Besides的問題,透過圖書和論文來找解法和答案更準確安心。 我們找到下列各種有用的問答集和懶人包

Besides的問題,我們搜遍了碩博士論文和台灣出版的書籍,推薦Hagler, Tom寫的 We Could Be: Bowie and His Heroes 和Kumar, Dipesh,Singh, Bhaskar的 Biodiesel as an Alternative Fuel: Value Chain, Performance, Feasibility and Sustainability都 可以從中找到所需的評價。

另外網站要用Besides 還是Except? - 世界公民文化中心也說明:Besides passion, a successful person will also have qualities like vision and time management. 一個成功的人士除了熱情之外,還兼具遠見和時間管理的特質。 I like ...

這兩本書分別來自 和所出版 。

國立陽明交通大學 電子研究所 林炯源所指導 陳竑任的 以第一原理量子傳輸理論研究在介面處有取代硫處理之二硫化鎢電晶體 (2021),提出Besides關鍵因素是什麼,來自於二硫化鎢電晶體、第一原理、量子傳輸、接觸電阻。

而第二篇論文國立陽明交通大學 分子醫學與生物工程研究所 趙啟宏所指導 王慶弘的 探討CPT1C在類基底型乳癌中調控上皮-間質轉型及腫瘤幹細胞特性所扮演的角色 (2021),提出因為有 脂肪酸氧化、CPT1C、類基底型乳癌、上皮-間質細胞轉型、腫瘤幹細胞特性的重點而找出了 Besides的解答。

最後網站【Besides vs In addition】「此外」? - 你的英文事務所則補充:過去在K所的朋友們,如果待的夠久且有機會和editor清notes,或者會有印象,凡用到besides作為開頭的詞句,多半會被更正為in addition。 想到當初,阿森森 ...

接下來讓我們看這些論文和書籍都說些什麼吧:

除了Besides,大家也想知道這些:

We Could Be: Bowie and His Heroes

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為了解決Besides的問題,作者Hagler, Tom 這樣論述:

The story of Bowie’s life told through 300 encounters with fellow icons, from Dylan to Dalí, Lennon to Lydon, Princess Margaret to Prince. *** With consultant editor Tony ViscontiDavid Bowie’s story has never been told quite like this. Tracing the star’s encounters with fellow icons throughout hi

s life, We Could Be offers a new history of Bowie, collecting 300 short stories that together paint a portrait of humor, humility, compassion, tragedy and more besides. He embarrasses himself in front of Lennon and Warhol. He saves the life of Nina Simone. He is hated by Bob Dylan. He teaches Michae

l Jackson the moonwalk. Individually astonishing, together these stories - including details never before revealed - build a new picture of Bowie, one which shows his vulnerability, his sense of humor, his inner diva. Exhaustively researched from thousands of sources by BBC reporter and Bowie obsess

ive Tom Hagler - with the guidance and memories of Bowie’s long-time producer Tony Visconti - We Could Be is fascinating, comic, compelling, and a history of Bowie unlike any that has come before.

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以第一原理量子傳輸理論研究在介面處有取代硫處理之二硫化鎢電晶體

為了解決Besides的問題,作者陳竑任 這樣論述:

矽基互補式金氧半場效電晶體的持續微縮遭遇短通道效應的限制,此限制從過去到未來的發展導致了一連串的問題。包含汲極引發位障降低(Drain-induced Barrier Lowering, DIBL)、閘極引發漏電(Gate-induced Drain Leakage, GIDL)、擊穿(Punch-Through)、載子遷移率下降等等。在各種可能使電晶體微縮至1nm節點以下的新穎通道材料中,具原子尺度的二維材料不僅直觀上可克服短通道效應,使電晶體更進一步微縮,同時仍保持高載子遷移率。單原子層WS2為一種最常被研究的過渡金屬二硫族化合物(TMD)材料,實驗上已被作為電晶體的通道材料來使用,並展

