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金融市场学(Financial markets)
本课程是金融学和财务管理专业的主干课程,是研究市场经济条件下金融市场运行机制及其各主体行为规律的一门学科。本课程从阐述金融市场的基本要素、功能、产生及发展的基本脉络入手,在此基础上对构成金融市场体系的主要子市场——货币市场、债券市场、股票市场、基金市场、外汇市场、黄金市场、金融衍生市场等,进行分别介绍和阐述。最后全面介绍金融市场监管的相关理论与实践。
This course is the main course for finance and financial management majors. that study financial market operating mechanism and the law of market main body behavior in the market economy. This course starts with the basic elements of the financial markets, function, emergence and development, then introduces and elaborates the main sub-markets of the financial market system including the money market, bond market, stock market, fund market, the foreign exchange market, gold market and derivatives markets. Finally, the course analyses the theories and practice of financial market supervision roundly.
财务管理_Financial Management
Financial Management is a core course for finance students. In this course we are going to introduce how firms use various financing strategy efficiently, how firm get financed with the lowest cost, and how they arrange their capital structure. Besides, we also document how firms invest, allocate profit, and conduct working capital management etc. Last but not the least, we also cover some important theories in morden corporate system, such as, the principle-angency theory. The course is suitable for undergraduate students who are aiming to work in the financial field after graduating and thoes who are interested in getting basic knowledge in mirco-finance.
计算物理基础(2019-2020第2学期)
《计算物理基础》课程是物理学专业的必修课程,是研究用计算机解决物理问题的数值计算方法及理论。通过该课程的学习,学生可以从具有普遍意义的数学模型或者实际问题出发,以MATLAB为工具,解决物理模型中典型的问题为主线,培养学生利用计算机来解决物理模型的能力。《计算物理基础》课程主要基于MATLAB软件介绍常用的计算方法及基础理论。主要内容有Matlab简介,迭代—分形图形,数值微分与数值积分,数据处理,解常微分方程,混沌,解偏微分方程,蒙特卡洛方法等。《计算物理基础》课程以教师讲授和学生小组讨论相结合,根据内容特点让学生适当参与讨论, 根据学生的课程论文,课后作业和期末考试,综合计算得到总评成绩。《计算物理基础》课程以高等数学和普通物理为基础,应用计算机编程和模拟来解决物理模型,强调数学算法和计算机上机的统一,以及加强学生独立自主解决物理问题的能力。
Computer Architecture (计算机体系结构--全英课程)
This course discusses the organizations, working mechanisms, designs, performance analyses and architectural optimizations of computing systems. Designed for first-year undergraduates at the School of Software, SCNU, this course aims to:
- Equip students with foundational knowledge of computer architecture (i.e., instruction set architecture, information representation, CPU design and microarchitecture, memory hierarchy, input/output systems, and performance analysis);
- Provide an up-to-date treatment of recent advancements in computer architecture that are critical to students' success in their future academic and career lives;
- Help students without prior technical experience get acquainted with hardware-related topics that are essential to software system design and performance enhancements;
- Offer an open platform with self-guided tutorials and labs enabling students to acquire relevant skills according to their individual needs and interests; and
- Deliver not-only high-quality technical contents in English but also a guided learning process preparing students for future interactions with international students and scholars in English.
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本门课程面向大学一年级学生开设,旨在介绍计算系统的组成、工作原理、设计方法、性能分析及结构优化。课程的主要目标有:
- 讲授计算机体系结构的基础知识(指令集、数据表示、处理器设计与微体系结构、存储系统、输入/输出、性能分析);
- 根据本专业学生未来的学术、职业发展需求,对计算机体系结构方面的相关最新进展进行介绍;
- 帮助无相关知识、经验的学生熟悉计算机体系结构中与软件系统设计和性能优化相关的硬件知识;
- 为学生根据自身需要及兴趣学习相关专业技能提供开放平台,使学有余力的学生通过自学教程和实验获得进一步提高;
- 汇总高质量的全英文技术资料,并引导学生参与各类课程活动,为其今后的国际交流打好基础。
苏霍姆林斯基与《给教师的一百个建议》
各位同学:
你们好!
