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约翰霍普金斯大学土木工程硕士专业 一门提高生活质量的学科!

  土木工程在提高人类社会质量方面起着举足轻重的作用,比如:自然灾害的减轻、安全公共空间的构建都离不开土木人才,为了顺应时代的发展,美国很多大学都开设了土木工程专业,约翰霍普金斯大学是比较出色的一所,下面,小编就带大家深入了解约翰霍普金斯大学土木工程硕士专业,希望对大家有所帮助:

  Civil Engineering, Master of Civil Engineering

  土木工程课程提供了结构工程,岩土工程,海岸工程和保护工程领域的研究生指导。该项目的学生可以选择集中研究结构工程或继续攻读一般土木工程课程。

  课程设置:

  PROGRAM OPTIONS

  General Civil Engineering Program

  Focus Areas

  Structural Engineering

  Geotechnical Engineering

  Ocean and Coastal Engineering

  Courses

  GENERAL CIVIL ENGINEERING

  Three core courses are required:

  EN.535.641 Mathematical Methods For Engineers

  EN.565.604 Structural Mechanics

  EN.565.606 Geotechnical Engineering Principles

  Electives

  Select at least four elective courses from the following:

  EN.565.608 BIM Applications in Civil Engineering

  EN.565.616 Applied Finite Element Methods

  EN.565.619 Advanced Structural Analysis

  EN.565.620 Advanced Steel Design

  EN.565.622 Advanced Reinforced Concrete Design

  EN.565.623 Bridge Design and Evaluation

  EN.565.626 Design of Wood Structures

  EN.565.628 Preservation Engineering I: Theory and Practice

  EN.565.630 Prestressed Concrete Design

  EN.565.631 Preservation Engineering II: Theory & Practice

  EN.565.633 Investigation, Diagnosis, and Rehabilitation

  EN.565.636 Lateral Forces: Analysis and Design of Building Structures

  EN.565.637 Preservation Engineering in the Urban Context

  EN.565.658 Natural Disaster Risk Modeling

  EN.565.664 Advanced Foundation Design

  EN.565.680 Marine Geotechnical Engineering

  EN.565.682 Design of Ocean Structures

  EN.565.684 Port & Harbor Engineering

  EN.565.686 Sustainable Coastal Engineering

  EN.565.731 Structural Dynamics

  EN.565.732 Earthquake Engineering

  EN.565.734 Wind Engineering

  EN.565.762 Ground Improvement Methods

  EN.565.764 Retaining Structures and Slope Stability

  EN.565.800 Independent Study in Civil Engineering

  EN.565.801 Independent Study in Civil Engineering

  STRUCTURAL ENGINEERING FOCUS AREA

  Two core courses are required:

  EN.565.604 Structural Mechanics

  EN.535.641 Mathematical Methods For Engineers

  Electives

  Select at least four elective courses from the following:

  EN.565.608 BIM Applications in Civil Engineering

  EN.565.616 Applied Finite Element Methods

  EN.565.619 Advanced Structural Analysis

  EN.565.620 Advanced Steel Design

  EN.565.622 Advanced Reinforced Concrete Design

  EN.565.623 Bridge Design and Evaluation

  EN.565.626 Design of Wood Structures

  EN.565.628 Preservation Engineering I: Theory and Practice

  EN.565.630 Prestressed Concrete Design

  EN.565.631 Preservation Engineering II: Theory & Practice

  EN.565.633 Investigation, Diagnosis, and Rehabilitation

  EN.565.636 Lateral Forces: Analysis and Design of Building Structures

  EN.565.637 Preservation Engineering in the Urban Context

  EN.565.682 Design of Ocean Structures

  EN.565.731 Structural Dynamics

  EN.565.732 Earthquake Engineering

  EN.565.734 Wind Engineering

  GEOTECHNICAL ENGINEERING FOCUS AREA

  Two core courses are required:

  EN.565.606 Geotechnical Engineering Principles

  EN.535.641 Mathematical Methods For Engineers

  Electives

  Select at least four elective courses from the following:

  EN.565.664 Advanced Foundation Design

  EN.565.680 Marine Geotechnical Engineering

  EN.565.762 Ground Improvement Methods

  EN.565.764 Retaining Structures and Slope Stability

  EN.575.626 Hydrogeology

  EN.575.629 Modeling Contaminant Migration through Multimedia Systems

  EN.575.640 Geographic Information Systems (GIS) and Remote Sensing for Environmental Applications

  EN.575.703 Environmental Biotechnology

  OCEAN AND COASTAL ENGINEERING FOCUS AREA

  Two core courses are required:

  EN.565.682 Design of Ocean Structures

  EN.535.641 Mathematical Methods For Engineers

  Electives

  Select at least four elective courses from the following:

  EN.535.621 Intermediate Fluid Dynamics

  EN.565.658 Natural Disaster Risk Modeling

  EN.565.680 Marine Geotechnical Engineering

  EN.565.684 Port & Harbor Engineering

  EN.565.686 Sustainable Coastal Engineering

  EN.575.708 Open Channel Hydraulics

  EN.575.717 Hydrology

  EN.575.728 Sediment Transport and River Mechanics

  EN.565.734 Wind Engineering

  入学要求:

  申请人(学位寻求和特殊学生)必须满足招生要求中列出的研究生入学的一般要求。申请人之前的教育必须包括土木工程或相关技术学科的学位。申请人在本科后半部分的学习中,平均成绩至少为3.0(满分为4.0)(B级或以上)。必须提交所有大学学习的成绩单。在审查申请时,申请人的学术和专业背景将被考虑。

  没有土木工程学位的申请人可以被该项目接受,前提是他们证明成功完成了地区认可机构的课程,包括:微积分I、微积分II、线性代数与微分方程、物理I、静力学、材料力学、结构理论、土力学。申请人之前的教育不包括所列的先决条件,仍然可以在临时状态下注册,然后一旦他们完成了缺失的先决条件,完全录取状态。此外,这些申请人被建议在钢结构设计和钢筋混凝土结构设计的第一门课程是许多结构工程选修课程的先决条件。

  综上所述,以上讲的就是关于约翰霍普金斯大学土木工程硕士专业的相关问题介绍,希望能给各位赴美留学的学子们指点迷津。近年来,赴美留学一直是广大学生最热门的话题,同时,很多学生对于签证的办理、院校的选择、就业的前景、学习的费用等诸多问题困扰不断,别担心,IDP留学专家可以为你排忧解难,同时,更多关于赴美留学的相关资讯在等着你,绝对让你“浏览”忘返。在此,衷心祝愿各位学子们能够顺利奔赴自己心目中理想的学校并且学业有成!


关键词:
约翰霍普金斯大学土木工程硕士专业 约翰霍普金斯大学 美国留学热门专业
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