web of science 核心合集助力科研创新 · journal citation report endnote ... indole...
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Web of Science® 核心合集助力科研创新
段鑫龙解决方案顾问Clarivate Analytics
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Agenda
• Web of Science® 核心合集简介
• Web of Science® 助力创新科研
• EndNote® 助力高效管理参考文献
• JCR期刊引证数据助力选刊投稿
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
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Web of Science® 核心合集简介
BKCI2005年
CPCI
1990年
A&HCI1975年
SCI
SSCI
1900年 ES
CI
2015年
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Web of Science® 核心合集简介
Dr. Garfield 1955年在 Science 发表论文提出将引文索引作为一种新的文献检索与分类工具
Dr. Garfield认为:将一篇文献作为检索字段从而跟踪一个Idea的发展过程及学科之间的交叉渗透的关系。
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相关记录
2004
2008
2002
2003
引用
2014
2013
施引文献 2011
2012
2010
参考文献
2001 2007
1998
2000
Web of Science® 核心合集简介
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Web of Science®助力创新科研
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研究主题
申请基金
分析领域设计方案
科技出版
Essential Science Indicators
Journal Citation ReportEndNote
Web of ScienceInCites
Essential Science IndicatorsWeb of Science
Web of Science
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精准定位研究前沿 – ESI 助力科研选题及基金申请
Essential Science Indicators 定量分析研究绩效的工具esi.incites.thomsonreuters.com
• 来自于 Web of Science 的10年滚动数据,每一种期刊都被按照22个学科进行了分类标引;
• 基于科学家、研究机构(或大学)、国家(或地区)及学术期刊的研究成果数量和影响力指标,以及在全球各研究领域中的排名
• 全球各学科领域的论文被引频次基准值
• 高被引论文、热点论文和研究前沿
ESI已成为教育部学位评估中心及2011计划(高校协同创新平台计划)重要评估指标之一
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精准定位研究前沿 – ESI 助力科研选题及基金申请
• 过去10年中所发表的,在统计时间点,被引次数在同年同学科中达到该学科的前1%--高被引论文Highly Cited Paper
• 近两年内发表,在统计时间点,近两个月的被引次数达到该学科的前0.1%--热点论文HOT Paper
• 统计高被引论文之间的引证关系,采用共聚类分析得出关键词—研究前沿Research Fronts
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精准定位研究前沿 – ESI 助力科研选题及基金申请
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精准定位研究前沿 – ESI 助力科研选题及基金申请
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catalyst
碳氢活化反应
精准定位研究前沿 – ESI 助力科研选题及基金申请
高效有机太阳能电池
有机发光二极管
镧系金属元素的单粒子磁体
C-H键的烯丙基化、酰胺化、炔基化
C-H键的三氟甲基化
N-杂环卡宾(NHC)催化
发光镧系金属-有机骨架材料
非富勒烯型聚合物太阳能电池
有机金属配合物发光材料
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精准定位研究前沿 – ESI 助力科研选题及基金申请
2012:选择性反应尤其是催化不对称反应,已成为有机化学研究的热点。
2013 - 2015:选择性反应(尤其是催化不对称反应)以及惰性化学键的活化与转化,已成为有机化学研究的热点。
2016:有机化学反应与合成更加注重选择性精准控制和原子/步骤经济性;惰性化学键与小分子的活化与转化、廉价金属催化、绿色合成、生物质转化等成为应对可持续发展需求的前沿领域。
2012 - 2016年国家自然科学基金委有机化学面上项目指南研究前沿领域的变化
惰性化学键活化(碳氢活化)
有机化学领域的ESI研究前沿
C-H键的烯丙基化、酰胺化、炔基化 2014.8
C-H键的三氟甲基化 2013.6
N-杂环卡宾(NHC)催化 2013.3
利用ESI研究前沿对基金资助领域进行预判
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Source: https://www.jst.go.jp/act-c/en/research_area/ongoing/sawamura_en.html
精准定位研究前沿 – ESI 助力科研选题及基金申请
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研究前沿报告
Clarivate Analytics与中国科学院合作发布《2014研究前沿》 《2015研究前沿》 《2016研究前沿》 《2017研究前沿》《2017研究前沿热度指数》报告
相关新闻及下载:http://clarivate.com.cn/press/press20171102/
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《2017研究前沿》发布暨研讨会
《2017研究前沿》报告依托于中国科学院杰出的文献分析实力,根据科睿唯安Web of Science和Essential Science Indicators (基础科学指标,简称ESI)的高质量数据,遴选出了2017 年自然科学和社会科学的10 个大学科领域排名最前的100 个热点前沿和 43 个新兴前沿。
