* 使用過渡詞和短語，使段落更加連貫 (PART A)
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* 工程英文問題描述 (53) (上)
Academic publishing news 學術出版新聞
使用過渡詞和短語，使段落更加連貫 (PART A)
“Also,” “And,” “Finally,”
“Additionally,” “Likewise,” “Correspondingly,
” “Moreover,” “Similarly,”
“In the same manner,”
Alan Hovhaness (1911年3月8日－2000年6月21日），亞美尼亞-蘇格蘭裔美國作曲家，20世紀最多產的古典音樂作曲家之一。
Allow me to introduce myself. I am a researcher in the Department of Component Technology at the Center for Measurement Standards (CMS), which is similar to ABC Institute.
I am an engineer with a master’s degree in Materials Science and Engineering and have received special training in thin film deposition photolithography and chemical etching.
I am currently designing a process that integrates these technologies for the development of a pressure sensor that is based on a metal thin strain gauge. We plan to miniaturize this sensor in the near future.
Our laboratory would like me to receive training in micromachining technology, e.g., wet/dry silicon etching and silicon to silicon fusion bonding. I hope that your laboratory, one of the leaders in this field of research, can provide me with the opportunity to learn about sensor manufacturing technology.
I wish to learn about sensor manufacturing technology at your laboratory for three months this year, preferably during March through June. Pressure sensors and related technology are what we are most concerned with.
The proposed format is that of a self-supported guest worker at your laboratory.
By the way, I have an aunt living in a nearby Cupertino. Her name is Dr. Lin Mei Mei and she can be directly contacted at (408)1234567 (tel) or (408)2345678 (fax). She can provide further clarification, if necessary.
I would greatly appreciate your comments regarding this proposal. Thanks for your assistance. I look forward to our future cooperation.
工程英文問題描述 (53) (上)
* 工程提案建構 : 你工程提案的主題是什麼? 你的讀者可以明瞭工程提案的內容嗎?
* 工程問題 : 你的工程提案裡有你試著要解決或是想更進一步瞭解的問題嗎?
* 工程問題的量化 : 你要如何量化問題來讓你的讀者明白之前文獻研究所遇到的量化限制 ?
* 工程問題的中心 : 如果問題沒被解決或是充分瞭解, 這對工程提案的讀者會有多大的負面衝擊?
* 工程計劃需求 : 根據以上問題,最迫切的計劃需求是什麼?
工程計劃建構 Computer networks and electronic data pervade daily life. Information accessed from the Internet or transferred between electronic devices must be protected to ensure confidentiality. Thus, wired or wireless communication protocols contain various cryptography algorithms to ensure confidentiality and authentication. Of those, elliptic curve cryptography (ECC) hs become popular with the emergence of wireless applications owing to its ability to provide a mandatory security level with fewer bit numbers than the RSA algorithm can, which is extensively used in cryptography applications. 工程計劃問題 The crypto module is often implemented in hardware to facilitate crypto algorithm applications. Despite the availability of the ECC hardware accelerator, the ECC algorithm has two fields: finite polynomial and finite prime. In these two fields, the operators of ECC have different definitions. These hardware accelerators can be only used either in a finite polynomial field or in a finite prime field. Given this limitation, users should embed two ECC hardware accelerators that can handle a specific field; otherwise, the flexibility to select which field of ECC application to utilize is lost. 工程計劃問題的量化 For instance, if two crypto accelerators are embedded in a chip, the area overhead is quite large and the chip cost markedly increases owing to the considerably large area requirement of the crypto hardware accelerator. Moreover, the power consumed by the redundant ECC accelerator lowers the competitiveness of the manufactured chip. 工程計劃問題的中心 The inability to develop a ECC acceleraor for use in both finite polynomial field and finite prime field makes it difficult to integrate the ECC crypto algorithm in all communication protocols. 工程計劃需求 Therefore, a novel architecture of an ECC hardware crypto module must be developed, capable of flexible use in both the finite prime field and the finite polynomial field.