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马来西亚素有“亚洲魅力所在”的美誉,国土虽小,国力却十分强盛,留学环境好,大家可以放心留学。下面就是小编给大家带来的经典马来西亚留学申请书范文最新版参考,希望能帮助到大家!

经典马来西亚留学申请书


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经典马来西亚留学申请书范文

Dear _,

Knowing where one is heading during navigation brings assured happiness. As a student majoring in Computer Software, I began my odyssey four years ago. Now, after the initial mysticism was gradually unveiled, my curiosity remains the same. Indeed, having entered this splendid computer world, I am more than greedy for something new.

From the beginning of my study, my endeavor was fixed on the underlying branches of Computer Science, particularly System Software development. Novel applications on other’s platform may be fruitful, but I think it’s more appealing to act as an independent “manager”. In fact, mathematics, OS, DBMS and modern compiler are all the examples, any breakthrough of which would push forward the whole industry. Individuality is achieved in this unique position.

My paces toward this goal are always steady. As mathematics permeates to the every corner of Computer Science, I am eager to see how it functions. I took courses offered by the Mathematics Department including Mathematical Analysis and Advanced Algebra. The curriculum also covered Discrete Mathematics, Probability & Statistics and Theoretical Computer Science. As supplement to my scope of knowledge, I learn by myself Combination Mathematics and the Science of Programming. This really made a hard period of time, but the harvest was rewarding. I come to understand that even the most irrelevant software disciplines have the origins in common. The importance of Fractured Geometry in Computer Graphics is already obvious. What if a step furthers toward TSP or Bin Packing? Immeasurable. Then came my favorite topics: Operating System, Compiler and Database. I worked hard and derived bits of my own insight. In fact, I was greatly encouraged to find some of my ideas successfully implemented in the corresponding course projects. My final grade is straight “As” in these coursed. In short, although my experience in Computer Science is still limited, I believe its depth is well accessible. As my advisor, Prof. Fang Yu, put it figuratively in one of his lectures: “ It makes no difference whether a hunter captures 5 or 7 rabbits. What counts is he knows how to use his gun.”

I think I can be the qualified shooter now. in my undergraduate years, I have earned various kinds of scholarships, among which were “Peking University Fellowship” and “Excellent Academic Scholarship”. My overall GPA ranks upper 10% among 48 students of the same grade. Because of my satisfactory performance, I was granted the honor of entering the graduate program at Peking University directly, waived of the admission test. In retrospect, my workload is always heavy but it is worth my time of effort. Presently, I have both adequate theoretical understanding and rich programming experience. READY I AM.

Of all the sub-areas of Computer Science, my major interest is parallel processing and the related compiler construction. The terminology of parallel processing came to me when I read an article about digital circuit testing. According to this article, there exist many serial approaches of solving the automatic test pattern generation (ATPG) problem. Though certain method of solving ATPG sometimes proved efficient, the computation time for a method of solving ATPG sometimes proved efficient, the computation time for a complete result is intolerable, the a parallel processing machine is proposed. Using paralleled ATPG method, this NP complete dilemma is ingeniously handled. After reading, I surprisingly realized that parallel processing opened a new window for the computationally intensive problems, which prove intractable for the VON NEUMANN Architecture. You can always first split a specific computational task into several independent divisions, then assign each part to a certain processor. With reasonable partition and proper synchronization, most grueling scientific applications can be reduced to normal scale problems.

With the advent of the multiprocessor architecture, compiler optimization faced a new challenge. A compiler not only has to translate, but it is also responsible for generating parallel-processing loop provides a rich opportunity of exploiting parallelism. Therefore, finding an optimum strategy for loops because a hot research topic. On the whole, parallelism changes our view toward the conventional computer architecture so that the compiler’s construction must make the corresponding modification. Because of this challenging characteristic, I choose them to be my interest of future study.

Yet parallel processing is far from maturity. It has been observed that some sequential algorithms can be easily translated into fast parallel algorithms while some others may not. Is every sequential computation can be done efficiently in parallel? If not, what properties result in such distinction? Another unsettled problem is programming parallel computers now is like programming serial computers in the 1960s. Programmers get locked into a particular manufacturer’s computers. Is it possible for us to design a higher level language for parallel computers that hides the underlying machine architecture from users? Both are crying out for solution.

Without advanced knowledge, I can do nothing but wait. In order to convert my undergraduate study into full play, graduate education is a necessity. From the college guide and my advisor’s recommendation, I am pleased to learn that your department has an academic atmosphere where originality is appreciated and individual potential is explored. It will be the best place for my specialized study. If possible, my main interest in the future will be in the following areas:

Parallel processing, Compiler construction.

Distributed/concurrent systems, Operating system.

Machine learning, Automated fault diagnosis.

