Electrostatic Deflection Sensitivity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage)
Se = (Ldef*Lcrt)/(2*d*Va)
This formula uses 5 Variables
Variables Used
Electrostatic Deflection Sensitivity - (Measured in Meter per Volt) - The Electrostatic deflection sensitivity measures the sensitivity of electrostatic deflecting system in cathode ray tube.
Length of Deflecting Plates - (Measured in Meter) - The Length of deflecting plates in cathode ray tube is used to measure the electrostatic deflection as well as its sensitivity.
Cathode Ray Tube Length - (Measured in Meter) - The Cathode Ray Tube Length is the distance between the screen and the center of the deflecting plated in a cathode ray tube.
Distance between Deflecting Plates - (Measured in Meter) - Distance between deflecting plates in Cathode ray tube is used to measure the electrostatic deflection as well as its sensitivity.
Anode Voltage - (Measured in Volt) - The Anode Voltage refers to the voltage of pre-accelerating anode of an electron when it moves in a cathode ray tube.
STEP 1: Convert Input(s) to Base Unit
Length of Deflecting Plates: 50 Meter --> 50 Meter No Conversion Required
Cathode Ray Tube Length: 0.012 Millimeter --> 1.2E-05 Meter (Check conversion ​here)
Distance between Deflecting Plates: 2.5 Millimeter --> 0.0025 Meter (Check conversion ​here)
Anode Voltage: 90 Volt --> 90 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Se = (Ldef*Lcrt)/(2*d*Va) --> (50*1.2E-05)/(2*0.0025*90)
Evaluating ... ...
Se = 0.00133333333333333
STEP 3: Convert Result to Output's Unit
0.00133333333333333 Meter per Volt --> No Conversion Required
FINAL ANSWER
0.00133333333333333 0.001333 Meter per Volt <-- Electrostatic Deflection Sensitivity
(Calculation completed in 00.020 seconds)

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Created by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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Electrostatic Parameters Calculators

Magnetic Deflection Sensitivity
​ LaTeX ​ Go Magnetic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)*sqrt(([Charge-e]/(2*[Mass-e]*Anode Voltage)))
Electrostatic Deflection Sensitivity
​ LaTeX ​ Go Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage)
Radius of Electron on Circular Path
​ LaTeX ​ Go Radius of Electron = ([Mass-e]*Electron Velocity)/(Magnetic Field Strength*[Charge-e])
Particle Acceleration
​ LaTeX ​ Go Particle Acceleration = ([Charge-e]*Electric Field Intensity)/[Mass-e]

Electrostatic Deflection Sensitivity Formula

​LaTeX ​Go
Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage)
Se = (Ldef*Lcrt)/(2*d*Va)

How electrostatic deflection sensitivity is altered?

The deflection sensitivity can be increased by decreasing the accelerating voltage as is seen from the definition of deflection sensitivity. This results in reduced luminosity of the spot. In converse a high value of accelerating voltage produces more acceleration of the beam and gives a bright spot. Increasing the accelerating voltage necessitates large deflection potential on the deflecting plate, to produce a given displacement. Highly accelerated beam is difficult to deflect and is termed hard beam. For a given accelerating voltage, and for given dimensions of the CR Tube, the deflection of the electron beam is directly proportional to the deflecting voltage. This means that the CRT(cathode ray tube) may be used as a linear indicating device.

How to Calculate Electrostatic Deflection Sensitivity?

Electrostatic Deflection Sensitivity calculator uses Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage) to calculate the Electrostatic Deflection Sensitivity, The Electrostatic Deflection Sensitivity in cathode ray tube is defined as the deflection of the beam on the screen per unit deflection voltage. Electrostatic Deflection Sensitivity is denoted by Se symbol.

How to calculate Electrostatic Deflection Sensitivity using this online calculator? To use this online calculator for Electrostatic Deflection Sensitivity, enter Length of Deflecting Plates (Ldef), Cathode Ray Tube Length (Lcrt), Distance between Deflecting Plates (d) & Anode Voltage (Va) and hit the calculate button. Here is how the Electrostatic Deflection Sensitivity calculation can be explained with given input values -> 0.001333 = (50*1.2E-05)/(2*0.0025*90).

FAQ

What is Electrostatic Deflection Sensitivity?
The Electrostatic Deflection Sensitivity in cathode ray tube is defined as the deflection of the beam on the screen per unit deflection voltage and is represented as Se = (Ldef*Lcrt)/(2*d*Va) or Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage). The Length of deflecting plates in cathode ray tube is used to measure the electrostatic deflection as well as its sensitivity, The Cathode Ray Tube Length is the distance between the screen and the center of the deflecting plated in a cathode ray tube, Distance between deflecting plates in Cathode ray tube is used to measure the electrostatic deflection as well as its sensitivity & The Anode Voltage refers to the voltage of pre-accelerating anode of an electron when it moves in a cathode ray tube.
How to calculate Electrostatic Deflection Sensitivity?
The Electrostatic Deflection Sensitivity in cathode ray tube is defined as the deflection of the beam on the screen per unit deflection voltage is calculated using Electrostatic Deflection Sensitivity = (Length of Deflecting Plates*Cathode Ray Tube Length)/(2*Distance between Deflecting Plates*Anode Voltage). To calculate Electrostatic Deflection Sensitivity, you need Length of Deflecting Plates (Ldef), Cathode Ray Tube Length (Lcrt), Distance between Deflecting Plates (d) & Anode Voltage (Va). With our tool, you need to enter the respective value for Length of Deflecting Plates, Cathode Ray Tube Length, Distance between Deflecting Plates & Anode Voltage and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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