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to further explore what this equation means, consider four sets of identical waves that move in the x direction. a photo is taken of each wave at time t and is displayed in the figures below. rank these sets of waves on the basis of the maximum amplitude of the wave that results from the interference of the two waves in each set. rank from largest amplitude on the left to smallest amplitude on the right. to rank items as equivalent, overlap them.

Sagot :

A. Y max = 2A

B. Y max =  A

C. Y max =  0

D. Y max = A

So the order is, (A),(B) = (C),(D)

The maximum displacement or distance moved by means of a factor on a vibrating frame or wave measured from its equilibrium position. it's far identical to at least one-half the period of the vibration course.

For amplitude measurements, you rely the variety of vertical divisions occupied by means of the sign's vertical signal after which multiply with the aid of the vertical scale.

The better the amplitude, the better the power. To summarise, waves convey strength. The quantity of power they bring is associated with their frequency and their amplitude. The better the frequency, the greater electricity, and the better the amplitude, the more strength.

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A) [tex]y_{max}[/tex] [tex]= 2A[/tex]

B) [tex]y_{max}[/tex] [tex]= A[/tex]

C) [tex]y_{max}[/tex] [tex]= 0[/tex]

D) [tex]y_{max}[/tex] [tex]= A[/tex]

So the order is

{A), B) = D), C)}

A wave is a disturbance in a medium that transports energy without net movement of particles. This can take the form of elastic deformation, changes in pressure, electrical or magnetic strength, electrical potential, or temperature.

-It transmit energy.

-Usually it involves periodic repetitive movements.

-It does not result in net motion of the medium or particles in the medium              

(mechanical waves).

Waves can be periodic, in which these quantities repeatedly oscillate around their equilibrium (rest) values ​​at specific frequencies. If the entire waveform moves in one direction, it is called a traveling wave.

In contrast, a pair of superimposed periodic waves propagating in opposite directions form a standing wave. In a standing wave, the vibration amplitude has a zero point at some point where the wave amplitude appears smaller or even zero.

Waves are often described by the wave equation (the standing wave field of two opposing waves) or the unidirectional wave equation for propagation of a single wave in a defined direction.

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