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1.Components and properties of blood 3. Physiology of blood cells 4.Hemostasis and Blood coagulation 2.Plasma 5. Blood Group
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电子科技大学:《聚变等离子体物理 Physics of Fusion Plasma》课程教学资源(课件讲稿)等离子体介绍
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• 第一节 质膜的化学组成 • 一、膜脂 • 二、膜蛋白 • 第二节 质膜的结构 • 一、质膜结构的研究历史 • 二、质膜的流动镶嵌模型 • 三、细胞膜的功能 • 第三节 细胞表面的分化 • 一、细胞外被 • 二、膜骨架 • 三、质膜的特化结构
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研究了利用直流电弧等离子体喷射(DC Arc Plasma Jet)的制备的大面积金刚石膜中的缺陷问题.研究表明:金刚石膜中的缺陷包括表面缺陷、晶内缺陷和晶界缺陷,以及由于内应力产生的金刚石膜宏观和微观裂纹.金刚石膜中的缺陷与制备工艺参数有着密切关系
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Using the Road Map Series for Successful Review . 1. Cell Physiology. I. Plasma Membrane II. Ion Channels III. Cell Signaling IV. Membrane Potential V. Structure of Skeletal Muscle VI. Neuromuscular and Synaptic Transmission VII. Smooth Muscle Clinical Problems Answers 2. Cardiovascular Physiology I. General Principles II. Hemodynamics III. Electrophysiology IV. Cardiac Muscle and Cardiac Output V. Cardiac Cycle with Pressures and ECG VI. Regulation of Arterial Pressure VII. Control Mechanisms and Special Circulations VIII. Integrative Function Clinical Problems Answers 3. Respiratory Physiology. I. Lung Volumes and Capacities II. Muscles of Breathing III. Lung Compliance IV. Components of Lung Recoil V. Airway Resistance
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1. Compartmentalization in Eukaryotic Cells; 2. The structural and functional relationship between the ER, Golgi complexes, lysosomes and plasma membranes of eukaryotic cells; 3. The pathways of proteins targeting and sorting, and its mechanisms; 4. The ways of protein modifications and intracellular sites after they are synthesized; 5. Types of vesicle transport and their functions
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《人体的社交网络——共生微生物》课外文献阅读:Changes in the gut microbiota composition and the plasma ghrelin level in patients with Helicobacter pylori-infected patients with eradicationtherapy
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一、血液(blood)的组成 血浆(plasma) 红细胞,白细胞,血小板 二、血清(serum) ---血液凝固后析出的淡黄色透明液体 三、血液的固体成分
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一、等离子体的一般性质 二、等离子体辅助CVD的机理和特点 三、等离子体辅助的CVD方法
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It is well known that rapidly pulsed current tends to concentrate near the surface of copper conductors forming a “skin”. A similar effect occurs when current flows through a highly conductive and rapidly moving plasma: current tends to concentrate near the entrance and exit of the channel. The reason is the appearance of a strong
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