X-ray is produced in a Coolidge tube at a given accelerating voltage. The wavelength of continuous X-rays has values from :
1. Zero
2.
3.
4.
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The continuous part of the X-ray spectrum is a result of the:
1. Photoelectric effect
2. Raman effect
3. Compton effect
4. Inverse photoelectric effect
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When an electron moves from 2E level to E level, a photon of wavelength is emitted. The wavelength of photon produced during its transition from level to E level is:
1.
2.
3.
4.
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If an X-ray tube operates at the voltage of 10 kV, find the ratio of the de-Broglie wavelength of the incident electrons to the shortest wavelength of X-rays produced. [Given:The specific charge of the electron is C/Kg]
1. 1
2. 0.1
3. 1.8
4. 1.2
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When a electron in hydrogen atom falls to the ground state from n = 2 , 10.2 eV of energy is emitted. What is the wavelength of this radiation? (Note: 1 eV = J and h = J-s)
1.
2.
3.
4.
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Electrons of mass m with de- Broglie wavelength λ fall on the target in an X-ray tube. The cut off wavelength (λo) of the emitted X-ray is :
1.
2.
3.
4.
An electron of mass m with an initial velocity enters in an electric field (Eo = constant >0) at t = 0. If , is its de-Broglie wavelength initially, then its de-Broglie wavelength at time t is:-
1.
2.
3.
4.
When light of frequency 2o (where o is threshold frequency), is incident on a metal plate, the maximum velocity of electrons emitted is . When the frequency of the incident radiation is increased to 5o, the maximum velocity of electrons emitted from the same plate is . The ratio of to is
1. 1: 2
2. 1: 4
3. 4: 1
4. 2: 1
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