【簡介】
為賡續臺灣茶未來之發展,必須綜合運用科學研究成果及現代新技術進行產業升級,以機採茶菁為原料並透過智慧製茶程序產製高品質與產量穩定的臺灣茶為目標,從而建構一套完整的臺灣茶產銷體系,是目前茶產業科技研發面臨的重要挑戰,也是茶作科學研究成果的具體展現。基此,茶業改良場邀集研究同仁針對茶園之栽培與管理技術編輯成專書,兼具科學理論與實務,期能提供茶農朋友、農業推廣人員、農學相關科系學生及愛茶人士參考,並有助臺灣茶產業之永續發展。
【目錄】
01 緒論
02 臺灣茶樹起源
03 茶樹栽培環境
04 茶樹生長與發育
05 臺灣茶樹育種
06 臺灣主要茶樹品種
07 茶苗繁殖
08 茶園水土保持
09 茶園開墾與種植
10 茶園田間管理
11 茶樹剪枝技術
12 天然災害預防與管理
13 茶園病蟲草害及防治
14 茶葉採摘
15 茶園機械使用與保養
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臺灣茶葉感官品評實作手冊 (3版)
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【簡介】
飲茶在東方已有五千年歷史,茶葉一般採用感官品評進行品質的分級,即由經過專業訓練的品評人員依靠視覺、嗅覺、味覺,即可判斷茶葉品質好壞。一般而言,只要通過一系列嚴謹的培訓課程及養成,隨時保持良好體能及感官能力的靈敏度,並在一個穩定的環境下,就能夠把茶葉的品質喝出來。茶葉感官品評長期以來都是用來評鑑茶葉品質與分級的重要方法,也是被茶業界所廣泛認同。
【目錄】
01 緒論
02 品評人員的素養、職業道德與倫理
03 感官品評原理
04 茶葉感官品評之相關化學成分
05 茶葉感官品評流程及所需設備
06 茶葉感官品評常用評語及茶類特色介紹
07 茶葉感官品評分級實務操作流程
08 臺灣特色茶風味輪
09 臺灣茶分類分級系統TAGs
附錄一 中華民國茶葉國家標準(CNS179)修訂草案
附錄二 臺灣茶區辦理優良茶比賽對COVID-19(新冠肺炎)因應指引
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(書角左下方有輕微擠壓到) Principles of Instrumental Analysis【內含Access Code,經刮除不受退】 7/E AE 2018 <Cengage Learning> 7/E 2018 <CENGAGE> (7版)
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Biochemical Thermodynamics: Applications of Mathematica 書角輕微擠壓
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【簡介】
Navigate the complexities of biochemical thermodynamics with Mathematica(r)
Chemical reactions are studied under the constraints of constant temperature and constant pressure; biochemical reactions are studied under the additional constraints of pH and, perhaps, pMg or free concentrations of other metal ions. As more intensive variables are specified, more thermodynamic properties of a system are defined, and the equations that represent thermodynamic properties as a function of independent variables become more complicated.
This sequel to Robert Alberty's popular Thermodynamics of Biochemical Reactions describes how researchers will find Mathematica(r) a simple and elegant tool, which makes it possible to perform complex calculations that would previously have been impractical. Biochemical Thermodynamics: Applications of Mathematica(r) provides a comprehensive and rigorous treatment of biochemical thermodynamics using Mathematica(r) to practically resolve thermodynamic issues.
Topics covered include:
* Thermodynamics of the dissociation of weak acids
* Apparent equilibrium constants
* Biochemical reactions at specified temperatures and various pHs
* Uses of matrices in biochemical thermodynamics
* Oxidoreductase, transferase, hydrolase, and lyase reactions
* Reactions at 298.15K
* Thermodynamics of the binding of ligands by proteins
* Calorimetry of biochemical reactions
Because Mathematica(r) allows the intermingling of text and calculations, this book has been written in Mathematica(r) and includes a CD-ROM containing the entire book along with macros that help scientists and engineers solve their particular problems.
【目錄】
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Comprehensive Organic Name Reactions and Reagents Vol: 3 書角輕微擠壓
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【簡介】
With its coverage of 701 organic name reactions and reagents, this three-volume set is the largest, most up-to-date major reference work of its kind. It offers students and professional chemists a valuable resource for conducting experiments and performing a broad range of applications, from pharmaceuticals to plastics to pesticides. Each reaction listing is clearly organized into uniform sections that allow readers to quickly gather the information they need to conduct their own experimental procedures"Comprehensive Organic Name Reactions and Reagents" offers several features that help readers gather information quickly and conduct their experiments successfully: Chemical abbreviations list the abbreviation, the chemical's full name, its structure, and page referencesSchematic reaction index offers a quick overview of each reactionReaction summaries provide basic information about each name reactionReaction type summaries categorize and organize all related name reactions according to the type of transformation ("e.g., " oxidation, reduction, synthesis of alkenes, etc.)
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Comprehensive Organic Name Reactions and Reagents Vol.2 書角輕微擠壓
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【簡介】
With over 850 listings, Comprehensive Organic Name Reactions and Reagents is the most comprehensive collection of name reactions and reagents available today. Information provided on each reaction includes a description of the reaction, the reaction scheme, a brief bio of the person(s) for which the reaction is named, proposed mechanisms, modifications (if applicable), applications, related reactions (if applicable), experimental examples, and references to primary literature. With several indices, this is the definitive reference that helps bench chemists and students navigate the growing number of name reactions and reagents.
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