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Pressure of Fluids01:14

Pressure of Fluids

There are many examples of pressure in fluids in everyday life, such as in relation to blood (high or low blood pressure) and in relation to weather (high- and low-pressure weather systems). A given force can have a significantly different effect, depending on the area over which the force is exerted. For instance, a force applied to an area of 1 mm2 has a pressure that is 100 times greater than the same force applied to an area of 1 cm2. That's why a sharp needle is able to poke through skin...
Concept of Pressure at a Point01:15

Concept of Pressure at a Point

The concept of pressure at a point in a fluid establishes that pressure within a fluid is uniform in all directions at a specific location. This uniformity occurs because fluid molecules exert force evenly across any point due to their random motion and continuous collisions within the fluid. Pressure at a point is determined by the surrounding fluid molecules and is influenced by factors like depth and density, rather than by shape or orientation.
In a fluid at rest, pressure acts equally in...
Fluid Pressure01:14

Fluid Pressure

In mechanical engineering, fluid pressure plays a critical role in designing systems that utilize liquid flow, such as hydraulic systems, pumps, and valves. When designing these systems, engineers must ensure they can withstand the forces created by fluid pressure to avoid damage or failure.
According to Pascal's law, a fluid at rest will generate equal pressure in all directions. This pressure is measured as a force per unit area, and its magnitude depends on the fluid's specific weight or...
Pressure Relationships in Thoracic Cavity01:24

Pressure Relationships in Thoracic Cavity

Breathing, otherwise known as pulmonary ventilation, is the process of air movement into and out of the lungs. The main mechanisms propelling pulmonary ventilation are atmospheric pressure (Patm), intra-pulmonary (Ppul ) or intra-alveolar pressure (Palv) within the alveoli, and intrapleural pressure (Pip) within the pleural cavity.
Breathing Mechanisms
Both intra-alveolar and intrapleural pressures rely on specific lung properties. The ability to breathe—allowing air to enter the lungs during...
Hydrostatic Pressure Force on a Plane Surface01:04

Hydrostatic Pressure Force on a Plane Surface

When a plane surface is submerged in a fluid, hydrostatic forces develop on the surface due to the fluid's pressure. For horizontal surfaces, the pressure exerted by the fluid is uniform because the depth remains constant. The resultant force is determined by the pressure at the given depth multiplied by the area of the surface, and it acts through the centroid of the surface. For vertical surfaces, the pressure varies with depth, increasing as the distance from the fluid's free surface...
Application of Pascal's Law01:03

Application of Pascal's Law

Pascal's experimentally proven observations—that a change in pressure applied to an enclosed fluid is transmitted undiminished throughout the fluid and to the walls of its container—provide the foundations for hydraulics, one of the most important developments in modern mechanical technology.
Hydraulic systems are used to operate automotive brakes, hydraulic jacks, and numerous other mechanical systems. We can derive a relationship between the forces in a simple hydraulic system by applying...

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Crystal structures at megabar pressures determined by use of the cornell synchrotron source.

Science (New York, N.Y.)·1986
Same author

Preparation of micron thick specimens for high pressure study.

The Review of scientific instruments·1979
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関連する実験動画

Updated: Jul 12, 2026

Microfluidic Fabrication Techniques for High-Pressure Testing of Microscale Supercritical CO2 Foam Transport in Fractured Unconventional Reservoirs
10:06

Microfluidic Fabrication Techniques for High-Pressure Testing of Microscale Supercritical CO2 Foam Transport in Fractured Unconventional Reservoirs

Published on: July 2, 2020

狭い土地に強い圧力をかけている.

A L Ruoff, J Wanagel

    Science (New York, N.Y.)
    |December 9, 1977
    PubMed
    まとめ

    研究者は,円形のダイヤモンドインデントーを使用して,ダイヤモンドの平面に圧力をかけ,ヘルツの接触理論を使用して小さな領域に非常に高い圧力を達成しました.

    科学分野:

    • 材料科学 材料科学とは
    • トリボロジ トリボロジ トリボロジ トリボロジ
    • ナノテクノロジー ナノテクノロジー

    背景:

    • 極端な圧力下での材料の振る舞いを理解することは,高度な材料の開発に不可欠です.
    • ダイヤモンドのユニークな特性により,高圧研究における重要な材料となっています.

    研究 の 目的:

    • 小型のダイヤモンドインデントがダイヤモンドの平面に接触すると発生する圧力を調査するために.
    • 極端な圧力シナリオにおけるヘルツ接触理論の応用を探求する.

    主な方法:

    • 球形の先を持つ小さなダイヤモンドインデントーを利用します.
    • ポリッシュされたダイヤモンドの平面に制御された圧力をかけます.
    • ヘルツの接触理論を用いて接触圧力を計算する.

    主要な成果:

    • 小さな接触領域に集中した非常に高い圧力を成功裏に達成しました.
    • 制御された実験室環境で極端な圧力を生成する可能性を実証しました.
    • これらの高圧条件に対するヘルツ接触理論の適用を検証した.

    結論:

    さらに関連する動画

    High-Sensitivity Nuclear Magnetic Resonance at Giga-Pascal Pressures: A New Tool for Probing Electronic and Chemical Properties of Condensed Matter under Extreme Conditions
    08:42

    High-Sensitivity Nuclear Magnetic Resonance at Giga-Pascal Pressures: A New Tool for Probing Electronic and Chemical Properties of Condensed Matter under Extreme Conditions

    Published on: October 10, 2014

    Synthesis and Microdiffraction at Extreme Pressures and Temperatures
    07:26

    Synthesis and Microdiffraction at Extreme Pressures and Temperatures

    Published on: October 7, 2013

    関連する実験動画

    Last Updated: Jul 12, 2026

    Microfluidic Fabrication Techniques for High-Pressure Testing of Microscale Supercritical CO2 Foam Transport in Fractured Unconventional Reservoirs
    10:06

    Microfluidic Fabrication Techniques for High-Pressure Testing of Microscale Supercritical CO2 Foam Transport in Fractured Unconventional Reservoirs

    Published on: July 2, 2020

    High-Sensitivity Nuclear Magnetic Resonance at Giga-Pascal Pressures: A New Tool for Probing Electronic and Chemical Properties of Condensed Matter under Extreme Conditions
    08:42

    High-Sensitivity Nuclear Magnetic Resonance at Giga-Pascal Pressures: A New Tool for Probing Electronic and Chemical Properties of Condensed Matter under Extreme Conditions

    Published on: October 10, 2014

    Synthesis and Microdiffraction at Extreme Pressures and Temperatures
    07:26

    Synthesis and Microdiffraction at Extreme Pressures and Temperatures

    Published on: October 7, 2013

  • 小規模なインデント実験では,かなりの圧力が発生する可能性があります.
  • ヘルツ接触理論は,これらの高圧を計算するための信頼できる方法を提供します.
  • この技術は,極端なストレス下での材料の性質を研究するための経路を提供します.