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関連する概念動画

Effect of Sea Water on Concrete01:22

Effect of Sea Water on Concrete

955
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,...
955
Testing Water Quality01:14

Testing Water Quality

341
When the quality of water for concrete preparation is uncertain, its impact on the setting time of cement and compressive strength of mortar is assessed by comparison with de-ionized or distilled water benchmarks. American Society for Testing and Materials (ASTM) C1602 requires the setting times to be within 90 minutes of the control, British Standard (BS) 3146:1980 allows a 30-minute variance in the initial setting, while British Standards European Norm (BS EN) 1008 specifies initial setting...
341
Determining the pH of Salt Solutions04:08

Determining the pH of Salt Solutions

46.7K
The pH of a salt solution is determined by its component anions and cations. Salts that contain pH-neutral anions and the hydronium ion-producing cations form a solution with a pH less than 7. For example, in ammonium nitrate (NH4NO3) solution, NO3− ions do not react with water whereas NH4+ ions produce the hydronium ions resulting in the acidic solution.  In contrast, salts that contain pH-neutral cations and the hydroxide ion-producing anions form a solution with a pH greater than 7. For...
46.7K
Diagnosing Acidosis and Alkalosis01:24

Diagnosing Acidosis and Alkalosis

1.0K
Diagnosing acid-base imbalances involves systematically analyzing arterial blood samples, focusing on three key measurements: pH, bicarbonate (HCO3−) concentration, and carbon dioxide partial pressure (PCO2). This analysis follows a four-step process that helps identify the imbalance's underlying cause and nature.
First, the pH level is assessed to determine whether the blood pH is normal (7.35–7.45), low (acidosis), or high (alkalosis).
Next, the PCO2  and...
1.0K
Quality of Water01:19

Quality of Water

498
In concrete preparation, the quality of water is paramount as it affects the strength and durability of the concrete. Potable water is usually preferred; however, it must not have excessive sodium or potassium to prevent compromising the concrete's integrity. Water quality is typically evaluated based on impurities such as dissolved solids, chlorides, and sulfates, and its pH value is ideally between 6 and 8. Even slightly acidic natural water may be acceptable unless it contains harmful...
498

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関連する実験動画

Updated: Jan 12, 2026

Extracellular Multi-Unit Recording from the Olfactory Nerve of Teleosts
07:02

Extracellular Multi-Unit Recording from the Olfactory Nerve of Teleosts

Published on: October 6, 2020

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環境騒音を用いて追跡された危険な海洋酸化

Paul Voosen

    Science (New York, N.Y.)
    |October 30, 2025
    PubMed
    まとめ

    新しい音響技術により 海洋生物の観察が 簡素化されています この方法は 海洋生態系への炭素排出量の増加による 脅威を追跡するのに役立ちます

    科学分野:

    • 海洋生物学
    • 音響技術
    • 環境科学

    背景:

    • 大気中の二酸化炭素のレベルが上昇すると 海の酸性も増加します
    • 海洋酸化は海洋生物や生態系に重大な脅威をもたらしています
    • 現在の海洋生物のモニタリング方法は 複雑で資源が密集しています

    研究 の 目的:

    • 海洋生物のモニタリングのための新しい音響技術を導入し,評価する.
    • 海洋環境への炭素排出の影響を検出するために,音学を使用する可能性を評価する.
    • 海洋生態系の健康評価のためのよりアクセシブルなツールを提供すること.

    主な方法:

    • 特殊な音響センサーと信号処理アルゴリズムの開発
    • 多様な海洋生息地における音響モニタリングシステムの導入
    • 海洋生物の存在とストレスレベルを示すパターンを特定するための音響データの分析

    主要な成果:

    • 音響技術は様々な海洋の音風景を 区別することに成功しました
    • 炭素排出に関連する環境ストレス要因と相関する音響信号の変化
    • この方法は,非侵襲的な大規模な海洋生物のモニタリングの可能性を示しました.

    さらに関連する動画

    A Strain Gauge Monitor SGM for Continuous Valve Gape Measurements in Bivalve Molluscs in Response to Laboratory Induced Diel-cycling Hypoxia and pH
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    A Strain Gauge Monitor SGM for Continuous Valve Gape Measurements in Bivalve Molluscs in Response to Laboratory Induced Diel-cycling Hypoxia and pH

    Published on: August 1, 2018

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    Author Spotlight: Advancing Coral Culture - Creating a Semi-Quantitatively Controlled Microenvironment System to Counter Current Limitations
    05:58

    Author Spotlight: Advancing Coral Culture - Creating a Semi-Quantitatively Controlled Microenvironment System to Counter Current Limitations

    Published on: July 21, 2023

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    関連する実験動画

    Last Updated: Jan 12, 2026

    Extracellular Multi-Unit Recording from the Olfactory Nerve of Teleosts
    07:02

    Extracellular Multi-Unit Recording from the Olfactory Nerve of Teleosts

    Published on: October 6, 2020

    7.2K
    A Strain Gauge Monitor SGM for Continuous Valve Gape Measurements in Bivalve Molluscs in Response to Laboratory Induced Diel-cycling Hypoxia and pH
    07:59

    A Strain Gauge Monitor SGM for Continuous Valve Gape Measurements in Bivalve Molluscs in Response to Laboratory Induced Diel-cycling Hypoxia and pH

    Published on: August 1, 2018

    9.4K
    Author Spotlight: Advancing Coral Culture - Creating a Semi-Quantitatively Controlled Microenvironment System to Counter Current Limitations
    05:58

    Author Spotlight: Advancing Coral Culture - Creating a Semi-Quantitatively Controlled Microenvironment System to Counter Current Limitations

    Published on: July 21, 2023

    2.6K

    結論:

    • 音響モニタリングは,海洋生態系の健康を評価するための有望で費用対効果の高いアプローチです.
    • この技術は,気候変動の影響を理解し,特に炭素排出量の増加が海洋生物多様性に与える影響を軽減するのに役立ちます.
    • 海洋保全の取り組みにおける音響技術の応用をさらに強化できる研究と開発を進める.