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有关化学专业的论文题目

发布时间:2024-07-08 21:36:13

有关化学专业的论文题目

化学论文的课题还是比较广的,但是相对来说也会比其他论文难一些,去投的话,还是需要润色一下的,我找的是清北医学翻译,价格比较便宜。

有很多有,我知道的化学类的期刊都有很多,有机化学研究、物理化学进展、比较化学、分析化学进展等等

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化学专业成教毕业论文参考题目一、教学法方向1.国外化学课程改革的历史及发展趋势研究2.我国化学课程改革的历史及发展趋势研究3.国外典型化学课程、教材的基本理念和内容体系研究4.我国化学新课标教材专题内容的横向比较研究5.我国高中化学新课标必修教材和选修教材的功能定位和内容体系研究6.我国高中化学新课标教材中各个栏目的教学价值、活动设计和教学策略研究7.科学探究的本质及科学探究教学的有效策略研究8.初、高中化学新课标教材的内容衔接研究9.化学实验教学的理论和实践研究10.化学教师的教学理念和教学行为研究11.试论化学教学的艺术12.化学基础理论的教学策略研究13.化学基本概念的教学策略研究14.元素化合物的教学策略研究15.高中化学课程资源的开发策略研究——以《某***节内容为例》16.教学反思与化学教师的专业成长17.有效探究教学设计初探——以《某***节内容为例》18.化学教学中的科学方法教育19.初、高中学生化学学习兴趣、动机的研究20.高一新生化学学习障碍的成因分析研究21.农村学生化学学习动机的调查研究22.论化学教材中插图的价值与使用策略23.化学教学中实施绿色化学教育的策略研究24.化学新课程教学中的问题与对策初探25.基于观念建构的化学基本概念教学策略——以《******》教学为例26.化学教师的教学理念与教学行为一致性程度研究27.先行组织者理论在化学教学中的应用研究28.科学探究中的科学本质教育29.化学教师的科学探究观调查研究30.有效实施科学探究的教学设计策略研究31.论化学探究性学习的评价性问题32.化学课堂教学逻辑设计的问题探讨33.新课程背景下教学设计中存在的问题与对策探讨34.新课程背景下高中化学教师教学行为的适应性研究35.论化学课堂提问的优化36.化学教师对模型的认识与应用研究37.合作学习在化学实验教学中的案例初探38.中学化学教学中的环境及可持续发展教育39.室内空气污染的来源,对人体健康的影响及防治对策研究40.试论光化学烟雾的形成条件、机理、危害及防治措施41.化学教学中开展研究性学习案例初探42.中学化学实验绿色化研究43.论高中化学章节间的结构联系44.污染中有机污染物的调查及处理45.试论多媒体教学手段在中学化学教学中的应用 自考课程免费试听46.试论我国的酸雨问题及防治对策47.化学学困生的成因及防治策略48.有效利用化学史的教学策略49.例谈教学中化学与其它学科的综合50.试论有效学习情境创设的有效策略 二、分析化学方向1.化学与食品安全2.化学与农药残留 3.化学与环境4.化学与现代农业5.化学与生命6.微量元素与人体健康 7.维生素与人体健康8.化学与能源和资源的利用9.浅谈在化学教学中绿色化学观念的渗透10.环境教育在中学教学中的意义11.溶液酸碱度的表示法----PH值的教学研究与设计12.浅谈化学定性分析实验在中学化学教学中的重要性13.如何增强化学定性分析实验的趣味性 三、物理化学方向1.各种体系的状态性质加和性的比较研究2.热力学公式导出条件与应用条件分析3.三相平衡线的热力学分析4.热力学标准态和标准热力学函数5.胶体分散系的稳定理论评述6.反应进度的概念及在物理化学中的应用7.根据热力学原理讨论浓度对化学平衡的影响8.中学化学教学中有关化学平衡原理的探讨9.中学化学教学中有关化学反应速率知识的探讨10.“化学反应原理”模块教学方法探讨11.新课标体系中《化学反应原理》模块知识解析——化学反应的方向和限度 四、结构化学方向1.利用一维势箱模型处理共轭体系2.波函数与电子云3.电子运动的宏观性与微观性4.电子结构与元素周期律5.第二周期双原子分子及其离子共价键结构比较6.几种典型分子化学键的比较与探讨7.有关氢键理论研究的现状及前景8.金属晶体的堆积型式与点阵型式9.离子晶体的堆积型式与点阵型式 五、有机化学方向1. 《化学必修2》模块中有机化合物知识内容变化及教学策略探究2. 高中课程标准选修模块《有机化学基础》教材内容建构3 近三年来新课标高考理综有机化学试题分析研究4. 在新课程中有机化学实验教学研究5. 有机化学实验教学中绿色化学教育的实践6.烷、烯或炔制备的改进(可选其中之一)7. 新课程理念下有机化学教学改革方式探索8.“苯、芳香烃"课堂教学探讨9.有机分子不饱和度的计算及在解题中的应用10.试论中学有机化合物的教学特点11.如何增加有机化学实验的趣味性12.有机实验在有机化学教学中的作用13.如何在“煤和石油”的教学中让学生了解我国的石化工业14.含氧有机化合物教学中结构与性质关系的探讨15.中学有机实验改进意见16.影响有机物水溶性因素的探讨17.有机物命名中常见的错误18.搞好有机化学复习的几点体会19.有机化合物的同分异构现象20.有机化合物的酸碱性及其结构因素21.中学有机化学教学中注重与实际联系的点滴做法

