Magnitude of Microwave Signal at Input Cavity Formula

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Magnitude of microwave signal is the strength of microwave signal. Check FAQs
|V|=2VoXβiθo
|V| - Magnitude of Microwave Signal?Vo - Cathode Buncher Voltage?X - Bunching Parameter?βi - Beam Coupling Coefficient?θo - Angular Variation?

Magnitude of Microwave Signal at Input Cavity Example

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Here is how the Magnitude of Microwave Signal at Input Cavity equation looks like with Values.

Here is how the Magnitude of Microwave Signal at Input Cavity equation looks like with Units.

Here is how the Magnitude of Microwave Signal at Input Cavity equation looks like.

49.8659Edit=285Edit3.08Edit0.836Edit12.56Edit
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Magnitude of Microwave Signal at Input Cavity Solution

Follow our step by step solution on how to calculate Magnitude of Microwave Signal at Input Cavity?

FIRST Step Consider the formula
|V|=2VoXβiθo
Next Step Substitute values of Variables
|V|=285V3.080.83612.56rad
Next Step Prepare to Evaluate
|V|=2853.080.83612.56
Next Step Evaluate
|V|=49.8659068052296
LAST Step Rounding Answer
|V|=49.8659

Magnitude of Microwave Signal at Input Cavity Formula Elements

Variables
Magnitude of Microwave Signal
Magnitude of microwave signal is the strength of microwave signal.
Symbol: |V|
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Cathode Buncher Voltage
Cathode Buncher Voltage is the voltage applied to the cathode of a klystron tube to produce a bunched electron beam that interacts with the resonant cavity of the klystron to produce microwave power.
Symbol: Vo
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Bunching Parameter
Bunching parameter as the ratio of the peak electric field to the average electric field at the input cavity of the klystron.
Symbol: X
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Beam Coupling Coefficient
Beam Coupling Coefficient is a measure of the interaction between an electron beam and an electromagnetic wave in a resonant cavity.
Symbol: βi
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Angular Variation
Angular Variation refers to the change in some physical property of a system as the angle of observation or measurement is changed.
Symbol: θo
Measurement: AngleUnit: rad
Note: Value should be greater than 0.

Other formulas in Klystron Cavity category

​Go Induced Current in Catcher Cavity
I2=It0βi
​Go Buncher Cavity Gap
d=τEvo
​Go Induced Current in Walls of Catcher Cavity
I2=βiIo
​Go Phase Constant of Fundamental Mode Field
βo=2πMLN

How to Evaluate Magnitude of Microwave Signal at Input Cavity?

Magnitude of Microwave Signal at Input Cavity evaluator uses Magnitude of Microwave Signal = (2*Cathode Buncher Voltage*Bunching Parameter)/(Beam Coupling Coefficient*Angular Variation) to evaluate the Magnitude of Microwave Signal, The Magnitude of Microwave Signal at Input Cavity formula is defined as how much power a wave is carrying. Energy has to do with how long you run the microwaves. Magnitude of Microwave Signal is denoted by |V| symbol.

How to evaluate Magnitude of Microwave Signal at Input Cavity using this online evaluator? To use this online evaluator for Magnitude of Microwave Signal at Input Cavity, enter Cathode Buncher Voltage (Vo), Bunching Parameter (X), Beam Coupling Coefficient i) & Angular Variation o) and hit the calculate button.

FAQs on Magnitude of Microwave Signal at Input Cavity

What is the formula to find Magnitude of Microwave Signal at Input Cavity?
The formula of Magnitude of Microwave Signal at Input Cavity is expressed as Magnitude of Microwave Signal = (2*Cathode Buncher Voltage*Bunching Parameter)/(Beam Coupling Coefficient*Angular Variation). Here is an example- 49.86591 = (2*85*3.08)/(0.836*12.56).
How to calculate Magnitude of Microwave Signal at Input Cavity?
With Cathode Buncher Voltage (Vo), Bunching Parameter (X), Beam Coupling Coefficient i) & Angular Variation o) we can find Magnitude of Microwave Signal at Input Cavity using the formula - Magnitude of Microwave Signal = (2*Cathode Buncher Voltage*Bunching Parameter)/(Beam Coupling Coefficient*Angular Variation).
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