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Hearing, seeing, touching, using a cellphone, tuning the radio, etc. all involve waves. So, what exactly is a wave? A wave is the movement of energy through a medium. Waves that require a medium are called mechanical waves. Some waves like microwaves and radio waves do not move through a medium at all. These types of waves are commonly referred to as electromagnetic waves. But despite the many different waves propagated through different media, all waves share common characteristics.
If you are enrolled in physics or mechanical engineering course, then the topic of waves, which encompasses wave characteristics is not new to you. But understanding all the characteristics of waves and implementing this knowledge in assignment preparation may not be an easy undertaking. That’s why at MatlabAssignmentExperts.com, we offer wave characteristics homework help to try to make assignments on this topic a little easier for students to handle. We have hired a panel of experts that has sufficient expertise in this area to prepare wave characteristics homework solutions on students’ behalf. If you need professional assistance with this topic, feel free to reach out and we will provide top-quality help with wave characteristics homework.
Different waves, same characteristics
Many types of waves exist including sound waves, radio waves, light waves, microwaves, and others. While all of them are different in their own ways, all waves share the same key properties like refraction, reflection, interference, and diffraction, and all waves exhibit an amplitude, speed, frequency, and wavelength. All waves are considered a disturbance that transmits energy. Some waves like sound waves and water waves are created through the vibration of particles. Water waves are formed when water molecules are disturbed. Similarly, sound waves are created when there is a disturbance of air particles in the medium through which the sound is being transmitted. Electromagnetic waves are created through oscillating magnetic and electric fields.
Wave characteristics covered by our wave characteristics assignment help experts
All waves have a specific wavelength, which is defined as the distance between one wave crest to another. Different waves have different wavelengths. For instance, in water, surf waves may have a wavelength of between 30 and 50 meters. The wavelength of sound waves varies depending on the sound pitch. Humans can hear sounds with a wavelength of between 70 millimeters and 80 meters. Different types of electromagnetic waves vary in wavelength too. For example, visible light will have a wavelength of about less than 1/1,000,000 of a meter, and X rays will have a wavelength of less than 1/1,000,000,000 of a meter. To learn how to calculate wavelength, connect with our wave characteristics assignment help professionals.
Every wave has a defined frequency, which is defined as the total number of wavelengths traveling past a given point in one second of time. Frequency can also be defined as waves per second and is measured in Hertz. Usually, the longer the wavelength, the lower the frequency. In electromagnetic waves, for instance, UV waves will have a much higher frequency than microwaves. The total time a wave takes to complete one motion or undergo a complete oscillation is referred to as a period, and each wave has a defined period. The shorter the wave period, the higher the frequency. If you are struggling with your homework because you can’t figure out how to calculate frequency, consider taking help with wave characteristics assignments from us.
Wave amplitude is the total distance the particles within the wave are displaced from their usual equilibrium positions. For water waves, the wave amplitude is the total distance between the crest of the wave and the normal level of the water. Wave amplitude is sometimes referred to as the height of the wave, which is the total vertical distance between the crest of the wave and the wave trough. For expert assistance with homework revolving around this area, send us a ‘do my wave characteristics assignment’ request.
The speed of the wave is related to its wavelength and frequency
All waves travel at a specific speed. How high or low this speed depends on the formation of the wave, which is why you find that surf waves usually travel much slower than tsunamis. Unlike water waves, electromagnetic waves travel at the same speed. This is similar to sound waves too, as they all move at the same speed through a given medium. The wave speed is related to the wavelength and frequency of the wave (speed = frequency x wavelength). This can be represented as v = f x λ.
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