1. | \(1.00\) | 2. | \(1.02\) |
3. | \(1.04\) | 4. | \(0.98\) |
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
The potential difference that must be applied to stop the fastest photoelectrons emitted by a nickel surface, having work function 5.01 eV, when ultraviolet light of 200 nm falls on it, must be
1. 2.4 V
2. -1.2 V
3. -2.4 V
4. 1.2 V
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
1. ultraviolet region
2. visible region
3. infrared region
4. X-ray region
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
A particle of mass 1 mg has the same wavelength as an electron moving with a velocity of 3 x 106 ms-1. The velocity of the particle is :
(Mass of electron = 9.1 x 10-31 kg)
1.
2.
3.
4.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
When photons of energy \(h\nu\) fall on an aluminium plate (of work function \(E_0\)), photoelectrons of maximum kinetic energy \(K\) are ejected.
If the frequency of the radiation is doubled, the maximum kinetic energy of the ejected photoelectrons will be:
1. \(K+ E_0\)
2. \(2K\)
3. \(K\)
4. \(K + h\nu\)
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
The momentum of a photon of energy 1 MeV in kg m/s, will be :
1.
2.
3.
4.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.
To unlock all the explanations of 6 chapters you need to be enrolled in MasterClass Course.