An electromagnetic wave of frequency 100 text MHz propagates through a medium of conductivity, sigma = 10 text mho/m. The ratio of maximum conducting current density to maximum displacement current density is ________. [textTake frac14piepsilon_0 = 9 times 10^9 text Ncdottextm^2/textC^2]

Numerical Answer Type:
Enter a numerical value Answer: 1800 to 1800 +4 marks

Solution & Explanation

### Related Formula J_c = sigma E J_d = epsilon_0 fracpartial Epartial t ### Core Logic Let the electric field of the wave be E = E_0 sin(omega t - kx). The conduction current density is: J_c = sigma E_0 sin(omega t - kx) The maximum conduction current density is: (J_c)_textmax = sigma E_0 quad text--- (i) The displacement current density is: J_d = frac1A left( epsilon_0 fracpartial (EA)partial t right) = epsilon_0 fracpartial Epartial t J_d = epsilon_0 E_0 omega cos(omega t - kx) The maximum displacement current density is: (J_d)_textmax = epsilon_0 E_0 omega quad text--- (ii) ### Step 1: Taking the Ratio Dividing (i) by (ii): textRatio = frac(J_c)_textmax(J_d)_textmax = fracsigma E_0epsilon_0 omega E_0 = fracsigmaepsilon_0 omega ### Step 2: Substitution and Calculation We know f = 100 text MHz = 10^8 text Hz, so omega = 2pi f = 2pi times 10^8 text rad/s. sigma = 10 text mho/m. Also, frac14piepsilon_0 = 9 times 10^9 implies frac1epsilon_0 = 4pi times 9 times 10^9. textRatio = frac10 times 4pi times 9 times 10^92pi times 10^8 textRatio = frac360pi times 10^92pi times 10^8 = frac36002 = 1800 ### Step 3: Final Conclusion The required ratio is 1800. ### Pattern Recognition The ratio of conduction to displacement current density in any medium is universally sigma / (omega epsilon_0). This dictates whether a medium behaves as a good conductor or a dielectric at a given frequency. ### Evaluation Rubric / Model Answer null ### Chapter Mix Class 12 Physics: Electromagnetic Waves

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