Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Effect of Sea Water on Concrete01:22

Effect of Sea Water on Concrete

Concrete exposed to seawater can undergo degradation like the dissolution of ettringite and gypsum, increasing the material's porosity and decreasing its strength. In contrast, the crystallization of salts within the concrete's pores can cause expansion, particularly above the waterline where evaporation occurs. Nonetheless, this expansion only happens when seawater, enabled by the concrete's permeability, manages to infiltrate the structure.
Concrete in areas between tide marks, which undergo...
Unsoundness of Aggregate due to Volume Change01:26

Unsoundness of Aggregate due to Volume Change

Unsoundness in aggregates due to volume changes is primarily caused by the physical alterations aggregates undergo, such as freezing and thawing, thermal changes, and wetting and drying. Unsound aggregates, when subjected to these changes, result in volume change upon disintegration. This, in turn, contributes to the deterioration of concrete, including scaling, pop-outs, and cracking. Particular types of aggregates, such as porous flints, cherts, and those containing clay minerals, are...
Effects of Creep01:25

Effects of Creep

Creep in concrete, the gradual deformation under prolonged stress, significantly impacts the integrity of structures. For reinforced concrete beams, it can be a vital design consideration, as it increases deflection, sometimes necessitating additional design measures. In columns, especially slender ones under eccentric loads, creep can cause buckling, compromising their stability. However, creep can be beneficial in indeterminate structures by mitigating stresses that arise from shrinkage,...
Biological Effects of Radiation02:59

Biological Effects of Radiation

All radioactive nuclides emit high-energy particles or electromagnetic waves. When this radiation encounters living cells, it can cause heating, break chemical bonds, or ionize molecules. The most serious biological damage results when these radioactive emissions fragment or ionize molecules. For example, α and β particles emitted from nuclear decay reactions possess much higher energies than ordinary chemical bond energies. When these particles strike and penetrate matter, they produce ions...
Alkali Metals03:06

Alkali Metals

Group 1 elements are soft and shiny metallic solids. They are malleable, ductile, and good conductors of heat and electricity. The melting points of the alkali metals are unusually low for metals and decrease going down the group, while the density increases going down the group with the exception of potassium (Table 1).
Table 1: Properties of the alkali metals
Naturalistic Observations02:30

Naturalistic Observations

If you want to understand how behavior occurs, one of the best ways to gain information is to simply observe the behavior in its natural context. However, people might change their behavior in unexpected ways if they know they are being observed. How do researchers obtain accurate information when people tend to hide their natural behavior? As an example, imagine that your professor asks everyone in your class to raise their hand if they always wash their hands after using the restroom. Chances...

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Standardization of a silver stain to reveal mesoscale myelin in histological preparations of the mammalian brain.

Journal of neuroscience methods·2024
Same author

Global cross-cultural validation of a brief measure for identifying potential suicide risk in 42 countries.

Public health·2024
Same author

Development of reference intervals for serum biochemistry and haematology of juvenile green sea turtles (Chelonia mydas) in a Thai rehabilitation centre.

Australian veterinary journal·2024
Same author

Gravity complexes as a focus of seafloor fluid seepage: the Rio Grande Cone, SE Brazil.

Scientific reports·2023
Same author

Broad scale proteomic analysis of heat-destabilised symbiosis in the hard coral Acropora millepora.

Scientific reports·2021
Same author

AmAMP1 from Acropora millepora and damicornin define a family of coral-specific antimicrobial peptides related to the Shk toxins of sea anemones.

Developmental and comparative immunology·2020

相关实验视频

Updated: Jul 12, 2026

Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside
09:06

Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside

Published on: July 3, 2016

对阿拉斯加1958年7月10日地震影响的现场观测

D Tocher, D J Miller

    Science (New York, N.Y.)
    |February 13, 1959
    PubMed
    概括

    1958年阿拉斯加地震发生在费尔韦瑟断层,造成了严重的地面移位和广泛的震动. 在利图亚湾,巨大的1700英尺的海浪很可能是由巨大的岩石滑落引发的.

    科学领域:

    • 地质物理学 地质物理学
    • 地震学 地震学
    • 地质地质地质地质地质地

    背景情况:

    • 1958年阿拉斯加地震是一个重要的地震事件.
    • 了解地震引起的海及其触发因素至关重要.

    研究的目的:

    • 分析1958年阿拉斯加地震的原因和后果.
    • 为了调查利图亚湾巨型海的现象.

    主要方法:

    • 分析地震数据和断层运动.
    • 立陶雅湾地区的地质评估.

    主要成果:

    • 费尔韦德断层经历了超过21.5英尺的水平和3.5英尺的垂直移位.
    • 强烈的地震袭击了阿拉斯加东南部的广泛地区.
    • 在利图亚湾的一次岩石滑坡造成了一场超过1700英尺的巨大海.

    结论:

    • 1958年地震是一次具有重大地质后果的重大地震事件.
    • 利图亚湾的大海是滑坡产生的海浪的一个戏剧性的例子.

    更多相关视频

    Simulating Impacts of Ice Storms on Forest Ecosystems
    06:27

    Simulating Impacts of Ice Storms on Forest Ecosystems

    Published on: June 30, 2020

    相关实验视频

    Last Updated: Jul 12, 2026

    Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside
    09:06

    Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside

    Published on: July 3, 2016

    Simulating Impacts of Ice Storms on Forest Ecosystems
    06:27

    Simulating Impacts of Ice Storms on Forest Ecosystems

    Published on: June 30, 2020