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Transmission refers to the passing of electromagnetic waves through a medium, while reflection involves the bouncing back of waves when they encounter a boundary.

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Q: What is the difference between transmission and reflection in the context of electromagnetic waves?
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What are two similarities and one difference between mechanical waves and electromagnetic waves?

Two similarities between mechanical waves and electromagnetic waves are that both types of waves transfer energy through a medium and can exhibit properties like reflection and refraction. One key difference is that mechanical waves require a medium to propagate, while electromagnetic waves can travel through a vacuum.


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The main difference between mechanical and electromagnetic waves is how they travel. Mechanical waves require a medium, such as air or water, to propagate, while electromagnetic waves can travel through a vacuum.


What is the primary difference between mechanical and electromagnetic waves?

The primary difference between mechanical and electromagnetic waves is how they travel. Mechanical waves require a medium, such as air or water, to propagate, while electromagnetic waves can travel through a vacuum, like in space.


What is the number one difference between mechanical and electromagnetic waves?

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How is transmission different from reflection in terms of the behavior of light waves when they encounter a boundary between two different mediums?

Transmission occurs when light waves pass through a boundary between two different mediums, while reflection occurs when light waves bounce off the boundary. Transmission allows light to continue traveling through the new medium, while reflection causes light to change direction and bounce back.