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AI Recommended Answer:

1. Electromagnetic waves are waves that are made up of electric and magnetic fields. 2. Electromagnetic waves can be generated by things like earthquakes, infrared radiation from objects, ocean waves, and radio waves. 3. Electromagnetic waves can travel through the air, through water, and through other materials.



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Which type of wave motion does not involve photons? infrared radiation sound waves radio waves microwaves gamma rays

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We have to find a way to not involve photons from the five options. The photon is an elementary particle. Any wave will have a photon. The first one is radiation from the sun and the second one is from the sun and the third one is from the sun and the fourth one is from the sun and the fifth one is from the sun and the sixth one is from the sun and the seventh one is from the sun and the Sound waves are the second option. Sound waves are mechanical waves. The second option is correct. The third option is radio waves, which is also electromagnetic wave, so it is incorrect. This will have photon because it is also microwaves. This is also wrong if you keep the option. Where will not involve photon? Sound waves are the correct option. This is the complete solution. Thank you.

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An electromagnetic wave carries energy only through matter and travels at the speed of light.



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By what properties is an electromagnetic wave characterized? How are these properties related to each other?

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We need to show the reaction of the force acting on the electron in this set up because it is similar to the j j thompson's experiment. The speed of the electron is reflected in the cross e and b region. The diagram is like this: this is distance, the distance is flux cantinet, and here we can say this is e. The magnetic force that is f b is the same as the force that is q. F will be equal to minus a multiplied by v, b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b and b. The electric force will be 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- 888-609- If there is no reflection, we can say that f e is equal to minus and that is the answer. We can say that f, b is equal to f, t is equal to f, v is equal to v, and b is equal to the vector. That is, b b that is equal to v divided by b, so we will be equal to 820 divided by 0 point 12 and raised 2 points. Here, we can say that f e is equal to 0, so here he will be equal to 0, and here we can say that f b is equal to. The centripetal force is equal to the square divided by r. It is equal to 8 points divided by 10, raised to minus 2. It is equal to 2 if m and b r are divided by m. Point 85 divided by 10, raised to minus 3, and then to minus 2 point. E divided by m is equal to 10 risteand. This is the final answer of the concept.

What are 5 types of electromagnetic waves?

In order from highest to lowest energy, the sections of the EM spectrum are named: gamma rays, X-rays, ultraviolet radiation, visible light, infrared radiation, and radio waves.

What are 4 examples of electromagnetic waves?

Examples of EM waves are radio waves, microwaves, infrared waves, X-rays, gamma rays, etc.

What are 10 electromagnetic waves?

10 Electromagnetic Waves Examples in Real Life.
Radio and Television..
Microwave Ovens..
Medical Examination..
Sterilization..
Communication Devices..
RADAR..
Military Equipment..
Cancer Therapy..

What are 6 examples of electromagnetic waves?

Examples of electromagnetic waves include radio waves, microwaves, infrared, visible light, ultraviolet, x-rays, and gamma rays. Radio waves have the lowest energy and frequency and the longest wavelength. Gamma rays have the highest energy and frequency and the shortest wavelength.