half wavelength वाक्य
उदाहरण वाक्य
मोबाइल
- The bottom panel shows a path that is made a half wavelength longer by moving the left-hand mirror a quarter wavelength further away, increasing the path difference by a half wavelength.
- The bottom panel shows a path that is made a half wavelength longer by moving the left-hand mirror a quarter wavelength further away, increasing the path difference by a half wavelength.
- So there is an amplitude maximum ( antinode ) at the boundary, the first node occurs a quarter wavelength from the end, and the other nodes are at half wavelength intervals from there:
- A less accurate method of determining wavelength with a tube, used before Kundt, is simply to measure the length of the tube at resonance, which is approximately equal to a multiple of a half wavelength.
- Although an antenna may be designed to have a purely resistive feedpoint impedance ( such as a dipole 97 % of a half wavelength long ) this might not be exactly true at the frequency that it is eventually used at.
- If the dish is wrong by a quarter of a wavelength, then the reflected energy will be wrong by a half wavelength, which means that it will interfere destructively with energy that has been reflected properly from another part of the dish.
- A short dipole is a dipole formed by two conductors with a total length " L " substantially less than a half wavelength ( ? / 2 ), the minimum length at which the antenna is resonant at the operating frequency.
- Whether that horizontal component is retarded by one quarter of a wavelength in two distinct steps or retarded a full half wavelength all at once, the orientation of the resulting linearly polarized light will be such that it passes through the linear polarizer.
- Regardless, in the absence of absorption, conservation of energy guarantees that the two paths must differ by a half wavelength phase shift . Also note that beamsplitters that are not 50 / 50 are frequently employed to improve the interferometer's performance in certain types of measurement.
- :This means that providing you know the distance to the object to the nearest half wavelength ( which you can do with a really fast clock and the first method I described )-then you can use the interference result to figure out whether this is an exact number of wavelengths or half a wavelength off-or anywhere in between.
- When the two waves are in phase, i . e . the path difference is equal to an integral number of wavelengths, the summed amplitude, and therefore the summed intensity is maximum, and when they are in anti-phase, i . e . the path difference is equal to half a wavelength, one and a half wavelengths, etc ., then the two waves cancel and the summed intensity is zero.
- When the two waves are in phase, i . e . the path difference is equal to an integral number of wavelengths, the summed amplitude, and therefore the summed intensity is maximal, and when they are in anti-phase, i . e . the path difference is equal to half a wavelength, one and a half wavelengths, etc ., then the two waves cancel, and the summed intensity is zero.
- First, given the dual usefulness of this image, begin by imagining the circularly polarized light displayed at the top as still leaving the quarter-wave plate and traveling toward the left . Observe that had the horizontal component of the linearly polarized light been retarded by a quarter of wavelength twice, which would amount to a full half wavelength, the result would have been linearly polarized light that was at a right angle to the light that entered.
- For instance, if there is a perfect match between the load impedance " Z " load and the source impedance " Z " source = " Z " * load, that perfect match will remain if the source and load are connected through a transmission line with an electrical length of one half wavelength ( or a multiple of one half wavelengths ) using a transmission line of " any " characteristic impedance " Z " 0.
- For instance, if there is a perfect match between the load impedance " Z " load and the source impedance " Z " source = " Z " * load, that perfect match will remain if the source and load are connected through a transmission line with an electrical length of one half wavelength ( or a multiple of one half wavelengths ) using a transmission line of " any " characteristic impedance " Z " 0.
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