有关自动化专业的英文论文题目

电气工程:1Electrical Engineering My decision to pursue graduate study in the United States is underscored by my desire to be a part of the graduate program at your institution. Purdue University offers the flexibility needed for such a vast and rapidly changing field. The research facilities and the faculty at the university are par excellent. Communications is an industry that has changed our lives. In a very short period it has changed the way we have looked at things since centuries. It is one industry that is going to shape our future for centuries to come. Hence my desire to do masters in electrical engineering with communications as my major. My interest in electronics blossomed during my high school years. It was the time when technology had begun to make an impact on the lives of people in India. Hence engineering with electronics as my major was the first choice for my undergraduate studies. Right since the beginning of my undergraduate study electronics is a subject that has fascinated me with its power of applications. The subjects that I have studied include Linear Electronics, Digital Electronics. These laid the foundation for my courses in Electronic Communication & Communication Systems at a later stage. My undergraduate studies already focus on the communications aspect of electronics. A masters degree in electrical engineering with communications as major field is the next logical step. For the past four months I have been working as a project trainee at the Indian Institute for Advanced Electronics. I am working on the design and development of a "PC Controlled Digital Serial Data Generator". This short stint has given me invaluable practical experience. It has given me the confidence to pursue a masters degree and also kindled a desire to do research. During the course of my work at IIAE, I have come across several scientists. Most of them work in different areas of communications. Interactions with them have made me realize the vastness and the scope of communications. My discussions with them convinced me that specializing in communications will suit me very well. The subject of research which interests me very much is spread spectrum communication systems. Coding theory and combinations is another research subject which arouses my curiosity. The subject Communication Theory which I am studying at present introduces these topics in theory. I am eager to find out more about the applications of coding theory to spread spectrum communication systems. In addition I have been a student member of the IEEE (Institute of Electrical and Electronics Engineers, Inc.) for the past three years. Through its workshops/seminars and publications like the 'The Spectrum' it has exposed me to a lot of emerging technologies in the field of communications. It is a strong belief in my family that the American education system has the best to offer in the whole world. This belief arises out of the experience that my parents had when they did their Masters of Science in the University of Pennsylvania during the years 1967-69. If I can get an opportunity to be a part of that intellectually stimulating environment, I am sure my talents will be put to optimal use. India is a developing country with an enormous potential in the information technology business. To serve the needs of this developing industry and more important its vast population, communications is going to become of utmost importance. Thus conditions here are very conducive to supplement my aspirations when I return after completing my graduate studies. 2Electrical Engineering As a graduate student, I will undertake research and coursework in Electrical Engineering to enhance my competencies in this field. I intend to complete my master's degree in order to pursue my doctorate. The research that I am most interested in pursuing at Northeastern University surrounds the optical properties of MEMS devices, and the development of substrate-based fast electro-optical interfaces. My interest in this area stems from my undergraduate study in MEMs development for tri-axial accelerometers. Engineering has been a key interest of mine since childhood. While still in grade school I enjoyed listening to my father, an electrical engineer, teach me about advances in technology, and was always eager to hear more. I was introduced to my first computer at the age of five, and have loved interacting with them ever since. My decision to study engineering as a career was no surprise to those who knew me. In college I found that I was always studying something I enjoyed. I believe it is because I enjoy my life and my work that I have been successful. Spending hours in the laboratory is not something that I dread, but instead I take pride in my work and its successful completion. One example of this that is still fresh in my mind is the successful design of a fully functional microprocessor in the Xilinx environment. All told, the project took over 150 hours of each design-team member's time. However, I did not look on it as a drain, but an experience for learning and a focus for my professional and technical development. When we finished the project we felt the sense of worth and pride in completion of a task that was once above our level of knowledge. Pursuing a graduate degree in the research field I have chosen also feels like a challenge, and I know that study will frustrate me at times. However, I feel that my commitment to learning will not be swayed. I feel confident in my ability to be creative in my perspective, and to persevere. My ultimate goal is to be an innovator in the field I have chosen to study. Professionalism and creativity are my most valued strengths. At the heart of my interest is the advancement of man in concert with his environment. My personal philosophy of life will matter greatly during my study and after its completion. That is why I devote time to reflection on my goals and their implications. Money has never been a motivator for my work, nor do I think it will be in the future. However, as a professional and a graduate, I realize that my earning potential will be significant. That is why I also commit myself to charity and fairness. In the past I have been a member of the Boy Scouts of America, and have achieved the rank of Eagle Scout. In the course of my experience in that organization, I learned respect and moral value. Now, as a member of the IEEE, I value my professional standing and its commensurate moral implications. Ethics in engineering is as important as technical skill, and as such I intend to uphold my own ethical obligations to the best of my ability. As a Northeastern University student, I would commit all that I have to offer to my study. I intend to pursue research in MEMS technology. At Rowan University as an undergraduate student I have already conducted some research and development of MEMS sensors for military applications, resulting in publication. An article, written by myself and my project member David Bowen and edited by our advisor Dr. Robert Krchnavek, was published in the NAVSEA Intelligent Ships Symposium Proceedings of 2001. The paper was titled "Designing a 3-Axis, Monolithic, MEMS-Based Accelerometer" and was under review for endorsement by the US Navy's NAVSEA facility in Philadelphia during that year. Building on my past success in MEMs design, I hope to advance my understanding. Through research at the graduate level, it is my hope to become familiar with, and innovate the design of MEMs Optics in hopes of creating a reliable and practical MEMs Electro-Optical Interface for use in consumer electronics. It is my hope, that through my research, optical waveguides for intradevice communication might be realized. Finally, my intent to pursue graduate study is laid plain. Study of MEMs optics is my intended focus, and I am committed to my goal. In pursuing a doctoral degree, I have closely analyzed myself to determine the reasons for my previous successes and my goals for the future. I have found that I do and have always enjoyed engineering, and that I have a strong desire to pursue my study further. I am prepared to commit myself to that study, and achieve what I have set out to do. 3I Wish to Pursue an MS Degree in Electrical Engineering During my senior year at Purdue University, I made a decision that has impacted the entire course of my education. While my classmates were making definite decisions about their career paths, I chose to implement a five-year plan of development and growth for myself. I designed this plan in order to examine various careers that I thought might interest me, as well as to expand upon my abilities at the time. As I was attaining a BS degree in Electrical Engineering, I decided to focus primarily on fields related to the VLSI (Very Large-Scale Integrated) circuits area. My main goals were either to gain work experience or to further my education by pursuing an MS degree in Electrical Engineering (MSEE). I saw an opportunity to both work and learn through employment at Xilinx Inc. Operating as a product engineer at a successful, high-tech semiconductor company has enabled me to utilize my technical and interpersonal skills in new and challenging ways. The position has also allowed me to interact with a multitude of departments including marketing, integrated circuit (IC) design, software/CAD development, manufacturing, reliability, accounting, and sales. I thus have gained an array of experience that extended beyond the parameters of my own responsibilities. In the workplace, I rely heavily upon the interpersonal techniques I developed as a counselor in a Purdue residence hall, as well as the organizational skills I had acquired through