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計算機軟件專業留學申請書2022

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計算機軟件專業是計算機科學的一個分支,和軟件科學與技術專業相比較,計算機軟件專業的側重點在開發和技術的實際應用,下面就是小編給大家帶來的計算機軟件專業留學申請書2022最新,希望能幫助到大家!

計算機軟件專業留學申請書2022最新

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

留學泰國生活常識一覽

1、穿衣

泰國地處熱帶和亞 熱帶,全國大部分地區屬熱帶季風氣候,全年分為涼,雨,熱三季。泰國的年溫差很小,即使在涼季,月平均氣溫也不低于18攝氏度。四月是最熱的月份,溫度一般在33-38攝氏度之間,夜里稍涼。

留學人員住泰國院校的學生,需自備蚊帳、毛巾被、枕頭等床上用品。自備電扇、暖瓶、臺燈等生活用品,不過泰國市價不貴,也可在當地購買。全襯中山裝、西服不適用,一般自備一套半襯西裝,以參加重大活動用即可;短袖襯衣、連衣裙較適宜,需多帶,顏色宜多樣。

2、飲食

泰國的飲食是以稻米、蔬菜為主食。

在泰國,您可以吃到其它國家的許多美味佳肴。數不清的各式飯店按各種可能的亞州烹飪方式提供飯食。中餐館在泰國隨處可見,不要擔心吃不上家鄉飯。

3、交通

泰國全國鐵路比較發達,共有4條國立鐵路:北方線--由曼谷至清邁,東方線--由曼谷至柬埔寨境附近的阿蘭亞著托多,東北線--由曼谷至老撾國境城市諾凱,南方線--由曼谷向南沿馬來半島而行。

各府、縣都有公路相連,四通八達。要注意的是,出租車常常不按表收費,需事先談妥價錢。懂英語的出租車司機較多,如果要到有些距離的地方去,可以租車前往,價格需要進行交涉,大致在10-20銖左右。專線公共汽車:一些主要地方都有專線公共汽車,有的公共汽車號碼一樣,但線路不同。可以查看公共汽車交通圖或詢問飯店的服務人員后乘坐(近距離3銖)。

4、銀行

一般銀行的辦公時間是周一至周五,上午九點三十分或十點至下午三點三十分或四點。除周六、周日、法定假日休息外,一般平時每天營業時間從上午8:30至下午3:30;一般銀行都有外幣兌換處,外幣兌換處整日營業,可以隨時兌換外幣。

學生到泰國后,一般學校統一組織學生兌換外幣,并協助其辦理定期存款和提款卡相關事宜。

5、購物

泰國購物中心一般周一至周五早10:00到晚9:00開放,也有的早9:00點,甚至是8:00就開;晚上最遲的有到11點關的;不少購物中心休息日照常開放。百貨公司的營業時間為每日上午十點至下午八點或以后,其他商店營業時間為每日上午十點到下午七點。

留學俄羅斯生活飲食習慣一覽

一、口味偏甜

由于收到地理位置的影響,本地人會更嗜甜一些,而且對甜度的要求也比較高,在這里糖果和果醬是非常受歡迎的,大家到了之后,會吃到比國內口味更偏甜的糖食。

而且還會在做菜的時候,將糖當作一種調料放到菜里面,而且作為調味料的糖的種類還是不少的,大家可以根據自己的需求添加,分量掌握好的話,是會讓菜變得更加美味的。

二、面包主食

這里的主食是面食,尤其是面包,和國內的大米是同等地位,這里的人一天至少會有一頓飯中會有米飯,而面條等食物也很受歡迎,部門城市還會將大米作為常見的主食。

所以在俄羅斯,買面包是非常便宜的,而且種類也不少,根據烹飪的方式和添加的調料會有不同的口味,大家還可以自己在家里烤面包,味道也是很不錯的,很值得嘗試。

三、香腸制品

豐富的香腸等熏制品,在俄羅斯也是作為常見菜而存在的,因為這里的肉類銷量很高,為了方便保存,會采用熏制的方式來儲存,而香腸就是歡迎的種類,很容易獲取。

而且香腸在制作的時候就會加入調料,還是一種很方便烹飪的食材,幾乎是懶人必備的選擇,所以在俄羅斯的家庭內,香腸的儲存是比較多的,而且還會由不同種類選擇。

四、蔬菜很多

由于緯度的差異,很多在國內的蔬菜在俄羅斯并不常見甚至找不到,但同樣的,這里也有很多國內找不到的蔬菜,甚至品種會更多,大家可以嘗試不同的美味。

而且這里也會有比較獨特的烹飪方式,炒煮也很常見,生拌的沙拉也很受歡迎,大家可以獲取到很不錯的新選擇,這也是很值得常識的東西。

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計算機軟件專業留學申請書2022

計算機軟件專業是計算機科學的一個分支,和軟件科學與技術專業相比較,計算機軟件專業的側重點在開發和技術的實際應用,下面就是小編給大家帶來的計算機軟件專業留學申請書2022最新,希望能幫助到大家!計算機軟
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