Net Resistance Solution

STEP 0: Pre-Calculation Summary
Formula Used
Resistance = Capacitive Reactance/Loss Tangent
R = Xc/tan δ
This formula uses 3 Variables
Variables Used
Resistance - (Measured in Ohm) - Resistance is defined as the property of an electrical component to resist the flow of electric current.
Capacitive Reactance - (Measured in Ohm) - Capacitive Reactance is the measure of the opposition to alternating current by the capacitor.
Loss Tangent - (Measured in Radian) - Loss tangent (tan δ) of a material denotes quantitatively dissipation of the electrical energy due to different physical processes.
STEP 1: Convert Input(s) to Base Unit
Capacitive Reactance: 380 Ohm --> 380 Ohm No Conversion Required
Loss Tangent: 36.89 Degree --> 0.643851961060587 Radian (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
R = Xc/tan δ --> 380/0.643851961060587
Evaluating ... ...
R = 590.197783002857
STEP 3: Convert Result to Output's Unit
590.197783002857 Ohm --> No Conversion Required
FINAL ANSWER
590.197783002857 590.1978 Ohm <-- Resistance
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Nisarg
Indian Institute of Technology,Roorlee (IITR), Roorkee
Nisarg has created this Calculator and 100+ more calculators!
Verifier Image
Verified by Parminder Singh
Chandigarh University (CU), Punjab
Parminder Singh has verified this Calculator and 600+ more calculators!

6 Dielectric Heating Calculators

Thickness of Dielectric
​ Go Thickness of Dielectric = (Relative Permittivity*8.85*10^-12*Surface Area)/(4*pi*Capacitance of Dielectric)
Capacitance Dielectric
​ Go Capacitance of Dielectric = (Relative Permittivity*8.85*10^-12*Surface Area)/(4*pi*Thickness of Dielectric)
Dielectric Loss
​ Go Power Loss = Voltage^2/(2*Capacitive Reactance)*sin(2*Phase Difference)
Power Loss Density
​ Go Power Density = Frequency*Complex Relative Permittivity*8.85418782*10^-12*Electric Field Strength^2
Net Resistance
​ Go Resistance = Capacitive Reactance/Loss Tangent
Loss Tangent
​ Go Loss Tangent = Capacitive Reactance/Resistance

Net Resistance Formula

Resistance = Capacitive Reactance/Loss Tangent
R = Xc/tan δ

What is dielectric strength?

Dielectric Strength reflects the electric strength of insulating materials at various power frequencies. Or it can be defined as the measure of dielectric breakdown resistance of a material under an applied voltage and is expressed as Volts per unit thickness.

How to Calculate Net Resistance?

Net Resistance calculator uses Resistance = Capacitive Reactance/Loss Tangent to calculate the Resistance, The Net Resistance formula is defined as a measure of the opposition to current flow in an electrical circuit. Its S.I unit is ohm. Resistance is denoted by R symbol.

How to calculate Net Resistance using this online calculator? To use this online calculator for Net Resistance, enter Capacitive Reactance (Xc) & Loss Tangent (tan δ) and hit the calculate button. Here is how the Net Resistance calculation can be explained with given input values -> 590.1978 = 380/0.643851961060587.

FAQ

What is Net Resistance?
The Net Resistance formula is defined as a measure of the opposition to current flow in an electrical circuit. Its S.I unit is ohm and is represented as R = Xc/tan δ or Resistance = Capacitive Reactance/Loss Tangent. Capacitive Reactance is the measure of the opposition to alternating current by the capacitor & Loss tangent (tan δ) of a material denotes quantitatively dissipation of the electrical energy due to different physical processes.
How to calculate Net Resistance?
The Net Resistance formula is defined as a measure of the opposition to current flow in an electrical circuit. Its S.I unit is ohm is calculated using Resistance = Capacitive Reactance/Loss Tangent. To calculate Net Resistance, you need Capacitive Reactance (Xc) & Loss Tangent (tan δ). With our tool, you need to enter the respective value for Capacitive Reactance & Loss Tangent and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!