holding various leadership positions in cultural and engineering societies. I have also cultivated an interest in high-technology marketing that has continued to grow throughout my career. My experiences with Xilinx have heightened my hunger for knowledge in the VLSI field. Two months after joining the corporation, I applied to several part-time programs in the vicinity that would allow me to acquire an MSEE degree within two to three years. San Jose State seemed an ideal choice, for its evening MSEE courses would allow me to pursue two independent, full-time positions concurrently. The San Jose program has complimented my Xilinx duties well; both demand large levels of energy and enthusiasm while guiding me to my ultimate goal a high degree of education in VLSI sciences. The resources that I poured into both endeavors have reaped many gains. I have been promoted to a Product-Yield Engineering position within Xilinx's Coarse Grain Static Memory (CGSM) Product Engineering division. My extensive coursework plays a key role in my continued success at Xilinx. Relevant classes in advanced digital and analog VLSI design, as well as sub-micron ULSI technology, have allowed me to understand more completely the workings of Xilinx, a fab-less semiconductor company that also functions as a software and hardware design, testing, and marketing center. The gains in knowledge I have made through the combination of work experience and education have indeed been exponential. The academic records of my senior year at Purdue, coupled with my MSEE coursework, are ample proof of my dedication to learning. I feel I have overcome through hard work and dedication the brief "dry phase" I underwent at Purdue during the close of my sophomore and the first semester of my junior years. My performance at that time is in no way indicative of my usual achievements; they are instead the result of urgent family difficulties that required much foreign travel and serious attention to resolve. In May, I shall graduate with an MSEE degree from San Jose well ahead of my original estimates. This early graduation with Dean's Honors is the result of my firm belief in the value of diligence, as well as my renewed determination to strive for perfection in both work and school. I am now embarking on another five-year plan, during which I hope to fulfill several specific career goals. For instance, being part of a very dynamic and results-oriented Yield team at Xilinx calls for continuous development of computational and statistical techniques. The Yield team is divided to focus on specific process/fabrication issues and process (manufacturing) optimization. My own position is an integral part of the optimization group. Speed and cost issues continue to press high technology atmospheres towards optimization, probability and stochastic processes and systems, and rigorous simulations of mathematical models. The MS in EES&OR offered at your university will grant me the statistical knowledge that is crucial for process and production optimization in a fab-less environment. In addition, product engineering requires fundamental research on mathematical models for linear and non-linear programming, as well as the utilization of efficient computer software. I continuously employ the knowledge I gained at Purdue in Operations Research and advanced mathematics courses. Yet despite the value of these classes and my high performance in them, I now require further education to best fulfill my duties. An MS in the EES&OR field, will give me knowledge that is invaluable to a career in product development, project management and strategic planning. The program will allow me to improve decision-making skills in operations, strategy, and policy issues. I will strengthen my theory and application in countless areas:continuous, discrete, numerical optimization; probabilistic and stochastic processes; dynamic systems and simulation; economics, finance, and investment; decision analysis; dynamic programming and planning under uncertainty; operations and service; corporate and individual strategy; and private and public policy , the EES&OR program will not only help me to excel at Xilinx but will also further any future career. My commitment to work and education over the last three years proves that I will pursue this MS with enthusiasm and technical edge that the MS would provide is I will be working while attending Stanford, I shall mingle education with practical application, and bring to the table interesting problems from my experience and past education. Technical challenges encountered through projects in the EES&OR program will provide motivation and opportunity for methodological data collection, processing and presentation issues presented are integral to my future goals, and the management challenges raised will provide invaluable experience for professional practice. This will in turn build a solid foundation for a life-long career that can overcome any problem in decision-making. In addition, taking courses in economics, finance, and investment analysis will allow much growth of knowledge in investment issues in different industries. The EES&OR program thus appeals not only to my engineering, economics, science and mathematical background, but will compliment my technical abilities with the conceptual frameworks needed to analyze problems in operations, production, strategic planning, and marketing in the realm of emiconductor/IC/engineering systems. I feel that I am prepared to meet the challenges of the curriculum. My coursework in intermediate microeconomics and macroeconomics, international trade, operations research, linear algebra, and probabilistic methods, along with my extensive calculus background, will allow me to function well within the program. My long-term career goals include a move into marketing and product management. I believe that attaining this MS degree is the cornerstone to achieving my goals. It will give me the academic background necessary to succeed in product development, project management, and strategic planning. It will improve decision-making skills necessary for optimizing performance. The integration of two excellent programs in Economics Systems and Operations Research thus suits my current position and ties in with future goals perfectly by improving decision making in operations, strategy and policy. At present I desire to continue at Xilinx; attending a program that provides the flexibility and convenience of the SITN, is therefore imperative. Hence, being at Stanford as an HCP student alsoattracts me. I believe that Stanford is the best environment for me to achieve my goals while gaining exposure to and experience with a diverse student body and faculty. It is my belief that one continues to learn throughout one's life, and the most effective method of learning is through interaction with 's diversity offers an environment for learning, both inside and outside the classroom. I hope to share my varied knowledge with my classmates and to take from them a new understanding of topics that are foreign to me. I believe that no other school provides students with the combination of education and environment offered by Stanford. Its outstanding academic reputation, mingled with its diverse environment and thriving Bay Area location, creates an opportunity for growth that is second to none. I have many ambitions for myself as I embark on this stage of my life. I believe that an education from Stanford will provide invaluable experiences and skills that will allow me to become a successful and innovative business leader in the new millennium. 4Research Department of Biomedical Engineering is designed to research on and solve the bio-electrical and biomagnetic engineering problems in the field of biology and medicine with the aid of engineering principles and methods. Its main task is to explain, from perspective view of engineering, the biological and pathologic processes of the living organisms, especially human beings, and research on and develop the related medical devices and life science devices. Its research directions mainly include the modeling and emulation of the biological system, testing and analysis of biomedical signals, the biomedical imaging and processing , the biological effects of electromagnetic field and the development of artificial organs and medical devices, Bioengineering With the development and integration of electromagnetism, biology and medicine, biological electromagnetism exercises more and more influence on human life and health, environment protection and biological engineering. The research on electromagnetic bioengineering is a new research direction for IEECAS, mainly including research on rules of mutual influence between electromagnetic field and life matter, biological electromagnetic effect and its application in biology, medicine and medical equipment. At present, the research team has set up labs such as biological electromagnetic environment lab, biological electromagnetic signals & electromagnetic property testing lab, electromagnetic biological effect testing lab and biological electromagnetic simulation lab. It is equipped with various electrical and magnetic fields for experiments of biological electromagnetic effects, simulation software and biochemical experiment equipment. With such equipments, it can do biological electromagnetic experiments on live animals and detached live cells, detect, analyze and process the very weak biological electromagnetic signals, analyze and test live organism or detached cell under electromagnetic interaction with biochemical quantitative methods. The recent research work focuses on the effects 方向对不对,不知你要哪种,告诉我,我再接着找多的话email you

