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相关概念视频

Elastic Collisions: Introduction01:00

Elastic Collisions: Introduction

An elastic collision is one that conserves both internal kinetic energy and momentum. Internal kinetic energy is the sum of the kinetic energies of the objects in a system. Truly elastic collisions can only be achieved with subatomic particles, such as electrons striking nuclei. Macroscopic collisions can be very nearly, but not quite, elastic, as some kinetic energy is always converted into other forms of energy such as heat transfer due to friction and sound. An example of a nearly...
Elastic Collisions: Case Study01:15

Elastic Collisions: Case Study

Elastic collision of a system demands conservation of both momentum and kinetic energy. To solve problems involving one-dimensional elastic collisions between two objects, the equations for conservation of momentum and conservation of internal kinetic energy can be used. For the two objects, the sum of momentum before the collision equals the total momentum after the collision. An elastic collision conserves internal kinetic energy, and so the sum of kinetic energies before the collision equals...
Rocket Propulsion in Empty Space - I01:13

Rocket Propulsion in Empty Space - I

The driving force for the motion of any vehicle is friction, but in the case of rocket propulsion in space, the friction force is not present. The motion of a rocket changes its velocity (and hence its momentum) by ejecting burned fuel gases, thus causing it to accelerate in the direction opposite to the velocity of the ejected fuel. In this situation, the mass and velocity of the rocket constantly change along with the total mass of ejected gases. Due to conservation of momentum, the rocket's...
Rocket Propulsion In Empty Space - II01:12

Rocket Propulsion In Empty Space - II

The motion of a rocket is governed by the conservation of momentum principle. A rocket's momentum changes by the same amount (with the opposite sign) as the ejected gases. As time goes by, the rocket's mass (which includes the mass of the remaining fuel) continuously decreases, and its velocity increases. Therefore, the principle of conservation of momentum is used to explain the dynamics of a rocket's motion. The ideal rocket equation gives the change in velocity that a rocket experiences by...
Escape Velocity01:26

Escape Velocity

The escape velocity of an object is defined as the minimum initial velocity that it requires to escape the surface of another object to which it is gravitationally bound and never to return. For example, what would be the minimum velocity at which a satellite should be launched from the Earth's surface such that it just escapes the Earth's gravitational field?
To calculate the escape velocity, it is assumed that no energy is lost to any frictional forces. In practice, a satellite launched from...
Lumber Defects01:23

Lumber Defects

Lumber defects, which can affect both the appearance and structural integrity of wood, include a variety of growth and manufacturing flaws. Growth defects such as knots and knotholes occur where branches were once attached to the tree trunk, with knotholes forming when these knots fall out. Other natural defects include decay and insect damage, which compromise the wood's strength and durability.
Shakes are minor fractures that run along or across the wood's annual rings, while wane is...

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相关实验视频

Updated: Jun 28, 2026

A Method for Studying the Temperature Dependence of Dynamic Fracture and Fragmentation
09:12

A Method for Studying the Temperature Dependence of Dynamic Fracture and Fragmentation

Published on: June 28, 2015

在LDEF航天器撞击坑中的富勒伦.

F Radicati di Brozolo1, T E Bunch, R H Fleming

  • 1Charles Evans and Associates, Redwood City, California 94063, USA.

Nature
|May 5, 1994
PubMed
概括

富勒,像C60和C70这样的分子,在长期暴露设施 (LDEF) 飞船的太空碎片中被检测到. 这一发现提供了太空中富勒的证据,可能起源于石或在撞击过程中形成.

科学领域:

  • 天体化学是天体化学.
  • 材料科学 材料科学 材料科学
  • 行星科学 行星科学

背景情况:

  • 富勒伦 (C60和C70) 在地球上已知,并假设在太空中存在.
  • 之前对太空富勒伦的搜索,包括在石中,缺乏明确的证据.
  • 星际云谱表明富勒存在,但直接观测是缺失的.

研究的目的:

  • 为了调查宇宙中富勒伦的存在.
  • 为了分析来自长期暴露设施 (LDEF) 航天器的碳状撞击残留物.
  • 确定空间环境中富勒的起源和生存.

主要方法:

  • 激光电离质谱法 激光电离质谱法
  • 拉曼光谱法 拉曼光谱法
  • 来自LDEF航天器撞击残留物的分析.
  • 超高速撞击实验的实验.

主要成果:

  • 富勒在一个石坑中被检测到,并在LDEF航天器上被喷射出来.
  • 实验性冲击表明,富勒可以在超高速碰撞中幸存下来.
  • 有证据表明,富勒伦不是仪器工件或污染物.
关键词:
美国宇航局中心ARC中心美国宇航局的学科是外生态学.

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Automated Delivery of Microfabricated Targets for Intense Laser Irradiation Experiments
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Flapping Soft Fin Deformation Modeling using Planar Laser-Induced Fluorescence Imaging
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相关实验视频

Last Updated: Jun 28, 2026

A Method for Studying the Temperature Dependence of Dynamic Fracture and Fragmentation
09:12

A Method for Studying the Temperature Dependence of Dynamic Fracture and Fragmentation

Published on: June 28, 2015

Automated Delivery of Microfabricated Targets for Intense Laser Irradiation Experiments
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Automated Delivery of Microfabricated Targets for Intense Laser Irradiation Experiments

Published on: January 28, 2021

Flapping Soft Fin Deformation Modeling using Planar Laser-Induced Fluorescence Imaging
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结论:

  • 这项研究提供了与太空撞击残留物相关的富勒的第一个观测证据.
  • 这些发现表明,富勒可能是通过石或在太空中形成的.
  • 这项研究为了解宇宙中富勒伦的形成和分布开辟了新的途径.