示出高電流開關比、高載子遷移率及高熱穩定性。發展WS2電晶體最迫切的挑戰在於降低接觸電阻,在本論文中,我們施以第一原理量子傳輸計算來研究Metal/WS2與Metal/WSX/WS2側接觸,試圖以硫族元素之取代來降低蕭特基位障,因此減少接觸電阻。在此該取代使用了五族或七族元素取代單層WS2一側部分區域之硫族元素,產生超材料WSX (X= P, As, F, Cl, Br)的部分。另外,我們進一步比較該取代在界面金屬化與界面鍵結以及其在蕭特基位障的效果。如此之WSX緩衝接觸展示了p型Pt/WSP/WS2側接觸和n型Ti/WSCl/WS2側接觸的接觸電阻分別低至122.4Ω∙μm與97.9Ω∙μm

。此外,我們也利用第一原理分子動力學觀測到室溫下穩定的單層WSX。

Biodiesel as an Alternative Fuel: Value Chain, Performance, Feasibility and Sustainability

為了解決Besides的問題,作者Kumar, Dipesh,Singh, Bhaskar 這樣論述:

Biodiesel as an Alternative Fuel: Value Chain, Performance, Feasibility and Sustainability provides a fundamental understanding on the state-of-the-art processes involved in the production of biodiesel. The book offers a holistic analysis of mass scale biodiesel production in terms of techno-econ

omic viability and sustainability challenges in the 21st century. It covers the entire biodiesel value chain, from feedstock production and conversion processes, to post-production refining and fuel quality assessment. Besides conventional approaches, recent technologies holding promising opportunit

ies are discussed in-depth. The book’s authors analyze and address major industry and environmental concerns in their discussion of lifecycle assessment and techno-economic assessment. By exploring the fundamental concepts, latest developments and sustainability aspects, the book offers a complete u

nderstanding of the feasibility and sustainability of biodiesel. Researchers and PhD students coming into the field will be able to use this reference to acquire a holistic perspective of the subject. In addition, more experienced researchers and industry practitioners will benefit from the book’s t

echno-economic approach that will help readers make better-informed decisions when developing and deploying biodiesel-based technologies.

探討CPT1C在類基底型乳癌中調控上皮-間質轉型及腫瘤幹細胞特性所扮演的角色

為了解決Besides的問題,作者王慶弘 這樣論述:

代謝途徑重整是腫瘤的重要特徵之一,腫瘤細胞可藉由調控自身的代謝偏好而有利其在代謝壓力的情況下存活,並維持高速增生。有研究更進一步指出乳癌細胞傾向於透過調控脂肪酸氧化代謝的效率限制酶CPT1C來增加脂肪酸氧化的活性,進而促進細胞增生,甚至維持腫瘤幹細胞特性及產生抗藥性。因此,本研究旨在釐清類基底型乳癌是否透過調節CPT1C影響細胞脂肪酸氧化代謝的活性,進而誘發上皮-間質細胞轉型及腫瘤幹細胞特性。我們的先導結果指出,透過TCGA數據資料庫分析,CPT1C表現量在類基底型乳癌患者中高於其他乳癌類型,並在具有淋巴結轉移或遠端轉移的患者中具有較高的表現量;而在類基底型乳癌患者中,擁有較高CPT1C表現

量的族群同時存活率也較差。此外,在類基底型乳癌患者中,相較於其他CPT1同功酶(CPT1A、CPT1B), 唯有CPT1C的表現量和存活率呈現負相關。接著,正常類基底型人類乳腺上皮細胞中過度表現CPT1C會增加脂肪酸氧化代謝活性,同時也誘導上皮-間質細胞轉型、細胞遷移、侵襲,並且提升腫瘤幹細胞特性;反之,利用微小干擾RNA抑制類基底型乳癌細胞株的CPT1C表現則可降低腫瘤的發展。以上結果顯示CPT1C確實在類基底型乳癌細胞的高度上皮-間質細胞轉型及癌幹性中扮演不可或缺的角色,未來我將繼續探討調控CPT1C的分子機制及利用動物實驗進行驗證。我們的研究不僅對於新穎療法的開發有很大的幫助,也釐清現行

生酮飲食療法用於類基底型乳癌的謬誤。關鍵詞: 脂肪酸氧化、CPT1C、類基底型乳癌、上皮-間質細胞轉型、腫瘤幹細胞特性