我有一篇我本科毕设的小论文,英文中文都有,而且是我人工翻译的,8000字左右。你要的话PM我。我是电气工程及其自动化专业的。《Analysis of thyristor-controlled phase shifter applied in damping power system oscillations》

我可以给你 +471903103 专业论文及翻译,还有CAD图形。

自动化相关的论文题目

自动化是一门涉及学科较多、应用广泛的综合性科学技术。作为一个系统工程,它由5个单元组成。下面,我为大家分享自动化相关的论文题目,希望对大家有所帮助!

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.浅谈电力自动化管理系统

.浅谈自动化控制系统及热工仪表的维护与管理

.电气自动化工程控制系统的现状及其发展趋势

.动力部一降压变电站综合自动化系统改造及应用

.新型智能配电自动化终端自描述功能的实现

.水电厂电气自动化控制设备的可靠性探讨

.国外配网自动化建设模式对我国配网建设的启示

.现场总线与工厂底层自动化及信息集成技术

.铝工业电气自动化的现状与发展趋势

有关数学专业的论文题目

数学专业毕业论文选题方向

1动态规划及其应用问题。

2计算方法中关于误差的分析。

3微分中值定理的应用。

4模糊聚类分析在学生素质评定中的应用。

5关于古典概型的几点思考。

6浅谈数形结合在数学解题中的应用。

7高校毕业生就业竞争力分析。

8最大模原理及其推广和应用。

9 最大公因式求解算法。

10行列式的计算。

论文的题目是论文的眼睛 ,是一篇文章成功的关键。下面我将为你推荐关于数学专业毕业论文题目参考的内容,希望能够帮到你!

