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With the help of labelled diagram, state the underlying principle of a cylclotron. Explain clearly how it works to accelerate the charged particles to high energies.
Show that cyclotron frequency is independent of energy of the particle. Is there an upper limit on the enregy acquired by the particle? Give reason.

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Draw a neat and labelled diagram of a cyclotron. State the underlying principle and explain how a positively charged particle gets accelerated in this machine. Show mathematically that the cyclotron frequency does not depend upon the speed of the particle.

Deduce the expression for the frequency of revolution of a charged particle in a magnetic field and show that this is independent of the velocity or energy of the particle.

The cyclotron is a device which is used to accelerate charged particles such as protons, deutrons, alpha particles, etc. to very high energy. The principle on which a cyclotron works is based on the fact that an electric field can accelerate a charged particle and a magnetic field can throw it into a circular orbit. A particle of charge +q experiences a force qE in an electric field E and this force is independent of velocity of the particle. The particle is accelerated in the direction of the magnetic field. On the other hand, a magnetic field at right angles to the direction of motion of the particle throws the particle in a circular orbit in which the particle revolves with a frequency that does not depend on its speed. A modest potential difference is used as a sources of electric field. If a charged particle is made to pass through this potential difference a number of times, it will acquire an enormous by large velocity and hence kinetic energy. The working of a cyclotron is based on the fact that

The cyclotron is a device which is used to accelerate charged particles such as protons, deutrons, alpha particles, etc. to very high energy. The principle on which a cyclotron works is based on the fact that an electric field can accelerate a charged particle and a magnetic field can throw it into a circular orbit. A particle of charge +q experiences a force qE in an electric field E and this force is independent of velocity of the particle. The particle is accelerated in the direction of the magnetic field. On the other hand, a magnetic field at right angles to the direction of motion of the particle throws the particle in a circular orbit in which the particle revolves with a frequency that does not depend on its speed. A modest potential difference is used as a sources of electric field. If a charged particle is made to pass through this potential difference a number of times, it will acquire an enormous by large velocity and hence kinetic energy. Cyclotron is not suitable for accelerating

XII BOARDS PREVIOUS YEAR-XII BOARDS-PHYSICS (Theory) [SET -I]
  1. Draw the output waveformed at X, using the given inputs A and B for th...

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  2. Name the semiconductor device that can be used to regulate an irregula...

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  3. How are infrared waves produced? Why are these referred to as 'heat wa...

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  4. Draw the tramsfer characteristic curve of a base biased transistor in ...

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  5. Define modulation index. Why is it generally kept less than one ?

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  6. A current is induced in coil C1 due to the motion of current carrying...

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  7. A conductor of length L is connected to a dc source of emf epsilon. If...

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  8. Using Gauss's law obtain the expression for the electric field due to ...

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  9. An electron and a photon each have a wavelength 1.00 nm. Find (i) ...

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  10. Draw a schematic diagram showing the (i) ground wave (ii) sky wave and...

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  11. Describe Young's double slitexperiment to produce interference pattern...

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  12. (a) Describe briefly, with the help of suitable diagram, how the tran...

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  13. The energy levels of a hypothetical aton are shown below. Which of the...

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  14. State the law of radioactive decay. Plot a graph showing the number (N...

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  15. In the circuit shown, R1=4Omega,R2=R3=15Omega,R4=30OmegaandE=10V. Cacu...

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  16. State Biot-Savart law, giving the mathematical expression for it. Us...

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  17. With the help of labelled diagram, state the underlying principle of a...

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  18. (a) Draw a ray diagram to show regraction of a ray of monochromatic l...

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  19. (a) Obtain lens makers formula using the expression n2/v-n1/u=((n2-...

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  20. (i) with the help of a labelled diagram, describe briefly the underly...

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