Text Ⅰ Formation, Photoluminescence and Ferromagnetic Characterization of Ce Doped A1N Hierarchical Nanostructures Text Ⅱ High-Resolution Cryo-Electron Microscopy Structure of Block Copolymer Nanofibres with a Crystalline Core Text Ⅲ A Mesocrystal-Like Morphology Formed by Classical Polymer-Mediated Crystal Growth References
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