1. 圆锥曲线的性质及推广应用

2. 经济问题中的概率统计模型及应用

3. 通过逻辑趣题学推理

4. 直觉思维的训练和培养

5. 用高等数学知识解初等数学题

6. 浅谈数学中的变形技巧

7. 浅谈平均值不等式的应用

8. 浅谈高中立体几何的入门学习

9. 数形结合思想

10. 关于连通性的两个习题

11. 从赌博和概率到抽奖陷阱中的数学

12. 情感在数学教学中的作用

13. 因材施教因性施教

14. 关于抽象函数的若干问题

15. 创新教育背景下的数学教学

16. 实数基本理论的一些探讨

17. 论数学教学中的心理环境

18. 以数学教学为例谈谈课堂提问的设计原则

1. 网络优化

2. 泰勒公式及其应用

3. 浅谈中学数学中的反证法

4. 数学选择题的利和弊

5. 浅谈计算机辅助数学教学

6. 论研究性学习

7. 浅谈发展数学思维的学习方法

8. 关于整系数多项式有理根的几个定理及求解方法

9. 数学教学中课堂提问的误区与对策

10. 中学数学教学中的创造性思维的培养

11. 浅谈数学教学中的“问题情境”

12. 市场经济中的蛛网模型

13. 中学数学教学设计前期分析的研究

14. 数学课堂差异教学

15. 一种函数方程的解法

16. 积分中值定理的再讨论

17. 二阶变系数齐次微分方程的求解问题

18. 毕业设计课题(论文主题等)

19. 浅谈线性变换的对角化问题

1. 浅谈奥数竟赛的利与弊

2. 浅谈中学数学中数形结合的思想

3. 浅谈中学数学中不等式的教学

4. 中数教学研究

5. XXX课程网上教学系统分析与设计

6. 数学CAI课件开发研究

7. 中等职业学校数学教学改革研究与探讨

8. 中等职业学校数学教学设计研究

9. 中等职业学校中外数学教学的比较研究

10. 中等职业学校数学教材研究

11. 关于数学学科案例教学法的探讨

12. 中外著名数学家学术思想探讨

13. 试论数学美

14. 数学中的研究性学习

15. 数字危机

16. 中学数学中的化归方法

17. 高斯分布的启示

在一篇数学 教育 论文中,题目是论文的要件之首,它不同于一般 文章 的题目,我们要重视题目的重要性。以下是我为大家精心准备的数学教育论文题目,欢迎阅读!数学教育论文题目(一) 1、浅谈中学数学中的反证法 2、数学选择题的利和弊 3、浅谈计算机辅助数学教学 4、数学研究性学习 5、谈发展数学思维的 学习 方法 6、关于整系数多项式有理根的几个定理及求解方法 7、数学教学中课堂提问的误区与对策 8、中学数学教学中的创造性思维的培养 9、浅谈数学教学中的“问题情境” 0、市场经济中的蛛网模型 11、中学数学教学设计前期分析的研究 12、数学课堂差异教学 13、浅谈线性变换的对角化问题 14、圆锥曲线的性质及推广应用 15、经济问题中的概率统计模型及应用 数学教育论文题目(二) 1、二阶变系数齐次微分方程的求解问题 2、一种函数方程的解法 3、微分中值定理的再讨论 4、学生数学学习的障碍研究; 5、中学数学教育中的素质教育的内涵; 6、数学中的美; 7、数学的和谐和统一----谈论数学中的美; 8、推测和猜想在数学中的应用; 9、款买房问题的决策; 10、线性回归在经济中的应用; 11、数学规划在管理中的应用; 12、初等数学解题策略; 13、浅谈数学CAI中的不足与对策; 14、数学创新教育的课堂设计; 15、中学数学教学与学生应用意识培养; 16、关于培养和提高中学生数学学习能力的探究; 17、运用多媒体培养学生 18、高等数学课件的开发 19、 广告 效益预测模型; 数学教育论文题目(三) 1、浅谈菲波纳契数列的内涵和应用价值 2、一道排列组合题的解法探讨及延伸 3、整除与竞赛 4、足彩优化 5、向量的几件法宝在几何中的应用 6、递推关系的应用 7、坐标方法在中学数学中的应用 8、小议问题情境的创设 9、数学概念探索启发式教学 10、柯西不等式的推广与应用 11、关于几个特殊不等式的几种巧妙证法及其推广应用 12、一道高考题的 反思 13、数学中的研究性学习 15、数字危机 16、数学中的化归方法 17、高斯分布的启示 18、 的变形推广及应用 19、网络优化 20、泰勒公式及其应用 猜你喜欢: 1. 数学教育教学论文参考范文 2. 关于数学专业毕业论文题目参考 3. 数学教育专业毕业论文 4. 有关数学教育的论文范文 5. 数学教育专业毕业论文参考

