Home
Class 12
PHYSICS
An electric field of magnitude 1000 NC ^...

An electric field of magnitude `1000 NC ^(-1)` is produced between two parallel platees having a separation of 2.0 cm as shown in figure(29.E4) (a) What is the potential difference between the plates? (b) With what minimum speed should an electron be projected from the lower plate in the direction of the field so that it may reach the upper plate? ( c) Suupose the electron is projected from the lower plate with the speed calculated in part (b) . The direction of projection makes an angle of `60@` with the field. Find the mazimum height reached by the electron.

Text Solution

Verified by Experts

`E=1000N//C `
` (a) dV=Edl=1000xx2/100=20V `
` (b) u=?,E=1000,s=2/100m, `
` a=1.75xx10^14m//s^2 `
` 0=u^2-2xx1.75xx10^14xx0.02 `
` rArr u^2=0.04xx1.75xx10^14 `
` u=2.64xx10^6m//s `
` Now u=ucos60^@,v=0,s=? `
` -a=1.75xx10^14m//s^2 `
` v^2=u^2-2as `
` rArr s=0.497xx10^-2 `
` =0.005m=0.50cm`
Promotional Banner

Topper's Solved these Questions

  • ELECTRIC FIELD AND POTENTIAL

    HC VERMA ENGLISH|Exercise question for short answer|14 Videos
  • ELECTRIC FIELD AND POTENTIAL

    HC VERMA ENGLISH|Exercise Objective 1|9 Videos
  • ELECTRIC FIELD AND POTENTIAL

    HC VERMA ENGLISH|Exercise worked out Examples|19 Videos
  • ELECTRIC CURRENT THROUGH GASES

    HC VERMA ENGLISH|Exercise Short answer|6 Videos
  • ELECTROMAGNETIC INDUCTION

    HC VERMA ENGLISH|Exercise Questions for short answer|9 Videos

Similar Questions

Explore conceptually related problems

In a parallel plate capacitor of capacitor 1muF two plates are given charges 2muC and 4muC the potential difference between the plates of the capacitor is

The force between the plates of a parallel plate capacitor of capacitance C and distance of separation of the plates d with a potential difference V between the plates, is.

An electric dipole of dipole moment 2xx10^(-10) coulomb is placed between parallel plate capacitor (see figure) having plate separation 2 cm and charged upto 100 V. Potential energy of the dipole will be -

The plates of a parallel-plate capacior are given equal positive charges .What will be the potential difference between the plates ? What will be the charges on the facing surfaces and on the outer surfaces ?

Four parallel large plates separated by equal distance d are arranged as shown in. The area of the plates is S Find the potential differnce between plats B and C if plate B is given a charge Q. .

An electron having charge e and mass m starts from the lower plate of two metallic plates separated by a distance d . If the potential difference between the plates is V , the time taken by the electron to reach the upper plate is given by .

A parallel air capacitance 245muF has a charge of magnitude 0.48muC on each plate. The plates are 0.328 mm apart. (a) What is the potential difference between the plates? (b) What is the area of each plate? (c) What is the surface charge density on each plate?

A parallel plate air capacitor has capcity C distance of separtion between plates is d and potential difference V is applied between the plates force of attraction between the plates of the parallel plate air capacitor is

In an isolated parallel plate capacitor of capacitance C the four surfaces have charges Q_(1), Q_(2), Q_(3) and Q_(4) as shown in the figure. The potential difference between the plates is :

A uniform electric field E is created between two parallel ., charged plates as shown in figure . An electron . enters the field symmetrically between the plates with a . speed v_(0)'. The length of each plate is l. Find the angle of . deviation of the path of the electron as it comes out . of the field.

HC VERMA ENGLISH-ELECTRIC FIELD AND POTENTIAL-Exercises
  1. An electric field of 20 N//C exists along the x-axis in space. Calcula...

    Text Solution

    |

  2. Consider the situation of the previous problem. A charge of 2.0xx 10 ^...

    Text Solution

    |

  3. An electric field vecE = vec(i20 + vecj30 ) NC^(-1) exists in the spac...

    Text Solution

    |

  4. An electric field vecE = vec I Ax exists in the space, where A= 10 V ...

    Text Solution

    |

  5. The electric potential existing in space is V(x,y,z)= A (xy+ yz+zx).(a...

    Text Solution

    |

  6. Two charged particles, having equal charges of 2.0xx 10^(-5) C each, a...

    Text Solution

    |

  7. Some equipotential surfaces are shown in figure(29.E3) What can you sa...

    Text Solution

    |

  8. Consider a circular ring of radius r, uniformly charged with linear ch...

    Text Solution

    |

  9. An electric field of magnitude 1000 NC ^(-1) is produced between two p...

    Text Solution

    |

  10. A uniform field of 2.0 NC^(-1) exists in space in x direction (a) Taki...

    Text Solution

    |

  11. How much work has to be done in assembling three charged particles at ...

    Text Solution

    |

  12. The kinetc energy of a chargd particle decreased by 10 J as it moves f...

    Text Solution

    |

  13. Two identical particles, each having a charge of 2.0xx10^(-4) C and m...

    Text Solution

    |

  14. Two particles have equal masses of 5.0 g each and opposite charges of ...

    Text Solution

    |

  15. A smple of HCl gas is placed in an electric field of 2.5xx 10^4 NC^(-1...

    Text Solution

    |

  16. Two particles A and B, having opposite charges2.0xx 10^(-6) and -2.0 ...

    Text Solution

    |

  17. Three charges are arranged on the vertices of an equilateral triangle ...

    Text Solution

    |

  18. find the magnitude of the electric field at the point P in the configu...

    Text Solution

    |

  19. Two particles, carrying charges -q and +q and having equal masses m ea...

    Text Solution

    |

  20. Assume that each atom in a copper wire contributes one free electron. ...

    Text Solution

    |