Home
Class 12
PHYSICS
A particle of mass m and charge +q enter...

A particle of mass m and charge +q enters a region of magnetic field with a velocity v, as shown in Fig. 1.93.
a. Find the angle subtended by the circular arc described by it in the magnetic field.
b. How long does the particle stay inside the magnetic field?
c. If the particle enters at E, what is the intercept EF?

Text Solution

Verified by Experts

(a) The particle circulates under the influence of magnetic field. As the magnetic field is uniform , the charge comes out symmetrically. The angle subtended at the centre is `(180-2 theta)`.
(b) The length of the arc traced by the particle, `l=R(pi-2theta)`
Time spent in the field, `t=l/v=(R(pi-2 theta))/v` and `R=(mv)/(Bq)`
which gives `t=m/(Bq)(pi-2 theta)`
As time period: `T=(2pim)/(Bq)`, hence `t=T/(2pi)(pi-2 theta)`

we can generalize this result, If `phi` is the angle subtended by the arc traced by the charged particle is the magnetic field, the time spent is `t=T(phi/(2pi))`
(c) Intercept `EF=2R cos theta`.
Promotional Banner

Topper's Solved these Questions

  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS ENGLISH|Exercise Exercise 1.1|22 Videos
  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS ENGLISH|Exercise Exercise 1.2|13 Videos
  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS ENGLISH|Exercise Multiple Correct Answer type|2 Videos
  • INDUCTANCE

    CENGAGE PHYSICS ENGLISH|Exercise Concept Based|8 Videos
  • MISCELLANEOUS VOLUME 3

    CENGAGE PHYSICS ENGLISH|Exercise True and False|3 Videos

Similar Questions

Explore conceptually related problems

A particle of mass m and positive charge q, moving with a uniform velocity v, enters a magnetic field B as shown in (a) Find The radius of the circular arc it describes in the magnetic field. (b) find the angle subtended by the arc at the center. (c ) How long does the particle stay inside the magnetic field? (d) Solve the three parts of the above problem if the charge q on the particle is negative.

A charge particle of mass m and charge q enters in a region of uniform magnetic field as shown in figure.The magnitude of change in linear momentum due to magnetic field will be

A proton of mass m and charge q enters a magnetic field B with a velocity v at an angle theta with the direction of B .The radius of curvature of the resulting path is

When a charged particle enters a uniform magnetic field its kinetic energy

A positive charge particle of charge q and mass m enters into a uniform magnetic field with velocity v as shown in Fig. There is no magnetic field to the left of PQ. Find (a) time spent, (b) distance travelled in the magnetic field, (c) impulse of magnetic force.

A positive charge particle of charge q and mass m enters into a uniform magnetic field with velocity v as shown in Fig. There is no magnetic field to the left of PQ. Find (a) time spent, (b) distance travelled in the magnetic field, (c) impulse of magnetic force.

A charged particle (q,m) enters uniform magnetic field B at angle alpha shown in figure with speed v_0 . Find a. The angle beta at which it leves the magnetic field b. time spent by the particle in magnetic field and c. the distance C .

A charged particle (q,m) enters uniform magnetic field B at angle alpha shown in figure with speed v_0 . Find a. The angle beta at which it leves the magnetic field b. time spent by the particle in magnetic field and c. the distance C .

A proton of mass m and charge q enters a region of uniform magnetic field of a magnitude B with a velocity v directed perpendicular to the magnetic field. It moves in a circular path and leaves the magnetic field after completing a quarter of a circle. The time spent by the proton inside the magnetic field is proportional to:

A particle of mass m and charge Q moving with a velocity v enters a region on uniform field of induction B Then its path in the region is s

CENGAGE PHYSICS ENGLISH-MAGNETIC FIELD AND MAGNETIC FORCES-Solved Example
  1. A potential difference of 600 volts is applied across the plates of a ...

    Text Solution

    |

  2. A particle of mass 1xx 10^(-26) kg and charge +1.6xx 10^(-19) C trave...

    Text Solution

    |

  3. A particle of mass m and charge +q enters a region of magnetic field w...

    Text Solution

    |

  4. A beam of proton with a velocity of 4xx10^(5)ms^(-1) enters a uniform ...

    Text Solution

    |

  5. An electron gun G emits electons of energy 2 keV travelling in the pos...

    Text Solution

    |

  6. An electron in the ground state of hydrogen atom is removing in unanti...

    Text Solution

    |

  7. A particle of mass m and charge q is moving in a region where uniform,...

    Text Solution

    |

  8. A uniform constant magnetic field B is directed at an angle of 45^(@) ...

    Text Solution

    |

  9. The region between x=0 and x=L is filled with uniform steady magnetic ...

    Text Solution

    |

  10. A rectangular loop PQRS made from a uniform wire has length a, width ...

    Text Solution

    |

  11. A ring of radius R having uniformly distributed charge Q. is mounted o...

    Text Solution

    |

  12. In a moving coil galvanometer, torque on the coil can be experessed as...

    Text Solution

    |

  13. A slightly divergent beam of charged particles accelerated by a Potent...

    Text Solution

    |

  14. A small charged ball having mass m and charge q is suspended from a ri...

    Text Solution

    |

  15. Non-relativistic protons move reactilinearly in the region of space wh...

    Text Solution

    |

  16. A current i, indicated by the crosses in figure, is established in a s...

    Text Solution

    |

  17. A straight conductor of weight 1 N and length 0.5 m, is located in a p...

    Text Solution

    |

  18. There is a constant homogeneous electric field of 100 Vm^-1 within the...

    Text Solution

    |

  19. A positively charged particle of mass m and charge q is projected on a...

    Text Solution

    |

  20. A loop of flexible conducting wire of length 0.5 m lies in a magnetic ...

    Text Solution

    |