有关化学生活化的论文题目

你好,需要的了赞助很多的题目

化学论文的课题如下:1. 如何运用化学史培养学生的创新精神和科学态度2. 化学史在中学化学教学中的作用5. 怎样看待化学家的作用7. 现代美国化学研究领先地位的确立及其原因8. 信息时代的化学教育前景11. 论中学历史教材中应增加科学史的份量的必要性12. 化学史在学生素质教育中的作用15. 提高学生学习化学的兴趣16. 略论在化学教学中如何积极开展探究式教学

18. 略论非智力因素在化学教学中的作用19. 如何运用化学实验发展学生能力20. 浅谈化学教学中创新意识的培养22. 网络环境下的化学教学实践及思考23. 浅谈数学知识在化学教学和学习中的应用24. 化学实验教学与学生创新能力培养的探索26. 利用化学实验对学生创新精神和实验能力的测量与评价研究30. 计算机辅助教学在化学创新教育中的作用31. 课堂“引导探究”教学模式32. 论中学化学新教材的特点及教法33. 优化课堂设计培养学生的创新素质37. 中学化学实验教学改革初探40. 浅谈中学化学计算题中数学知识的应用43. 应试教育和素质教育在中学教育中的作用和地位分析

44. 中学生的早恋调查及分析45. 中学厌学的家庭、社会原因分析46. 义务教育阶段对辍学生的对策研究47. 中学化学教学中如何培养学生化学48. 如何提高中学生化学实验的动手能49. “研究性学习”在化学教育中的实践50. 农村沼气的开发利用研究

1. 如何运用化学史培养学生的创新精神和科学态度 2. 化学史在中学化学教学中的作用 3. 在中学化学教学中如何进行化学史教育 4. 如何让化学史走进中学课埻 5. 怎样看待化学家的作用 6. 中国炼丹术为何未发展成为科学化学的成因分析 7. 现代美国化学研究领先地位的确立及其原因 8. 信息时代的化学教育前景 9. 关于化学发展的历史分期探讨 10. 现代化学的特点及发展趋势 11. 论中学历史教材中应增加科学史的仹量的必要性 12. 化学史在学生素质教育中的作用 13. 浅谈中学化学教学中如何进行德育教育 14. 提高学生的化学自学能力 15. 提高学生学习化学的兴趣 16. 略论在化学教学中如何积极开展探究式教学 17. 略论课埻提问的设计与思维能力的培养 18. 略论非智力因素在化学教学中的作用 19. 如何运用化学实验发展学生能力 20. 浅谈化学教学中创新意识的培养 21. 中学化学课埻教学转化为社会实践的途径 22. 网络环境下的化学教学实践及思考 23. 浅谈数学知识在化学教学和学习中的应用 24. 化学实验教学与学生创新能力培养的探索 25. 加强实验教学 提高创新能力 26. 利用化学实验对学生创新精神和实验能力的测量与评价研究 27. 培养学生创新思维的几种方法 28. 化学问题解决与创造性思维品质培养的研究 29. 开展研究性学习,提高学生科技水平和创新能力30. 计算机辅劣教学在化学创新教育中的作用 31. 课埻引导探究教学模式 32. 论中学化学新教材的特点及教法 33. 优化课埻设计 培养学生的创新素质 34. 运用多媒体教学 提高课埻教学效率 35. 在化学教学中倡导创新精神 36. 中学化学课埻教学转化为社会实践的途径探索 37. 中学化学实验教学改革初探 38. 从教学理念更新到教学行为探索 39. 环境教育与中学化学教学 40. 浅谈中学化学计算题中数学知识的应用 41. 我国农药使用现状及环境影响分析 42. 浅谈我国中学教育模式与高考制度的关联性及利弊 43. 应试教育和素质教育在中学教育中的作用和地位分析 44. 中学生的早恋调查及分析 45. 中学厌学的家庭、社会原因分析 46. 义务教育阶段对辍学生的对策研究 47. 中学化学教学中如何培养学生化学兴趣 48. 如何提高中学生化学实验的劢手能力 49. “研究性学习”在化学教育中的实践 50. 农村沼气的开发利用研究 51. 浅议大气臭氧层破坏对全球经济的影响 52. 浅议温室效应对全球经济的影响 53. 浅谈村、镇建设的规划与耕地保护 54. 浅议化学兴趣(提高)班教学的组织与实践 55. 乡村化学教材的编排与使用调查研究 56. 启发性教学”在化学教育中的实践 57. 环境保护兴趣组的组织与实践 58. 大气污染物(如粉尘)对农作物的影响调查与分析 59. 浅谈乡村经济与环境保护的协调发展 60. 农村饮用水水源调查及污染途径分析

一谈你对化学的了解2谈现今化学的发展状况3谈化学上的生活例子4谈你对化学生活的感受。5谈你对学习化学的感受6谈人类对生活的态度7谈你对未来化学发展与人类发展的观点8总结前7点~

有关经济学专业的论文题目

伴随着经济全球化时代的到来,各式各样的经济管理方法油然而生。以下是我为大家整理的关于经济管理类论文题目的内容,一起来看看吧!

