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関連する概念動画

The Atomic Theory of Matter02:59

The Atomic Theory of Matter

107.9K
The earliest recorded discussion of the basic structure of matter comes from ancient Greek philosophers. Leucippus and Democritus argued that all matter was composed of small, finite particles that they called atomos, meaning “indivisible.” Later, Aristotle and others came to the conclusion that matter consisted of various combinations of the four “elements” — fire, earth, air, and water — and could be infinitely divided. Interestingly, these philosophers...
107.9K
Mass Spectrometry: Molecular Fragmentation Overview01:20

Mass Spectrometry: Molecular Fragmentation Overview

2.9K
The ionization of a molecule into a molecular ion inside the mass spectrometer causes instability in the molecule's structure due to the loss of an electron. This eventually leads to the fragmentation or breaking of some bonds in the molecule. The fragmentation occurs predominantly at specific bonds to yield relatively stable fragments.
One type of fragmentation pattern is the cleavage of a single bond in the molecular ion. The cleavage leads to a radical and a cation. The cleavage can...
2.9K
What is Matter?01:13

What is Matter?

9.8K
The substance of the universe—from a grain of sand to a star—is called matter. Scientists define matter as anything that occupies space and has mass. An object’s mass and its weight are related concepts, but not quite the same. An object’s mass is the amount of matter contained in the object and is the same whether that object is on Earth or in the zero-gravity environment of outer space. An object’s weight, on the other hand, is its mass as affected by the pull of...
9.8K
Nuclear Stability03:18

Nuclear Stability

18.5K
Protons and neutrons, collectively called nucleons, are packed together tightly in a nucleus. With a radius of about 10−15 meters, a nucleus is quite small compared to the radius of the entire atom, which is about 10−10 meters. Nuclei are extremely dense compared to bulk matter, averaging 1.8 × 1014 grams per cubic centimeter. If the earth’s density were equal to the average nuclear density, the earth’s radius would be only about 200 meters.
To hold positively charged protons together...
18.5K
Non-equilibrium in the Cell01:16

Non-equilibrium in the Cell

4.1K
An important concept in studying metabolism and energy is that of chemical equilibrium. Most chemical reactions are reversible. They can proceed in both directions, releasing energy into their environment in one direction, and absorbing it from the environment in the other direction. The same is true for the chemical reactions involved in cell metabolism, such as the breaking down and building up of proteins into and from individual amino acids, respectively. Reactants within a closed system...
4.1K
Atomic Nuclei: Magnetic Resonance01:05

Atomic Nuclei: Magnetic Resonance

614
The number of nuclear spins aligned in the lower energy state is slightly greater than those in the higher energy state. In the presence of an external magnetic field, as the spins precess at the Larmor frequency, the excess population results in a net magnetization oriented along the z axis. When a pulse or a short burst of radio waves at the Larmor frequency is applied along the x axis, the coupling of frequencies causes resonance and flips the nuclear spins of the excess population from the...
614

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関連する実験動画

Updated: Jun 2, 2025

Determining the Mechanical Strength of Ultra-Fine-Grained Metals
05:04

Determining the Mechanical Strength of Ultra-Fine-Grained Metals

Published on: November 22, 2021

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繊細な物質ではない

Sameh Tawfick1, Ignacio Arretche1

  • 1Department of Mechanical Science and Engineering, The Grainger College of Engineering, University of Illinois Urbana-Champaign, Champaign, IL, USA.

Science (New York, N.Y.)
|January 17, 2025
PubMed
まとめ

三次元鎖は固体と液体の異なる振る舞いを示し, 施されたストレスを変化させます. この発見は 複雑な分子構造の 機械的性質に関する新しい洞察を 提供しています

科学分野:

  • ポリマー物理学
  • 材料科学
  • 柔らかい物質の物理

背景:

  • 高度な材料の設計には 立体ポリマー鎖の 機械的振る舞いを理解することが重要です
  • ポリマー鎖は,異なる状態の間の移行によって,適用された力に対して複雑な反応を示すことができます.

研究 の 目的:

  • 3次元ポリマー鎖の張力依存の機械的性質を調査する.
  • 鎖の固体や液体のような振る舞いを特徴づける.

主な方法:

  • 3次元ポリマーチェーンをモデル化するために 計算シミュレーションを活用しました
  • チェーンの反応を観察するために,様々なレベルのストレスを適用します.
  • ポリマー鎖のダイナミクスと構造の再編成を分析した.

主要な成果:

  • 3次元の鎖は 固体から液体のような振る舞いへの 明確な移行を示しました
  • 特定のストレスの値がこれらの行動移行に特定されました.
  • 鎖の反応は,施されたストレスの大きさと速度に大きく依存することが判明した.

結論:

  • 三次元ポリマーの鎖は,固有の張力依存の機械的性質を持っています.

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Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2
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Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2

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Last Updated: Jun 2, 2025

Determining the Mechanical Strength of Ultra-Fine-Grained Metals
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Determining the Mechanical Strength of Ultra-Fine-Grained Metals

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Fragility Assessment of Bovine Cortical Bone Using Scratch Tests
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Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2
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Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2

Published on: December 8, 2016

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  • これらの発見は,ポリマーダイナミクスと材料反応のより深い理解に貢献します.
  • この研究は,調整可能な機械的特性を持つ新しい材料の開発のための基礎を提供します.