dispersive medium वाक्य
उदाहरण वाक्य
मोबाइल
- But what about a pure monochromatic wave traveling through a dispersive medium?
- Subsequently, the modulated pulse is stretched further in the second dispersive medium which has much higher dispersion value.
- In the case of a non-dispersive medium, they happen to be equal, but otherwise they are not.
- A "'dispersive medium "'is a medium in which waves of different frequencies travel at different velocities.
- Clearly the group velocity can be calculated for a monochromatic wave in a dispersive medium and it will be different than the phase velocity.
- If a light pulse is propagated through a normally dispersive medium, the result is the higher frequency components travel slower than the lower frequency components.
- If a light pulse is propagated through a normally dispersive medium, the result is the higher frequency components slow down more than the lower frequency components.
- In any case, the eye is a fairly controlled, non-dispersive medium with a fixed index of refraction so the frequency and wavelength should be directly related.
- Due to the Kramers Kronig relations, a linear medium with dispersion also exhibits loss, so the sine wave propagating in a dispersive medium is attenuated in certain frequency ranges that depend upon the medium.
- Conversely, if a pulse travels through an anomalously dispersive medium, high frequency components travel faster than the lower ones, and the pulse becomes " negatively chirped ", or " down-chirped ", decreasing in frequency with time.
- Conversely, if a pulse travels through an anomalously ( negatively ) dispersive medium, high frequency components travel faster than the lower ones, and the pulse becomes " negatively chirped ", or " down-chirped ", decreasing in frequency with time.
- With \ xi the spatial coordinate and \ tau the temporal coordinate . \ psi ( \ xi, \ tau ) being the dispersion is anomalous and the nonlinearity is self-focusing ( note that similar results could be obtained for a normally dispersive medium combined with a defocusing nonlinearity ).
- The total network bandwidth depends on how dispersive the medium is ( more dispersive medium generally has better total bandwidth because it minimises interference ), how many frequencies are available, how noisy those frequencies are, how many aerials are used and whether a directional antenna is in use, whether nodes employ power control and so on.
- The work he had done assisting Kramers in the previous year now gave him an important clue about how to model what happened to excited hydrogen gas when it radiated light and what happened when incoming radiation of one frequency excited atoms in a dispersive medium and then the energy delivered by the incoming light was re-radiated sometimes at the original frequency but often at two lower frequencies the sum of which equalled the original frequency.
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