In klystrons, the retarding phase refers to the time during which the electron beam interacts with the oscillating electric field of the microwave signal, causing the electrons to lose energy and slow down. This phase is crucial for the amplification process, as it allows the electrons to bunch together, increasing the beam's current density and enhancing the microwave signal. The effective management of the retarding phase is essential for optimizing the performance and efficiency of the klystron.
it is simply the phase delay occurring in the transit time. :)
A retarding voltage is what causes the electronic to shut down.
The formula to use is, phase voltage /1.73 = phase to neutral (ground) voltage.CommentThere is no such thing as a 'phase to phase', or 'phase to neutral' voltage. The correct terms are 'line to line' and 'line to neutral'. So the above answer should read: line voltage/1.73= line to neutral voltage = phase voltage.
You can, but for a given load it's more economic, in terms of the amount of copper used, to use three-phase.
In terms of seizure Yes otherwise No
it is simply the phase delay occurring in the transit time. :)
A retarding voltage is what causes the electronic to shut down.
Donald Ross Hamilton has written: 'Klystrons and microwave triodes' -- subject(s): Klystrons, Triodes, Shortwave radio, Equipment and supplies, Disk-seal tubes
The formula to find the retarding force of an object is given by F = -kv, where F is the retarding force, k is the drag coefficient, and v is the velocity of the object. The negative sign indicates that the retarding force opposes the direction of motion.
Retarding force can be calculated by multiplying the coefficient of friction between two surfaces by the normal force pressing the surfaces together. The formula is: Retarding Force = Coefficient of Friction × Normal Force.
The transition from phase to phase is described in terms of the rate of growth of the economy.
The perfusion phase is the part of a contrast scan in which the contrast is moving into the blood vessels.
In science, phase refers to the physical state of matter, such as solid, liquid, or gas. Phase can also refer to a specific stage in a process or cycle. For example, in biology, phase may describe a stage in the cell cycle.
4, 5, or 6 phase systems would cost more than three phase systems in terms of volume of copper required without offering any significant advantages.
retarding
By advancing or retarding the spark.
Having the effect of retarding or inhibiting the coagulation of the blood.