As my undergraduate education is very basic, if you feel that I am more suited for some other areas, any of your suggestion would be highly appreciated.

Upon the completion of my study, I would return to Peking University and teach what I’ve learned to the students. Then I shall establish a research center to experiment new ideas. It is my ultimate goal to see the Chinese computer products leading the global market in the next century. After all, the navigation is not over yet!

Yours sincerely,

xuexila.com/shenqing/

高中生毕业去马来西亚留学的几种途径

途径一:公立大学

据了解,马来西亚公立大学本科前几年几乎不对中国招生,而只招研究生。因为公立大学是非营利性质,主要是满足本地学生深造的需要。近年来,部分公立大学开始对中国招生,这样的话又给高中生多一个上大学的选择和机会。

公立大学的优势:与私立学校相比,公立大学校园环境优美,设施完整,学费低廉,学生们能够真正体会大学的全方位的生活和学习环境。

公立大学不足:大多数公立大学本科都是马来文和英文授课(80%的课程用马来文授课,20%的课程用英文授课),如果学生愿意多学习一门语言,那么这种不足就变成优势,可以选择能够招收本科生的大学的所有专业,这样的话,等于在本科阶段掌握两门语言,即英语和马来语,为将来的就业和发展创造一个机会。

途径二:马来西亚私立大学及大学学院

马来西亚的私立大学分为三大类:大学、大学学院和学院,大学以及大学学院都是可以颁发自己的本科以上学士学位的学校,而学院则只能颁发大专文凭。马来西亚共有私立大学大学学院18所。这些大学也分为不同的层次和规模,有的有非常优美的大学校园,有的则是刚刚从私立学院升格为大学学院,没有自己的校园。另外他们的学费也有很大的差别。

途径三:国外大学的直属分校

马来西亚共有5所。英国诺丁汉大学的分校,澳大利亚科庭大学的分校、澳洲莫那什大学分校、澳洲斯威本大学的分校等等,可以满足那些非常希望直接到英国和澳大利亚但是又希望节约花费的学生,因为分校的学费是总校的一半或者1/3,而且分校的学生可以比较顺利的转到总校学习,尤其是英国诺丁汉大学的分校。当然这样的大学的学费一般比马来西亚本地的学校贵,而且入学要求也比较高。

途径四:私立学院

在马来西亚私立学院只能颁发大专文凭,不能颁发本科学位,所以这些学院就和海外大学合作开设双联课程,或者3+0课程,使得学生们获得海外大学的本科学士学位,这样的学院大约有600多所。但是能够直接在马来西亚获取第三国本科文凭的,即可以开设3+0课程的学校只有20所左右,其它的必须选择双联课程,即必须到第三国就读一到二年才能获取本科文凭。另外这些私立学校大部分都开设商科和计算机专业,部分有非常强的专业特长和优势。

马来西亚留学生活经验一览

一、衣着

马来西亚的气候温差不大,在这里是穿不上厚衣服的,没有特别低的气温,这样可以为学生们省去了很大的一笔购买衣服的钱,像那种简单的T恤在马来西亚是非常便宜的。带衣服去马来西亚也只要带夏装和外套就可以了,防晒的物品也要带,出门是必涂防晒霜。在马来西亚你要是遇上了正式场合男生要穿上西装,女生就要穿上正式一点的裙装,其他时候都是穿的比较随意的。

二、饮食

马来西亚人吃的菜叫马来菜,主食也是米,这里的饮食跟中国的差不多,在这里学习的学生应该是很快就能适应这里的饮食的。马来西亚不仅能尝到地道的马来菜,还能吃到中国菜,新鲜的海鲜在马来西亚也可以随处吃到。除了马来菜和中国菜,印度菜也能在这里品尝到。你要是想要在住的地方自己做饭的话,这里超市购买的食材成本是很低的。

三、住宿

在马来西亚住房不是很紧张的,这里的消费水平低,不管你是住在学校提供的宿舍还是在外面租房子都是比较便宜的,校外的房子有贵的和便宜的,你要看你是想住在哪种类型的房子里面,条件越好的房子房价是要贵一点的,在外面租房麻烦的事是很多的,你要自己找房子,签合同还要注意很多的问题。所以你还是要尽早的去申请学校的宿舍,住在学校的宿舍是能帮你省心省力又省钱的,实在是申请不到就要在国内确定好要租的房子,等到了马来西亚也不至于没有临时住的地方。

四、交通

马来西亚的交通设施还是很齐全的,在这里坐公交基本上是不会出现堵车的情况的,虽然这个国家的面积不是很大,但是这里的的大巴车还挺多的,也不用在等车上面花很长的时间,车费都是根据你坐了多长的距离来计费的。你要是想要打车的话是要提前预约车的。在马来西亚的有些城市有些公交是免费的,不需要你买票就能坐。

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