Wavenumber example sentences

Related (12): frequency, wavelength, energy, momentum, phase, propagation, dispersion, diffraction, scattering, vibrations, oscillations, spectroscopy.

"Wavenumber" Example Sentences

1. The wavenumber of the electromagnetic radiation determines the energy and frequency of the waves.
2. The relationship between the wavelength and wavenumber of a wave is inverse.
3. The vibrational frequency of a molecule can be calculated from its wavenumber.
4. Spectroscopy techniques involve measuring the wavenumber or frequency of light to identify substances.
5. The wavenumber of a wave can be used to determine the refractive index of a material.
6. The speed of light can be calculated from the wavenumber and wavelength of electromagnetic radiation.
7. Infrared spectroscopy is a technique that measures the absorption wavenumber of infrared light by a material.
8. The wavenumber of a wave in a medium is proportional to its refractive index and inversely proportional to its wavelength.
9. The wavenumber of a wave in a crystal lattice determines its band structure and electronic properties.
10. The dispersion of light in a prism is due to the variation in wavenumber of the different colors of light.
11. The Raman shift is the difference between the incident wavenumber of light and the scattered wavenumber of light by a molecule.
12. The wavenumber of a surface plasmon resonance can be used to detect small changes in the refractive index of a material.
13. The wavenumber of seismic waves can be used to determine the structure and composition of the Earth's interior.
14. The wavenumber of a wave packet in quantum mechanics is related to its energy and momentum.
15. The wavenumber of a diffraction grating determines the spacing of its grooves.
16. The Doppler effect causes a shift in the wavenumber of light due to the relative motion between the observer and the source.
17. The wavenumber of a standing wave in a pipe is proportional to the frequency of the sound it produces.
18. The wavenumber of a waveguide mode determines its propagation properties and confinement of light.
19. The wavenumber of a microwave mode in a cavity resonator determines its resonant frequency.
20. The wavenumber of a plasma wave in a magnetized plasma determines its frequency and mode structure.
21. The Raman spectrum of a material shows the wavenumber and intensity of its vibrational modes.
22. The wavenumber of a surface acoustic wave in a material determines its velocity and attenuation.
23. The wavenumber of a graphene plasmon determines its wavelength and confinement of electrons.
24. The wavenumber of a wave in a linear system is related to its phase velocity and group velocity.
25. The wavenumber of a soliton depends on its amplitude and the nonlinearity of the medium.
26. The dispersion relation of a wave gives the relationship between its wavenumber and frequency.
27. The wavenumber of a photonic crystal determines its bandgap and light propagation properties.
28. The electronic density of states of a material depends on its wavenumber and energy.
29. The wavenumber of a surface wave in a fluid determines its velocity and dispersion properties.
30. The wavenumber of a plume in a turbulent flow reflects the characteristics of the flow and mixing.

Common Phases

1. The wavenumber is inversely proportional to wavelength;
2. The unit of wavenumber is reciprocal of distance;
3. The wavenumber can be used to quantify the spatial frequency of a wave;
4. Spectral analysis involves the use of wavenumbers to study the properties of a waveform;
5. The wavenumber is commonly used in Fourier analysis and signal processing;
6. Wavenumber can be used to calculate the energy of a wave;
7. The relationship between wavenumber and frequency is given by c = λν;
8. The wavenumber is a useful parameter for characterizing the behavior of waves in different media;
9. The wavenumber can be used to study the dispersion of waves in different materials;
10. In spectroscopy, the wavenumber is used to measure the vibrational modes of molecules.

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