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The electric field in an electromagnetic...

The electric field in an electromagnetic wave is given by e = 50 sin `omega(t - x//c)("in"NC^(-1))` Find the energy contained in a cylindrical space of cross-section 10 `cm^(2)` and length 100 cm along the x-axis. Also find the intensity of wave

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To solve the problem step by step, we will first find the energy contained in the cylindrical space and then calculate the intensity of the wave. ### Step 1: Convert Given Measurements to SI Units - Length (L) = 100 cm = 1 m - Cross-sectional area (A) = 10 cm² = 10 × 10^(-4) m² ### Step 2: Calculate the Volume of the Cylinder The volume (V) of the cylinder can be calculated using the formula: ...
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NARAYNA-ELECTROMAGNETIC WAVES -EXERCISE -4
  1. The electric field in an electromagnetic wave is given by e = 50 sin o...

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  2. Light with an energy flux 20 W//cm^2 falls on a non-reflecting surface...

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  3. The electric field intensity produced by the radiations coming from 10...

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  4. A brilliant are lamp delivers a liminous flux of 100 w to a 1 cm ^(2) ...

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  5. A plane electromagnetic wave is incident on a material surface. The wa...

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  6. Find the radiation pressure of solar radiation on the surface of the e...

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  7. A radio station on the surface of the earth radiates 50 kW . If transm...

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  8. An EM wave radiates out wards from a dipole antenna with E(0) as the a...

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  9. The intensity of a plane electromagnetic wave is 5W / m^(2) . It is in...

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  10. The amplitude of electric field in a parallel light beam of intensity ...

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  11. Find the value of magnetic field between plates of capacitor at distan...

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  12. A point source of electromagnetic radiation has an average power outpu...

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  13. A parallel- plate capacitor with plate area A and separation between t...

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  14. A plane e.m. wave travelling along the x-direction has a wavelength of...

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  15. The refractive index and the permiability of a medium are respectively...

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  16. The electric field of a plane electromagnetic wave varies with time of...

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