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関連する概念動画

Magnetic Field Of A Current Loop01:16

Magnetic Field Of A Current Loop

Consider a circular loop with a radius a, that carries a current I. The magnetic field due to the current at an arbitrary point P along the axis of the loop can be calculated using the Biot-Savart law.
X-ray Imaging01:24

X-ray Imaging

German physicist Wilhelm Röntgen (1845–1923) was experimenting with electrical current when he discovered that a mysterious and invisible "ray" would pass through his flesh but leave an outline of his bones on a screen coated with a metal compound. In 1895, Röntgen made the first durable record of the internal parts of a living human: an "X-ray" image (as it came to be called) of his wife’s hand. Scientists worldwide quickly began their own experiments with X-rays, and by 1900, X-ray was widely...
Lampbrush Chromosomes01:51

Lampbrush Chromosomes

In 1882, Flemming observed lampbrush chromosomes (LBC) in salamander eggs. Later in 1892, Rückert observed LBCs in shark egg cells and coined the term "lampbrush chromosomes" because they looked like brushes used to clean kerosene lamps.
LBCs are made up of two pairs of conjugating homologous chromatids. Each chromatid consists of alternatively positioned regions of condensed-inactive chromatin and loosely placed-active side loops, which can be contracted and extended. The loops resemble the...
Divergence and Curl of Magnetic Field01:26

Divergence and Curl of Magnetic Field

The magnetic field due to a volume current distribution given by the Biot–Savart Law can be expressed as follows:
The Structure of Intermediate Filaments01:19

The Structure of Intermediate Filaments

The intermediate filaments are one of three widely studied cytoskeletal filaments. They are so named as their diameter (10 nm) is in between that of microfilaments (7 nm) and the microtubules (25 nm).  These filaments are highly stable and can remain intact when exposed to high salt concentrations and detergents. These filaments are responsible for providing stability and mechanical support to the cells. They also help in cell adhesion and maintaining tissue integrity.
Intermediate filaments...
Structure of Cardiac Muscles01:13

Structure of Cardiac Muscles

Cardiac muscle, or myocardium, is a specialized type of muscle found exclusively in the heart. Its unique structural and functional characteristics enable the heart to perform its vital role of pumping blood throughout the body continuously and rhythmically. The cardiac muscle cells, or cardiomyocytes, possess an endomysium and perimysium but do not have an epimysium.
Compared to skeletal muscles, cardiac muscle cells are small and mostly have a single nucleus. Additionally, they are usually...

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関連する実験動画

Updated: Jul 12, 2026

Applying X-ray Imaging Crystal Spectroscopy for Use as a High Temperature Plasma Diagnostic
06:46

Applying X-ray Imaging Crystal Spectroscopy for Use as a High Temperature Plasma Diagnostic

Published on: August 25, 2016

シグナスループのX線構造

P Gorenstein, B Harris, H Gursky

    Science (New York, N.Y.)
    |April 23, 1971
    PubMed
    まとめ

    X線観測により,のループ星雲は,熱いプラズマから熱放射線を放射していることが明らかになった. この放射は,酸素線と一致し,3度幅に広がり,光ファイラメントの境界に一致します.

    科学分野:

    • 天文学と天体物理学について
    • プラズマ物理学 プラズマ物理学
    • X線天文学 X線天文学

    背景:

    • シグナス・ループは,複雑な構造と様々な波長での放出で知られている超新星残骸です.
    • 以前の研究では,光学および無線放射をマッピングしましたが,詳細なX線構造分析は限られていました.

    研究 の 目的:

    • Cygnus Loop 星雲のX線放射特性を調査するために.
    • X線放射の空間構造とスペクトル特性を決定する.
    • 既存の光学および無線データとX線観測を比較する.

    主な方法:

    • Cygnus Loopをスキャンしている間,X線コレクターを活用して1次元に放射を焦点にしました.
    • 0.2〜1キロ電子ボルトのエネルギー範囲で観測されたX線放射.
    • プラズマ温度を判定し,スペクトルラインを特定するためにX線スペクトルを分析しました.

    主要な成果:

    • 検出されたX線放射は,合計集積強度1.3x 10(-8) erg/平方センチメートル/秒.
    • 光ファイラメントの境界と相関する約3度の角度を持つ一次元X線構造を観測した.
    • 星雲の中心部や目立つ無線特徴でX線放射の強化は見つかりませんでした.

    さらに関連する動画

    Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction
    12:38

    Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction

    Published on: August 9, 2011

    Structural Studies of Macromolecules in Solution using Small Angle X-Ray Scattering
    07:19

    Structural Studies of Macromolecules in Solution using Small Angle X-Ray Scattering

    Published on: November 5, 2018

    関連する実験動画

    Last Updated: Jul 12, 2026

    Applying X-ray Imaging Crystal Spectroscopy for Use as a High Temperature Plasma Diagnostic
    06:46

    Applying X-ray Imaging Crystal Spectroscopy for Use as a High Temperature Plasma Diagnostic

    Published on: August 25, 2016

    Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction
    12:38

    Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction

    Published on: August 9, 2011

    Structural Studies of Macromolecules in Solution using Small Angle X-Ray Scattering
    07:19

    Structural Studies of Macromolecules in Solution using Small Angle X-Ray Scattering

    Published on: November 5, 2018

    結論:

    • X線スペクトルは,熱いプラズマからの熱放射線と一致しています (約. 4 x 10^6 K) である.
    • 19アングストームのスペクトル線の証拠は,O VIII移行に起因し,プラズマモデルを支持する.
    • X線放射の空間的分布は,Cygnus Loopの光学フィラメントの外部構造と一致しています.