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用偏光显微镜研究聚合物的结晶形态是目前实验室中较为简便而实用的方法。 众所周知,随着结晶条件的不用,聚合物的结晶可以具有不同的形态,如:单晶、 树枝晶、球晶、纤维晶及伸直链晶体等。在从浓溶液中析出或熔体冷却结晶时,聚 合物倾向于生成这种比单晶复杂的多晶聚集体,通常呈球形,故称为“球晶
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当样品受到变化着的外力作用时,产生相应的应变。在这种外力作用下,对样 品的应力-应变关系随温度等条件的变化进行分析,即为动态力学分析。动态力学分 析是研究聚合物结构和性能的重要手段
文档格式:DOC 文档大小:107.5KB 文档页数:3
抗冲强度(冲击强度)是材料突然受到冲击而断裂时,每单位横截面上材料可 吸收的能量的量度。它反映材料抗冲击作用的能力,是一个衡量材料韧性的指标。 冲击强度小,材料较脆
文档格式:PPT 文档大小:803KB 文档页数:47
15.1 Introduction 15.2 Insertion sequences are simple transposition modules 15.3 Composite transposons have IS modules 15.4 Transposition occurs by both replicative and nonreplicative mechanisms
文档格式:PPT 文档大小:1.26MB 文档页数:47
20.1 Introduction 20.2 Eukaryotic RNA polymerases consist of many subunits 20.3 Promoter elements are defined by mutations and footprinting 20.4 RNA polymerase I has a bipartite promoter 20.5 RNA polymerase III uses both downstream and upstream promoters 20.6 The startpoint for RNA polymerase II 20.7 TBP is a universal factor 20.8 TBP binds DNA in an unusual way
文档格式:PPT 文档大小:1.12MB 文档页数:51
22.1 Introduction 22.2 Nuclear splice junctions are short sequences 22.3 Splice junctions are read in pairs 22.4 Nuclear splicing proceeds through a lariat 22.5 snRNAs are required for splicing 22.6 U1 snRNP initiates splicing 22.7 The E complex can be formed in alternative ways 22.8 5 snRNPs form the spliceosome
文档格式:PPT 文档大小:3.27MB 文档页数:60
9.1 Introduction 9.2 Transcription is catalyzed by RNA polymerase 9.3 The transcription reaction has three stages 9.4 A stalled RNA polymerase can restart 9.5 RNA polymerase consists of multiple subunits 9.6 RNA Polymerase consists of the core enzyme and sigma factor 9.7 Sigma factor is released at initiation 9.8 Sigma factor controls binding to DNA 9.9 Promoter recognition depends on consensus sequences
文档格式:PPT 文档大小:890KB 文档页数:42
11.1 Introduction 11.2 Lytic development is divided into two periods 11.3 Lytic development is controlled by a cascade 11.4 Functional clustering in phages T7 and T4 11.5 Lambda immediate early and delayed genes are needed for both lysogeny and the lytic cycle
文档格式:PPT 文档大小:1.52MB 文档页数:34
16.1 Introduction 16.2 The retrovirus life cycle involves transposition-like events 16.3 Retroviral genes codes for polyproteins 16.4 Viral DNA is generated by reverse transcription 16.5 Viral DNA integrates into the chromosome 16.6 Retroviruses may transduce cellular sequences 16.7 Yeast Ty elements resemble retroviruses 16.8 Many transposable elements reside in D. melanogaster 16.9 Retroposons fall into two classes 16.10 The Alu family has many widely dispersed members
文档格式:PPT 文档大小:1.58MB 文档页数:58
14.1 Introduction 14.2 Breakage and reunion involves heteroduplex DNA 14.3 Double-strand breaks initiate recombination 14.4 Double-strand breaks initiate snapsis 14.5 Bacterial recombination involves single-strand assimilation 14.6 Gene conversion accounts for interallelic recombination 14.7 Topological manipulation of DNA 14.8 Specialized recombination involves breakage and reunion at specific sites 14.9 Repair systems correct damage to DNA 14.10 Excision repair systems in E. coli 14.11 Controlling the direction of mismatch repair 14.12 Retrieval systems in E. coli 14.13 RecA triggers the SOS system 14.14 Eukaryotic repair systems
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