answersLogoWhite

0

The light takes approximately 8 minutes and 20 seconds to travel through layer 3.

User Avatar

AnswerBot

6mo ago

What else can I help you with?

Continue Learning about Physics

How do you Compare and contrast light and sound energy?

Light energy consists of electromagnetic waves that travel at the speed of light, while sound energy consists of mechanical waves that travel at a much slower speed. Light energy does not require a medium to travel through, whereas sound energy does. Light energy can travel through a vacuum, whereas sound energy cannot.


How light react transparent?

Light passes through transparent materials without being absorbed or scattered, allowing the light to travel through and be transmitted. The transparency of a material depends on its molecular structure, which determines how much light can pass through without being reflected or absorbed.


How is light differrent from other kinds of waves?

Light is an electromagnetic wave that does not require a medium to travel through, unlike other waves like sound which require a medium. Light waves can travel through a vacuum and have a much higher frequency compared to other types of waves. Additionally, light waves have properties like reflection, refraction, diffraction, and interference that are unique to electromagnetic waves.


What layer of the atmosphere makes my cell phone work?

Cell phone signals primarily operate in the troposphere layer of the atmosphere. This layer is closest to the Earth's surface and is where most weather phenomena occur. Signals can travel through this layer without much interference, allowing for cell phone communication.


What are some similarities and differences between the light and sound waves?

Similarities: Both light and sound waves are forms of energy that travel in waves. They can both be reflected, refracted, and diffracted. Differences: Light waves can travel through a vacuum, while sound waves require a medium to travel through. Light waves are electromagnetic waves, while sound waves are mechanical waves that require a medium to propagate. Light waves travel much faster than sound waves.

Related Questions

Does sound or light travel faster through water?

Light travels much faster than sound, through wood.


How do you Compare and contrast light and sound energy?

Light energy consists of electromagnetic waves that travel at the speed of light, while sound energy consists of mechanical waves that travel at a much slower speed. Light energy does not require a medium to travel through, whereas sound energy does. Light energy can travel through a vacuum, whereas sound energy cannot.


Why does it get darker the deeper you go into the ocean?

Because it becomes much harder for the sun's light to reflect against the water.... because sunlight can't travel clear to the bottom of the ocean floor. It only travels through the top layer of the waterThe sun's light can not reach down to the oceans dark depths.


How light react transparent?

Light passes through transparent materials without being absorbed or scattered, allowing the light to travel through and be transmitted. The transparency of a material depends on its molecular structure, which determines how much light can pass through without being reflected or absorbed.


How is light differrent from other kinds of waves?

Light is an electromagnetic wave that does not require a medium to travel through, unlike other waves like sound which require a medium. Light waves can travel through a vacuum and have a much higher frequency compared to other types of waves. Additionally, light waves have properties like reflection, refraction, diffraction, and interference that are unique to electromagnetic waves.


What layer of the atmosphere makes my cell phone work?

Cell phone signals primarily operate in the troposphere layer of the atmosphere. This layer is closest to the Earth's surface and is where most weather phenomena occur. Signals can travel through this layer without much interference, allowing for cell phone communication.


What are some similarities and differences between the light and sound waves?

Similarities: Both light and sound waves are forms of energy that travel in waves. They can both be reflected, refracted, and diffracted. Differences: Light waves can travel through a vacuum, while sound waves require a medium to travel through. Light waves are electromagnetic waves, while sound waves are mechanical waves that require a medium to propagate. Light waves travel much faster than sound waves.


What distance can Infrared Light travel?

As far as you like. For example it travels from the sun and gets through our atmosphere without much difficulty.


How does sound and visible light compare to origin?

Sound is a mechanical wave that requires a medium (like air, water, or solids) to travel through, while visible light is an electromagnetic wave that can travel through a vacuum. Sound waves travel slower than light waves and are typically experienced as pressure variations, while light waves travel much faster and are perceived as color. Both sound and light waves are forms of energy that propagate in waves.


How does an electric bulb?

it works with a circuit.these tiny microscopic molecules travel through the wire. the filament, a very thin metal lets the molecules travel through, but at a much slower pace. this then causes it to burn and light the bulb up.


Sound cannot travel through what?

Sound cannot travel through a vacuum because it requires a medium, such as air or water, to propagate. In the absence of a medium, there are no particles for the sound waves to travel through, so they cannot be transmitted.


How sound waves differ from light waves?

Sound waves are mechanical waves that require a medium (such as air, water, or solids) to travel, while light waves are electromagnetic waves that can travel through a vacuum. Sound waves propagate through compression and rarefaction of the medium particles, while light waves oscillate through electric and magnetic fields. Additionally, sound waves travel at a much slower speed (around 343 m/s in air) compared to light waves (299,792,458 m/s in a vacuum).