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関連する概念動画

Measurement: Standard Units03:38

Measurement: Standard Units

Every measurement provides three kinds of information: the size or magnitude of the measurement (a number), a standard of comparison for the measurement (a unit), and an indication of the uncertainty of the measurement. While the number and unit are explicitly represented when a quantity is written, the uncertainty is an aspect of the errors in the measurement results.
Definition and Measurement of Pressure: Atmospheric Pressure, Barometer, and Manometer02:57

Definition and Measurement of Pressure: Atmospheric Pressure, Barometer, and Manometer

Gas pressure is caused by force exerted by gas molecules colliding with the surfaces of objects. Although the force of each collision is very small, any surface of an appreciable area experiences a large number of collisions in a short time, which can result in high pressure.
Interval Level of Measurement00:55

Interval Level of Measurement

For effective statistical analysis, data are classified into four levels of measurement—nominal, ordinal, interval, and ratio.
Data measured using the interval scale are similar to ordinal level data because they have a definite arrangement. However, in the interval level of measurement, the differences between data values are meaningful even though the data does not have a starting point.
Temperature is measured using the interval scale. It is measurable data, and the difference between the...
Flame Photometry: Overview01:02

Flame Photometry: Overview

Flame photometry, also known as flame emission spectrometry, is a technique used for the qualitative and quantitative analysis of elements present in a sample using a flame as the source of excitation energy. The concept of flame photometry was realized in the early 1860s by Kirchhoff and Bunsen, who discovered that specific elements emit characteristic radiation when excited in flames. The first instrument developed for this purpose was used to measure sodium (Na) in plant ash using a Bunsen...
Measurement of Air Content in Concrete01:23

Measurement of Air Content in Concrete

Air content measurement in concrete is critical for ensuring structural integrity and durability of concrete structures, especially in environments prone to severe weather conditions. Accurate air content analysis optimizes concrete's resistance to freeze-thaw cycles and enhances its workability and strength. Several methods are standardized under ASTM guidelines to measure the air content in fresh concrete, each suitable for different concrete types and conditions.
The pressure method,...
Measurement of Fluid Pressure01:16

Measurement of Fluid Pressure

Fluid pressure is commonly measured using devices called manometers, which rely on liquid columns to indicate pressure differences. The height of a liquid column in a manometer reflects the pressure exerted by the fluid, providing a simple yet effective means of measurement. Different types of manometers serve specific purposes based on their configurations and the type of fluids involved.
A basic form of manometer is the piezometer, a vertical tube open at the top and filled with the same...

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関連する実験動画

Updated: Jul 12, 2026

Measurement of Aerosols Optical Thickness of the Atmosphere using the GLOBE Handheld Sun Photometer
06:27

Measurement of Aerosols Optical Thickness of the Atmosphere using the GLOBE Handheld Sun Photometer

Published on: May 29, 2019

金星:下層大気は測定されていません.

V R Eshleman, G Fjeldbo, J D Anderson

    Science (New York, N.Y.)
    |November 8, 1968
    PubMed
    まとめ

    金星の大気データの新たな分析により,ソビエト連邦のヴェネラ4号探査機が高度を誤って報告した可能性があることが示唆されています. エクストラポレーションした条件は,以前に報告されたよりもはるかに熱く,より密度の高い金星の大気を示しています.

    科学分野:

    • 惑星科学は惑星科学である.
    • 大気科学 大気科学
    • 航空宇宙工学 航空宇宙工学とは

    背景:

    • ソビエトのヴェネラ4号とアメリカのマリナーV号による金星の大気測定の間で不一致があった.
    • 衝突する惑星半径データは,ヴェネラ4号の表面測定と,地球ベースのレーダーデータとの比較から生じた.

    研究 の 目的:

    • ヴェネラ4号とマリナーV号からの異なる金星の大気データを調和させるため.
    • より正確な金星の大気プロファイルと惑星半径を確立するために.

    主な方法:

    • 地球からマリナーV,そして金星の表面まで並行しています.
    • ヴェネラ4号とマリナーV号の気圧と気温データを比較する.
    • 表面条件を推定するために,探査機の測定値のエクストラポレーション.

    主要な成果:

    • 新しい惑星半径の決定は,以前の不一致を解決し,より小さな値を好む.
    • どちらの宇宙船も,平均表面レベルでの条件を測定しませんでした.
    • エクストラポレーションした金星の表面条件: ~100大気圧と ~700Kの温度.

    結論:

    さらに関連する動画

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    Measurements of CO2 Fluxes at Non-Ideal Eddy Covariance Sites

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    Fa&#231;ade-Level Monitoring of CO2 Variability under Urban Heat Island Conditions using Low-Cost Sensor Data Loggers
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    Façade-Level Monitoring of CO2 Variability under Urban Heat Island Conditions using Low-Cost Sensor Data Loggers

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    関連する実験動画

    Last Updated: Jul 12, 2026

    Measurement of Aerosols Optical Thickness of the Atmosphere using the GLOBE Handheld Sun Photometer
    06:27

    Measurement of Aerosols Optical Thickness of the Atmosphere using the GLOBE Handheld Sun Photometer

    Published on: May 29, 2019

    Measurements of CO2 Fluxes at Non-Ideal Eddy Covariance Sites
    09:05

    Measurements of CO2 Fluxes at Non-Ideal Eddy Covariance Sites

    Published on: June 24, 2019

    Fa&#231;ade-Level Monitoring of CO2 Variability under Urban Heat Island Conditions using Low-Cost Sensor Data Loggers
    07:12

    Façade-Level Monitoring of CO2 Variability under Urban Heat Island Conditions using Low-Cost Sensor Data Loggers

    Published on: December 12, 2025

    • ソビエトのヴェネラ4号は,主張したように金星の表面に到達しなかった可能性が高い.
    • 探査機のデータは,報告されたよりも著しく密度が高く,より熱い大気を示唆しています.
    • ヴェネラ4号の高度計の単純な曖昧さが,その不一致を説明するかもしれない.