Let us consider two solenoids $$A$$ and $$B$$, made from same magnetic material of relative permeability $$\mu_r$$ and equal area of cross-section. Length of $$A$$ is twice that of $$B$$ and the number of turns per unit length in $$A$$ is half that of $$B$$. The ratio of self inductances of the two solenoids, $$L_A: L_B$$ is
When the output of an OR gate is applied as input to a NOT gate, then the combination acts as a
Interference pattern can be observed due to superposition of the following waves:
A. $$y=a \sin \omega t$$
B. $$y=a \sin 2 \omega t$$
C. $$y=a \sin (\omega t-\phi)$$
D. $$y=a \sin 3 \omega t$$
Choose the correct answer from the options given below.
If $$\phi$$ is the work function of photosensitive material in $$\mathrm{eV}$$ and light of wavelength of numerical value $$\lambda=\frac{h c}{e}$$ metre, is incident on it with energy above its threshold value at an instant then the maximum kinetic energy of the photo-electron ejected by it at that instant (Take $$h$$-Plank's constant, $$c$$-velocity of light in free space) is (in SI units):