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関連する概念動画

Kinetic and Potential Energy of a Wave01:10

Kinetic and Potential Energy of a Wave

6.4K
All forms of waves carry energy; this is directly visualized in nature. For instance, the waves of earthquakes are so intense that they can shake huge concrete buildings, causing them to fall. Loud sounds can damage nerve cells in the inner ear, causing permanent hearing loss. The waves of the oceans can erode beaches. 
In mechanical waves, the amount of energy is related to their amplitude and frequency. In the context of the above examples, large-amplitude earthquakes produce large...
6.4K
Energy and Power of a Wave00:58

Energy and Power of a Wave

5.1K
The total energy associated with a wavelength is the sum of the potential energy and the kinetic energy. The average rate of energy transfer associated with a wave is called its power, which is total energy divided by the time it takes to transfer the energy. For a sinusoidal wave, energy and power are proportional to the square of both the amplitude and the angular frequency.
Waves can also be concentrated or spread out, as characterized by the intensity of the wave. Intensity is directly...
5.1K
Standing Waves01:17

Standing Waves

5.6K
Sometimes waves do not seem to move; rather, they just vibrate in place. Unmoving waves can be seen on the surface of a glass of milk kept in a refrigerator, which is one example of standing waves. Vibrations from the refrigerator motor create waves on the milk that oscillate up and down but do not seem to move across the surface. These waves are formed or created by the superposition of two or more identical moving waves in opposite directions. The waves move through each other, with their...
5.6K
Propagation of Waves01:07

Propagation of Waves

3.1K
When a wave propagates from one medium to another, part of it may get reflected in the first medium, and part of it may get transmitted to the second medium. In such a case, the interface of the two mediums can be considered as a boundary that is neither fixed nor free.
Consider a scenario where a wave propagates from a string of low linear mass density to a string of high linear mass density. In such a case, the reflected wave is out of phase with respect to the incident wave, however the...
3.1K
Standing Electromagnetic Waves01:15

Standing Electromagnetic Waves

2.4K
Electromagnetic waves can be reflected; the surface of a conductor or a dielectric can act as a reflector. As electric and magnetic fields obey the superposition principle, so do electromagnetic waves. The superposition of an incident wave and a reflected electromagnetic wave produces a standing wave analogous to the standing waves created on a stretched string.
Suppose a sheet of a perfect conductor is placed in the yz-plane, and a linearly polarized electromagnetic wave traveling in the...
2.4K
Wave Parameters01:10

Wave Parameters

9.4K
The simplest mechanical waves are associated with simple harmonic motion and repeat themselves for several cycles. These simple harmonic waves can be modeled using a combination of sine and cosine functions. Consider a simplified surface water wave that moves across the water's surface. Unlike complex ocean waves, in surface water waves, water moves vertically, oscillating up and down, whereas the disturbance of the wave moves horizontally through the medium. If a seagull is floating on the...
9.4K

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Author Spotlight: Developing Cost-Effective and Customizable Balloon Tags for Fish Passage Studies
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Author Spotlight: Developing Cost-Effective and Customizable Balloon Tags for Fish Passage Studies

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浮遊網で捕獲する波の力

Zhong Lin Wang1

  • 1Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, China, and a professor at the Georgia Institute of Technology, Atlanta, Georgia, USA.

Nature
|February 10, 2017
PubMed
まとめ

No abstract available in PubMed .

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Modeling the Size Spectrum for Macroinvertebrates and Fishes in Stream Ecosystems
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Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing
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