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化学与材料科学研究前沿
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挖掘文献信息 – Web of Science 助力研究领域分析
搜索与C-H键活化相关的关键词 Tips:使用逻辑运算符 + *
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挖掘文献信息 – Web of Science 助力研究领域分析
检索排序方式
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挖掘文献信息 – Web of Science 助力研究领域分析
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挖掘文献信息 – Web of Science 助力研究领域分析
引文报告
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挖掘文献信息 – Web of Science 助力研究领域分析
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挖掘文献信息 – Web of Science 助力研究领域分析
分析结果
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挖掘文献信息 – Web of Science 助力研究领域分析
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基金资助机构
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研究背景
获取综述文章信息
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主要出版期刊源
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各国研究状况
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研究机构
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领军人物
Professor Robert G. BergmanUC Berkeley
Professor Jinquan YuScripps Research Institute
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学术会议
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研究领域
生物化学、分子生物学领域的延伸
能源、燃料领域的延伸
生物科技、应用微生物领域的延伸
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信息整理 – 总结研究思路、设计实验方案
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国际高被引论文的研究思路
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国际高被引论文的研究思路C-H bond activation enables the rapid construction and late-stage diversification of functional molecules
碳氢活化反应快速构建功能分子后期多样性
Functionalization of Organic Molecules by Transition-Metal-Catalyzed C(sp(3))-H Activation
通过过渡金属催化的SP3杂化的碳氢活化反应实现有机分子的官能团化
Palladium-catalyzed benzene arylation: Incorporation of catalytic pivalic acid as a proton shuttle and a key element in catalyst design 三甲基乙酸作为质子传输器辅助钯催化的苯芳基化反应
Catalytic intermolecular direct arylation of perfluorobenzenes 六氟苯的分子间芳基化反应
Proton abstraction mechanism for the palladium-catalyzed intramolecular arylation 钯催化分子内芳基化反应的质子抽取机制
Palladium-catalyzed methylation and arylation of sp(2) and sp(3) C-H bonds in simple carboxylic acids
简单羧酸化合物中SP2及SP3杂化碳氢键的钯催化甲基化及芳基化反应
Catalytic and highly regioselective cross-coupling of aromatic C-H substrates 芳香碳氢键的催化高区域选择性偶联反应
Indole Synthesis via Rhodium Catalyzed Oxidative Coupling of Acetanilide and Internal Alkynes
通过铑催化的氧化偶联反应以乙酰苯胺及分子内炔基为底物构建吲哚化合物
Cu-catalyzed cross-dehydrogenative coupling: A versatile strateav for C-C bond formations via the oxidative activation of sp(3) C-H bonds 通过铜催化的氧化偶联反应对SP3杂化的碳氢键进行脱氢偶联
Construction of Nitrogen-Containing Heterocycles by C-H Bond Functionalization 通过碳氢官能团化构筑氮杂环化合物
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国内高被引论文的研究思路
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国内高被引论文的研究思路Pd-catalyzed oxidative coupling with organometallic reagents via C-H activation 碳氢活化反应参与的钯催化氧化偶联反应
Intermolecular amidation of unactivated sp(2) and sp(3) C-H bonds via palladium-catalyzed cascade C-H activation/nitrene insertion 钯催化碳氢活化及氮宾插入在分子间酰胺化反应的应用