1、论企业知识型员工的管理

2、论民族品牌在国际化竞争中的生存之道

3、论大学生网络营销策略

4、企业绿色营销探析

5、买方市场条件下的企业市场营销

6、论推销中的沟通技巧

7、谈谈绿色经营与企业发展

8、对连锁经营模式的实证研究

9、论新形势下销售渠道的有效调整

10、对企业营销理念创新的思考

11、对企业创新管理工作的思考

12、谈谈心理因素在市场营销中的作用

13、中小企业实施网络营销的策略分析

14、“差异化策略”在中小企业营销中的运用

15、零售企业的品牌战略

16、商业银行的市场营销策略研究

17、试论民营中小企业融资难的原因及对策

18、我国居民消费心理分析

20、少数民族地区居民消费现状的思考

1. 新型农村合作医疗制度良性发展问题的研究

2. 论我国保险业存在的问题及对策

3. 企业投资对策研究

4. 对消费信贷的再思考

5. 谈顾客忠诚度毕业论文参考网整理

6. 优化开发人力资源的战略措施

7. 谈我国城乡市场协调发展

8. 电子商务在企业经营中的运用策略

9. 在网络经济中如何巧妙运用价格歧视

10. 企业人才培养与使用研究

11. 新时期企业文化的新特点

12. 新时期激励艺术研究

13. 从以人为本的角度看企业人力资源管理

14. 人力资源管理的新趋势

15. 企业社会责任新探讨

16. 关于商标保护的几点思考

17. 浅谈如何打造企业品牌

18. 小议品牌资产的保护

19. 品牌、诚信与企业核心竞争力

20. 关于农民增收问题的思考

21. 对发展﹡﹡省旅游经济的思考

22. 中小企业发展问题研究

经济学是研究人类社会在各个发展阶段上的各种经济活动和各种相应的经济关系及其运行、发展的规律的学科。那么经济学专业的论文选题怎么选呢?下面我给大家带来2021经济学论文题目有哪些_经济学专业论文选题题目,希望能帮助到大家!