欢迎参加苏霍姆林斯基与《给教师的一百个建议》课程学习。2020年春节学期,在学校统一安排下,将与3月2日正式开课。在当前情况下我们前期以网络学习为主,相关资源在本平台发布。为方便教学,我们将组建微信群(见二维码)和qq群(群号1014422271),请大家及时加入。课程组将由童汝根和钟罗金老师组成,还有一名助教郑立信师兄。
若有问题随时联络我,38396196@qq.com(推荐),13751885081(微信同号)。
课程负责人:童汝根
2020.2.25
翻译理论导读
This Course aims to train translation majors to engage critically with some of the most important and influential translation theories that have emerged in the West since the mid twentieth century. It studies and, (better still if we can) further on, interrogates the use and usefulness of translation theory by focusing on how theory informs practice and how practice, in turn, can necessitate a radical re-examination of theory. Students will develop greater self-consciousness about how they translate; they can explain with greater confidence why they translate in a particular manner. Details concerning the course are:
1. Assessment sees two major parts: 1) continuous assessment, including pre-reading literatures, presentations and translation assignments, accounts for 60%, 2) and the rest 40% is based on final term exam;
2. Each assignment will be allowed at least two weeks' time for students to finish. Assignments will be uploaded on due time. Please refer to the timetable for details. For the time being, all assignments are required to be submitted online before or on deadline at SCNU's Liru, which will record students' submission time slots and records. Non submission will lead to zero score on the assignments.
Electric Circuits Analysis I(双语课程:电路分析)
Electric circuit theory and electromagnetic theory are the two fundamental theories upon which all branches of electrical engineering are built. Many branches of electrical engineering, such as power, electric machines, control, electronics, communications, and instrumentation, are based on electric circuit theory. Therefore, the basic electric circuit theory course is the most important course for an electrical engineering student, and always an excellent starting point for a beginning student in electrical engineering education. Circuit theory is also valuable to students specializing in other branches of the physical sciences because circuits are a good model for the study of energy systems in general, and because of the applied mathematics, physics, and topology involved.
This course is the foundation on which most other courses in the electrical engineering curriculum rest. For this reason, put in as much effort as you can. Study the course regularly. This also may be your first course in electrical engineering. Although electrical engineering is an exciting and challenging discipline, the course may intimidate you.
Battery Materials and Science
In the class of Battery Materials and Science, you will learn the basic knowledge for battery materials. Besides, how to search online sources and how to interpret some specfic terms will also be involved.
现代教育技术
《现代教育技术》是一门面向全校师范生开设的教师教育课程,旨在帮助师范生建立现代教育教学理念,掌握必备的教育教学技术知识与技能,达到《教师教育课程标准(试行)》《中小学教师资格考试暂行办法》《中小学教师信息技术应用能力标准(试行)》等文件对教师的相关能力要求,为师范生应用信息技术提升工作效能、促进自身专业能力持续发展打下基础。
通过本课程的学习,学生能够掌握现代教育技术的基本知识,学会信息化教学设计方法,能合理整合信息化教学资源,采用恰当的教学模式进行信息化教学实践,提升信息化教学应用能力与教学设计技能。环境学导论
《环境学导论》是2004年清华大学出版社出版的图书,作者是何强、井文涌、王翊亭。
一 课程内容:
本课程的特色,突出人类活动与环境质量的关系,特别是全球性环境问题的状况,同时增加了环境经济概论一章。全书共分5部分、20章。
第1部分(第1、2章)论述人类的环境、当代世界环境问题、近代环境科学的内容与任务;
第2部分(第3-7章)介绍生态学原理、人口增长情况和粮食生产引起的环境总是以及生态学原理在环境保护和城市系统中的应用;
第3部分(第8-10章)讨论能源、资源与环境总是的关系;
第4部分(第11-19章)介绍环境污染的状况、成因、控制与发展趋势;
第5部分(第20章)介绍环境经济学的基本概念及目前的各种学派。
物流学原理
At
a fundamental level, any business or organization is concerned with delivering
value to its customers. Logistics is the process of strategically managing the
procurement, movement and storage of materials, parts and finished inventory
(and the related information flows) through the organization and its marketing
channels in such a way that current and future profitability are maximized
through the cost-effective fulfillment of orders. This course covers the
fundamentals of enterprise logistics management by introducing a set of
managerial and analytical principals that students can use to understand the logistics
functions and strategies of an enterprise.
