Home
Class 12
PHYSICS
Calculate the electric and magnetic fiel...

Calculate the electric and magnetic fields produced by the radiation coming from a 100 W bulb at a distance of 3 m. Assume that the efficiency of the bulb is 2.5% and it is a point source.

Text Solution

Verified by Experts

The bulb, as a point source, radiates light in all directions uniformly. At a distance of 3 m, the surface area of the surrounding sphere is
`A=4 pi r^(2) =4 pi (3)^(2)=113 m^(2)`
The intensity I at this distance is
`I=("Power")/("Area")=(100 Wxx2.5%)/(113 m^(2))`
`=0.022 W//m^(2)`
Half of this intensity is provided by the electric field and half by the magnetic field.
`(1)/(2) I =(1)/(2) (epsi_(0) E_("rms")^(2) c)`
`=(1)/(2) (0.022 W//m^(2))`
`E_("rms") = sqrt((0.022)/((8.85xx10^(12))(3xx10^(8))) V//m`
`=2.9 V//m`
The value of E found above is the root mean square value of the electric field. Since the electric field in a light beam is sinusoidal, the peak electric field, `E_(0)` is
`E_(0)=sqrt(2) E_("rms") =sqrt(2) xx2.9 V//m`
`=4.07 V//m`
Thus, you see that the electric field strength of the light that you use for reading is fairly large. Compare it with electric field strength of TV or FM waves, which is of the order of a few microvolts per metre.
Now, let us calculate the strength of the magnetic field. It is
`B_("rms") =(E_("rms"))/(C ) =(2.9 V m^(-1))/(3xx10^(8) ms^(-1))=9.6xx10^(-9) T`
Again, since the field in the light beam is sinusoidal, the peak magnetic field is `B_(0) =sqrt(2) B_("rms") =1.4xx10^(-8) T.` Note that although the energy in the magnetic field is equal to the energy in the electric field, the magnetic field strength is evidently very weak.
Promotional Banner

Similar Questions

Explore conceptually related problems

What is the magnitude of the equatorial and axtal feilds due to a bar magnet of length 5.0 cm at a distance of 50 cm from its mid-point? The magnetic moment of the bar magnet is 0.40 A m^2

The magnetic fields at two points on the axis of a circular coil at distance of 0.05 m and 0.2 m from the centre are in the ratio 8 : 1 . The radius of the coil is

An electric bulb is rated at 60W, 240V. Calculate its resistance. lf the voltage drops to 192 V, calculate the power consumed and the current drawn by the bulb. (Assume that the resistance of the bulb remains unchanged).

Magnetic field due to a bar magnet 2 cm long having a pole strength of 100 Am at a point 10 cm from each pole is

A spherical conductor of radius 2 cm is uniformly charged with 3 nC. What is the electric field at a distance of 3 cm from the centre of the sphare ?