经济学博士论文题目

1、基于绿色GDP投入产出模型架构研究

2、中国住户生产核算理论与 方法 研究

3、成长型企业无形资产统计问题研究

4、中国社会核算矩阵编制与模型研究

5、政府统计数据质量评估方法及其应用研究

6、人口老龄化对我国GDP及其构成的影响

7、环境价值核算方法及应用研究

8、经济核算原理在现代制造业定量研究中的应用

9、中国服务业的全要素生产率研究

10、我国GDP中劳动报酬份额的下降

11、经济福利核算的理论及其指标研究

12、宏观金融运行异常的统计监测研究

13、国民经济核算及其总体模式研究

14、国民经济核算方法论研究

15、可持续发展指标体系建构及其应用研究

16、供应链违约风险的研究

17、对我国国民经济核算理论与方法问题研究

18、Markov算子的渐近行为与经济系统的几个问题

19、非完全竞争市场的宏观经济优化模型

20、效用、风险与纳什均衡选择

21、粮食、农业制度供给中的博弈与实证

22、理解经济变迁的过程

23、海洋经济核算体系与核算方法研究

24、区域环境价值核算的方法与应用研究

25、基于环境因素的全要素生产率和国民收入核算研究

26、浙江省城乡收入差距统计研究

27、现代企业统计理论体系创新研究

28、ICT对国民经济的贡献研究

29、资本存量与资本服务核算研究

30、地区GDP核算及数据衔接问题研究

31、资源环境经济综合核算与绿色GDP的建立

32、基于可持续发展的中国能源核算研究

33、消费型中间消耗的概念及测算

34、时间序列分析方法研究及其在陕西省GDP预测中的应用

35、物流配送选址优化模型的研究

36、供应计划问题的遗传算法求解

37、基于景气指数的宏观经济监测预警系统研究

38、 企业管理 创新数量分析中的线性优化逆问题

39、技术能力成长决策中的实物期权方法研究

40、资产定价标准的讨论和模拟

41、投资者认知收益度量模型及系统设计

42、基于水环境的杭州市绿色GDP核算的GIS表征

43、人力资本与全要素生产率

44、湖南省宏观经济景气指数的编制与应用研究

45、森林资源核算及纳入国民经济核算体系研究

46、疏浚企业挖泥船生产统计系统优化分析

47、过程神经网络在GDP预测中的应用研究

48、四川调查总队系统职工工作满意度调查研究

49、基于线性回归和神经网络的预测模型在国民经济数据中的应用

50、国民经济核算体系中环保指标设计研究

微观经济学论文题目

1、我国绿化工程监理微观环境分析

2、知识产权对微观经济的作用机理研究

3、外生驱动互联网消费增长的微观空间计量研究

4、房地产市场反周期宏观调控政策绩效的微观探析

5、劳动力成本上升对现代服务业企业升级的影响研究--基于微观企业财务层面以信息技术产业为例

6、宏微观因素对商业银行信贷风险影响的实证分析

7、经济责任审计促进经济增长的微观途径--基于“中国之谜”中政府官员的作用

8、中级微观经济学混合教学模式探索与实践

9、基于半鞅过程的中国股市随机波动、跳跃和微观结构噪声统计特征研究

10、中国经济发展新常态的宏观表象和微观基础

11、货币政策、所有制差异与商业信用再配置--兼论新常态背景下供给侧治理的微观路径

12、微观权力、自我技术与组织公民行为-- 人力资源管理 的后现代分析

13、增值税转型对我国微观经济的影响

14、商业性小额信贷机构市场定位微观制度因素分析--以某村镇银行和某小额贷款公司为例

15、城乡关系重构下乡村人口城镇化微观进程研究--基于家庭流动人口的视角

16、微观商业视角下的微信经济

17、应用型人才培养模式下独立学院微观经济学教学改革研究

18、微观开放性视角下创造力的多层次影响机制探究

19、农户劳动力资源配置的微观决策

20、微观经济与企业管理探讨

21、民营企业对外直接投资对企业内就业的影响--基于温州微观企业数据的实证研究

22、房产税、房价与住房供给结构--基于上海、重庆微观数据的分析

23、基于微观经济学方法的网格资源分配管理模型研究

24、森林转型的微观机制--以重庆市山区为例

25、我国纺织业企业创新与生产率关系的微观测度

26、人的自由全面发展视域下资源配置的微观机制

27、基于微观企业数据的产业空间集聚特征分析--以杭州市区为例

28、从微观管理视角浅析高校国有资产管理中的问题

29、“双创”背景下非正规就业对劳动力市场影响的微观分析--基于马克思劳动力价值理论视角

30、我国众筹融资的微观机理及宏观效应

31、金融市场微观结构理论综述

32、利率调控对房地产营销市场波动的微观作用机制探究

33、中国对外并购的绩效研究--基于制造业上市企业的微观分析

34、我国服务贸易出口的影响因素分析--来自微观企业层面的证据

35、市场微观结构下高频交易流动性--基于我国商品期货市场的实证研究

36、工商行政管理在宏观控制与微观搞活中的职能与作用

37、典型平原农区土地非农化对乡村发展影响的微观机理

38、贫困地区特色农业规模经营意愿的影响因素研究--微观农户视角的分析

39、中国政策性银行全要素生产率测度及影响因素研究--基于宏观与微观解构

40、中国产业结构升级的新视角--微观产品质量角度

41、新疆农民专业合作社微观运行障碍调研与政府责任分析--以吉木萨尔县为例

42、制造业可持续发展的微观经济分析--基于价格机制与制度结构的视角

43、微观视角下煤炭上市公司资本结构影响因素实证研究

44、优化农业科技创新风险投资微观运行机制的策略研究

45、低碳经济政策失灵的原因分析及应对 措施 --基于微观经济个体的视角

46、税制改革推动国家治理能力提升的微观作用机理研究--基于增值税转型对企业投资行为的影响

47、论宏观调控与微观自主的辩证平衡

48、基于微观动力视角我国上市公司市值管理绩效评价的研究

49、宏观经济政策与微观企业行为--拓展会计与财务研究新领域

50、以“供给管理”激发微观活力实现经济发展动力转型

宏观经济学论文题目与选题参考

1、“互联网+”重塑中国宏观经济

2、20_年宏观经济形势讨究和政策的观点综述

3、20_年世界经济形势回顾讨究与展望

4、20_年玩具市场跨越式发展的契机论议与挑战

5、20_年中国成品油市场讨究

6、财政分权与中国经济增长

7、城乡一体化理论研究

8、从诺贝尔经济学奖看现代宏观经济学的发展

9、当前国民经济运行中应注意的几个问题及建议

10、当前经济形势下扩大内需的困难与措施研究

11、当前社会人文效应与经济效应的互相影响

12、当前收入分配存在问题的思考

13、地方财政支出的产业结构效应研究

14、电信业漫谈之供给与需求

15、对欧洲宏观经济体制的批评

16、房地产的宏观经济学说

17、房地产动摇对经济增长的影响

18、房地产行业走势对中国宏观经济的影响分析

19、复合式通胀压力下浅探宏观经济政策选择

20、高校扩招的经济影响

21、公共财政政策与可持续发展(或技术创新)

22、供给学派的起源与美国实践

23、关于金融稳定与货币政策的一点思考

24、关于凯恩斯主义与货币主义对大萧条成因解释的分析

25、贵州省城镇失业问题研究

26、国家宏观调控的内涵与手段研究

27、哈耶克对经济周期的研究及其方法论特点

28、宏观行为经济学的新发展及其应用

29、宏观经济剖析和政策前瞻

30、宏观经济形势分析与数据解说

31、宏观经济学的创新与调控方向的转变探讨

32、宏观经济学视角下经济增长理论和政策

33、宏观经济学中的管理理念与措施应用分析

34、宏观经济学中的经济理论研究

35、宏观经济学中的长期与短期分析

36、宏观经济学中金融市场影响经济的分析

37、宏观经济政策应稳步微调

38、后危机阶段中国宏观经济政策的趋向

39、后危机时代安徽省财政宏观调控政策研究

40、互联网改变就业的宏观经济学机理

41、汇率理论的演变评述与人民币国际化借鉴

42、货币国际化 经验 与人民币国际化研究

43、技术创新对社会经济发展贡献率探究

44、减税的思考与超越--简评蒙代尔税收思想

45、金融冲击对全要素生产率的影响分析

46、金融市场与宏观经济的联系

47、金融危机下的浙江制造业面临的困境研究

48、经济发展与社会(伦理、幸福、价值等)关系的分析

49、经济韧性问题研究进展

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