附录9 目录示例
目 录
摘要···································································································································I Abstract············································….·······································································II
第1章 绪论··············································….···································································1 1.1 课题背景···························································································.···················1 1.2 交会对接技术发展概况·································································.....·····················2 1.2.1 美国空间交会对接发展概况························································….··················3 1.2.2 俄罗期空间交会对接发展概况······················································.····················3 1.2.3 俄罗斯、美国联合飞行·······················································································4 1.2.4 欧空局空间交会对接发展概况··········································································5 1.2.5 我国的空间交会对接发展概况··········································································5 1.3 相关工作························································································……····················5 1.3.1 姿态表示和空间飞行器运动方程···········································…...·······················5 1.3.2 对接制导··········································································································6 1.4 本文主要研究内容···································································································8 1.5 本文结构····························································································…·················9 第2章 空间飞行器姿态表示和运动方程···············································………················10 2.1 引言
2.2 标准正交旋转矩阵姿态表示 2.5 本章小节 结论······················································································································82 参考文献·······················································································································83 附录·······················································································································86 攻读博士学位期间所发表的学术论文·············································································89 致谢····················································································································90 索引···················································································································91 个人简历·············································································································92
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西北工业大学材料学院
对博士生在学期间发表论文的规定
为了提高我院博士研究生的培养质量,结合我院学生在发表论文方面的整体情况,2008年7月7日学位委员会第四分委员会召开会议,对材料学院博士生在学期间发表论文做出以下的要求:
从2008级博士生开始,博士生在学期间发表的学术论文,在符合学校对学术论文的要求外,还必须具备下列条件之一的,方可在学院办理博士论文答辩申请:
1、材料学专业:要求在SCI源刊上发表学术论文三篇或影响因子之和大于等于
3。
2、材料加工工程专业:要求在SCI源刊上发表学术论文三篇或影响因子之和大
于等于1.5。
3、学生在学期间发明授权专利一项,并且本人是第一发明人(或导师第一、本
人第二),可按发表一篇SCI计算。
材料学科关于博士研究生 在学期间发表学术论文的规定
(2014年6月26日)
为保证我校材料学科博士研究生培养质量,进一步提高博士研究生的学术水平,学位委员会第五分会于2014年6月25日召开会议,根据学校2012年4月28日通过的“关于研究生在学期间发表学术论文的规定”,经讨论决定,对材料学科博士生在学期间发表论文提出以下要求:
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博士生在学期间发表的学术论文,必须具备下列条件之一,方可办理博士论文送审和答辩申请:
条件一:在符合学校对学术论文的要求外,还需满足以下条件:
1、材料学学科:要求在SCI源刊上发表学术论文三篇或影响因子之和大于等于3。
2、材料加工工程学科:要求在SCI源刊上发表学术论文三篇或影响因子之和大于等于1.5。
3、材料物理与化学学科:按学校规定的要求执行。 条件二:发表一篇SCI影响因子大于6.0论文。
本规定从2014年入学的博士生开始执行。
2014.6.26
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