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When waves encounter an obstacle, they can reflect, refract, diffract, or be absorbed by the obstacle depending on various factors such as shape, size, and material of the obstacle. This interaction can result in changes in the direction, speed, and amplitude of the waves.
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The bending waves around an obstacle are called diffraction. This phenomenon occurs when waves encounter an obstacle and change direction, spreading out beyond the obstacle's edges.
A wave bending around an obstacle is called diffraction. This phenomenon occurs when waves encounter an obstacle or aperture that causes them to change direction and spread out.
The spreading of waves into the region behind an obstacle is known as diffraction. This phenomenon occurs when waves encounter an obstacle or opening and bend around it, causing them to spread outwards into the shadow region behind the obstacle.
When waves encounter an obstacle, they can reflect, refract, or diffract. Reflection occurs when waves bounce back upon hitting the obstacle, while refraction happens when waves change direction as they pass through the obstacle. Diffraction involves waves bending around the obstacle and spreading out.
The bending of waves around a corner is known as diffraction. When waves encounter an obstacle or aperture, they can diffract, causing the wavefront to curve around the edge of the obstacle. Diffraction is a fundamental property of waves and plays a significant role in various phenomena such as sound propagation, light interference, and signal processing.
When a wave bends around an obstacle, it is called diffraction. This phenomenon occurs when waves encounter an obstacle or aperture that causes them to spread out and bend around the edges.
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Waves are diffracted when they encounter an obstacle or opening that is roughly the same size as the wavelength of the wave. Diffraction occurs when the wave bends around the obstacle or spreads out after passing through a narrow opening.
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