Multiple C-H activations to construct biologically active molecules in a process completely free of organohalogen and organometallic components
多步碳氢活化反应构建具有生物活性分子(无有机卤化物及有机金属化合物参与)
An efficient organocatalytic method for constructing biaryls through aromatic C-H activation 碳氢活化参与的高效构建联芳化合物的有机催化方法
Palladium-catalyzed direct arylation of (hetero)arenes with aryl boronic acids 杂环芳基化合物与芳基硼酸化合物的钯催化芳基化反应
Palladium-Catalyzed Alkenylation of Quinoline-N-oxides via C-H Activation under External-Oxidant-Free Conditions
在无外界氧化物参与的条件下通过钯催化的碳氢活化反应对喹啉进行烯基化反应
Copper-Catalyzed C(sp(3))-C(sp(3)) Bond Formation Using a Hypervalent Iodine Reagent: An Efficient Allylic Trifluoromethylation
以高价碘化物为底物通过铜催化的SP3碳碳偶联反应进行烯丙基的三氟甲基化
Gold(III) salen complex-catalyzed synthesis of propargylamines via a three-component coupling reaction
三价金手性配合物催化下由三组分参与的偶联反应合成炔丙基胺
FeCl(2)-Catalyzed selective C-C bond formation by oxidative activation of a benzylic C-H bond
在氯化亚铁的催化下通过苯甲基碳氢键的氧化活化选择性构筑碳碳键
Challenge and progress: palladium-catalyzed sp(3) C-H activation 钯催化下SP3碳氢键活化的挑战与进展
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国内外热点论文的研究思路
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国内外热点论文的研究思路Co(III)-Catalyzed C-H Activation/Formal S-N-Type Reactions: Selective and Efficient Cyanation, Halogenation, and Allylation
钴催化的碳氢活化反应:高效有选择性的氰化反应、卤化反应及烯丙基化反应
Metal-Ligand Cooperation 金属-配体协作
Site-selective arene C-H amination via photoredox catalysis 光氧化还原反应催化的具有区域选择性的碳氢键氨基化
Selective Synthesis of Indoles by Cobalt(III)-Catalyzed C-H/N-O Functionalization with Nitrones 通过钴催化的碳氢、氮氧键官能团化选择性合成吲哚化合物
Manganese-Catalyzed C-H Activation 锰催化的碳氢活化反应
Cobalt-Catalyzed Oxidase C-H/N-H Alkyne Annulation: Mechanistic Insights and Access to Anticancer Agents
钴催化的碳氢、氮氢键炔烃环化反应:机理研究及潜在抗癌化合物的合成
Single-Component Phosphinous Acid Ruthenium(II) Catalysts for Versatile C-H Activation by Metal-Ligand Cooperation 次磷酸参与的二价钌催化的碳氢活化反应
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总结研究思路、设计实验方案
碳氢活化
反应类型
底物种类
催化金属反应条件
研究内容
芳基化反应、甲基化反应、区域选择性偶联反应、氧化偶联反应、分子间酰胺化反应、烯基化反应、碳碳偶联反应、氰化反应、卤化反应及烯丙基化反应、氨基化反应、氮氧键官能团化、炔烃环化反应、三氟甲基化反应
六氟苯、羧酸化合物、芳香化合物、乙酰苯胺、杂环芳基化合物、芳基硼酸化合物、喹啉、高价碘化物、苯甲基碳氢键
钯、铑、铜、金、铁、钴、锰、钌
无有机卤化物及有机金属化合物参与、无外界氧化物参与、光参与
构建功能分子后期多样性、官能团化、质子抽取机制、区域选择性、合成吲哚化合物、氮杂环化合物、合成生物活性分子、构建联芳化合物、合成炔丙基胺、机理研究、抗癌化合物的合成
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利用EndNote高效管理参考文献
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利用EndNote高效管理参考文献
文献调研时,面对纷繁冗杂的文献不知如何下手。
撰写论文时,除了罗列实验方法,堆砌实验数据,我们不知道如何借鉴文献信息进行分析,讨论。因为我们的文献管理一团糟,经常找不到有效的文献。
写论文的时候,参考文献格式处理令人头疼不已,一不留神错误百出,被编辑质疑文章的质量。
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文献管理工具——EndNote® online
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文献管理工具——EndNote® online
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第三方资源的导入
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Reference
• 不同领域• 不同期刊• 不同院校的硕博士论文
参考文献格式要求不尽相同Endnote ® online
Endnote ®
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小插件:实现word与Endnote® online之间的对接
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如何插入参考文献?
