An electron of mass mm with an initial velocity →v=v0ˆi→v=v0^i(vo>0)(vo>0) enters in an electric field →E=−E0ˆi→E=−E0^i (E0=constant>0)(E0=constant>0) at t=0.t=0. If λ0,λ0,
1. λ0(1+eE0mv0t)λ0(1+eE0mv0t)
2. λ0(1+eE0mv0t)λ0(1+eE0mv0t)
3. λ0tλ0t
4. λ0λ0
When the light of frequency 2ν02ν0 (where ν0ν0 is threshold frequency), is incident on a metal plate, the maximum velocity of electrons emitted is v1.v1. When the frequency of the incident radiation is increased to 5ν0,5ν0, the maximum velocity of electrons emitted from the same plate is v2.v2. What will be the ratio of v1v1 to v2?v2?
1. | 1:21:2 | 2. | 1:41:4 |
3. | 4:14:1 | 4. | 2:12:1 |
1. | h√mkTh√mkT | 2. | h√3mkTh√3mkT |
3. | 2h√3mkT2h√3mkT | 4. | 2h√mkT2h√mkT |
The photoelectric threshold wavelength of silver is 3250×10−10 m.3250×10−10 m. What will be the velocity of the electron ejected from a silver surface by the ultraviolet light of wavelength 2536×10−10 m?2536×10−10 m?
(Given h=4.14×10−15 eVsh=4.14×10−15 eVs and c=3×108 m/sc=3×108 m/s)
1. ≈0.6×106 m/s≈0.6×106 m/s
2. ≈61×103 m/s≈61×103 m/s
3. ≈0.3×106 m/s≈0.3×106 m/s
4. ≈0.3×105 m/s≈0.3×105 m/s
An electron of mass m and a photon have the same energy E. Find the ratio of de-Broglie wavelength associated with the electron to that associated with the photon. (c is the velocity of light)
1.1. (E2m)1/2(E2m)1/2
2.2. c(2mE)1/2c(2mE)1/2
3.3. 1c(2mE)1/21c(2mE)1/2
4.4. 1c(E2m)1/21c(E2m)1/2