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U.S.-Japan Photosynthesis/Photoconversion Program: Joint Seminar on Dynamic Aspects of Photochemical Reaction Centers, January 1995/Tokyo, Japan

U.S.-Japan Photosynthesis/Photoconversion Program: Joint Seminar on Dynamic Aspects of Photochemical Reaction Centers, January 1995/Tokyo, Japan
美日光合作用/光转换计划:光化学反应中心动态方面联合研讨会,1995 年 1 月/日本东京
批准号:
9416727
负责人:
John Golbeck
金额:
$2.2万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-10-01 至 1995-09-30

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中文摘要
翻译
小行星9416727 该奖项支持10名美国科学家参加美国-拟于1995年1月在东京举行的日本光化学反应中心动态问题讨论会。 该研讨会是美国的一部分-日本光合作用/光转换计划。 美国主办方为内布拉斯加大学生物化学系John Golbeck教授,日本协办方为日本琦玉琦玉大学生物化学系Tetsuo Hiyama教授。 会议议程分为三个部分:还原能力的产生:光系统I的动态方面;氧化能力的产生:光系统II的结构和功能方面;光系统II的动态方面:氧的释放。 来自两国的参与者来自大学,国家研究实验室和工业研究实验室。 会议的目的是激发两国高等植物光合反应中心在分子生物学、生物化学和生物物理学方面进一步合作的兴趣。 ***
英文摘要
9416727 Golbeck This award supports the participation of ten U.S. scientists in a U.S.-Japan Seminar on Dynamic Aspects of Photochemical Reaction Centers, to be held in Tokyo in January 1995. The seminar is part of the U.S.-Japan Photosynthesis/Photoconversion Program. The U.S. organizer is Professor John Golbeck, Department of Biochemistry, University of Nebraska, and the Japanese co-organizer is Professor Tetsuo Hiyama, Department of Biochemistry, Saitama University, Saitama, Japan. The agenda for the meeting is divided into three parts: Generation of Reducing Power: Dynamic Aspects of Photosystem I; Generation of Oxidizing Power: Aspects of Photosystem II Structure and Function; and Dynamic Aspects of Photosystem II: Oxygen Evolution. Participants from both countries are from universities, national research labs, and industrial research labs. The purpose of the meeting is to generate interest among in further collaborative work in molecular biology, biochemistry, and biophysics of the higher plant photosynthetic reaction centers in both countries. ***
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会议论文
Collaborative Research: Multiple Approaches to Gain Increased Capture of Carbon Dioxide
Collaborative Research: Plug and Play Photosynthesis for RuBisCO Independent Fuels
Collaborative Research: Nitroplast: A Light-Driven, Synthetic Nitrogen-Fixing Organelle
Collaborative Research: Plug and Play Photosynthesis for RuBisCO Independent Fuels
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