Cavity Conductance Formula

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Conductance of Cavity can be expressed as the ratio of the current flowing through the cavity to the voltage across it. It is typically measured in units of siemens (S). Check FAQs
G=GL+Gcu+Gb
G - Conductance of Cavity?GL - Loaded Conductance?Gcu - Copper Loss Conductance?Gb - Beam Loading Conductance?

Cavity Conductance Example

With values
With units
Only example

Here is how the Cavity Conductance equation looks like with Values.

Here is how the Cavity Conductance equation looks like with Units.

Here is how the Cavity Conductance equation looks like.

0.45Edit=2.5E-5Edit+0.07Edit+0.38Edit
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Cavity Conductance Solution

Follow our step by step solution on how to calculate Cavity Conductance?

FIRST Step Consider the formula
G=GL+Gcu+Gb
Next Step Substitute values of Variables
G=2.5E-5S+0.07S+0.38S
Next Step Prepare to Evaluate
G=2.5E-5+0.07+0.38
Next Step Evaluate
G=0.450025S
LAST Step Rounding Answer
G=0.45S

Cavity Conductance Formula Elements

Variables
Conductance of Cavity
Conductance of Cavity can be expressed as the ratio of the current flowing through the cavity to the voltage across it. It is typically measured in units of siemens (S).
Symbol: G
Measurement: Electric ConductanceUnit: S
Note: Value should be greater than 0.
Loaded Conductance
Loaded Conductance is a measure of the ease with which a load, such as a circuit or a device, can conduct an electric current.
Symbol: GL
Measurement: Electric ConductanceUnit: S
Note: Value should be greater than 0.
Copper Loss Conductance
Copper Loss Conductance refers to the resistance encountered by electromagnetic waves when they travel through a conductor, such as copper. It is also called Surface Resistance.
Symbol: Gcu
Measurement: Electric ConductanceUnit: S
Note: Value can be positive or negative.
Beam Loading Conductance
Beam Loading Conductance is the measure of the ability of an RF cavity resonator to accept energy from an electron beam passing through it.
Symbol: Gb
Measurement: Electric ConductanceUnit: S
Note: Value can be positive or negative.

Other formulas in Klystron category

​Go Beam Loading Conductance
Gb=G-(GL+Gcu)
​Go Copper Loss of Cavity
Gcu=G-(Gb+GL)
​Go Bunching Parameter of Klystron
X=βiVinθo2Vo
​Go Klystron Efficiency
ηk=(β0JX)(V2Vo)

How to Evaluate Cavity Conductance?

Cavity Conductance evaluator uses Conductance of Cavity = Loaded Conductance+Copper Loss Conductance+Beam Loading Conductance to evaluate the Conductance of Cavity, Cavity Conductance is defined as the ratio of the time-averaged power lost in the cavity walls to the voltage squared across the cavity. Conductance of Cavity is denoted by G symbol.

How to evaluate Cavity Conductance using this online evaluator? To use this online evaluator for Cavity Conductance, enter Loaded Conductance (GL), Copper Loss Conductance (Gcu) & Beam Loading Conductance (Gb) and hit the calculate button.

FAQs on Cavity Conductance

What is the formula to find Cavity Conductance?
The formula of Cavity Conductance is expressed as Conductance of Cavity = Loaded Conductance+Copper Loss Conductance+Beam Loading Conductance. Here is an example- 0.450025 = 2.5E-05+0.07+0.38.
How to calculate Cavity Conductance?
With Loaded Conductance (GL), Copper Loss Conductance (Gcu) & Beam Loading Conductance (Gb) we can find Cavity Conductance using the formula - Conductance of Cavity = Loaded Conductance+Copper Loss Conductance+Beam Loading Conductance.
Can the Cavity Conductance be negative?
No, the Cavity Conductance, measured in Electric Conductance cannot be negative.
Which unit is used to measure Cavity Conductance?
Cavity Conductance is usually measured using the Siemens[S] for Electric Conductance. Megasiemens[S], Millisiemens[S], Mho[S] are the few other units in which Cavity Conductance can be measured.
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