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  1. Wavelength is the distance between the same spot on two sections of a wave. A wave’s frequency can be measured by how many crests (or how many troughs) pass a location in a certain amount of time. A wave with a larger frequency has more energy.

  2. However, it is helpful to word the definitions in a more specific way that applies directly to waves: Amplitude—distance between the resting position and the maximum displacement of the wave; Frequency—number of waves passing by a specific point per second; Period—time it takes for one wave cycle to complete

  3. 11 sty 2023 · The first is the wavelength, \(\lambda\), which tells us the shortest distance (along the direction of wave motion) between identical parts of the wave. In other words, the wavelength represents the length of the spatial cycle of the wave as marked in Figure 8.1.5 above.

  4. 5 mar 2020 · wave: A disturbance or variation that travels through space and matter in a regular, oscillating fashion. wavelength: The distance between one peak and the next in a series of waves, or the distance between one trough and the next. It’s also one of the “yardsticks” used to measure radiation.

  5. First is the period. Period is measured in seconds and it tells us how long it takes for one wave cycle to complete. Next is the wavelength. Measured in units of distance like meters, the wavelength is the distance between identical points of adjacent waves. And finally there's frequency.

  6. A wave has a wavelength [latex] \lambda [/latex], which is the distance between adjacent identical parts of the wave. Wave velocity and wavelength are related to the wave’s frequency and period by [latex] v=\frac{\lambda }{T}=\lambda f.

  7. So waves are divided into 2 types: mechanical (e.g.: sound waves) and non-mechanical (e.g: light waves). Mechanical waves are further divided into transverse waves and longitudinal waves. Why are light waves longitudinal, yet they aren't considered mechanical?

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