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如何插入参考文献?
Sheng. L
Sheng. L
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如何统一做格式化处理?
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Endnote® online – 文献的管理和写作工具
• 与Microsoft Word自动连接, 边写作边引用– 自动生成文中和文后参考文献– 提供3300多种期刊的参考文献格式
• 提高写作效率:– 按拟投稿期刊的格式要求自动生成参考文献, 节约了大量的
时间和精力– 对文章中的引用进行增、删、改以及位置调整都会自动重
新排好序– 修改退稿, 准备另投它刊时, 瞬间调整参考文献格式
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EndNote网络版和单机版对比
64
ENDNOTE不同版本主要参数对比版本类型 单机版(Site License) 网络版软件结构 单机版软件,支持最多3台
设备网络版,借助Web of Science平台连接Internet即可正常访问
全文pdf附件容量 无限制(受限于本机存储容量)
上限2GB
文献库共享 支持 不支持自动文献信息更新 支持 不支持在线检索数据库 6,000+ 1,800+导入pdf全文 支持(可自动导入包含二级
文件夹的所有PDF文件)不支持
创建智能分组与组合分组
支持 不支持
自动查找并下载全文 支持(可帮助查找PDF文本)不支持高亮与标注PDF全文 支持 不支持内置的参考文献格式模板
6000+ 种格式 3300+ 种格式
自定义格式编辑 支持参考文献格式及过滤器编辑
不支持
期刊简称识别与标准化 支持 不支持
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利用JCR数据资源助力选刊投稿
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66Journal Citation Reports ®简介
• 期刊引文分析报告(Journal Citation Reports,简称JCR)是一个独特的
多学科期刊评价工具;分为自然科学和社会科学两个版本:
• JCR Science Edition:提供SCIE中所收录的170多个学科领域,8800
多种期刊的引文分析信息;
• JCR Social Sciences Edition:提供SSCI中所收录的50多个学科领域,
3200多种期刊的引文分析信息
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JCR-期刊引证报告
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JCR常见指标说明
Ø 总引用次数(Total Cites):某一特定期刊的文章在JCR出版年被引用的总次数Ø 影响因子(Impact Factor):一个被收录3年以上的期刊在JCR出版年中平均每篇文章的
被引次数Ø 分区:依据影响因子排名在某学科中四等分Ø 立即指数(Immediacy Index):某刊的文章在其发表年被引用的次数Ø 文章总数(Articles):JCR出版年某刊发表的文章总数Ø 被引半衰期(Cited Half Life):一份期刊从当前年度向前推算引用数占截止当前年度被引用
期刊的总引用数50%的年数Ø 施引半衰期(Citing Half-life):是指引文数达到当前期刊发表的论文中的参考文献数的
50%所需要的年数
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69影响因子(Impact Factor):只有被Web of Science®核心合集收录达3年的期刊才会有影响因子
IF2016=2014年和2015年发表的文献在2016年被引用的次数
2014年和2015年发表的文献数
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查看某一本期刊的历史数据来把握其发展状态
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迅速识别一本期刊是否是Open Access\出版周期、出版信息等
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关于被镇压期刊的说明
之前被镇压的期刊未有影响因子的期刊,会在详细页面说明
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Journal Citation Reports与Web of Science相互融合
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由此处进入Journal Citation Reports
在Web Of Science界面里查看期刊的基本信息
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JCR:用权威数据,选合适期刊
Ø发表于高水平期刊 = 编辑及同行评审对于成果的认可
Ø发表于高水平期刊 = 受到更多同行的关注Ø论文更有可能获得高影响力
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ENDNOTE匹配功能-找到最合适您投稿的期刊
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ENDNOTE匹配功能-找到最合适您投稿的期刊
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本次讲座资源入口:www.webofscience.comJCR ESI EndNote
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访问网站:http://ip-science.thomsonreuters.com.cn/e-Clarivate/index.htm
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Web of Science 小测验
• 第一题:Web of Science核心合集中涵盖以下哪些引文数据库?
