Parallelly的問題,透過圖書和論文來找解法和答案更準確安心。 我們找到下列懶人包和總整理

Parallelly的問題,我們搜遍了碩博士論文和台灣出版的書籍,推薦Khalifeh, Mahmoud,Saasen, Arild寫的 Introduction to Permanent Plug and Abandonment of Wells 可以從中找到所需的評價。

另外網站Temperatures plummet as cold grips Kashmir也說明:A Shikara rows in world famous Dal Lake with migratory birds swimming parallelly in the water body amid chilling cold in Srinagar on ...

國立陽明交通大學 電機工程學系 陳佳宏所指導 黃宇晟的 每秒二百萬點取樣十四位元的擴展式計數型類比數位轉換器 (2021),提出Parallelly關鍵因素是什麼,來自於逐次逼近式、增量型、擴展式計數型類比數位轉換器、同步、多級雜訊調整、殘留電壓。

而第二篇論文國立陽明交通大學 電機資訊國際學程 李育民所指導 高蘇查的 基於近似格林函數的熱感知固定框架之平面規劃解析模型 (2021),提出因為有 半導體技術、溫度、性能、物理設計、平面圖、分析、格林函數的重點而找出了 Parallelly的解答。

最後網站Slump in tea prices may hurt India's overall industry - Deccan ...則補充:Parallelly, rising labour wages is also a concern for the industry, said the association. "The wage rise for the decade (2011-2021) for West ...

接下來讓我們看這些論文和書籍都說些什麼吧:

除了Parallelly,大家也想知道這些:

Introduction to Permanent Plug and Abandonment of Wells

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為了解決Parallelly的問題,作者Khalifeh, Mahmoud,Saasen, Arild 這樣論述:

This open access book offers a timely guide to challenges and current practices to permanently plug and abandon hydrocarbon wells. With a focus on offshore North Sea, it analyzes the process of plug and abandonment of hydrocarbon wells through the establishment of permanent well barriers. It provide

s the reader with extensive knowledge on the type of barriers, their functioning and verification. It then discusses plug and abandonment methodologies, analyzing different types of permanent plugging materials. Last, it describes some tests for verifying the integrity and functionality of installed

permanent barriers. The book offers a comprehensive reference guide to well plugging and abandonment (P&A) and well integrity testing. The book also presents new technologies that have been proposed to be used in plugging and abandoning of wells, which might be game-changing technologies, but they

are still in laboratory or testing level. Given its scope, it addresses students and researchers in both academia and industry. It also provides information for engineers who work in petroleum industry and should be familiarized with P&A of hydrocarbon wells to reduce the time of P&A by considering

it during well planning and construction. Mahmoud Khalifeh is Associate Professor at University of Stavanger (UiS). He hold a PhD in plug and abandonment of wells with a focus on materials optimized for permanent P&A. Dr. Khalifeh has developed the permanent P&A (Plug and Abandonment) subject (MS

c level) at UiS. He has published several articles in scientific journals and conferences. Dr. Khalifeh represents UiS as observer at Norwegian Plug and Abandonment Forum (PAF) since 2012. Arild Saasen has a position as adjunct professor at the University of Stavanger. Parallelly, he works for other

companies including his own company ALKAS Atlantic AS. He has previously worked as drilling and well fluid specialist in Det norske oljeselskap (now named AkerBP) and Statoil (now named Equinor). Earlier he worked for Rogaland Research (now named Norce). He holds a MSc in fluid mechanics from the U

niversity of Oslo, Norway, and a PhD from the Technical University of Denmark. Throughout the last three decades, he has published numerous articles about drilling and drilling fluids. He has been awarded the Nordic Rheology Society’s Carl Clason Rheology Award in 2012 and the SPE North Sea Regional

Drilling Engineering Award in 2018.

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每秒二百萬點取樣十四位元的擴展式計數型類比數位轉換器

為了解決Parallelly的問題,作者黃宇晟 這樣論述:

逐次逼近式類比數位轉換器本身具有低功號,中解析度的特色,對於現今的攜帶式、AIOT裝置而言,是個不可或缺的部件。而增量型類比數位轉換器則擁有低頻寬和高解析度的特色。其數位的後處理有可使用簡單的累加器來實現,不須使用複雜多級的濾波器,因此有比較高的擴展性。擴展式計數型結合了以上兩者的特色。先使用增量型類比數位轉換器進行第一級的量化,接著再使用逐次逼近式類比數位轉換器進行第二級的量化。兩者透過平行運算的方式,提升整體的轉換速度。並透過兩者的結合來增加能耗表現。本偏採用擴展式計數型的類比數位轉換器架構,並在此之上對逐次逼近式類比數位轉換器的增益誤差進行校正,使的整個類比數位轉換器的有效位元數可以到

達14位元。同時,通過時脈改變,分配給逐次逼近式類比數位轉換器更多取樣的時間,也透過自行設計的單位電容來減小逐次逼近式類比數位轉換器的取樣電容大小(280 fF),使的整體類比數位轉換器的轉換速率可以達到每秒二百萬點取樣。該晶片核心面積為0.326 mm2,佈局後模擬(postsim)功耗為4.6 mW,其FOMS,SNDR可達167.3 dB.

基於近似格林函數的熱感知固定框架之平面規劃解析模型

為了解決Parallelly的問題,作者高蘇查 這樣論述:

由於半導體技術的進步,溫度已成為當今的主要考量之一,因為它是導致可靠性和性能下降問題的主要原因。 因此,溫度問題應在早期物理設計階段或電路設計階段進行處理以防止後續所衍伸的問題。 由於溫度估計取決於模塊的位置,因此製作結構化且高效的熱感知平面圖模型非常重要。 為了解決這個問題,這項工作提出了分析熱感知佈局規劃模型,該模型通過應用基於近似格林函數的熱模型,在佈局規劃階段以速度和準確性同時並行減少線長和溫度。