S4_Expression écrite
Lien pour se connecter : https://zoom.us/j/675500192 ou numéro de réunion à partir de l'application Zoom : 675-500-192.
概率论与数理统计2018师范
概率论与数理统计既是数学与应用数学专业的必修课,也是非数学类各专业的一门重要的基础数学课程。作为现代数学的一个重要分支,它主要研究自然界、人类社会发展过程中各种随机现象的统计性规律。其理论与方法不仅被广泛应用于自然科学、社会科学、管理科学、生物医学以及工农业生产中,而且不断地与其它学科相互融合和渗透。该课程在培养学生的理性精神、逻辑推理能力、抽象思维能力、随机事件应对能力、处理数据能力和综合素质等方面有着独特和不可替代的作用,对实现各类专业培养教学型、研究型、探索型以及创新型人才提供了科学研究和基础实践的平台。
植物学
植物学课程主要研究植物的形态、分类、生态、分布、进化等。目的在于认识、利用、改造和保护植物资源,让植物为人类提供更多的食物、纤维、药物、建筑材料等。由于大部分资料仍采用二元分类法,故广义上的植物包括细菌、真菌、藻类、苔藓植物、蕨类植物、裸子植物、被子植物等。本课程主要在二方面:(1)形态学研究植物体(由细胞到器官各个层次)的结构及形状。植物形态学(Plant Morphology):是研究植物个体构造、发育及系统发育中形态建成的科学,它已发展为植物器官学、植物解剖学、植物胚胎学及植物细胞学。(2)系统学研究植物的鉴定、分类和演化规律等。植物分类学(Plant Taxonomy)和植物系统学(Plant Systematics):是根据植物的特征,植物间的亲缘关系、演化的顺序,对植物进行分类的科学,并在研究的基础上建立和逐步完善植物各级类群的进化系统。两者常常混用,但植物系统学更强调植物间的系统关系,即谱系。50年代以来,随着其他学科的发展,已产生出植物化学分类学、植物细胞分类学、植物超微结构分类学和植物数值分类学等进一步的分支学科;尤其80年代后期发展起来的分子系统学(Molecular Systematics)为植物的系统发育研究提供了新的手段。另外,对具体某一类群植物分类的研究也产生相应的分支学科,如:细菌学、真菌学、藻类植物学、苔藓植物学。
新媒体采写 Interviewing and Writing for New Media
The course of Interviewing and Writing for New Media is what enables students to skillfully conduct interviewing, writing, graphic editing and other work in English through diversified and open theoretical teaching and practice training.
The main contents of the curriculum are as follows: (1) Interview. Interview not only requires patience and confidence but also the extraordinary ability to listen, participate, observe and absorb. (2) Operation methods of software. The development of News Media is inseparable from the use of software, such as Photoshop, Premiere,CorelVideoStudio and so on.(3) Writing. Writing is a basic skill for News Media editors, so is writing in English. Hence, it is particularly important to cultivate students' writing ability.新媒体与社会
The introduction of new media platforms has single handily changed society and altered the way we view ourselves and other people. For example, new media has changed the way most businesses operate and promote products. 以前人们获取新闻、消息的方式最大的途径就是通过报纸、杂志来获取,而通过互联网发展起来的新媒体,则成为了现在人们获取资料的第一途径。现在一部手机或者一台电脑就能实时获取全球最新的消息。本课程将围绕新媒体运营定位、企业新媒体形象定位以及企业新媒体运营规划几方面系统讲解关于新媒体定位策略、主流新媒体平台基本操作、公众号/微博/头条号等媒体形象设计、人格化设定、企业新媒体运营定位流程、市场调研等知识。此外,本课程将围绕新媒体运营的主要吸粉策略、微信公众号吸粉方法、微博涨粉策略等几方面详细讲解关于新媒体运营推广和拉新的相关知识。