• A. Science Citation Index Expanded
• B. Social Sciences Citation Index
• C. BIOSIS Citation Index
• D. Emerging Sources Citation Index
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Web of Science 小测验
• 第二题:SCIE数据库共收录了178本中国出版的期刊,其中《Nano Research》是清华大学出版的一本期刊,2016年影响因子为7.35,请问这本期刊属于哪类学科?
• A. CHEMISTRY, PHYSICAL
• B. NANOSCIENCE & NANOTECHNOLOGY
• C. MATERIALS SCIENCE, MULTIDISCIPLINARY
• D. PHYSICS, APPLIED
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• 第三题:转基因食品(Genetically modified food)是当下全球都在关注的热点话题之一,同时也是当下社会具有争议性的话题之一。从学术角度来看,转基因食品就是利用现代分子生物技术,将某些生物的基因转移到其他物种中去,改造生物的遗传物质,使其在形状、营养品质、消费品质等方面向人们所需要的目标转变,从而形成的可以直接食用,或者作为加工原料生产的食品。请问,在SCIE数据库上,对转基因食品(Genetically modified food)的相关研究哪个国家/地区相对最为活跃?
• A. 中国
• B. 美国
• C. 加拿大
• D. 新加坡
Web of Science 小测验
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Web of Science 小测验
• 第四题:2015年5月19日,美国著名经济学家约翰·纳什从挪威国王手中接过被誉为数学界诺贝尔的阿贝尔奖,成为有史以来第一位诺贝尔和阿贝尔双奖得主,然而不久后纳什与妻子因车祸突然离世的消息也同样震惊了世界。约翰.纳什在1950取得了博士学位,其博士论文研究为“非合作的赛局”,之后纳什以其名字命名该理论,也就是人们所熟知的“纳什均衡”。他曾发表过几篇论文,为”纳什均衡 “奠定了重要基础,《The Bargaining Problem》便是其中之一。请问在SSCI数据库中,《The Bargaining Problem》发表在哪本期刊上,被引过多少次?
• A. ANNALS OF MATHEMATICS / 200多次
• B. ECONOMETRICA / 200多次
• C. ANNALS OF MATHEMATICS / 2000多次
• D. ECONOMETRICA / 2500多次
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Web of Science 小测验
• 第五题:圣诞节“Christmas”是纪念耶稣降生的节日,是西方国家的一个重要的节日。随着经济和互联网的快速发展,伴随着刺激性消费的商业气息,圣诞节亦随着近代西方国家的影响力而扩展到全世界。由此,对于圣诞节的相关学术研究也是多种多样的,涉及了多个研究领域。请问:在SSCI数据库上对于圣诞节研究最多的是哪个领域?
• A. INFORMATION SCIENCE LIBRARY SCIENCE
• B. BUSINESS ECONOMICS
• C. ECOLOGY
• D. PLANT SCIENCES