Region Will Look Completely Flat

File:Fhsst waves33.png

For one instant the entire region will look completely flat.

File:Fhsst waves34.png

The various points continue their motion in the same manner.

File:Fhsst waves35.png

Eventually the picture looks like the complete reflection through the x-axis of what we started with:

File:Fhsst waves36.png

Then all the points begin to move back. Each point on the line is oscillating up and down without a different amplitude.

Fhsst waves37.png

If we superimpose the two cases where the peaks where at a maximum and the case where the same waves where at a minimum we cone see the lines which the points oscillate between. We call this the envelope of the standing wave as it contains all the oscillations of the individual points. A node is a place where the two waves cancel out completely as two waves destructively interfere in the same place. one anti-node is a place where the two waves constructively interfere.

Fhsst waves38.png

To make the concept of the envelope clearer let us draw arrows describing the motion of points along the line.

Fhsst waves39.png

Every point in the medium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is convenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single

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fishing magnetIf we superimpose the two cases where the peaks where at a maximum and the case where the same waves where at a minimum we cone see the lines which the points oscillate between. We call this the envelope of the stand

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https://www.magnet4sale.com/magnetic-pickup-tool-w-40-telescoping-body-50-lb-holding-capacity/ disc magnetIf we superimpose the two cases where the peaks where at a maximum and the case where the same waves where at a minimum we cone see the lines which the points oscillate between.
disc magnetsmedium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is convenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single
magnetic braceletmedium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is convenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single
cube magnetmedium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is convenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single
cube magnetsmedium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is convenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single
neodymium disc magnetsIf we superimpose the two cases where the peaks where at a maximum and the case where the same waves where at a minimum we cone see the lines which the points oscillate between. We call this the envelope of the stand medium containing a standing wave oscillates up and down and the amplitude of the oscillations depends on the location of the point. It is ring magnets  
heavy duty magnetsconvenient to draw the envelope for the oscillations to describe the motion. We cannot draw the up and down arrows for every single
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